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首页> 外文期刊>International journal of communication systems >Wireless information and power transfer using single and multiple path relays
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Wireless information and power transfer using single and multiple path relays

机译:使用单路和多路径继电器的无线信息和电力传输

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摘要

A relay-based wireless communication model can relay information along with the power bidirectionally using the amplify-and-forward scheme. This paper studies such model extensively. Three information and power relaying protocols, that is, time-based switching relaying, power-based splitting relaying, and hybrid time switching-based and power splitting-based relaying (HTPSR) are used to carry forward bidirectional information and power transfer. First, a solo relay model is studied, for which, we derived a throughput expression for end-to-end information transfer, and this is done for all the three relaying protocols. The paper indicates that the system throughput depends upon the time switching and the power splitting ratio. Further, to make the system more reliable and robust, multiple relays are used in the path. Various relay selection schemes are used for path selection in each transmission, thereby yielding different throughput performances. The results show that an optimal throughput is obtained for a given relay location at an optimal set of values of splitting and switching ratio. Moreover, the HTPSR outperforms both the power splitting and time switching protocol in system throughput performance for a single as well as a multiple-relay model. Whereas, in relay selection schemes, the best SNR selection scheme outperforms in all the schemes used. The simulated results confirm that the system throughput is an active function of relay placement.
机译:基于继电器的无线通信模型可以使用放大和前进方案对信息进行双向的电力。本文广泛地研究了这种模型。三种信息和电力中继协议,即基于时间的切换中继,基于功率的分离中继和基于混合时间切换的和基于电力分裂的中继(HTPSR)来进行前进的双向信息和电力传输。首先,研究了一个单独的继电器模型,为此,我们派生了用于端到端信息传输的吞吐量表达,这是针对所有三个中继协议完成的。本文表示系统吞吐量取决于时间切换和功率分割比。此外,为了使系统更可靠且稳健地,在路径中使用多个继电器。各种中继选择方案用于每个传输中的路径选择,从而产生不同的吞吐量性能。结果表明,在分裂和切换比的最佳值集中获得最佳吞吐量。此外,HTPSR在系统吞吐量性能下优于一个单个以及多继电器模型的功率分裂和时间切换协议。虽然,在继电器选择方案中,最好的SNR选择方案在所使用的所有方案中占此胜过。模拟结果证实系统吞吐量是中继放置的主动函数。

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