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Wireless Information and Energy Transfer in Fading Relay Channels

机译:衰落中继信道中的无线信息和能量传输

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Wireless energy transfer is a promising solution to provide convenient and steady energy supplies for low-power relays. This paper investigates the simultaneous information and energy transfer in fading relay channels, where the relay has no fixed energy supply and replenishes energy from radio frequency signals transmitted by the source. Assume that the relay can switch among energy harvesting, information decoding, and information retransmission in each channel fading state. Our objective is to maximize the ergodic throughput by optimizing the mode switching rule and transmit power jointly under the data and energy causality constraints. When the source knows channel state information (CSI) of all links, to make the problem tractable, for the relay, we neglect the causality constraints during the transmission, and only consider the total data and energy constraints. We thus obtain an upper bound on the ergodic throughput by solving a convex optimization problem. Numerical results show that the achievable rate is very close to the upper bound when we apply the optimized parameters to a practical system. When the source only knows CSI of partial links, the whole transmission process is divided into two phases: the source transmits in the first phase and the relay decodes and forwards received bits using the harvested energy in the second phase. The throughput maximization problem is solved by combing convex optimization, fractional programming, and linear search. We also consider the simplified network topology when a direct link between the source and destination is unavailable. In this network, we propose algorithms based on bisection method to obtain the optimal parameters in information/energy transfer scheduling and power control when the source knows full or partial CSI. The simulation results reveal that the throughput gain brought by wireless powered relaying in different system configurations when the source knows full or partial CSI. Moreover, the effect of the relay position is discussed.
机译:无线能量传输是一种有前途的解决方案,可以为低功率继电器提供方便,稳定的能量供应。本文研究了衰落的中继信道中的同步信息和能量传输,其中中继没有固定的能量供应,而是从信号源传输的射频信号中补充能量。假设中继器可以在每个信道衰落状态下在能量收集,信息解码和信息重发之间切换。我们的目标是通过优化模式切换规则并在数据和能量因果关系约束下共同传输功率来最大化遍历吞吐量。当源知道所有链路的信道状态信息(CSI),以使问题易于解决时,对于中继,我们忽略传输期间的因果关系约束,而仅考虑总数据和能量约束。因此,我们通过解决凸优化问题来获得遍历吞吐量的上限。数值结果表明,当我们将优化参数应用于实际系统时,可达到的速率非常接近上限。当源仅了解部分链路的CSI时,整个传输过程分为两个阶段:源在第一阶段进行传输,中继在第二阶段使用收获的能量解码和转发接收到的比特。通过组合凸优化,分数规划和线性搜索来解决吞吐量最大化问题。当源和目标之间的直接链接不可用时,我们还将考虑简化的网络拓扑。在该网络中,我们提出了基于二等分方法的算法,以在源知道全部或部分CSI时获得信息/能量传输调度和功率控制中的最佳参数。仿真结果表明,当信源知道全部或部分CSI时,无线中继在不同的系统配置中带来的吞吐量提高。此外,还讨论了继电器位置的影响。

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