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Performance of Opportunistic Incremental NOMA Relay System in Fading Channels

페이딩 채널에서 기회전송 증가 NOMA 릴레이 시스템의 성능분석

  • Kim, Nam-Soo (Dept. of Electronic Engineering, Cheongju University)
  • Received : 2016.07.22
  • Accepted : 2016.10.07
  • Published : 2016.10.31

Abstract

In this paper, we investigate the system performance of a cooperative relaying system of Non-orthogonal multiple access (NOMA) with successive interference cancellation (SIC), which is considered promising application in fifth generation (5G) cellular networks. Previous studies have focused on the selected relays, however we include the maxmin relay selection and derive analytical outage probability of opportunistic incremental relaying systems. For the realistic mobile environment, the distributions of relays are modeled as a homogeneous Poisson point process (PPP). And maximal ratio combining (MRC) is adapted to improve the system performance at the destination node. Analytical results demonstrate the outage probability improves with the near/far user power ratio, and the cooperative relaying scheme can achieve low outage probability in comparison to the no relaying scheme. It is also conformed that the increase of the intensity of PPP cause higher gains of the spacial diversity and hence the performance improves.

본 논문에서는 5세대 이동통신 네트워크에서 도입하고자하는 순차 간섭제거(Successive interference cancellation)를 채택한 비직교 다중화(Non-orthogonal multiple access) 시스템에 협동 릴레이를 채택하였을 경우의 시스템 성능을 유도하였다. 그동안의 연구는 단순히 지정된 릴레이를 대상으로 연구가 진행되었지만 본 논문에서는 최대-최소 릴레이 선택법을 적용한 기회전송 증가 릴레이 시스템의 오수신율을 해석적으로 분석하였다. 그리고 현실적인 이동통신 환경을 고려하여 릴레이는 균일 포아송 분포로 모델링하였고, 시스템의 성능을 더욱 개선하기 위하여 목적지에서 최대비 합성(Maximal ration combining)을 적용하였다. 수치적인 해석 결과 원/근 사용자 송신전력비가 클수록 오수신율이 개선되었으며, 직접 경로만 사용하여 정보를 전송하는 경우보다 릴레이를 사용한 협동 시스템의 성능이 항상 우수함을 나타내었다. 또한 포아송 밀도가 높을수록 공간 다이버시티 이득이 커지고 결국 성능이 개선됨을 확인하였다.

Keywords

References

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