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12.8 Wireless power transfer system using primary equalizer for coupling- and load-range extension in bio-implant applications

机译:12.8使用主均衡器的无线功率传输系统,用于生物植入应用中的耦合和负载范围扩展

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Wireless power transfer (WPT) in the range of 10 to 100mW [1] is widely used in impiantale medical devices (IMDs) to eliminate the use of a battery. Due to load and coupling variations, the output voltage of the rectifier V is not steady. In [1-2], a 1X/2X reconfigurable rectifier was reported to uphold V when the coupling coils move apart. In [3], V is regulated by the transmitter with feedback through a wire, which defeats the purpose of WPT. In [4], V is regulated by a resonant regulating rectifier as well as an MCU-controlled transmitter with feedback still through a wire. In [5], a reconfigurable resonant regulating (R) rectifier is reported for V regulation, but the load and coupling ranges are limited. In the R rectifier, the 1X/2X rectifier works as a bridge rectifier in 1X mode with V equal to V, and as a voltage doubler in 2X mode with V equal to V as shown by the dash lines in the HSPICE simulated results in Fig. 12.8.1. V is regulated within [V, V] by adjusting the duty cycle of mode-switching through the PWM control under the condition that V>V; otherwise, the PWM control is not stable. This restricts the workable load resistance R to be larger than the boundary R. For a smaller coupling factor k, R is larger (load current is smaller), and thus the coupling range is also limited. In this work, a primary equalizer is introduced to tackle these limitations to extend the load and coupling ranges.
机译:无线功率传输(WPT)在10至100mW的范围内[1]广泛用于非医疗类医疗设备(IMD)中,从而无需使用电池。由于负载和耦合变化,整流器V的输出电压不稳定。在[1-2]中,据报道,当耦合线圈分开时,有一个1X / 2X可重构整流器支持V。在[3]中,V由发送器通过导线进行反馈来调节,这违背了WPT的目的。在[4]中,V由谐振调节整流器以及MCU控制的发送器进行调节,反馈仍通过导线进行。在[5]中,报告了可重构谐振调节(R)整流器用于V调节,但是负载和耦合范围受到限制。在R整流器中,1X / 2X整流器在V等于V的1X模式下充当桥式整流器,并在V等于V的2X模式下充当倍压器,如图HSPICE仿真结果中的虚线所示。 12.8.1通过在V> V的条件下通过PWM控制调节模式切换的占空比,将V调节在[V,V]范围内;否则,PWM控制不稳定。这限制了可工作的负载电阻R大于边界R。对于较小的耦合系数k,R较大(负载电流较小),因此耦合范围也受到限制。在这项工作中,引入了一个初级均衡器来解决这些限制,以扩展负载和耦合范围。

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