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Secrecy Outage Performance of a Unified Non-Orthogonal Multiple Access Framework

机译:统一的非正交多址访问框架的保密中断性能

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This paper investigates the impact of physical layer secrecy on the performance of a unified non-orthogonal multiple access (NOMA) framework. The spatial locations of legitimate users (LUs) and eavesdroppers are governed by invoking stochastic geometry. To characterize the secrecy performance of the unified framework, new exact and asymptotic expressions of secrecy outage probabilities are derived, in which both imperfect successive interference cancellation (ipSIC) and perfect SIC (pSIC) schemes are taken into account. The secrecy diversity orders achieved by a pair of LUs (the n-th user and m-th user) for CD/PD-NOMA are obtained. Analytical results make known that the secrecy diversity orders of LUs with ipSIC/pSIC for CD/PD-NOMA are equal to zero/K and zero/one, respectively. Finally, numerical results are present to confirm the accuracy of the developed analytical results.
机译:本文研究了物理层保密对统一非正交多路访问(NOMA)框架性能的影响。合法用户(LU)和窃听者的空间位置由调用随机几何体控制。为了表征统一框架的保密性能,导出了保密中断概率的新的精确表达式和渐近表达式,其中考虑了不完善的连续干扰消除(ipSIC)和完美SIC(pSIC)方案。获得由一对LU(第n个用户和第m个用户)针对CD / PD-NOMA实现的保密分集顺序。分析结果表明,CD / PD-NOMA具有ipSIC / pSIC的LU的保密分集阶数分别等于0 / K和0/1。最后,提供了数值结果以确认所开发分析结果的准确性。

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