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Secure Transmissions in Wireless Information and Power Transfer Millimeter-Wave Ultra-Dense Networks

机译:无线信息和电力传输毫米波超密集网络中的安全传输

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摘要

The millimeter-wave (mmWave) ultra-dense networks are more suitable for wireless power transfer, since the short-distance transmissions experience less pathloss and the base station (BS) packed with large-scale antenna arrays can achieve significant array gains. However, the secrecy performance of the simultaneous wireless information and power transfer (SWIPT) mmWave ultra-dense networks has not been investigated so far. In this paper, we consider the secure communications in downlink SWIPT mmWave ultra-dense networks, where the energy-constrained users extract energy and information from the mmWave signals in the presence of multiple eavesdroppers. First, the analytical expressions of the energy-information coverage probability are derived for both power splitting and time switching policies using stochastic geometry. Then, we derive the closed-form expressions of the secrecy probability in the presence of multiple independent or colluding eavesdroppers. Finally, the effective secrecy throughput (EST), which can measure the network energy coverage, secure, and reliable transmission performance in a unified manner, is derived. Theoretical analysis and simulation results reveal that the EST first increases and then decreases with the increasing of the transmit power, power/time splitting ratio, codeword transmission rate, and confidential information rate. Furthermore, reducing the beamwidth of the signal at BSs can decrease the information leakage and improve the EST.
机译:毫米波(mmWave)超致密网络更适合无线功率传输,因为短距离传输的路径损耗较小,并且装有大型天线阵列的基站(BS)可以实现显着的阵列增益。但是,到目前为止,尚未研究同时无线信息和功率传输(SWIPT)mmWave超密集网络的保密性能。在本文中,我们考虑下行链路SWIPT mmWave超致密网络中的安全通信,其中能量受限的用户在存在多个窃听者的情况下从mmWave信号中提取能量和信息。首先,针对功率分配和时间切换策略,使用随机几何结构导出了能量信息覆盖概率的解析表达式。然后,我们在存在多个独立的或共谋的窃听者的情况下,得出保密概率的封闭形式。最后,推导出有效保密吞吐量(EST),它可以统一地衡量网络能量覆盖范围,安全可靠的传输性能。理论分析和仿真结果表明,随着发射功率,功率/时间分配比,码字传输速率和机密信息速率的增加,EST先增大然后减小。此外,减小BS处信号的波束宽度可以减少信息泄漏并改善EST。

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