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Değiştirilebilir Aç-Kapa Anahtarlama ve Değiştirilebilir Darbe Konum Modülasyonu Tekniklerinin BHO Performans Karşılaştırılması

Yıl 2020, , 1 - 7, 30.06.2020
https://doi.org/10.29132/ijpas.705563

Öz

Kaynakça

  • Barry, J.R., 1994. Wireless infrared communications. Kluwer Academic Press, USA.
  • Bilim, M., 2019. A performance study on diversity receivers over κ-μ shadowed fading channels. International Journal of Electronics and Communications, 112:1-8.
  • Ghassemlooy, Z., Popoola, W., Rajbhandari, S., 2012. Optical wireless communications: system and channel modelling with MATLAB. CRC Press, USA.
  • Huang, T., Yang, W., Wu, J., Ma, J., Zhang, X., Zhang, D., 2019. A survey on green 6g network: architecture and technologies. IEEE Access, 7:175758-175768.
  • Komine, T., Nakagawa, M., 2004. Fundamental analysis for visible-light communication system using LED lights. IEEE Transactions on Consumer Electronics, 50:100-107.
  • Lee, K., Park, H., 2011. Modulations for visible light communications with dimming control. IEEE Photonics Technology Letters, 23:1136-1139.
  • Lin, B., Tang, X., Ghassemlooy, Z., 2020. A power domain sparse code multiple access scheme for visible light communications. IEEE Wireless Communications Letters, 9:61-64.
  • Meihong, S., Xinsheng, Y., Zhangguo, Z., 2009. The Modified PPM Modulation for Underwater Wireless Optical Communication. International Conference on Communication Software and Networks, China, February 2009.
  • Qin, Y., Guo, D., Lin, X., Cheng, G., 2020. Design and optimization of VLC enabled data center network. Tsinghua Science and Technology, 25: 82-92.
  • Shalaby, H.M.H., 2013. Performance analysis of SAC-OCDMA systems adopting overlapping PPM schemes. Journal Of Lıghtwave Technology. 31(12):1856-1866.
  • Shiu, D., Kahn, J.M., 1999. Differential pulse-position modulation for power-efficient optical communication. IEEE Transactions on Communications, 47:1201-1210.
  • Yang, A., Li, X., Jiang, T., 2012. Enhancement of LED indoor communications using OPPM-PWM modulation and grouped bit-flipping decoding. Optics Express, 20:10170-10179.
  • Yoo, J.H., Kim, B.W., Jung, S.Y., 2015. Modelling and analysis of M-ary variable pulse position modulation for visible light communications. IEET Optoelectron, 9:184-190.

BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques

Yıl 2020, , 1 - 7, 30.06.2020
https://doi.org/10.29132/ijpas.705563

Öz

In wireless optical systems, Visible Light Communication (VLC) is one of the most popular communication systems. In this study, a Bit Error Rate (BER) performance comparison is given for Variable On-Off Keying (VOOK) and Variable Pulse Position Modulation (VPPM) which are extensively used in VLC systems. According to simulation and theoretical results, it is shown that the BER performances of systems are similar. In this paper, an ambient light noise is added to Additive White Gaussian Noise to extend the BER performance analysis. From simulation results, it is obtained that the impact of ambient light noise is very high for VOOK while it is quite poor for VPPM. Hence, the BER performance of VPPM has better than that of VOOK under ambient light noise.

Kaynakça

  • Barry, J.R., 1994. Wireless infrared communications. Kluwer Academic Press, USA.
  • Bilim, M., 2019. A performance study on diversity receivers over κ-μ shadowed fading channels. International Journal of Electronics and Communications, 112:1-8.
  • Ghassemlooy, Z., Popoola, W., Rajbhandari, S., 2012. Optical wireless communications: system and channel modelling with MATLAB. CRC Press, USA.
  • Huang, T., Yang, W., Wu, J., Ma, J., Zhang, X., Zhang, D., 2019. A survey on green 6g network: architecture and technologies. IEEE Access, 7:175758-175768.
  • Komine, T., Nakagawa, M., 2004. Fundamental analysis for visible-light communication system using LED lights. IEEE Transactions on Consumer Electronics, 50:100-107.
  • Lee, K., Park, H., 2011. Modulations for visible light communications with dimming control. IEEE Photonics Technology Letters, 23:1136-1139.
  • Lin, B., Tang, X., Ghassemlooy, Z., 2020. A power domain sparse code multiple access scheme for visible light communications. IEEE Wireless Communications Letters, 9:61-64.
  • Meihong, S., Xinsheng, Y., Zhangguo, Z., 2009. The Modified PPM Modulation for Underwater Wireless Optical Communication. International Conference on Communication Software and Networks, China, February 2009.
  • Qin, Y., Guo, D., Lin, X., Cheng, G., 2020. Design and optimization of VLC enabled data center network. Tsinghua Science and Technology, 25: 82-92.
  • Shalaby, H.M.H., 2013. Performance analysis of SAC-OCDMA systems adopting overlapping PPM schemes. Journal Of Lıghtwave Technology. 31(12):1856-1866.
  • Shiu, D., Kahn, J.M., 1999. Differential pulse-position modulation for power-efficient optical communication. IEEE Transactions on Communications, 47:1201-1210.
  • Yang, A., Li, X., Jiang, T., 2012. Enhancement of LED indoor communications using OPPM-PWM modulation and grouped bit-flipping decoding. Optics Express, 20:10170-10179.
  • Yoo, J.H., Kim, B.W., Jung, S.Y., 2015. Modelling and analysis of M-ary variable pulse position modulation for visible light communications. IEET Optoelectron, 9:184-190.
Toplam 13 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Mehmet Sonmez 0000-0002-6025-3734

Yayımlanma Tarihi 30 Haziran 2020
Gönderilme Tarihi 19 Mart 2020
Kabul Tarihi 30 Haziran 2020
Yayımlandığı Sayı Yıl 2020

Kaynak Göster

APA Sonmez, M. (2020). BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques. International Journal of Pure and Applied Sciences, 6(1), 1-7. https://doi.org/10.29132/ijpas.705563
AMA Sonmez M. BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques. International Journal of Pure and Applied Sciences. Haziran 2020;6(1):1-7. doi:10.29132/ijpas.705563
Chicago Sonmez, Mehmet. “BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques”. International Journal of Pure and Applied Sciences 6, sy. 1 (Haziran 2020): 1-7. https://doi.org/10.29132/ijpas.705563.
EndNote Sonmez M (01 Haziran 2020) BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques. International Journal of Pure and Applied Sciences 6 1 1–7.
IEEE M. Sonmez, “BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques”, International Journal of Pure and Applied Sciences, c. 6, sy. 1, ss. 1–7, 2020, doi: 10.29132/ijpas.705563.
ISNAD Sonmez, Mehmet. “BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques”. International Journal of Pure and Applied Sciences 6/1 (Haziran 2020), 1-7. https://doi.org/10.29132/ijpas.705563.
JAMA Sonmez M. BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques. International Journal of Pure and Applied Sciences. 2020;6:1–7.
MLA Sonmez, Mehmet. “BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques”. International Journal of Pure and Applied Sciences, c. 6, sy. 1, 2020, ss. 1-7, doi:10.29132/ijpas.705563.
Vancouver Sonmez M. BER Performance Comparison of Variable On-Off Keying and Variable Pulse Position Modulation Techniques. International Journal of Pure and Applied Sciences. 2020;6(1):1-7.

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