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Power Flow Control Based Solely on Slow Feedback Loop for Heart Pump Applications

机译:仅基于慢反馈回路的功率流控制在心脏泵应用中的应用

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摘要

This paper proposes a new control method for regulating power flow via transcutaneous energy transfer (TET) for implantable heart pumps. Previous work on power flow controller requires a fast feedback loop that needs additional switching devices and resonant capacitors to be added to the primary converter. The proposed power flow controller eliminates these additional components, and it relies solely on a slow feedback loop to directly drive the primary converter to meet the heart pump power demand and ensure zero voltage switching. A controlled change in switching frequency varies the resonant tank shorting period of a current-fed push-pull resonant converter, thus changing the magnitude of the primary resonant voltage, as well as the tuning between primary and secondary resonant tanks. The proposed controller has been implemented successfully using an analogue circuit and has reached an end-to-end power efficiency of 79.6% at 10 W with a switching frequency regulation range of 149.3 kHz to 182.2 kHz.
机译:本文提出了一种新的控制方法,用于通过可植入心脏泵的经皮能量传递(TET)调节功率流。以前关于潮流控制器的工作需要快速反馈环路,该环路需要向主转换器添加额外的开关器件和谐振电容器。提出的潮流控制器消除了这些额外的组件,并且仅依靠慢速反馈环路来直接驱动初级转换器来满足心脏泵的功率需求并确保零电压切换。开关频率的受控变化会改变电流馈送推挽谐振转换器的谐振槽短路周期,从而改变初级谐振电压的幅度以及初级谐振槽和次级谐振槽之间的调谐。拟议的控制器已成功使用模拟电路实现,并且在10 W时端到端功率效率达到79.6%,开关频率调节范围为149.3 kHz至182.2 kHz。

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