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Optimization for Maximizing Sum Secrecy Rate in SWIPT-Enabled NOMA Systems

机译:最大化SWIPT的NOMA系统中的总保密率的优化

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摘要

In this paper, we study secrecy simultaneous wireless information and power transfer (SWIPT) in downlink non-orthogonal multiple access (NOMA) systems comprising a base station (BS), multiple information receivers (IRs), and multiple energy receivers (ERs) that have potential to wiretap the IRs. The goal of this paper is to maximize the sum secrecy rate (SSR) of the system subject to the individual IR's minimum data rate requirement and the individual ER's minimum harvested energy requirement. The corresponding problem involves resource allocation via max-min function, which is non-convex and difficult to solve directly. In order to tackle this, we first transform the original non-convex problem to a sequence of convex sub-problems which can be solved simultaneously. Hence, a closed-form solution of the optimal power allocation policy is derived based on the Karush-Kuhn-Tucker conditions. Numerical results validate the theoretical findings and demonstrate that the significant performance gain over the orthogonal multiple access scheme in terms of SSR can be achieved by the proposed algorithm in a SWIPT-enabled NOMA system.
机译:在本文中,我们研究了保密的同时无线信息和功率传输(SWIPT)在下行链路中的非正交多址接入(NOMA)包括基站(BS),多个信息接收器(IRS)系统,和多个能量接收器(ERS),该具有潜在的窃听国税局。本文的目的是最大限度地提高系统受个别IR的最低数据速率要求和个人ER的最低收获能源需求的总和秘密速率(SSR)。对应的问题涉及通过最大 - 最小功能,这是非凸的和难以直接解决资源分配。为了解决这个问题,我们首先改造原有的非凸问题的可同时解决凸子问题的序列。因此,最优功率分配策略的闭合形式的解是基于卡罗需 - 库恩 - 塔克条件的。数值结果验证了理论的研究结果,并证明显著性能增益在正交多址接入方案在SSR方面可以通过该算法在启用SWIPT-NOMA系统来实现。

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