论文标题

安全的同时信息和功率传输,用于下行链路多用户大量mimo

Secure Simultaneous Information and Power Transfer for Downlink Multi-user Massive MIMO

论文作者

Goli, Zahra, Razavizadeh, S. Mohammad, Farhadi, Hamed, Svensson, Tommy

论文摘要

在本文中,研究了同时使用大量多输入多输出(MIMO)的同时信息和功率传输(SWIPT)系统的下行链路安全传输。一个具有大量天线的基站(BS)将能源和信息信号传输到其预期的用户,但是这些信号也由Active Eavesdropper收到。用户和窃听器采用了一种电源分裂技术来同时解码信息并收获能量。大量的MIMO帮助BS将能源集中到用户,并防止信息泄漏到窃听者。每个用户的收获能量都用于解码信息并传输上行链路飞行信号以进行频道估计。假定活跃的窃听器还会在下行链路中收获能量,然后在上行链路训练阶段贡献。可实现的保密率被认为是性能标准,并且得出了封闭形式的下限。为了提供安全的传输,通过优化问题,可实现的保密率最大化,用户对最小收获能量的限制和窃听者的最大收获能量。数值结果表明,使用大量MIMO在SWIPT系统中提供物理层安全性的有效性,还表明我们对保密率的封闭式表达式是准确的。

In this paper, downlink secure transmission in simultaneous information and power transfer (SWIPT) system enabled with massive multiple-input multiple-output (MIMO) is studied. A base station (BS) with a large number of antennas transmits energy and information signals to its intended users, but these signals are also received by an active eavesdropper. The users and eavesdropper employ a power splitting technique to simultaneously decode information and harvest energy. Massive MIMO helps the BS to focus energy to the users and prevent information leakage to the eavesdropper. The harvested energy by each user is employed for decoding information and transmitting uplink pilot signals for channel estimation. It is assumed that the active eavesdropper also harvests energy in the downlink and then contributes during the uplink training phase. Achievable secrecy rate is considered as the performance criterion and a closed-form lower bound for it is derived. To provide secure transmission, the achievable secrecy rate is then maximized through an optimization problem with constraints on the minimum harvested energy by the user and the maximum harvested energy by the eavesdropper. Numerical results show the effectiveness of using massive MIMO in providing physical layer security in SWIPT systems and also show that our closed-form expressions for the secrecy rate are accurate.

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