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Precoding Design of MIMO Amplify-and-Forward Communication System With an Energy Harvesting Relay and Possibly Imperfect CSI

机译:具有能量收集中继和可能不完善的CSI的MIMO放大转发通信系统的预编码设计

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摘要

In this paper, we investigate the simultaneous wireless information and power transfer (SWIPT) in a Multiple-Input Multiple-Output (MIMO) Amplify-and-Forward (AF) relay communication system where the relay is an energy harvesting (EH) node and harvests the energy the signals transmitted from the source. The harvested energy is partially used to forward signals from the source to the destination, and the remaining energy is stored for other usages. The SWIPT in relay-assisted communication is interesting as long as the relay stores energy from the source and the destination receives successfully the data from the source. In this context, we propose to investigate the source and relay precoders that characterize the relationship between the achievable stored energy at the relay and the achievable sourceto- destination rate, namely the rate-stored energy (R-E) tradeo region. First, we consider the ideal scheme where there is the simultaneous operation of the EH and ID receivers at the relay. Then, we consider practical schemes such as the power splitting (PS) and the time switching (TS) that separate the operation of EH and information decoding (ID) receivers over power domain or time domain, respectively. Moreover, we study the case of imperfect channel state information (CSI) at the relay and the destination and characterize its impact on the achievable R-E region. Through the simulation results, we show the eect of the position of the relay and the channel uncertainty on the achievable R-E regions of all the schemes when the used energy at the relay is constant or variable. We also show that, although it provides an outer bound on the achievable rate-energy region in one-hop MIMO systems, the ideal scheme provides only an upper bound on the maximum achievable end-to-end rate and not an outer bound on the R-E region.
机译:在本文中,我们研究了多输入多输出(MIMO)放大转发(AF)中继通信系统中的同时无线信息和功率传输(SWIPT),其中中继是能量收集(EH)节点,收集从源发出的信号的能量。收集的能量部分用于将信号从源转发到目的地,而剩余的能量则存储起来以用于其他用途。中继辅助通信中的SWIPT很有趣,只要中继存储来自源的能量,并且目的地成功接收来自源的数据。在这种情况下,我们建议研究源和中继预编码器,它们描述了中继器上可实现的存储能量与源到目标速率(即速率存储能量(R-E)交易区域)之间的关系。首先,我们考虑一种理想的方案,即在继电器处同时运行EH和ID接收器。然后,我们考虑实用的方案,例如分别在功率域或时域上将EH和信息解码(ID)接收器的操作分开的功率分配(PS)和时间切换(TS)。此外,我们研究了在中继站和目的地的信道状态信息不完美(CSI)的情况,并描述了其对可实现的R-E区域的影响。通过仿真结果,我们展示了当继电器使用的能量恒定或可变时,所有方案可实现的R-E区域上继电器位置的影响以及通道不确定性。我们还表明,尽管它在单跳MIMO系统中为可达到的速率能量区域提供了一个上限,但理想方案仅在最大可达到的端到端速率上提供了一个上限,而没有为该速率提供一个上限。稀土区域。

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