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Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri

Year 2024, Volume: 39 Issue: 2, 1333 - 1350, 30.11.2023
https://doi.org/10.17341/gazimmfd.1220575

Abstract

Bu derleme makale çalışmasında, literatürde yer alan Yüzey Tümleşik Dalga Kılavuzu (YTD) filtrenin mimarisi, filtre tasarım kuralları ve YTD filtre üretim teknolojileri incelenmiştir. İncelenen filtre tasarım çalışmalarının kalite faktörü ve boyut değerine göre bu üretim teknolojileri karşılaştırılmıştır. Ayrıca literatürdeki YTD filtre çalışmalarında, YTD filtrenin harmonik sorunlara çözüm üreten teknikler incelenmiştir.

References

  • 1. Moscato, S., Silvestri, L., Delmonte, N., Pasian, M., Bozzi, M., Perregrini, L., SIW components for the Internet of Things: Novel topologies, materials, and manufacturing techniques, 2016 IEEE Topical Conference on Wireless Sensors and Sensor Networks (WiSNet), TX- USA, 78-80, 24-27 Jan, 2016.
  • 2. Moradi, B., Fernández-García, R., Gali, I.G, E-Textile Metamaterials: Stop Band Pass Filter, Appl. Sci., 11 (22), 2021.
  • 3. Nguyen, N.H., Parment, F., Ghiotto, A., Wu, K., Vuong, T.P., A fifth-order air-filled SIW filter for future 5G applications, 2017 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP), Amsterdam-Netherlands, 20-22 September, 2017.
  • 4. Waldschmidt, C., Hasch, J., Menzel, W., Automotive Radar-From First Efforts to Future Systems, IEEE J. Microwaves, 1, 135–148, 2021.
  • 5. ASELSAN A.Ş. Sürü Teknolojileri. https://m.aselsan.com.tr/tr/inovasyon/haber-detay/suru-teknolojileri-3146. Yayın tarihi Ocak 7, 2022. Erişim tarihi Ağustos 6, 2022.
  • 6. Nwajana, A.O., Obi, E.R., A Review on SIW and Its Applications to Microwave Components, Electronics, 11 (7), 2022.
  • 7. Güvenli K., Mikrodalga frekanslarında kullanılacak yüzey tümleşik dalga kılavuzu filtrelerinin tasarımı, gerçeklemesi ve optimizasyonu, Doktora Tezi, Bursa Uludağ Üniversitesi, Fen Bilimleri Enstitüsü, Bursa, 2022.
  • 8. Hwang, R.B., Chin, C.Y., Lin, Y.D., Kitazawa, T., Wu, C.W., Electromagnetic interference in substrate-integrated waveguides circuit and its suppression technique, 2010 Asia-Pacific International Symposium on Electromagnetic Compatibility, Beijing, China, April 12-16, 2010.
  • 9. D’Auria, M., Otter, W.J., Hazell, J., Gillatt, B.T.W, Long-Collins, C., Ridler, N. M., Lucyszyn, S., 3-D Printed Metal-Pipe Rectangular Waveguides, IEEE Transactions on Components, Packaging and Manufacturing Tech., 5 (9), 1339, 2015.
  • 10. Mohamed. I., Sebak, A., Broadband Transition of Substrate-Integrated Waveguide-to-Air-Filled Rectangular Waveguide, IEEE Microwave and Wireless Components Letters, 28 (11), 966-968, 2018.
  • 11. Mineo M., Paoloni, C., Double-Corrugated Rectangular Waveguide Slow-Wave Structure for Terahertz Vacuum Devices, IEEE Transactions on Electron Devices, 57 (11), 3169-3175, 2010.
  • 12. Zhang, B., Zirath, H., Metallic 3-D Printed Rectangular Waveguides for Millimeter-Wave Applications, IEEE Transactions on Components, Packaging and Manufacturing Technology, 6 (5), 796-804, 2016.
  • 13. Verma, A.K., Singh, P., Matekovits, L., Strip-Width and Slot-Gap Dependent Equivalent Isotropic Substrate and Dispersion Characteristics of Asymmetric Coplanar Waveguide, Symmetric Coplanar Waveguide and Micro-Coplanar Strip Line on Anisotropic Substrates, IEEE Transactions on Microwave Theory and Techniques, 62 (10), 2232, 2014.
  • 14. Lee, Y.C., Guo, J.C., Wang, C.L., Compact and Broadband Microstrip Line-to- Rectangular Waveguide Transition Using Magnetic Coupling Resonator and Ground Resonators, IEEE Transactions on Microwave Theory and Techniques, 69 (12), 5300-5304, 2021.
  • 15. Chen, C.J., Design of Artificial Transmission Line and Low-Pass Filter Based on Aperiodic Stubs on a Microstrip Line, IEEE Transactions on Components, Packaging and Manufacturing Technology, 4 (5), 922-928, 2014.
  • 16. Nandi, U., Zaman, A.U., Vosoogh, A., Yang, J., Novel Millimeter Wave Transition From Microstrip Line to Groove Gap Waveguide for MMIC Packaging and Antenna Integration, IEEE Microwave and Wireless Components Letters, 27 (8), 691-693, 2017.
  • 17. H. Wang, H., Fang, D.G., Zhang, B., Che, W.Q., Dielectric Loaded Substrate Integrated Waveguide (SIW) H-Plane Horn Antennas, IEEE Transactions on Antennas and Propagation, 58 (3), 640-647, 2010.
  • 18. Çelenk E., Türker Tokan N., Frequency Scanning Conformal Sensor Based on SIW Metamaterial Antenna, IEEE Sensors Journal, 21 (14), 16015-16023, 2021.
  • 19. Zhang, H., Kang, W., Wu, W., Miniaturized Dual-Band SIW Filters Using E-Shaped Slotlines With Controllable Center Frequencies, IEEE Microwave and Wireless Components Letters, 28 (4), 311-313, 2018.
  • 20. Li, M., Chen, C., Chen, W., Miniaturized Dual-Band Filter Using Dual-Capacitively Loaded SIW Cavities, IEEE Microwave and Wireless Components Letters, 27 (4), 344-346, 2017.
  • 21. Herbst, H.F., Roux, P.I., Jackman, K., Fourie, C.J., Improved Transmission Line Parameter Calculation Through TCAD Process Modeling for Superconductor Integrated Circuit Interconnects, IEEE Transactions on Applied Superconductivity, 30 (7), 1-4, 2020.
  • 22. Okai, D., Kusunoki, M., Mukaida, M., Ohshima, S., New surface resistance measurement technique of high-temperature superconductors using a probe coupling microstrip line resonator, IEEE Transactions on Applied Superconductivity, 11 (1), 3078-3081, 2001.
  • 23. Mansour, R.R., Microwave superconductivity, IEEE Transactions on Microwave Theory and Techniques, 50 (3), 2002.
  • 24. Heng, Y., Guo, X., Cao, B., Wei, B., Zhang, X., Zhang, G., Song, X., Dual-Band Superconducting Bandpass Filter Using Stub-Loaded Resonators With Controllable Coupling and Feeding Structures, IEEE Microwave and Wireless Components Letters, 23 (8), 400-402, 2013.
  • 25. Baena, J.D., Bonache, J., Martin, F., Sillero, R.M., Falcone, F., Lopetegi, T., Laso, M. A. G., Garcia-Garc, J., J Equivalent-circuit models for split-ring resonators and complementary split-ring resonators coupled to planar transmission lines, IEEE Transactions on Microwave Theory and Techniques, 53 (4), 1451-1461, 2005.
  • 26. Vélez, P., Su, L., Grenier, K., Mata-Contreras, J., Dubuc, D., Martín, F., Microwave Microfluidic Sensor Based on a Microstrip Splitter/Combiner Configuration and Split Ring Resonators (SRRs) for Dielectric Characterization of Liquids, IEEE Sensors Journal, 17 (20), 6589-6598, 2017.
  • 27. Ebrahimi, A., Scott, J., Ghorbani, K., Differential Sensors Using Microstrip Lines Loaded With Two Split-Ring Resonators, IEEE Sensors Journal, 18 (14), 5786-5793, 2018.
  • 28. Naqui, J., Martín, F., Transmission Lines Loaded With Bisymmetric Resonators and Their Application to Angular Displacement and Velocity Sensors, IEEE Transactions on Microwave Theory and Techniques, 61 (12), 4700-4713, 2013.
  • 29. Ridler, N.M., Ginleyt, R.A., A review of the IEEE 1785 standards for rectangular waveguides above 110 GHz, 2017 89th ARFTG Microwave Measurement Conference (ARFTG), Honololu-USA, 1-4, 09-09 June, 2017.
  • 30. Kildal, P.S., Kehn, M.N.M, The ridge gap waveguide as a wideband rectangular hard waveguide, Proceedings of the Fourth European Conference on Antennas and Propagation, Barcelona, Spain, 1-4, 12-16 April, 2010.
  • 31. Rajo-Iglesias, E., Ferrando-Rocher, M., Zaman, A.U., Gap Waveguide Technology for Millimeter-Wave Antenna Systems, IEEE Communications Magazine, 56 (7), 14-20, 2018.
  • 32. Lomakin, K., Herold, S., Simon, D., Sippel, M., Sion, A., Vossiek, M., Helmreich, K., Gold, G, 3D Printed Slotted Rectangular Hollow Waveguides, 2019 IEEE MTT-S International Microwave Symposium (IMS), Boston, MA, USA, 342-345, 02-07 June, 2019.
  • 33. Lu, G., Wang, J., Xie, Z., Yeow, J. T. W., Carbon-Based THz Microstrip Antenna Design: A Review, IEEE Open Journal of Nanotechnology, 3, 15-23, 2022.
  • 34. S. Akinola, S., Hashimu, I, Singh, G., Gain and Bandwidth Enhancement Techniques of Microstrip Antenna: A Technical Review, 2019 International Conference on Computational Intelligence and Knowledge Economy (ICCIKE), Dubai, United Arab Emirates, 175-180, 11-12 December, 2019.
  • 35. Pozar, D.M., Microstrip antennas, Proceedings of the IEEE, 80 (1), 79-91, 1992.
  • 36. Kakaria, P., Nema, R., Review and survey of compact and broadband Microstrip Patch Antenna, 2014 International Conference on Advances in Engineering & Technology Research (ICAETR - 2014), Unnao, India, 1-5, 1-2 August, 2014.
  • 37. Wu, K., Bozzi, M., Fonseca, N.J.G., Substrate Integrated Transmission Lines: Review and Applications, IEEE Journal of Microwaves, 1 (1), 345-363, 2021.
  • 38. Iqbal, A., Tiang, J.J., Wong, S.K., Alibakhshikenari, M., Falcone F., Limiti, E. Miniaturization Trends in Substrate Integrated Waveguide (SIW) Filters: A Review, IEEE Access, 8, 223287-223305, 2020.
  • 39. Chen, X.P. Wu, K., Substrate Integrated Waveguide Filter: Basic Design Rules and Fundamental Structure Features, IEEE Microwave Magazine, 15 (5), 108-116, 2014.
  • 40. Bozzi, M., Perregrini, L., Tomassoni, C., A Review of Compact Substrate Integrated Waveguide (SIW) Interconnects and Components," 2019 IEEE 23rd Workshop on Signal and Power Integrity (SPI), Chambéry, France, 1-4, 18 June, 2019.
  • 41. Shen, B., Grilli, F., Coombs, T., Overview of H-Formulation: A Versatile Tool for Modeling Electromagnetics in High-Temperature Superconductor Applications, IEEE Access, 8, 100403-100414, 2020.
  • 42. Maeda, H., Yanagisawa, Y., Recent Developments in High-Temperature Superconducting Magnet Technology (Review)," IEEE Transactions on Applied Superconductivity, 24 (3), 1-12, 2014.
  • 43. Willis, J.O. Superconducting transmission cables, IEEE Power Engineering Review, 20 (8), 10-14, 2000.
  • 44. Levy, R., Snyder, R.V., Matthaei, G., Design of microwave filters, IEEE Transactions on Microwave Theory and Techniques, 50 (3), 783-793, 2002.
  • 45. Pillai, G., Li, S.S., Piezoelectric MEMS Resonators: A Review, IEEE Sensors Journal, 21 (11), 12589-12605, 2021.
  • 46. Delmonte, N., Silvestri, L. Perregrini, L. Bozzi, M., Substrate Integrated Waveguide (SIW) Cavity Resonators: A Review of Technologies and Applications, 2021 IEEE International Symposium on Radio-Frequency Integration Technology (RFIT), Hualien, Taiwan, 1-3, 25-27 August, 2021.
  • 47. Reddy, A.N., Raghavan, S., Split ring resonator and its evolved structures over the past decade: This paper discusses the nuances of the most celebrated composite particle (split-ring resonator) with which novel artificial structured materials (called metamaterials) are built, 2013 IEEE International Conference ON Emerging Trends in Computing, Communication and Nanotechnology (ICECCN), Tirunelveli, India, 625-629, 25-26 March, 2013.
  • 48. Wong, S.W., Lin, J.Y., Yang, Y., Guo, Z.C., Zhu, L., Chu, Q.X., Waveguide Components Based on Multiple-Mode Resonators: Advances in Microwave Multiple-Mode Waveguide Components, Including Multiplexers, Three-State Diplexers, Crossovers, and Balanced/Unbalanced Elements, IEEE Microwave Magazine, 22 (2), 33-45, 2021.
  • 49. 60 ama 49 olmalı Berksoy, Z., SIW Dalga Kılavuzlarının Analizi ve Tasarım Uygulamaları. Yüksek Lisan Tezi, İstanbul Teknik Üniversitesi, İTÜ Fen Bilimleri Enstitüsü, Elektronik ve Haberleşme Mühendisliği Anabilim Dalı, İstanbul, 2013.
  • 50. Deslandes, D., Wu, K., Integrated microstrip and rectangular waveguide in planar form, IEEE Microwave and Wireless Components Letters, 11 (2), 68-70, 2001.
  • 51. Guvenli, K., Yenikaya, S., ve Seçmen, M., Analysis, Design, and Actual Fabrication of a Hybrid Microstrip-SIW Bandpass Filter Based on Cascaded Hardware Integration at X-Band, Elektronika Ir Elektrotechnika, 27 (1), 23-28, 2021.
  • 52. Pozar, D.M., Microwave Engineering, John Wiley & Sons, NJ, USA, 2011.
  • 53. Bozzi, M., Pasian, M., Perregrini, L., Wu, K., On the Looses in Substrate Integrated Waveguides and Cavities, International Journal of Microvawe and Wireless Technologies, 1 (5), 395-401, 2009.
  • 54. Wu, L., Substrate Integrated Waveguide Antenna Applications. Doktora Tezi, KU Fen Bilimleri Enstitüsü, Elektronik Mühendisliği Anabilim Dalı, İngiltere, 2015.
  • 55. Bozzi, M., Perregrini, L., Wu, K., Arcioni, P., Current and Future Research Trends in Substrate Integrated Waveguide Technology, Radioengineering, 18 (2), 201-209, 2009.
  • 56. Yu, Y., Hong, W., Zhang, H., Xu, J., Jiang, Z. H., Optimization and Implementation of SIW Slot Array for Both Medium- and Long-Range 77 GHz Automotive Radar Application, IEEE Transactions on Antennas and Propagation, 66 (7), 3769-3774, 2018.
  • 57. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z. Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 58. Keyur, M., Mewada H., Substrate Integrated Waveguide Based Bandpass Filter with Defected Ground Structure for FMCW Radar Application, International Journal of Sensors, Wireless Communications and Control; 10 (3), 2020.
  • 59. Alsabah, M., Naser, M.A., Mahmmod, B.M., Abdulhussain, S.H., Eissa, M.R., Ahmed Al-Baidhani, A., Noordin, N.K., Sait, S.M., Al-Utaibi, K.A., Hashim, F., 6G Wireless Communications Networks: A Comprehensive Survey, IEEE Access, 9, 148191-148243, 2021.
  • 60. Fiber Altyapının Geliştirilmesine Uluslararası Uygulamalar. https://www.btk.gov.tr/uploads/pages/arastirma-raporlari/fiber-altyapi-raporu-son-rev.pdf. Yayın tarihi Temmuz 7, 2020. Erişim tarihi Ekim 26, 2022. https://www.btk.gov.tr/uploads/pages/arastirma-raporlari/fiber-altyapi-raporu-son-rev.pdf
  • 61. Shishkin, I., Baranov, D., Slobozhanyuk, A., Filonov, D., Lukashenko, S., Samusev, A., Belov, P., Microwave platform as a valuable tool for characterization of nanophotonic devices, Scientific Reports, 6, 35516, 2016.
  • 62. Azad, A.R., Mohan, A., Single- and Dual-Band Bandpass Filters Using a Single Perturbed SIW Circular Cavity, IEEE Microwave and Wireless Components Letters, 29 (3), 1-3, 2019.
  • 63. Xie, H.Y., Wu, B., Xia, L., Chen, J.Z., Su, T., Miniaturized Half-Mode FanShaped SIW Filter With Extensible Order and Wide Stopband, IEEE Microwave and Wireless Components Letters, 30 (8), 749-752, 2020.
  • 64. Mendez-Jeronimo, G., Wu, K., Effects of Unshielded Air Holes Periodically Perforated in Substrate Integrated Waveguides. IEEE Microwave and Wireless Components Letters, 30 (11), 1049-1052, 2020.
  • 65. Zheng, P., Liu, Z., Li, Y., Wu, L., Wang, Y., Zheng, P., LTCC based substrate integrated waveguide (SIW) bandpass filters with CPW transitions, 2017 International Workshop on Electromagnetics: Applications and Student Innovation Competition, London, UK, 30 May - 01 June, 97-99, 2017.
  • 66. Hussein, O.I., Shamaileh, K.A.A., Dib, N.I., Nosrati, A., Abushamleh, S., Georgiev, D.G., Devabhaktu, V.K., Substrate Integrated Waveguide Bandpass Filtering With Fourier-Varying Via-Hole Walling, IEEE Access, 8, 139706, 2020.
  • 67. Yun, T., Nam, H., Kim, K., Lee, J., Iris Waveguide Bandpass Filter Using Substrate Integrated Waveguide (SIW) for Satellite Communication, 2005 Asia-Pacific Microwave Conference Proceedings, Suzhou-China, 4-7 December, 4, 2005.
  • 68. Liu, Z., Xiao, G.B., Zhu, L., A novel method to design triple-mode SIW filter based on the complementary split ring resonators (CSRRs). 2016 IEEE MTT-S International Microwave Symposium (IMS), CA, USA, 22-27 May, 2016.
  • 69. Iqbal, A., Ahmad, A.W., Smida, A., Mallat, N.K., Tunable SIW Bandpass Filters with Improved Upper Stopband Performance. IEEE Transactions on Circuits and Systems II: Express Briefs, 1–1, 2019.
  • 70. Pelluri, S., Fasil, M., Mondal, D., Kartikeyan, M. V., Dual-band Bandpass filter using SIW cavity with E-shaped DGS, 2020 URSI Regional Conference on Radio Science (URSI-RCRS), Varanasi-India, 1-3, 12-14 February, 2020.
  • 71. Bozzi, M., Moscato, S., Silvestri, L., Delmonte, N., Pasian, M., Perregrini, L., Innovative SIW components on paper, textile, and 3D-printed substrates for the Internet of Things, 2015 Asia-Pacific Microwave Conference (APMC), Nanjing, China, 6-9 December, 2015.
  • 72. Su, W., Wu, Z., Fang, Y., Bahr, R., Raj, P.M., Tummala, R., Tentzeris, M.M., 3D printed wearable flexible SIW and microfluidics sensors for Internet of Things and smart health applications, 2017 IEEE MTT-S International Microwave Symposium (IMS), Honololu, HI, USA, 04-09 June, 2017.
  • 73. Amina, O., Bouchra, R., Amina, A., Hadjira, B., The Design of Filter Based on Substrate Integrated Waveguide with Symmetrical Inductive Iris, 2018 9th International Symposium on Signal, Image, Video and Communications (ISIVC), Rabat, Morocco, 22-26, 27-30 November, 2018.
  • 74. Kim, Y., Lim, S., Low Loss Substrate-Integrated Waveguide Using 3D-Printed Non-Uniform Honeycomb-Shaped Material, IEEE Access, 8, 191090-191099, 2020.
  • 75. Massoni, E., Silvestri, L., Alaimo, G., Marconi, S., Bozzi, M., Perregrini, L., Auricchio, F., 3-D Printed Substrate Integrated Slab Waveguide for Single-Mode Bandwidth Enhancement, IEEE Microwave and Wireless Components Letters, 27 (6), 536-538, 2017.
  • 76. Ghiotto, A., Doghri, A., Parment, F., Djerafi, T., Vuong, T.P., Wu, K., Three-dimensional SIW and high-performance air-filled SIW for millimeter-wave substrate integrated circuits and systems, Global Symposium on Millimeter-Waves (GSMM), Montreal, QC, Canada, 1-3, 25-27 May, 2015.
  • 77. Karpuz, C., Fırat, G.B., Özdemir, P.Ö., Özek, A., Görür, A.K., Design of dualmode substrate integrated waveguide filter using inductive slots, 2016 Asia-Pacific Microwave Conference (APMC), New Delhi-India, 5-9 December, 2016.
  • 78. Macchiarella, G., Tomassoni, C., Massoni, E., Bozzi, M., Perregrini, L., A novel class of half-mode SIW filters with extracted poles, 2017 47th European Microwave Conference (EuMC), Nuremberg-Germany, 10–12 October, 2017.
  • 79. Wang, Z.D., Wei, F., Zhang, L., Shi, X.W., Design of dual-band bandpass SIW filter with DGS. 2012 International Conference on Microwave and Millimeter Wave Technology (ICMMT), Shenzhen, China, 05-08 May, 2012.
  • 80. Li, D., Wang, J., Yu, Y., Liu, Y., Chen, Z., Yang, L., Substrate integrated waveguide‐based complementary split‐ring resonator and its arrays for compactdual‐widebandbandpass filter design, International Journal of RF and Microwave Computer-Aided Engineering, 31 (2), 2020.
  • 81. Zhang, X., Yan, J., Zhang, H., Chen, Y., Miniaturized substrate integrated waveguide 5G LTCC bandpass filter exploiting capacitive loaded cavities, Int J RF Microw Comput Aided Eng, 29 (7), 1-5, 2019.
  • 82. Zhu, Y.Y., Yang, Y.J., Chen, J.X., High-performance bandpass filter using HTCC stepped-impedance resonators. IET Microw. Antennas Propag., 12, 56-62, 2018.
  • 83. Nwajana, A. O., Dainkeh, A., Yeo, K. S. K., Substrate Integrated Waveguide (SIW) Bandpass Filter with Novel Microstrip-CPW-SIW Input Coupling, Journal of Microwaves, Optoelectronics and Electromagnetic Applications, 16 (2), 393-402, 2017.
  • 84. Azad, A.R., Jhariya, D.K., Mohan, A., Substrate-integrated waveguide cross-coupled filters with mixed electric and magnetic coupling structure. International Journal of Microwave and Wireless Technologies, 1–8, 2018.
  • 85. Zou, X., Tong, C., Yu, D., Design of an X-band symmetrical window bandpass filter based on Substrate Integrated Waveguide, Proceedings of 2011 Cross Strait Quad-Regional Radio Science and Wireless Technology Conference, Harbin, China, 571-574, 26-30 July, 2011.
  • 86. Armendariz, M., Sekar, V., Entesari, K., Tunable SIW bandpass filters with PIN diodes, The 40th European Microwave Conference, Paris, France, 28-30 September, 2010.
  • 87. Deng, M., Psychogiou, D., Tune-All Substrate-Integrated-Waveguide (SIW) Bandpass Filters, 49th European Microwave Conference (EuMC), Paris, France, 01-03 October, 2019.
  • 88. Moro, R., Agneessens, S., Rogier, H., Dierck, A., Bozzi, M., Textile Microwave Components in Substrate Integrated Waveguide Technology, IEEE Transactions on Microwave Theory and Techniques, 63 (2), 422-432, 2015.
  • 89. Moro, R., Kim, S., Bozzi, M., Tentzeris, M., Inkjet-printed paper-based substrate-integrated waveguide (SIW) components and antennas. International Journal of Microwave and Wireless Technologies, 5 (03), 197–204, 2013.
  • 90. Tomassoni, C., Bahr, R., Tentzeris, M., Bozzi, M., Perregrini, L., 3D printed substrate integrated waveguide filters with locally controlled dielectric permittivity, 46th European Microwave Conference, London, UK, 253, 4-6 October, 2016.
  • 91. Genç A., Göksu T., Helhel S., Investigation of the performance of waveguide bend components fabricated with 3D printing and copper plating, Journal of the Faculty of Engineering and Architecture of Gazi University, 34 (2), 801-810, 2009.
  • 92. Zhou, X., Gang Zhang, G., Feng, S., Tam, K.W., Zhang, Z., Tang, W., Yang, J., Design of Three Dimensional Integrated SIW Multiband Bandpass Filter With Split Type Extended Doublet Topology, IEEE Transactions on Components, Packaging and Manufacturing Technology, 12 (10), 1681-1691, 2022.
  • 93. Shishido, D., Tamura, M., Development of an Air-filled SIW Filter with Wideband Spurious Suppression, 2020 IEEE International Symposium on RadioFrequency Integration Technology (RFIT), Hiroshima-Japan, 2-4 September, 2020.
  • 94. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z., Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 95. Diatta, D.T.J., Park, C.W., Substrate Integrated Waveguide (SIW) Power Amplifier using SIW Bandstop Filter for Harmonic Control Working at 3.55 GHz, 2020 IEEE Asia-Pacific Microwave Conference (APMC), Hong Kong, Hong Kong, 08-11 December, 2020.
  • 96. Chen, K., Yan, B., Xu, R., A novel W-band ultra-wideband substrate integrated waveguide (SIW) T-junction power divider, 2010 International Symposium on Signals, Systems and Electronics, Nanjing, China, 17-20 September, 2010.
  • 97. Chu, P., Zheng, K.L., Xu, F., Wu, K., Substrate integrated waveguide resonator with harmonic suppression, Electron. Lett., 54 (24), 1388-1389, 2018.
  • 98. Parment, F., Ghiotto, A., Vuong, T.P., Duchamp, J.M., Wu, K. Broadband directional Moreno coupler for high-performance air-filled SIW-based Substrate Integrated Systems, IEEE MTT-S International Microwave Symposium (IMS), San Francisco, CA, USA, 22-27 May, 2016.
  • 99. Jiang, X., You, C.J., Shao, Z., A compact X-band circulator with embedded feed line based on substrate integrated waveguide, International Conference on Computational Problem-Solving (ICCP), Jiuzhai, China, 26-28 October, 2013.
  • 100. Yun, T.S., Nam, H., Kim, J.Y., Lee, B., Choi, J.J., Kim, K.B., Lee, J.C. Harmonics suppressed substrate-integrated waveguide filter with integration of low-pass filter. Microwave and Optical Technology Letters, 50 (2), 447–450, 2008.
  • 101. Özer E., Düşük Güçlü Uygulamalar İçin Aktif Harmonik Filtre Tasarımı, Doktora Tezi, İstanbul Üniversitesi, Fen Bilimleri Enstitüsü, İstanbuk, 2015.
  • 102. Kurudere, S., Ertürk, V.B., Novel SIW based interdigital bandpass filter with harmonic suppression, 44th European Microwave Conference, Rome, Italy, 2014, 06-09 October, 2014.
  • 103. Jia, D., Feng, Q., Xiang, Q., & Wu, K., Multilayer Substrate Integrated Waveguide (SIW) Filters With Higher-Order Mode Suppression, IEEE Microwave and Wireless Components Letters, 26 (9), 678–680, 2016.
  • 104. Ramalingam, S., Hyder Ali, U.H., Chenniappan, S., Compact dual mode X-band SIW bandpass filter with wide spurious suppression using split square ring slot resonator, Circuit World, 48 (1), 1-13, 2022.
  • 105. Li, S. L., Wang, Z.B., Wang, P.C., Zang, P.Y., Compact Multi-Mode Substrate Integrated Waveguide Filter With Controllable Frequency And Harmonic Suppression, International Conference on Microwave and Millimeter Wave Technology (ICMMT), Nanjing, China, 23-26 May, 2021.
  • 106. Liu, X., Liu, N., Fan, C., Liu, Y., Yang, Y., Zhu, Z., SIW Band-pass Filter with Wide-Stopband Using Harmonic Interleaving and Orthogonal Transmission Techniques, IEEE Transactions on Components, Packaging and Manufacturing Technology, 2022.
  • 107. Zhou, Z., Chen, N., Zhong, H., Zhang, W., Zhang, Y., Yin, X., He, B., Textile-Based Mechanical Sensors: A Review. Materials (Basel), 14 (20), 6073, 2021.
  • 108. Blachowicz, T., Ehrmann, G., Ehrmann, A., Textile-Based Sensors for Biosignal Detection and Monitoring, Sensors, 21 (18), 6042-6061, 2021.
  • 109. Hardy, D.A., Moneta, A., Sakalyte, V., Connolly, L., Shahidi, A, Hughes-Riley, T., Engineering a Costume for Performance Using Illuminated LED-Yarns, Fibers, 6 (2), 35, 2018.
  • 110. Kirtania S.G., Elger, A.W., Hasan, M.R., Wisniewska, A., Sekhar K., Karacolak, T., Sekhar P.K., Flexible Antennas: A Review, Micromachines, 11 (9), E847, 2020.
  • 111. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z., Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 112. Demiral B., Ertuğ Ö., Performance analysis of downlink MIMO-NOMA systems in Rayleigh channels with max max-max and max-min-max antenna selection algorithms, Journal of the Faculty of Engineering and Architecture of Gazi University, 38 (3), 1675-1687, 2023.
Year 2024, Volume: 39 Issue: 2, 1333 - 1350, 30.11.2023
https://doi.org/10.17341/gazimmfd.1220575

Abstract

References

  • 1. Moscato, S., Silvestri, L., Delmonte, N., Pasian, M., Bozzi, M., Perregrini, L., SIW components for the Internet of Things: Novel topologies, materials, and manufacturing techniques, 2016 IEEE Topical Conference on Wireless Sensors and Sensor Networks (WiSNet), TX- USA, 78-80, 24-27 Jan, 2016.
  • 2. Moradi, B., Fernández-García, R., Gali, I.G, E-Textile Metamaterials: Stop Band Pass Filter, Appl. Sci., 11 (22), 2021.
  • 3. Nguyen, N.H., Parment, F., Ghiotto, A., Wu, K., Vuong, T.P., A fifth-order air-filled SIW filter for future 5G applications, 2017 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP), Amsterdam-Netherlands, 20-22 September, 2017.
  • 4. Waldschmidt, C., Hasch, J., Menzel, W., Automotive Radar-From First Efforts to Future Systems, IEEE J. Microwaves, 1, 135–148, 2021.
  • 5. ASELSAN A.Ş. Sürü Teknolojileri. https://m.aselsan.com.tr/tr/inovasyon/haber-detay/suru-teknolojileri-3146. Yayın tarihi Ocak 7, 2022. Erişim tarihi Ağustos 6, 2022.
  • 6. Nwajana, A.O., Obi, E.R., A Review on SIW and Its Applications to Microwave Components, Electronics, 11 (7), 2022.
  • 7. Güvenli K., Mikrodalga frekanslarında kullanılacak yüzey tümleşik dalga kılavuzu filtrelerinin tasarımı, gerçeklemesi ve optimizasyonu, Doktora Tezi, Bursa Uludağ Üniversitesi, Fen Bilimleri Enstitüsü, Bursa, 2022.
  • 8. Hwang, R.B., Chin, C.Y., Lin, Y.D., Kitazawa, T., Wu, C.W., Electromagnetic interference in substrate-integrated waveguides circuit and its suppression technique, 2010 Asia-Pacific International Symposium on Electromagnetic Compatibility, Beijing, China, April 12-16, 2010.
  • 9. D’Auria, M., Otter, W.J., Hazell, J., Gillatt, B.T.W, Long-Collins, C., Ridler, N. M., Lucyszyn, S., 3-D Printed Metal-Pipe Rectangular Waveguides, IEEE Transactions on Components, Packaging and Manufacturing Tech., 5 (9), 1339, 2015.
  • 10. Mohamed. I., Sebak, A., Broadband Transition of Substrate-Integrated Waveguide-to-Air-Filled Rectangular Waveguide, IEEE Microwave and Wireless Components Letters, 28 (11), 966-968, 2018.
  • 11. Mineo M., Paoloni, C., Double-Corrugated Rectangular Waveguide Slow-Wave Structure for Terahertz Vacuum Devices, IEEE Transactions on Electron Devices, 57 (11), 3169-3175, 2010.
  • 12. Zhang, B., Zirath, H., Metallic 3-D Printed Rectangular Waveguides for Millimeter-Wave Applications, IEEE Transactions on Components, Packaging and Manufacturing Technology, 6 (5), 796-804, 2016.
  • 13. Verma, A.K., Singh, P., Matekovits, L., Strip-Width and Slot-Gap Dependent Equivalent Isotropic Substrate and Dispersion Characteristics of Asymmetric Coplanar Waveguide, Symmetric Coplanar Waveguide and Micro-Coplanar Strip Line on Anisotropic Substrates, IEEE Transactions on Microwave Theory and Techniques, 62 (10), 2232, 2014.
  • 14. Lee, Y.C., Guo, J.C., Wang, C.L., Compact and Broadband Microstrip Line-to- Rectangular Waveguide Transition Using Magnetic Coupling Resonator and Ground Resonators, IEEE Transactions on Microwave Theory and Techniques, 69 (12), 5300-5304, 2021.
  • 15. Chen, C.J., Design of Artificial Transmission Line and Low-Pass Filter Based on Aperiodic Stubs on a Microstrip Line, IEEE Transactions on Components, Packaging and Manufacturing Technology, 4 (5), 922-928, 2014.
  • 16. Nandi, U., Zaman, A.U., Vosoogh, A., Yang, J., Novel Millimeter Wave Transition From Microstrip Line to Groove Gap Waveguide for MMIC Packaging and Antenna Integration, IEEE Microwave and Wireless Components Letters, 27 (8), 691-693, 2017.
  • 17. H. Wang, H., Fang, D.G., Zhang, B., Che, W.Q., Dielectric Loaded Substrate Integrated Waveguide (SIW) H-Plane Horn Antennas, IEEE Transactions on Antennas and Propagation, 58 (3), 640-647, 2010.
  • 18. Çelenk E., Türker Tokan N., Frequency Scanning Conformal Sensor Based on SIW Metamaterial Antenna, IEEE Sensors Journal, 21 (14), 16015-16023, 2021.
  • 19. Zhang, H., Kang, W., Wu, W., Miniaturized Dual-Band SIW Filters Using E-Shaped Slotlines With Controllable Center Frequencies, IEEE Microwave and Wireless Components Letters, 28 (4), 311-313, 2018.
  • 20. Li, M., Chen, C., Chen, W., Miniaturized Dual-Band Filter Using Dual-Capacitively Loaded SIW Cavities, IEEE Microwave and Wireless Components Letters, 27 (4), 344-346, 2017.
  • 21. Herbst, H.F., Roux, P.I., Jackman, K., Fourie, C.J., Improved Transmission Line Parameter Calculation Through TCAD Process Modeling for Superconductor Integrated Circuit Interconnects, IEEE Transactions on Applied Superconductivity, 30 (7), 1-4, 2020.
  • 22. Okai, D., Kusunoki, M., Mukaida, M., Ohshima, S., New surface resistance measurement technique of high-temperature superconductors using a probe coupling microstrip line resonator, IEEE Transactions on Applied Superconductivity, 11 (1), 3078-3081, 2001.
  • 23. Mansour, R.R., Microwave superconductivity, IEEE Transactions on Microwave Theory and Techniques, 50 (3), 2002.
  • 24. Heng, Y., Guo, X., Cao, B., Wei, B., Zhang, X., Zhang, G., Song, X., Dual-Band Superconducting Bandpass Filter Using Stub-Loaded Resonators With Controllable Coupling and Feeding Structures, IEEE Microwave and Wireless Components Letters, 23 (8), 400-402, 2013.
  • 25. Baena, J.D., Bonache, J., Martin, F., Sillero, R.M., Falcone, F., Lopetegi, T., Laso, M. A. G., Garcia-Garc, J., J Equivalent-circuit models for split-ring resonators and complementary split-ring resonators coupled to planar transmission lines, IEEE Transactions on Microwave Theory and Techniques, 53 (4), 1451-1461, 2005.
  • 26. Vélez, P., Su, L., Grenier, K., Mata-Contreras, J., Dubuc, D., Martín, F., Microwave Microfluidic Sensor Based on a Microstrip Splitter/Combiner Configuration and Split Ring Resonators (SRRs) for Dielectric Characterization of Liquids, IEEE Sensors Journal, 17 (20), 6589-6598, 2017.
  • 27. Ebrahimi, A., Scott, J., Ghorbani, K., Differential Sensors Using Microstrip Lines Loaded With Two Split-Ring Resonators, IEEE Sensors Journal, 18 (14), 5786-5793, 2018.
  • 28. Naqui, J., Martín, F., Transmission Lines Loaded With Bisymmetric Resonators and Their Application to Angular Displacement and Velocity Sensors, IEEE Transactions on Microwave Theory and Techniques, 61 (12), 4700-4713, 2013.
  • 29. Ridler, N.M., Ginleyt, R.A., A review of the IEEE 1785 standards for rectangular waveguides above 110 GHz, 2017 89th ARFTG Microwave Measurement Conference (ARFTG), Honololu-USA, 1-4, 09-09 June, 2017.
  • 30. Kildal, P.S., Kehn, M.N.M, The ridge gap waveguide as a wideband rectangular hard waveguide, Proceedings of the Fourth European Conference on Antennas and Propagation, Barcelona, Spain, 1-4, 12-16 April, 2010.
  • 31. Rajo-Iglesias, E., Ferrando-Rocher, M., Zaman, A.U., Gap Waveguide Technology for Millimeter-Wave Antenna Systems, IEEE Communications Magazine, 56 (7), 14-20, 2018.
  • 32. Lomakin, K., Herold, S., Simon, D., Sippel, M., Sion, A., Vossiek, M., Helmreich, K., Gold, G, 3D Printed Slotted Rectangular Hollow Waveguides, 2019 IEEE MTT-S International Microwave Symposium (IMS), Boston, MA, USA, 342-345, 02-07 June, 2019.
  • 33. Lu, G., Wang, J., Xie, Z., Yeow, J. T. W., Carbon-Based THz Microstrip Antenna Design: A Review, IEEE Open Journal of Nanotechnology, 3, 15-23, 2022.
  • 34. S. Akinola, S., Hashimu, I, Singh, G., Gain and Bandwidth Enhancement Techniques of Microstrip Antenna: A Technical Review, 2019 International Conference on Computational Intelligence and Knowledge Economy (ICCIKE), Dubai, United Arab Emirates, 175-180, 11-12 December, 2019.
  • 35. Pozar, D.M., Microstrip antennas, Proceedings of the IEEE, 80 (1), 79-91, 1992.
  • 36. Kakaria, P., Nema, R., Review and survey of compact and broadband Microstrip Patch Antenna, 2014 International Conference on Advances in Engineering & Technology Research (ICAETR - 2014), Unnao, India, 1-5, 1-2 August, 2014.
  • 37. Wu, K., Bozzi, M., Fonseca, N.J.G., Substrate Integrated Transmission Lines: Review and Applications, IEEE Journal of Microwaves, 1 (1), 345-363, 2021.
  • 38. Iqbal, A., Tiang, J.J., Wong, S.K., Alibakhshikenari, M., Falcone F., Limiti, E. Miniaturization Trends in Substrate Integrated Waveguide (SIW) Filters: A Review, IEEE Access, 8, 223287-223305, 2020.
  • 39. Chen, X.P. Wu, K., Substrate Integrated Waveguide Filter: Basic Design Rules and Fundamental Structure Features, IEEE Microwave Magazine, 15 (5), 108-116, 2014.
  • 40. Bozzi, M., Perregrini, L., Tomassoni, C., A Review of Compact Substrate Integrated Waveguide (SIW) Interconnects and Components," 2019 IEEE 23rd Workshop on Signal and Power Integrity (SPI), Chambéry, France, 1-4, 18 June, 2019.
  • 41. Shen, B., Grilli, F., Coombs, T., Overview of H-Formulation: A Versatile Tool for Modeling Electromagnetics in High-Temperature Superconductor Applications, IEEE Access, 8, 100403-100414, 2020.
  • 42. Maeda, H., Yanagisawa, Y., Recent Developments in High-Temperature Superconducting Magnet Technology (Review)," IEEE Transactions on Applied Superconductivity, 24 (3), 1-12, 2014.
  • 43. Willis, J.O. Superconducting transmission cables, IEEE Power Engineering Review, 20 (8), 10-14, 2000.
  • 44. Levy, R., Snyder, R.V., Matthaei, G., Design of microwave filters, IEEE Transactions on Microwave Theory and Techniques, 50 (3), 783-793, 2002.
  • 45. Pillai, G., Li, S.S., Piezoelectric MEMS Resonators: A Review, IEEE Sensors Journal, 21 (11), 12589-12605, 2021.
  • 46. Delmonte, N., Silvestri, L. Perregrini, L. Bozzi, M., Substrate Integrated Waveguide (SIW) Cavity Resonators: A Review of Technologies and Applications, 2021 IEEE International Symposium on Radio-Frequency Integration Technology (RFIT), Hualien, Taiwan, 1-3, 25-27 August, 2021.
  • 47. Reddy, A.N., Raghavan, S., Split ring resonator and its evolved structures over the past decade: This paper discusses the nuances of the most celebrated composite particle (split-ring resonator) with which novel artificial structured materials (called metamaterials) are built, 2013 IEEE International Conference ON Emerging Trends in Computing, Communication and Nanotechnology (ICECCN), Tirunelveli, India, 625-629, 25-26 March, 2013.
  • 48. Wong, S.W., Lin, J.Y., Yang, Y., Guo, Z.C., Zhu, L., Chu, Q.X., Waveguide Components Based on Multiple-Mode Resonators: Advances in Microwave Multiple-Mode Waveguide Components, Including Multiplexers, Three-State Diplexers, Crossovers, and Balanced/Unbalanced Elements, IEEE Microwave Magazine, 22 (2), 33-45, 2021.
  • 49. 60 ama 49 olmalı Berksoy, Z., SIW Dalga Kılavuzlarının Analizi ve Tasarım Uygulamaları. Yüksek Lisan Tezi, İstanbul Teknik Üniversitesi, İTÜ Fen Bilimleri Enstitüsü, Elektronik ve Haberleşme Mühendisliği Anabilim Dalı, İstanbul, 2013.
  • 50. Deslandes, D., Wu, K., Integrated microstrip and rectangular waveguide in planar form, IEEE Microwave and Wireless Components Letters, 11 (2), 68-70, 2001.
  • 51. Guvenli, K., Yenikaya, S., ve Seçmen, M., Analysis, Design, and Actual Fabrication of a Hybrid Microstrip-SIW Bandpass Filter Based on Cascaded Hardware Integration at X-Band, Elektronika Ir Elektrotechnika, 27 (1), 23-28, 2021.
  • 52. Pozar, D.M., Microwave Engineering, John Wiley & Sons, NJ, USA, 2011.
  • 53. Bozzi, M., Pasian, M., Perregrini, L., Wu, K., On the Looses in Substrate Integrated Waveguides and Cavities, International Journal of Microvawe and Wireless Technologies, 1 (5), 395-401, 2009.
  • 54. Wu, L., Substrate Integrated Waveguide Antenna Applications. Doktora Tezi, KU Fen Bilimleri Enstitüsü, Elektronik Mühendisliği Anabilim Dalı, İngiltere, 2015.
  • 55. Bozzi, M., Perregrini, L., Wu, K., Arcioni, P., Current and Future Research Trends in Substrate Integrated Waveguide Technology, Radioengineering, 18 (2), 201-209, 2009.
  • 56. Yu, Y., Hong, W., Zhang, H., Xu, J., Jiang, Z. H., Optimization and Implementation of SIW Slot Array for Both Medium- and Long-Range 77 GHz Automotive Radar Application, IEEE Transactions on Antennas and Propagation, 66 (7), 3769-3774, 2018.
  • 57. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z. Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 58. Keyur, M., Mewada H., Substrate Integrated Waveguide Based Bandpass Filter with Defected Ground Structure for FMCW Radar Application, International Journal of Sensors, Wireless Communications and Control; 10 (3), 2020.
  • 59. Alsabah, M., Naser, M.A., Mahmmod, B.M., Abdulhussain, S.H., Eissa, M.R., Ahmed Al-Baidhani, A., Noordin, N.K., Sait, S.M., Al-Utaibi, K.A., Hashim, F., 6G Wireless Communications Networks: A Comprehensive Survey, IEEE Access, 9, 148191-148243, 2021.
  • 60. Fiber Altyapının Geliştirilmesine Uluslararası Uygulamalar. https://www.btk.gov.tr/uploads/pages/arastirma-raporlari/fiber-altyapi-raporu-son-rev.pdf. Yayın tarihi Temmuz 7, 2020. Erişim tarihi Ekim 26, 2022. https://www.btk.gov.tr/uploads/pages/arastirma-raporlari/fiber-altyapi-raporu-son-rev.pdf
  • 61. Shishkin, I., Baranov, D., Slobozhanyuk, A., Filonov, D., Lukashenko, S., Samusev, A., Belov, P., Microwave platform as a valuable tool for characterization of nanophotonic devices, Scientific Reports, 6, 35516, 2016.
  • 62. Azad, A.R., Mohan, A., Single- and Dual-Band Bandpass Filters Using a Single Perturbed SIW Circular Cavity, IEEE Microwave and Wireless Components Letters, 29 (3), 1-3, 2019.
  • 63. Xie, H.Y., Wu, B., Xia, L., Chen, J.Z., Su, T., Miniaturized Half-Mode FanShaped SIW Filter With Extensible Order and Wide Stopband, IEEE Microwave and Wireless Components Letters, 30 (8), 749-752, 2020.
  • 64. Mendez-Jeronimo, G., Wu, K., Effects of Unshielded Air Holes Periodically Perforated in Substrate Integrated Waveguides. IEEE Microwave and Wireless Components Letters, 30 (11), 1049-1052, 2020.
  • 65. Zheng, P., Liu, Z., Li, Y., Wu, L., Wang, Y., Zheng, P., LTCC based substrate integrated waveguide (SIW) bandpass filters with CPW transitions, 2017 International Workshop on Electromagnetics: Applications and Student Innovation Competition, London, UK, 30 May - 01 June, 97-99, 2017.
  • 66. Hussein, O.I., Shamaileh, K.A.A., Dib, N.I., Nosrati, A., Abushamleh, S., Georgiev, D.G., Devabhaktu, V.K., Substrate Integrated Waveguide Bandpass Filtering With Fourier-Varying Via-Hole Walling, IEEE Access, 8, 139706, 2020.
  • 67. Yun, T., Nam, H., Kim, K., Lee, J., Iris Waveguide Bandpass Filter Using Substrate Integrated Waveguide (SIW) for Satellite Communication, 2005 Asia-Pacific Microwave Conference Proceedings, Suzhou-China, 4-7 December, 4, 2005.
  • 68. Liu, Z., Xiao, G.B., Zhu, L., A novel method to design triple-mode SIW filter based on the complementary split ring resonators (CSRRs). 2016 IEEE MTT-S International Microwave Symposium (IMS), CA, USA, 22-27 May, 2016.
  • 69. Iqbal, A., Ahmad, A.W., Smida, A., Mallat, N.K., Tunable SIW Bandpass Filters with Improved Upper Stopband Performance. IEEE Transactions on Circuits and Systems II: Express Briefs, 1–1, 2019.
  • 70. Pelluri, S., Fasil, M., Mondal, D., Kartikeyan, M. V., Dual-band Bandpass filter using SIW cavity with E-shaped DGS, 2020 URSI Regional Conference on Radio Science (URSI-RCRS), Varanasi-India, 1-3, 12-14 February, 2020.
  • 71. Bozzi, M., Moscato, S., Silvestri, L., Delmonte, N., Pasian, M., Perregrini, L., Innovative SIW components on paper, textile, and 3D-printed substrates for the Internet of Things, 2015 Asia-Pacific Microwave Conference (APMC), Nanjing, China, 6-9 December, 2015.
  • 72. Su, W., Wu, Z., Fang, Y., Bahr, R., Raj, P.M., Tummala, R., Tentzeris, M.M., 3D printed wearable flexible SIW and microfluidics sensors for Internet of Things and smart health applications, 2017 IEEE MTT-S International Microwave Symposium (IMS), Honololu, HI, USA, 04-09 June, 2017.
  • 73. Amina, O., Bouchra, R., Amina, A., Hadjira, B., The Design of Filter Based on Substrate Integrated Waveguide with Symmetrical Inductive Iris, 2018 9th International Symposium on Signal, Image, Video and Communications (ISIVC), Rabat, Morocco, 22-26, 27-30 November, 2018.
  • 74. Kim, Y., Lim, S., Low Loss Substrate-Integrated Waveguide Using 3D-Printed Non-Uniform Honeycomb-Shaped Material, IEEE Access, 8, 191090-191099, 2020.
  • 75. Massoni, E., Silvestri, L., Alaimo, G., Marconi, S., Bozzi, M., Perregrini, L., Auricchio, F., 3-D Printed Substrate Integrated Slab Waveguide for Single-Mode Bandwidth Enhancement, IEEE Microwave and Wireless Components Letters, 27 (6), 536-538, 2017.
  • 76. Ghiotto, A., Doghri, A., Parment, F., Djerafi, T., Vuong, T.P., Wu, K., Three-dimensional SIW and high-performance air-filled SIW for millimeter-wave substrate integrated circuits and systems, Global Symposium on Millimeter-Waves (GSMM), Montreal, QC, Canada, 1-3, 25-27 May, 2015.
  • 77. Karpuz, C., Fırat, G.B., Özdemir, P.Ö., Özek, A., Görür, A.K., Design of dualmode substrate integrated waveguide filter using inductive slots, 2016 Asia-Pacific Microwave Conference (APMC), New Delhi-India, 5-9 December, 2016.
  • 78. Macchiarella, G., Tomassoni, C., Massoni, E., Bozzi, M., Perregrini, L., A novel class of half-mode SIW filters with extracted poles, 2017 47th European Microwave Conference (EuMC), Nuremberg-Germany, 10–12 October, 2017.
  • 79. Wang, Z.D., Wei, F., Zhang, L., Shi, X.W., Design of dual-band bandpass SIW filter with DGS. 2012 International Conference on Microwave and Millimeter Wave Technology (ICMMT), Shenzhen, China, 05-08 May, 2012.
  • 80. Li, D., Wang, J., Yu, Y., Liu, Y., Chen, Z., Yang, L., Substrate integrated waveguide‐based complementary split‐ring resonator and its arrays for compactdual‐widebandbandpass filter design, International Journal of RF and Microwave Computer-Aided Engineering, 31 (2), 2020.
  • 81. Zhang, X., Yan, J., Zhang, H., Chen, Y., Miniaturized substrate integrated waveguide 5G LTCC bandpass filter exploiting capacitive loaded cavities, Int J RF Microw Comput Aided Eng, 29 (7), 1-5, 2019.
  • 82. Zhu, Y.Y., Yang, Y.J., Chen, J.X., High-performance bandpass filter using HTCC stepped-impedance resonators. IET Microw. Antennas Propag., 12, 56-62, 2018.
  • 83. Nwajana, A. O., Dainkeh, A., Yeo, K. S. K., Substrate Integrated Waveguide (SIW) Bandpass Filter with Novel Microstrip-CPW-SIW Input Coupling, Journal of Microwaves, Optoelectronics and Electromagnetic Applications, 16 (2), 393-402, 2017.
  • 84. Azad, A.R., Jhariya, D.K., Mohan, A., Substrate-integrated waveguide cross-coupled filters with mixed electric and magnetic coupling structure. International Journal of Microwave and Wireless Technologies, 1–8, 2018.
  • 85. Zou, X., Tong, C., Yu, D., Design of an X-band symmetrical window bandpass filter based on Substrate Integrated Waveguide, Proceedings of 2011 Cross Strait Quad-Regional Radio Science and Wireless Technology Conference, Harbin, China, 571-574, 26-30 July, 2011.
  • 86. Armendariz, M., Sekar, V., Entesari, K., Tunable SIW bandpass filters with PIN diodes, The 40th European Microwave Conference, Paris, France, 28-30 September, 2010.
  • 87. Deng, M., Psychogiou, D., Tune-All Substrate-Integrated-Waveguide (SIW) Bandpass Filters, 49th European Microwave Conference (EuMC), Paris, France, 01-03 October, 2019.
  • 88. Moro, R., Agneessens, S., Rogier, H., Dierck, A., Bozzi, M., Textile Microwave Components in Substrate Integrated Waveguide Technology, IEEE Transactions on Microwave Theory and Techniques, 63 (2), 422-432, 2015.
  • 89. Moro, R., Kim, S., Bozzi, M., Tentzeris, M., Inkjet-printed paper-based substrate-integrated waveguide (SIW) components and antennas. International Journal of Microwave and Wireless Technologies, 5 (03), 197–204, 2013.
  • 90. Tomassoni, C., Bahr, R., Tentzeris, M., Bozzi, M., Perregrini, L., 3D printed substrate integrated waveguide filters with locally controlled dielectric permittivity, 46th European Microwave Conference, London, UK, 253, 4-6 October, 2016.
  • 91. Genç A., Göksu T., Helhel S., Investigation of the performance of waveguide bend components fabricated with 3D printing and copper plating, Journal of the Faculty of Engineering and Architecture of Gazi University, 34 (2), 801-810, 2009.
  • 92. Zhou, X., Gang Zhang, G., Feng, S., Tam, K.W., Zhang, Z., Tang, W., Yang, J., Design of Three Dimensional Integrated SIW Multiband Bandpass Filter With Split Type Extended Doublet Topology, IEEE Transactions on Components, Packaging and Manufacturing Technology, 12 (10), 1681-1691, 2022.
  • 93. Shishido, D., Tamura, M., Development of an Air-filled SIW Filter with Wideband Spurious Suppression, 2020 IEEE International Symposium on RadioFrequency Integration Technology (RFIT), Hiroshima-Japan, 2-4 September, 2020.
  • 94. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z., Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 95. Diatta, D.T.J., Park, C.W., Substrate Integrated Waveguide (SIW) Power Amplifier using SIW Bandstop Filter for Harmonic Control Working at 3.55 GHz, 2020 IEEE Asia-Pacific Microwave Conference (APMC), Hong Kong, Hong Kong, 08-11 December, 2020.
  • 96. Chen, K., Yan, B., Xu, R., A novel W-band ultra-wideband substrate integrated waveguide (SIW) T-junction power divider, 2010 International Symposium on Signals, Systems and Electronics, Nanjing, China, 17-20 September, 2010.
  • 97. Chu, P., Zheng, K.L., Xu, F., Wu, K., Substrate integrated waveguide resonator with harmonic suppression, Electron. Lett., 54 (24), 1388-1389, 2018.
  • 98. Parment, F., Ghiotto, A., Vuong, T.P., Duchamp, J.M., Wu, K. Broadband directional Moreno coupler for high-performance air-filled SIW-based Substrate Integrated Systems, IEEE MTT-S International Microwave Symposium (IMS), San Francisco, CA, USA, 22-27 May, 2016.
  • 99. Jiang, X., You, C.J., Shao, Z., A compact X-band circulator with embedded feed line based on substrate integrated waveguide, International Conference on Computational Problem-Solving (ICCP), Jiuzhai, China, 26-28 October, 2013.
  • 100. Yun, T.S., Nam, H., Kim, J.Y., Lee, B., Choi, J.J., Kim, K.B., Lee, J.C. Harmonics suppressed substrate-integrated waveguide filter with integration of low-pass filter. Microwave and Optical Technology Letters, 50 (2), 447–450, 2008.
  • 101. Özer E., Düşük Güçlü Uygulamalar İçin Aktif Harmonik Filtre Tasarımı, Doktora Tezi, İstanbul Üniversitesi, Fen Bilimleri Enstitüsü, İstanbuk, 2015.
  • 102. Kurudere, S., Ertürk, V.B., Novel SIW based interdigital bandpass filter with harmonic suppression, 44th European Microwave Conference, Rome, Italy, 2014, 06-09 October, 2014.
  • 103. Jia, D., Feng, Q., Xiang, Q., & Wu, K., Multilayer Substrate Integrated Waveguide (SIW) Filters With Higher-Order Mode Suppression, IEEE Microwave and Wireless Components Letters, 26 (9), 678–680, 2016.
  • 104. Ramalingam, S., Hyder Ali, U.H., Chenniappan, S., Compact dual mode X-band SIW bandpass filter with wide spurious suppression using split square ring slot resonator, Circuit World, 48 (1), 1-13, 2022.
  • 105. Li, S. L., Wang, Z.B., Wang, P.C., Zang, P.Y., Compact Multi-Mode Substrate Integrated Waveguide Filter With Controllable Frequency And Harmonic Suppression, International Conference on Microwave and Millimeter Wave Technology (ICMMT), Nanjing, China, 23-26 May, 2021.
  • 106. Liu, X., Liu, N., Fan, C., Liu, Y., Yang, Y., Zhu, Z., SIW Band-pass Filter with Wide-Stopband Using Harmonic Interleaving and Orthogonal Transmission Techniques, IEEE Transactions on Components, Packaging and Manufacturing Technology, 2022.
  • 107. Zhou, Z., Chen, N., Zhong, H., Zhang, W., Zhang, Y., Yin, X., He, B., Textile-Based Mechanical Sensors: A Review. Materials (Basel), 14 (20), 6073, 2021.
  • 108. Blachowicz, T., Ehrmann, G., Ehrmann, A., Textile-Based Sensors for Biosignal Detection and Monitoring, Sensors, 21 (18), 6042-6061, 2021.
  • 109. Hardy, D.A., Moneta, A., Sakalyte, V., Connolly, L., Shahidi, A, Hughes-Riley, T., Engineering a Costume for Performance Using Illuminated LED-Yarns, Fibers, 6 (2), 35, 2018.
  • 110. Kirtania S.G., Elger, A.W., Hasan, M.R., Wisniewska, A., Sekhar K., Karacolak, T., Sekhar P.K., Flexible Antennas: A Review, Micromachines, 11 (9), E847, 2020.
  • 111. Sun, X., Ma, J., Feng, Y., Shi, J., Xu, Z., Compact Substrate Integrated Waveguide Filtering Antennas: A Review, IEEE Access, 10, 91906-91922, 2022.
  • 112. Demiral B., Ertuğ Ö., Performance analysis of downlink MIMO-NOMA systems in Rayleigh channels with max max-max and max-min-max antenna selection algorithms, Journal of the Faculty of Engineering and Architecture of Gazi University, 38 (3), 1675-1687, 2023.
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Primary Language Turkish
Subjects Engineering
Journal Section Makaleler
Authors

Kemal Güvenli 0000-0002-6676-3284

Sibel Yenikaya 0000-0002-9423-1752

Mustafa Secmen 0000-0002-7656-4051

Early Pub Date November 27, 2023
Publication Date November 30, 2023
Submission Date December 17, 2022
Acceptance Date May 20, 2023
Published in Issue Year 2024 Volume: 39 Issue: 2

Cite

APA Güvenli, K., Yenikaya, S., & Secmen, M. (2023). Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 39(2), 1333-1350. https://doi.org/10.17341/gazimmfd.1220575
AMA Güvenli K, Yenikaya S, Secmen M. Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri. GUMMFD. November 2023;39(2):1333-1350. doi:10.17341/gazimmfd.1220575
Chicago Güvenli, Kemal, Sibel Yenikaya, and Mustafa Secmen. “Yüzey tümleşik Dalga kılavuzu (YTD) Filtre Mimarisi Incelemesi Ve Filtre tasarım Teknolojileri”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 39, no. 2 (November 2023): 1333-50. https://doi.org/10.17341/gazimmfd.1220575.
EndNote Güvenli K, Yenikaya S, Secmen M (November 1, 2023) Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 39 2 1333–1350.
IEEE K. Güvenli, S. Yenikaya, and M. Secmen, “Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri”, GUMMFD, vol. 39, no. 2, pp. 1333–1350, 2023, doi: 10.17341/gazimmfd.1220575.
ISNAD Güvenli, Kemal et al. “Yüzey tümleşik Dalga kılavuzu (YTD) Filtre Mimarisi Incelemesi Ve Filtre tasarım Teknolojileri”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 39/2 (November 2023), 1333-1350. https://doi.org/10.17341/gazimmfd.1220575.
JAMA Güvenli K, Yenikaya S, Secmen M. Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri. GUMMFD. 2023;39:1333–1350.
MLA Güvenli, Kemal et al. “Yüzey tümleşik Dalga kılavuzu (YTD) Filtre Mimarisi Incelemesi Ve Filtre tasarım Teknolojileri”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, vol. 39, no. 2, 2023, pp. 1333-50, doi:10.17341/gazimmfd.1220575.
Vancouver Güvenli K, Yenikaya S, Secmen M. Yüzey tümleşik dalga kılavuzu (YTD) filtre mimarisi incelemesi ve filtre tasarım teknolojileri. GUMMFD. 2023;39(2):1333-50.