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Generalized Non-linear Energy Harvesting Protocol for Enhancing Security of AF Multi-Antenna Relaying Systems

机译:增强AF多天线中继系统安全性的广义非线性能量收集协议

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In this paper, we proposed a generalized energy harvesting (GEH) protocol and utilized a non-linear energy harvesting (EH) model for AF Multi-Antenna Relaying Systems. In particular, the GEH protocol is a optimal EH protocol based on time switching relaying (TSR) and power splitting relaying (PSR) protocols. The whole communication process contains two phases. In phase I, the source transmits certain signal to the relay, meanwhile the destination transmits an artificial noise (AN) to interfere with the passive eavesdropper. The relay harvests energy from the two nodes. In phase II, the relay node processes the two different received signals, which are transmitted from the source and destination. Then the relay amplify-and-forward them by utilizing the harvested energy. To accurately reflect the non-linear nature of the practical EH circuit of GEH-based systems, we apply a special kind of quasi-concave function named logistic (sigmoidal) function to model the input-output characteristic. We also derive a new analytical formula for proposed generalized non-linear energy harvesting protocol on ergodic secrecy capacity. The effect of the number of relay antennas N, the source transmitted power Pthe destination transmitted power Pd on ergodic secrecy capacity are investigated. The simulation results show that as N, Ps, Pd increase, the ergodic secrecy capacity of GEH system increases accordingly. Moreover, the GEH protocol can provide higher non-linear ergodic secrecy capacity than time switching relaying (TSR) protocol and almost perform as better as power splitting relaying (PSR) protocol.
机译:在本文中,我们提出了广义能量收集(GEH)协议,并为AF多天线中继系统利用了非线性能量收集(EH)模型。尤其是,GEH协议是基于时间切换中继(TSR)和功率分配中继(PSR)协议的最佳EH协议。整个沟通过程包含两个阶段。在阶段I中,源将某些信号发送到中继,同时目标将发送人为噪声(AN)来干扰无源窃听者。中继从两个节点收集能量。在阶段II中,中继节点处理从源和目标发送的两个不同的接收信号。然后,中继器利用所收集的能量放大并转发它们。为了准确反映基于GEH的系统的实际EH电路的非线性性质,我们使用一种称为logistic(S型)函数的拟凹函数来对输入输出特性进行建模。我们还为遍历保密能力的广义非线性能量收集协议推导了新的解析公式。研究了中继天线数量N,源发射功率P,目标发射功率Pd对遍历保密能力的影响。仿真结果表明,N,P s ,Pd增加,GEH系统的遍历保密能力相应增加。此外,GEH协议可以提供比时间交换中继(TSR)协议更高的非线性遍历保密能力,并且几乎与功率分配中继(PSR)协议一样好。

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