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Multiuser Wireless Power Transfer via Magnetic Resonant Coupling: Performance Analysis, Charging Control, and Power Region Characterization

机译:通过磁共振耦合进行多用户无线功率传输:性能分析,充电控制和功率区域表征

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摘要

Magnetic resonant coupling (MRC) is an efficient method for realizing the near-field wireless power transfer (WPT). Although the MRC-enabled WPT (MRC-WPT) with a single pair of transmitter and receiver has been thoroughly studied in the literature, there is limited work on the general setup with multiple transmitters and/or receivers. In this paper, we consider a MRC-WPT system with one transmitter delivering wireless power to a set of distributed receivers. We aim to introduce new applications of signal processing and optimization techniques to the performance characterization and optimization in multiuser WPT via MRC. We first derive closed-form expressions for the power drawn from the energy source at the transmitter and that delivered to the load at each receiver. We identify a fairness issue in multiuser power transmission due to receivers’ distance-dependent mutual inductance with the transmitter. To tackle this issue, we propose a centralized algorithm to jointly optimize the receivers’ load resistance to minimize the total transmitter power drawn while meeting the given power requirement of each individual load. For ease of practical implementation, we also devise a algorithm for the receivers to adjust their load resistance independently in an iterative manner. Last, we characterize the that constitutes all the achievable power-tuples of the loads via controlling their adjustable resistance. In particular, we compare the power regions without versus with the of users’ power transmission, where it is shown that time sharing yields a larger power region in general. Extensive simulation results are provided to validate our analysis and corroborate our study on the multiuser MRC-WPT system.
机译:磁共振耦合(MRC)是一种实现近场无线功率传输(WPT)的有效方法。尽管在文献中已经对带有单对发送器和接收器的支持MRC的WPT(MRC-WPT)进行了深入研究,但是在具有多个发送器和/或接收器的常规设置上的工作仍然有限。在本文中,我们考虑一个MRC-WPT系统,该系统的一个发射器向一组分布式接收器提供无线电力。我们旨在通过MRC将信号处理和优化技术的新应用引入多用户WPT的性能表征和优化。我们首先导出封闭形式的表达式,用于表示从发射机处的能源汲取并在每个接收机处传递至负载的功率。我们发现由于接收器与发射器之间的距离相关互感,在多用户功率传输中存在公平问题。为了解决这个问题,我们提出了一种集中式算法,可以共同优化接收器的负载电阻,以在满足每个单独负载的给定功率要求的同时,最大程度地降低发射器的总功率。为了便于实际实施,我们还设计了一种算法,使接收器以迭代方式独立调整其负载电阻。最后,我们通过控制负载的可调电阻来表征构成负载的所有可实现功率元组的。特别是,我们将无功率区域与用户的功率传输区域进行了比较,结果表明,分时通常会产生更大的功率区域。提供了广泛的仿真结果,以验证我们的分析并证实我们对多用户MRC-WPT系统的研究。

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