Secrecy-Aware Jointly Optimal Transmit Power Budget Sharing and Trusted DF Relay Placement

Kotha Venugopalachary, Deepak Mishra, R. Saini, Vijaykumar Chakka
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引用次数: 1

Abstract

Prominent requirements such as high data rate demands across weaker coverage areas have lead to the utilization of cooperative communication system in fifth generation (5G) networks. In this regard, this paper presents a novel joint transmit power sharing and relay placement scheme for decode-and-forward relay assisted secure communication to a legitimate user in the presence of an untrusted user. Observing that the joint secure rate maximization problem for the trusted user is non-convex, first we present key insights on optimal power sharing between source and relay, and then derive an equivalent single variable problem on relay placement. Next, tight analytical bounds for optimal relay placement are discoursed to ultimately come up with a computationally efficient joint global optimization algorithm. Lastly, the selected numerical results validate the analysis and highlight the substantial gains achieved by the proposed joint design over benchmark scheme.
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保密感知联合最优发射功率预算共享与可信DF中继配置
在较弱覆盖区域的高数据速率需求等突出需求导致在第五代(5G)网络中使用协作通信系统。在这方面,本文提出了一种新的联合发射功率共享和中继放置方案,用于在不可信用户存在的情况下向合法用户进行解码转发中继辅助安全通信。观察到可信用户的联合安全速率最大化问题是非凸的,首先给出了源和继电器之间最优功率共享的关键见解,然后导出了继电器放置的等效单变量问题。其次,讨论了继电器最优配置的紧密解析界,最终提出了计算效率高的联合全局优化算法。最后,选定的数值结果验证了分析结果,并突出了所提出的联合设计方案在基准方案上取得的实质性成果。
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