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首页> 外文期刊>IEEE Transactions on Power Electronics >A Multiphase Resonance-Based Boosting Rectifier With Dual Outputs for Wireless Power Transmission
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A Multiphase Resonance-Based Boosting Rectifier With Dual Outputs for Wireless Power Transmission

机译:基于多相谐振的双输出升压整流器,用于无线电力传输

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This paper proposes a multiphase resonance-based rectifier (MPRR), capable of delivering power to multiple loads with large difference in their output voltages. This behavior is particularly useful for wireless sensors and actuators, in which the micromachined transduceractuator needs a high voltage to operate but the interface circuitry requires only a fraction of that voltage. This is achieved by shorting the receiver (Rx) L3C3-tank to increase its loaded quality factor, Q(Rx), over several cycles to accumulate wirelessly transferred energy in the inductor during this period, and then first break the loop in-phase, by connecting the L3C3-tank to the in-phase load (R-L,R-I), to transfer energy at low voltage in a half cycle (in-phase charging), and then transfer energy to the quadrature load (R-L,R-Q) through a diode in a quarter cycle at high voltage (quadrature charging). By optimizing the number of cycles for in-phase charging, N-I, and quadrature charging, N-Q, through an iterative design procedure, the MPRR can achieve the highest power delivered to the load under a given set of design constraints. Governing equations in the MPRR operation are derived to identify the key specifications for the design procedure. Using an exemplar set of specifications, the optimized MPRR was able to generate 21.5 and 1.84 V across 100 k and 200 loads, respectively, from a class-D power amplifier operating at 15 V, 6.78 MHz sinusoid input in the industrial-scientific-medical band (ISM-band) at a TxRx coil separation of 1.3cm with N-I 3 cycles, N-Q 6 cycles, and IQRatio 5.
机译:本文提出了一种基于多相谐振的整流器(MPRR),该整流器能够将功率输送到输出电压相差很大的多个负载。此行为对于无线传感器和执行器特别有用,在该传感器中,微机械换能器执行器需要高电压才能工作,而接口电路仅需要该电压的一小部分。这是通过在几个周期内使接收器(Rx)L3C3-tank短路以增加其负载品质因数Q(Rx)来实现的,以便在此期间在电感器中累积无线传输的能量,然后首先断开同相环路,通过将L3C3储罐连接到同相负载(RL,RI),以半个周期在低压下传输能量(同相充电),然后通过交流将能量传输到正交负载(RL,RQ)四分之一周期的高压二极管(正交充电)。通过迭代设计程序优化同相充电N-I和正交充电N-Q的周期数,MPRR可以在给定的一组设计约束下实现传递给负载的最高功率。推导了MPRR操作中的控制方程式,以标识设计程序的关键规格。使用一组典型的规范,经过优化的MPRR能够从工作在15 V,6.78 MHz正弦波输入的D类功率放大器在100 k和200负载下分别产生21.5和1.84 V电压,在工业科学医学中TxRx线圈间距为1.3cm时(ISM频段),具有NI 3个周期,NQ 6个周期和IQRatio 5。

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