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Performance analysis of energy-harvesting relay selection systems with multiple antennas in presence of transmit hardware impairments

机译:存在发射硬件损伤的多天线能量收集中继选择系统的性能分析

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In this paper, we consider a decoded-and-forward (DF) energy-harvesting system with multiple antennas in the presence of transmit hardware impairments. The relays are energy-constrained nodes that collect energy from the source signals using time-switching architecture. Two partial relay selection (PRS) schemes that are PRS-1 and PRS-2 are employed for simplifying the relay-selection complexity. In particular, for the PRS-1 scheme, the best relay that assists the source-to-destination communication is selected based on the first-hop channel-state-information (CSI) whereas for the PRS-2 scheme, the best relay is selected based on the second-hop CSI. To evaluate the effects of hardware impairments on system performance, the analytical expressions for outage probability and throughput are derived. Monte Carlo simulation and insightful discussion are provided.
机译:在本文中,我们考虑在存在发射硬件损伤的情况下,具有多个天线的解码转发(DF)能量收集系统。继电器是能量受限的节点,它们使用时间切换架构从源信号中收集能量。为了简化中继选择的复杂性,采用了两个部分中继选择(PRS)方案PRS-1和PRS-2。特别是,对于PRS-1方案,基于第一跳信道状态信息(CSI)选择辅助源到目的地通信的最佳中继,而对于PRS-2方案,最佳中继是根据第二跳CSI选择。为了评估硬件损害对系统性能的影响,导出了中断概率和吞吐量的解析表达式。提供了蒙特卡洛模拟和有见地的讨论。

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