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Energy-Assisted Information Detection for Simultaneous Wireless Information and Power Transfer: Performance Analysis and Case Studies

机译:同时进行无线信息和功率传输的能量辅助信息检测:性能分析和案例研究

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In simultaneous wireless information and power transfer (SWIPT), practical receiver architectures consisting of an information receiver and an energy harvester have been proposed in place of an ideal receiver capable of performing two tasks simultaneously using the same circuits. In this paper, we present a novel receiver architecture design incorporating an interplay between the information receiver and the energy harvester to enhance the performance of the practical SWIPT receiver. In particular, the energy level of the received signal monitored at the energy harvester is fed back to the information receiver to assist information decoding at the information receiver. The symbol-error-rate (SER) and diversity analyses show that the proposed receiver architecture could yield a higher diversity order for unconventional constellations where any two distinct symbols have distinct energy levels, and the same diversity order for conventional modulations. Simulation of PAM and QAM modulations verifies the analysis, shows the improved SER performance of the proposed receiver architecture, and illustrates the energy-dimension-augmented decision regions. Some insights into designing enhanced practical SWIPT receivers are provided as a result.
机译:在同时进行的无线信息和功率传输(SWIPT)中,已经提出了由信息接收器和能量收集器组成的实用接收器架构,以代替能够使用同一电路同时执行两项任务的理想接收器。在本文中,我们提出了一种新颖的接收器体系结构设计,其中融合了信息接收器和能量收集器之间的相互作用,以增强实际SWIPT接收器的性能。特别地,在能量收集器处监视的接收信号的能量水平被反馈到信息接收器,以辅助在信息接收器处的信息解码。符号误码率(SER)和分集分析表明,对于其中任何两个不同符号具有不同能级的非常规星座图,提出的接收机体系结构可以产生更高的分集阶数,对于常规调制,则可以产生相同的分集阶数。 PAM和QAM调制的仿真验证了该分析,显示了所提出的接收器体系结构的SER性能得到改善,并说明了能量维数增大的决策区域。结果,提供了一些有关设计增强型实用SWIPT接收机的见解。

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