DOI QR코드

DOI QR Code

A Method to Avoid Mutual Interference in a Cooperative Spectrum Sharing System

  • Received : 2013.03.19
  • Published : 2014.04.30

Abstract

This article proposes a spectrum sharing method which can avoid the mutual interference in both primary and secondary systems. The two systems make them a priority to use two single-dimension orthogonal signals, the real and imaginary pulse amplitude modulation signals, if the primary system is not in outage with this use. A secondary transmitter is selected to be the primary relay and the active secondary source to perform this. This allows a simultaneous spectrum access without any mutual interference. Otherwise, the primary system attempts to use a full two-dimensional signal, the quadrature amplitude modulation signal. If there is no outage with respect to this use, the secondary spectrum access is not allowed. When both of the previous attempts fail, the secondary system is allowed to freely use the spectrum two whole time slots. The analysis and simulation are provided to analyze the outage performance and they validate the considerable improvement of the proposed method as compared to the conventional one.

Keywords

References

  1. T. Duong, D. da Costa, T. Tsiftsis, C. Zhong, and A. Nallanathan, "Outage and diversity of cognitive relaying systems under spectrum sharing environments in nakagami-m fading," IEEE Commun. Lett., vol. 16, no. 12, pp. 2075-2078, 2012. https://doi.org/10.1109/LCOMM.2012.100812.121859
  2. H. Yang, A. Pandharipande, and S. H. Ting, "Cooperative spectrum sharing via controlled amplify-and-forward relaying," in Proc. IEEE PIMRC, 2008, pp. 1-5.
  3. K. J. Kim, T. Q. Duong, and N. Tran, "Performance analysis of cognitive spectrum-sharing single-carrier systems with relay selection," IEEE Trans. Signal Process., vol. 60, no. 12, pp. 6435-6448, 2012. https://doi.org/10.1109/TSP.2012.2218242
  4. Q. Li, S. H. Ting, A. Pandharipande, and M. Motani, "Cooperateandaccess spectrum sharing with arq-based primary systems," IEEE Trans. Commun., vol. 60, no. 10, pp. 2861-2871, 2012. https://doi.org/10.1109/TCOMM.2012.072412.110680
  5. L.Wei Dang, G. Yi, T. See Ho,W. Xuan Li, and Z. Nai Tong, "Cooperative ofdm relaying for opportunistic spectrum sharing: Protocol design and resource allocation," IEEE Trans. Wireless Commun., vol. 11, no. 6, pp. 2126-2135, 2012. https://doi.org/10.1109/TWC.2012.032812.110524
  6. M. Xia and S. Aissa, "Cooperative af relaying in spectrum-sharing systems: Outage probability analysis under co-channel interferences and relay selection," IEEE Trans. Commun., vol. 60, no. 11, pp. 3252-3262, 2012. https://doi.org/10.1109/TCOMM.2012.082712.120108
  7. H. Yang, A. Pandharipande, and T. See, "Cooperative decode-and-forward relaying for secondary spectrum access," IEEE Trans. Wireless Commun., vol. 8, no. 10, pp. 4945-4950, 2009. https://doi.org/10.1109/TWC.2009.081484
  8. H. Yang, T. See Ho, M. Motani, and A. Pandharipande, "On throughput and delay scaling with cooperative spectrum sharing," in Proc. IEEE ISIT, 2011, pp. 821-825.
  9. H. Yang, T. See Ho, and A. Pandharipande, "Cooperative spectrum sharing with distributed secondary user selection," in Proc. IEEE ICC, 2010, pp. 1-5.
  10. H. Yang, T. See Ho, and A. Pandharipande, "Cooperative spectrum sharing protocol with secondary user selection," IEEE Trans. Wireless Commun., vol. 9, no. 9, pp. 2914-2923, 2010. https://doi.org/10.1109/TWC.2010.080210.091741
  11. H. Yang, T. See Ho, and A. Pandharipande, "Cooperative spectrum sharing protocol with selective relaying system," IEEE Trans. Commun., vol. 60, no. 1, pp. 62-67, 2012. https://doi.org/10.1109/TCOMM.2011.100411.100469