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Adaptive secure transmission for wireless powered communication networks

机译:无线供电通信网络的自适应安全传输

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This paper investigates secure transmission in a wireless powered communication network (WPCN) with an energy harvesting (EH) source configured with multiple antennas. In the WPCN, the EH source harvests energy from the radio frequency (RF) signals broadcasted by a power beacon (PB), and purely relies on the harvested energy to communicate with the destination in the presence of passive eavesdroppers. It is noteworthy that the RF-EH source is equipped with a finite energy storage to accumulate the harvested energy for the future usage. Moreover, due to energy-constraint and complexity-limitation, the multi-antenna source is only configured with a single RF-chain. To enhance the security for the WPCN, we propose two adaptive transmission schemes, i.e., energy-aware transmit antenna selection (EATAS) and energy-aware differential spatial modulation (EADSM). According to the energy status and the channel quality, the source adaptively decides whether to transmit confidential information or harvest RF energy. To evaluate the secrecy performance of the proposed schemes, we first study the evolution of the energy storage, and then derive the analytical expressions of connection outage probability (COP), secrecy outage probability (SOP) and efficient secrecy throughput (EST). Numerical results demonstrate that our proposed schemes outperform the existing schemes, i.e., time-switching based TAS (TS-TAS) and accumulate-then-transmit (ATT). And, increasing the transmit power of the PB or the capacity of the source's energy storage is helpful to improve the secrecy performance. Moreover, there exists an optimal transmission rate for each proposed scheme to achieve best secrecy performance.
机译:本文研究了具有配置有多个天线的能量收集(EH)源的无线供电通信网络(WPCN)中的安全传输。在WPCN中,EH源从电力信标(PB)广播的射频(RF)信号收集能量,并且纯粹依赖于收获的能量,以在被动窃听者的存在下与目的地通信。值得注意的是,RF-EH源配有有限储能,以积累收获的能源以实现未来的使用。此外,由于能量限制和复杂度限制,多天线源仅配置有单个RF链。为提高WPCN的安全性,我们提出了两个自适应传输方案,即能量感知发射天线选择(Eatas)和能量感知差分空间调制(EADSM)。根据能量状态和信道质量,源自适应地决定是否传输机密信息或收获RF能量。为了评估所提出的计划的保密性能,我们首先研究了能量存储的演变,然后导出了连接中断概率(COP),保密性中断概率(SOP)和高效保密吞吐量(EST)的分析表达。数值结果表明,我们的建议方案优于现有方案,即基于时间切换的TAS(TS-TAS)并累积 - 发送(ATT)。并且,增加PB的发射功率或源的能量存储的容量有助于提高保密性能。此外,每个所提出的方案存在最佳传输速率,以实现最佳保密性能。

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