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首页> 外文期刊>IEEE Transactions on Signal Processing >Power Waveforming: Wireless Power Transfer Beyond Time Reversal
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Power Waveforming: Wireless Power Transfer Beyond Time Reversal

机译:功率波形:超越时间反向的无线功率传输

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This paper explores the idea of time-reversal (TR) technology in wireless power transfer to propose a new wireless power transfer paradigm termed power waveforming (PW), where a transmitter engages in delivering wireless power to an intended receiver by fully utilizing all the available multipaths that serve as virtual antennas. Two power transfer-oriented waveforms, energy waveform and single-tone waveform, are proposed for PW power transfer systems, both of which are no longer TR in essence. The former is designed to maximize the received power, while the latter is a low-complexity alternative with small or even no performance degradation. We theoretically analyze the power transfer gain of the proposed power transfer system over the direct transmission scheme, which can achieve about 6 dB gain, under various channel power delay profiles and show that the PW is an ideal paradigm for wireless power transfer because of its inherent ability to recollect all the power that is possible to harvest from the surrounding environment. In addition, the outage performances in harvesting power of the PW system and the conventional multiple-input multiple-output (MIMO) system are derived. It reveals that the PW system can achieve the same outage performance of the MIMO system as long as the number of resolvable multipaths is sufficiently large. Simulation results validate the analytical findings and experimental results demonstrate the effectiveness of the proposed PW technique.
机译:本文探讨了无线电力传输中的时间反转(TR)技术的概念,提出了一种新的无线电力传输范例,称为功率波形(PW),其中,发射器通过充分利用所有可用功率来为目标接收器提供无线电力。用作虚拟天线的多径。针对PW功率传输系统,提出了两种面向功率传输的波形,即能量波形和单音波形,两者在本质上已不再是TR。前者旨在最大程度地提高接收功率,而后者是低复杂度的替代产品,性能降低幅度很小甚至没有。我们从理论上分析了所建议的功率传输系统在直接传输方案下的功率传输增益,该功率传输增益在各种信道功率延迟曲线下可实现约6 dB的增益,并表明PW由于其固有的固有特性是无线功率传输的理想范例能够收集从周围环境中收集的所有能量的能力。此外,推导了PW系统和传统的多输入多输出(MIMO)系统在采集功率方面的中断性能。它揭示了只要可解决的多径数量足够大,PW系统就可以实现与MIMO系统相同的中断性能。仿真结果验证了分析结果,实验结果证明了所提出的PW技术的有效性。

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