Energy-Efficient Resource Optimization with Wireless Power Transfer for Secure NOMA Systems

Lei Lei, Zheng Chang, Yun Hu, T. Ristaniemi, Yaxiong Yuan, S. Chatzinotas
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引用次数: 2

Abstract

In this paper, we investigate resource allocation algorithm design for secure non-orthogonal multiple access (NOMA) systems empowered by wireless power transfer. With the consideration of an existing eavesdropper, the objective is to obtain secure and energy efficient transmission among multiple users by optimizing time, power and subchannel allocation. Moreover, we also take into consideration for the practical case that the statistics of the channel state information of the eavesdropper is not available. In order to address the optimization problem and its high computational complexity, we propose an iterative algorithm with guaranteed convergence to deliver a suboptimal solution for general cases. For some special cases, the solution ensures the global optimum. Numerical studies demonstrate the competitiveness of the proposed algorithmic solution over conventional orthogonal multiple access systems as well as over other existing NOMA resource allocation schemes.
基于无线电力传输的安全NOMA系统节能资源优化
研究了基于无线能量传输的安全非正交多址(NOMA)系统的资源分配算法设计。在考虑现有窃听者的情况下,通过优化时间、功率和子信道分配,实现多用户间安全高效的传输。此外,我们还考虑了无法获得窃听者信道状态信息统计的实际情况。为了解决优化问题及其高计算复杂度,我们提出了一种保证收敛的迭代算法,以提供一般情况下的次优解。对于某些特殊情况,该方案可保证全局最优。数值研究表明,所提出的算法解决方案与传统的正交多址系统以及其他现有的NOMA资源分配方案相比具有竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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