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Cache-Aided Simultaneous Wireless Information and Power Transfer (SWIPT) With Relay Selection

机译:具有中继选择功能的高速缓存辅助同时无线信息和功率传输(SWIPT)

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摘要

In this paper, we investigate the performance of cache-assisted simultaneous wireless information and power transfer (SWIPT) cooperative systems, in which one source communicates with one destination via the aid of multiple relays. In order to prolong the relays’ serving time, the relays are assumed to be equipped with a cache memory and energy harvesting (EH) capability. Based on the time-splitting mechanism, we analyze the effect of caching on the system performance in terms of the serving throughput and the stored energy at the relay. In particular, two optimization problems are formulated to maximize the relay-destination throughput and the energy stored at the relay subject to some quality-of-service (QoS) constraints, respectively. By using the KKT conditions and with the help of the Lambert function, closed-form solutions are obtained for the two formulated problems. In order to further improve the performance, a relay selection policy is introduced to select the best relay based on either the maximum throughput between the relays’ and destination link or maximum stored energy at the relay, for conveying information to the destination. Numerical results reveal significant benefits of incorporating caching capabilities to SWIPT systems, in terms of improved serving time, throughput, and EH performance at the relays.
机译:在本文中,我们研究了高速缓存辅助的同时进行的无线信息和功率传输(SWIPT)协作系统的性能,其中一个源通过多个中继与一个目的地进行通信。为了延长中继器的服务时间,假定中继器配备了高速缓存和能量收集(EH)功能。基于时间拆分机制,我们根据服务吞吐量和中继器上存储的能量来分析缓存对系统性能的影响。特别是,制定了两个优化问题,以使中继目的地的吞吐量和分别存储在中继站的能量受到某些服务质量(QoS)约束的最大化。通过使用KKT条件并借助Lambert函数,可以解决两个公式化问题的闭式解。为了进一步提高性能,引入了一种中继选择策略,以便根据中继与目标链路之间的最大吞吐量或中继上的最大存储能量来选择最佳中继,以将信息传送到目标。数值结果表明,将缓存功能整合到SWIPT系统中,可以显着改善中继的服务时间,吞吐量和EH性能。

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