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Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı

Year 2020, Volume: 10 Issue: 2, 23 - 31, 31.12.2020

Abstract

Bu çalışmada, belirlenmiş bir frekans bandını filtreleyebilen bir düzlemsel anten tasarlanmıştır. Filtreleme işlemi anten yapısına 4 adet parazitik elemanın eklenmesiyle gerçekleştirilmiştir. Her bir parazitik eleman bir dikdörtgenden ve bu dikdörtgenin her bir kısa kenarına eklenen bir dik üçgenden oluşmuştur. Filtreleme alt ve üst frekans sınırları sırasıyla 9.2 GHz ve 10.7 GHz’ dir. Öncelikle anten parazitik elemanlar göz önüne alınmadan benzetim yoluyla tasarlanmıştır. Daha sonra sözkonusu frekans sınırları yardımıyla analitik olarak parazitik eleman boyutları hesaplanmıştır. Parazitik elemanların anten kenarına olan uzaklığı ve analitik olarak hesaplanan parazitik eleman boyutları için parametrik analiz gerçekleştirilerek hedeflenen frekans bant filtrelemesine ulaşılmıştır. Benzetim sonucu bulunan dönüş kaybı, ışıma örüntüsü ve kazanç parametreleri sunulmuştur.

References

  • Singh, H. S. ve Kalraiya, S., "Design and Analysis of a Compact WiMAX and WLAN Band Notched Planar Monopole Antenna for UWB and Bluetooth Applications", International Journal of RF and Microwave Computer-Aided Engineering, 28, 1-10, 2018.
  • Zhong, Z., He, Z., Wang, Z. ve arkadaşları, "A Novel Planar Monopole UWB Antenna with Quad Notched Bands Using Quad-Mode Stepped Impedance Resonator", Progress in Electromagnetics Research Letters, 69, 29-36, 2017.
  • Tiwari, R. N., Singh, P. ve Kanaujia, B. K., "A Half Cut Design of Low Profile UWB Planar Antenna for DCS/PCS/WLAN Applications", International Journal of RF and Microwave Computer-Aided Engineering, 29, 1-9, 2019.
  • Tan, M. T., Li, J. Q. ve Jiang, Z. Y., "A Miniaturized Ultra-Wideband Planar Monopole Antenna with L-shaped Ground Plane Stubs", International Journal of RF and Microwave Computer-Aided Engineering, 29, 1-7, 2019.
  • Mishra, S., Das, S., Pattnaik, S. S. ve arkadaşları, "Low-Profile Circularly Polarized Planar Antenna for GPS L1, L2, and L5 Bands", Microw. Opt. Technol. Lett., 62, 806-815, 2019.
  • Midya, M., Bhattacharjee, S. ve Mitra, M., "Triple-Band Dual-Sense Circularly Polarised Planar Monopole Antenna", IET Microwaves, Antennas & Propagation, 13, 2020-2025, 2019.
  • Gautam, A. K., Farhan, M., Agrawal, N. ve arkadaşları, "Design and Packaging of Compact Circularly Polarised Planar Antenna for 2.45-GHz RFID Mobile Readers", IET Microwaves, Antennas & Propagation, 13, 2310-2314, 2019.
  • Wang, L., Jiao, Y. C. ve Weng, Z., "Novel Planar Reconfigurable Circularly Polarized Complementary Antenna for Unidirectional End-Fire Radiation", International Journal of RF and Microwave Computer-Aided Engineering, 2020, 1-7, 2020.
  • Yassini, E. A., Ibnyaich, S., Chabaa, S. ve arkadaşları, "Miniaturized Broadband-Multiband Planar Antenna with a Symmetric Quarter-Circular Ground Plane for WLAN/WiMAX Standards", Microw. Opt. Technol. Lett., 1-12, 2020.
  • Kumari, K., Jaiswal, R. K. ve Srivastava, K. V., "A Compact Triple Band Circularly Polarized Planar Antenna for Wireless Application", Microw. Opt. Technol. Lett., 62, 2611-2617, 2020.
  • Hota, S., Baudha, S., Mangaraj, B. B. ve arkadaşları, "A Compact, Ultrawide Band Planar Antenna with Modified Circular Patch and a Defective Ground Plane for Multiple Applications", Microw. Opt. Technol. Lett., 61, 2088-2097, 2019.
  • Ellis, M. S., Ahmed, A. R., Kponyo, J. J. ve arkadaşları, "Simple Circularly Polarized Planar Monopole Inverted T-shaped Antenna", Microw. Opt. Technol. Lett., 62, 405-410, 2019.
  • Yang, D., Zhai, H., Xue, K. ve arkadaşları, "A Dual-Band Circularly Polarized Planar Monopole Antenna for Wireless Local Area Network/Worldwide Interoperability for Microwave Access Applications", Microw. Opt. Technol. Lett., 61, 399-404, 2019.
  • Ali, A., Topalli, K., Ramzan, M. ve arkadaşları, "Optically Reconfigurable Planar Monopole Antenna for Cognitive Radio Application", Microw. Opt. Technol. Lett., 61, 1110-1115, 2019.
  • Kumar, G. ve Kumar, R., "A Survey on Planar Ultra-Wideband Antennas with Band Notch Characteristics: Principle, Design, and Applications", International Journal of Electronics and Communications, 109, 76-98, 2019.
  • Garg, R. K., Nair, M. V. D., Singhal, S. ve arkadaşları, "A New Type of Compact Ultra-Wideband Planar Fractal Antenna with WLAN Band Rejection", Microw. Opt. Technol. Lett., 1-9, 2020.
  • Kim, J. Y., Choi, J. H. ve Jung, C. W., "Band-Notched Planar UWB Antenna Using Unit Cells of Frequency Selective Surfaces", Journal of Electromagnetic Waves and Applications, 26, 2291-2303, 2012.
  • Mewara, H. S., Deegwal, J. K. ve Sharma, M. M., "A Slot Resonators Based Quintuple Band-Notched Y-Shaped Planar Monopole Ultra-Wideband Antenna", International Journal of Electronics and Communications, 83, 470-478, 2018.
  • Pan, C. Y., Chiu, K. Y., Duan, J. H. ve arkadaşları, "Band-Notched Ultra-Wideband Planar Monopole Antenna Using Shunt Open-Circuited Stub", Microw. Opt. Technol. Lett., 53, 1535-1537, 2011.
  • Abbosh, A. M. ve Bialkowski, M. E., "Design of UWB Planar Band-Notched Antenna Using Parasitic Elements", IEEE Transactions on Antennas and Propagation, 57, 796-799, 2009.
  • Sharbati, V., Rezaei, P. ve Fakharian, M. M., "Compact Planar UWB Antenna with Enhanced Bandwidth and Switchable Band-Notch Function for WLAN and DSRC", IETE Journal of Research, 63, 805-812, 2017.
  • Gupta, K., Garg, R., Bahl, I. ve arkadaşları, Microstrip Lines and Slotlines, Artech House, Boston, MA, A.B.D., 1996.
Year 2020, Volume: 10 Issue: 2, 23 - 31, 31.12.2020

Abstract

References

  • Singh, H. S. ve Kalraiya, S., "Design and Analysis of a Compact WiMAX and WLAN Band Notched Planar Monopole Antenna for UWB and Bluetooth Applications", International Journal of RF and Microwave Computer-Aided Engineering, 28, 1-10, 2018.
  • Zhong, Z., He, Z., Wang, Z. ve arkadaşları, "A Novel Planar Monopole UWB Antenna with Quad Notched Bands Using Quad-Mode Stepped Impedance Resonator", Progress in Electromagnetics Research Letters, 69, 29-36, 2017.
  • Tiwari, R. N., Singh, P. ve Kanaujia, B. K., "A Half Cut Design of Low Profile UWB Planar Antenna for DCS/PCS/WLAN Applications", International Journal of RF and Microwave Computer-Aided Engineering, 29, 1-9, 2019.
  • Tan, M. T., Li, J. Q. ve Jiang, Z. Y., "A Miniaturized Ultra-Wideband Planar Monopole Antenna with L-shaped Ground Plane Stubs", International Journal of RF and Microwave Computer-Aided Engineering, 29, 1-7, 2019.
  • Mishra, S., Das, S., Pattnaik, S. S. ve arkadaşları, "Low-Profile Circularly Polarized Planar Antenna for GPS L1, L2, and L5 Bands", Microw. Opt. Technol. Lett., 62, 806-815, 2019.
  • Midya, M., Bhattacharjee, S. ve Mitra, M., "Triple-Band Dual-Sense Circularly Polarised Planar Monopole Antenna", IET Microwaves, Antennas & Propagation, 13, 2020-2025, 2019.
  • Gautam, A. K., Farhan, M., Agrawal, N. ve arkadaşları, "Design and Packaging of Compact Circularly Polarised Planar Antenna for 2.45-GHz RFID Mobile Readers", IET Microwaves, Antennas & Propagation, 13, 2310-2314, 2019.
  • Wang, L., Jiao, Y. C. ve Weng, Z., "Novel Planar Reconfigurable Circularly Polarized Complementary Antenna for Unidirectional End-Fire Radiation", International Journal of RF and Microwave Computer-Aided Engineering, 2020, 1-7, 2020.
  • Yassini, E. A., Ibnyaich, S., Chabaa, S. ve arkadaşları, "Miniaturized Broadband-Multiband Planar Antenna with a Symmetric Quarter-Circular Ground Plane for WLAN/WiMAX Standards", Microw. Opt. Technol. Lett., 1-12, 2020.
  • Kumari, K., Jaiswal, R. K. ve Srivastava, K. V., "A Compact Triple Band Circularly Polarized Planar Antenna for Wireless Application", Microw. Opt. Technol. Lett., 62, 2611-2617, 2020.
  • Hota, S., Baudha, S., Mangaraj, B. B. ve arkadaşları, "A Compact, Ultrawide Band Planar Antenna with Modified Circular Patch and a Defective Ground Plane for Multiple Applications", Microw. Opt. Technol. Lett., 61, 2088-2097, 2019.
  • Ellis, M. S., Ahmed, A. R., Kponyo, J. J. ve arkadaşları, "Simple Circularly Polarized Planar Monopole Inverted T-shaped Antenna", Microw. Opt. Technol. Lett., 62, 405-410, 2019.
  • Yang, D., Zhai, H., Xue, K. ve arkadaşları, "A Dual-Band Circularly Polarized Planar Monopole Antenna for Wireless Local Area Network/Worldwide Interoperability for Microwave Access Applications", Microw. Opt. Technol. Lett., 61, 399-404, 2019.
  • Ali, A., Topalli, K., Ramzan, M. ve arkadaşları, "Optically Reconfigurable Planar Monopole Antenna for Cognitive Radio Application", Microw. Opt. Technol. Lett., 61, 1110-1115, 2019.
  • Kumar, G. ve Kumar, R., "A Survey on Planar Ultra-Wideband Antennas with Band Notch Characteristics: Principle, Design, and Applications", International Journal of Electronics and Communications, 109, 76-98, 2019.
  • Garg, R. K., Nair, M. V. D., Singhal, S. ve arkadaşları, "A New Type of Compact Ultra-Wideband Planar Fractal Antenna with WLAN Band Rejection", Microw. Opt. Technol. Lett., 1-9, 2020.
  • Kim, J. Y., Choi, J. H. ve Jung, C. W., "Band-Notched Planar UWB Antenna Using Unit Cells of Frequency Selective Surfaces", Journal of Electromagnetic Waves and Applications, 26, 2291-2303, 2012.
  • Mewara, H. S., Deegwal, J. K. ve Sharma, M. M., "A Slot Resonators Based Quintuple Band-Notched Y-Shaped Planar Monopole Ultra-Wideband Antenna", International Journal of Electronics and Communications, 83, 470-478, 2018.
  • Pan, C. Y., Chiu, K. Y., Duan, J. H. ve arkadaşları, "Band-Notched Ultra-Wideband Planar Monopole Antenna Using Shunt Open-Circuited Stub", Microw. Opt. Technol. Lett., 53, 1535-1537, 2011.
  • Abbosh, A. M. ve Bialkowski, M. E., "Design of UWB Planar Band-Notched Antenna Using Parasitic Elements", IEEE Transactions on Antennas and Propagation, 57, 796-799, 2009.
  • Sharbati, V., Rezaei, P. ve Fakharian, M. M., "Compact Planar UWB Antenna with Enhanced Bandwidth and Switchable Band-Notch Function for WLAN and DSRC", IETE Journal of Research, 63, 805-812, 2017.
  • Gupta, K., Garg, R., Bahl, I. ve arkadaşları, Microstrip Lines and Slotlines, Artech House, Boston, MA, A.B.D., 1996.
There are 22 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Akademik ve/veya teknolojik bilimsel makale
Authors

Harun Şimşek This is me

Oğuzhan Erdoğan This is me

Cihan Dogusgen Erbas 0000-0003-1977-3567

Publication Date December 31, 2020
Submission Date June 23, 2020
Published in Issue Year 2020 Volume: 10 Issue: 2

Cite

APA Şimşek, H., Erdoğan, O., & Dogusgen Erbas, C. (2020). Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı. EMO Bilimsel Dergi, 10(2), 23-31.
AMA Şimşek H, Erdoğan O, Dogusgen Erbas C. Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı. EMO Bilimsel Dergi. December 2020;10(2):23-31.
Chicago Şimşek, Harun, Oğuzhan Erdoğan, and Cihan Dogusgen Erbas. “Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı”. EMO Bilimsel Dergi 10, no. 2 (December 2020): 23-31.
EndNote Şimşek H, Erdoğan O, Dogusgen Erbas C (December 1, 2020) Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı. EMO Bilimsel Dergi 10 2 23–31.
IEEE H. Şimşek, O. Erdoğan, and C. Dogusgen Erbas, “Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı”, EMO Bilimsel Dergi, vol. 10, no. 2, pp. 23–31, 2020.
ISNAD Şimşek, Harun et al. “Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı”. EMO Bilimsel Dergi 10/2 (December 2020), 23-31.
JAMA Şimşek H, Erdoğan O, Dogusgen Erbas C. Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı. EMO Bilimsel Dergi. 2020;10:23–31.
MLA Şimşek, Harun et al. “Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı”. EMO Bilimsel Dergi, vol. 10, no. 2, 2020, pp. 23-31.
Vancouver Şimşek H, Erdoğan O, Dogusgen Erbas C. Parazitik Elemanlar Kullanılarak Bant Filtreleyici Düzlemsel Anten Tasarımı. EMO Bilimsel Dergi. 2020;10(2):23-31.

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