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Magnetic Beamforming Algorithm for Hybrid Relay and MIMO Wireless Power Transfer

机译:用于混合中继和MIMO无线功率传输的电磁波束成形算法

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Using magnetic beamforming, the power transmission efficiency can be highly increased for realizing the practical near-field magnetic resonant coupling (MRC) wireless power transfer (WPT). The usage of relay coils is also of great benefit for power transmission in the WPT system containing multiple transmitters (TXs) each with a coil. In this paper, we study the influence of relay coils and the magnetic beamforming for a MRC-WPT system with multiple TXs, relay coils and a single receiver (Rx), called multi-relay WPT (MWPT) system. The optimization problem is formulated to design the currents flowing through TXs in different places so as to maximize the power delivered to the RX load, subject to a given constraint of summational power consumed by all resistances in the MWPT system. In general, the problem is a non-convex quadratically constrained quadratic programming (QCQP) problem, which can be solved with relaxation of the Lagrange multiplier. Numerical results show that by comparing with equal-current and magnetic beamforming mode, relay coils significantly enhances the power transmission efficiency over the longer distances, and magnetic beam-forming with passive relay coils significantly improve the transmission power, efficiency and distance.
机译:使用磁束成形,可以大大提高电力传输效率,以实现实用的近场磁谐振耦合(MRC)无线电力传输(WPT)。继电器线圈的使用对于WPT系统中的功率传输也很有好处,该系统包含多个带有线圈的发射器(TX)。在本文中,我们研究了具有多个TX,继电器线圈和单个接收器(Rx)的MRC-WPT系统的继电器线圈和磁束成形的影响,该系统称为多继电器WPT(MWPT)系统。提出了优化问题,以设计在不同位置流经TX的电流,以使传递给RX负载的功率最大化,这要受到MWPT系统中所有电阻消耗的总功率的给定约束。通常,该问题是非凸二次约束二次规划(QCQP)问题,可以通过放宽拉格朗日乘数来解决。数值结果表明,与等电流和磁束形成模式相比,继电器线圈在更长的距离上显着提高了电力传输效率,而无源继电器线圈的磁束形成显着提高了传输功率,效率和距离。

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