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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无线电力传输系统使用初级均衡器进行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:无线电源传输(WPT)在10到100mW [1]的范围内广泛用于缺料医疗设备(IMD)中以消除电池的使用。由于负载和耦合变化,整流器V的输出电压不是稳定的。在[1-2]中,将1x / 2x可重新配置整流器报告为耦合线圈移开时的v。在[3]中,V由发射器调节,通过电线反馈,这击败了WPT的目的。在[4]中,V通过谐振调节整流器以及MCU控制的发射器来调节,其反馈仍然通过电线。在[5]中,报告了用于V调节的可重新配置谐振调节(R)整流器,但负载和耦合范围是有限的。在R整流器中,1x / 2x整流器在1×模式下用V等于V等于V等于v,并且用V等于v的电压倍增,如图所示的虚线模拟结果中的虚线所示。12.8.1。 v通过在V> v的条件下调整通过PWM控制的模式切换的占空比来调节[V,V]。否则,PWM控制不稳定。这限制了比边界R大于边界R的可行负载r.对于较小的耦合因子K,R较大(负载电流较小),因此耦合范围也是有限的。在这项工作中,引入了主要均衡器来解决这些限制以扩展负载和耦合范围。

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