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Exploiting energy accumulation against co-channel interference in wireless energy Harvesting MIMO relaying

机译:在无线能量收集MIMO中继中利用能量积累对抗同信道干扰

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This paper investigates a three-node multiple-input multiple-output relay system suffering from co-channel interference (CCI) at the multi-antenna relay. Contrary to the conventional relay networks, we consider the scenario that the relay is an energy harvesting (EH) node and has no embedded energy supply. But it is equipped with a rechargeable battery such that it can harvest and accumulate the harvested energy from RF signals sent by the source and co-channel interferers to support its operation. Leveraging the inherent feature of the considered system, we develop a novel accumulate-then-forward (ATF) protocol to eliminate the harmful effect of CCI. In the proposed ATF scheme, at the beginning of each transmission block, the relay can choose either EH operation to harvest energy from source and CCI or information decoding (ID) operation to decode and forward source's information while suffering from CCI. Specifically, ID operation is activated only when the accumulated energy at the relay can support an outage-free transmission in the second hop. Otherwise, EH operation is invoked at the relay to harvest and accumulate energy. By modeling the finite-capacity battery of relay as a finite-state Markov Chain (MC), we derive a closed-form expression for the system throughput of the proposed ATF scheme over mixed Nakagami-m and Rayleigh fading channels. Numerical results validate our theoretical analysis, and show that the proposed ATF scheme with energy accumulation significantly outperforms the existing one without energy accumulation.
机译:本文研究了在多天线中继处遭受同信道干扰(CCI)的三节点多输入多输出中继系统。与传统的中继网络相反,我们考虑中继是能量收集(EH)节点且没有嵌入式能量供应的情况。但是它配备了可充电电池,因此它可以从源和同频道干扰源发送的RF信号中收集和积累所收集的能量,以支持其运行。利用所考虑系统的固有功能,我们开发了一种新颖的“先累积后转发”(ATF)协议,以消除CCI的有害影响。在提出的ATF方案中,在每个传输块的开始,中继可以选择EH操作从源和CCI收集能量,或者选择信息解码(ID)操作在遭受CCI的同时解码和转发源信息。具体地,仅当中继器处的累积能量可以支持第二跳中的无中断传输时,才激活ID操作。否则,将在继电器上调用EH操作以收集和积累能量。通过将有限容量的继电器电池建模为有限状态马尔可夫链(MC),我们为混合Nakagami-m和Rayleigh衰落信道上的拟议ATF方案的系统吞吐量得出了一个封闭形式的表达式。数值结果验证了我们的理论分析,并表明,所提出的具有能量积累的ATF方案明显优于现有的没有能量积累的方案。

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