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Secure Transmission of Cooperative Zero-Forcing Jamming for Two-User SWIPT Sensor Networks

机译:两用户SWIPT传感器网络的协作零迫干扰的安全传输

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摘要

In this paper, the secrecy performance of the two-user simultaneous wireless information and power transfer (SWIPT) sensor networks is studied and a novel secure transmission scheme of cooperative zero-forcing (ZF) jamming is proposed. The two sensors opportunistically conduct the SWIPT and cooperative ZF jamming, respectively, where the energy required for jamming the eavesdropper is provided by the SWIPT operation so as to keep the energy balance at the sensors in the long run. By deriving the exact closed-form expressions of the secrecy outage probability and the secrecy throughout, we provide an effective approach to precisely assess the impacts of key parameters on the secrecy performance of the system. It has been shown that the secrecy outage probability is a monotonically increasing function of the growth of secrecy rate (Rs), and a monotonically decreasing function of the increase of the transmit signal-to-noise ratio (γS), and energy conversion efficiency (η). Furthermore, the secrecy throughput could be enhanced when η increases, which becomes especially obvious when a large γS is provided. Moreover, the existence of an optimum Rs maximizing the secrecy throughput is depicted, which also grows with the increase of γS. Simulations are provided for the validation of the analysis.
机译:本文研究了两用户同时无线信息和电力传输(SWIPT)传感器网络的保密性能,并提出了一种新型的协作式强制零干扰(ZF)干扰的安全传输方案。这两个传感器分别进行SWIPT和协作ZF干扰,其中,通过SWIPT操作提供干扰窃听者所需的能量,以便长期保持传感器的能量平衡。通过推导保密中断概率和整个保密的精确闭合形式表达式,我们提供了一种有效的方法来精确评估关键参数对系统保密性能的影响。已经表明,保密中断概率是保密率(Rs)增长的单调递增函数,是发送信噪比(γS)和能量转换效率( η)。此外,当η增大时,可以提高保密吞吐量,当提供较大的γS时,保密吞吐量尤其明显。此外,描述了最大化保密吞吐量的最佳Rs的存在,并且它也随着γS的增加而增长。提供了用于验证分析的仿真。

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