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Modeling and Optimization of Class-E Amplifier at Subnominal Condition in a Wireless Power Transfer System for Biomedical Implants

机译:生物医学植入物无线功率传输系统中亚标条件下E类放大器的建模和优化

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摘要

For the class-E amplifier in a wireless power transfer (WPT) system, the design parameters are always determined by the nominal model. However, this model neglects the conduction loss and voltage stress of MOSFET and cannot guarantee the highest efficiency in the WPT system for biomedical implants. To solve this problem, this paper proposes a novel circuit model of the subnominal class-E amplifier. On a WPT platform for capsule endoscope, the proposed model was validated to be effective and the relationship between the amplifier’s design parameters and its characteristics was analyzed. At a given duty ratio, the design parameters with the highest efficiency and safe voltage stress are derived and the condition is called ‘optimal subnominal condition.’ The amplifier’s efficiency can reach the highest of 99.3% at the 0.097 duty ratio. Furthermore, at the 0.5 duty ratio, the measured efficiency of the optimal subnominal condition can reach 90.8%, which is 15.2% higher than that of the nominal condition. Then, a WPT experiment with a receiving unit was carried out to validate the feasibility of the optimized amplifier. In general, the design parameters of class-E amplifier in a WPT system for biomedical implants can be determined with the proposed optimization method in this paper.
机译:对于无线电力传输(WPT)系统中的E类放大器,设计参数始终由标称模型确定。但是,该模型忽略了MOSFET的传导损耗和电压应力,并不能保证WPT系统中生物医学植入物的最高效率。为了解决这个问题,本文提出了一种新的子类E类放大器的电路模型。在用于胶囊内窥镜的WPT平台上,对提出的模型进行了验证,并分析了放大器的设计参数与其特性之间的关系。在给定的占空比下,得出具有最高效率和安全电压应力的设计参数,该条件称为“最佳子条件”。在0.097占空比下,放大器的效率可以达到99.3%的最高值。此外,在占空比为0.5的情况下,最佳子条件的测量效率可以达到90.8%,比标称条件的效率高15.2%。然后,进行了带有接收单元的WPT实验,以验证优化放大器的可行性。一般而言,本文提出的优化方法可以确定生物医学植入物WPT系统中E类放大器的设计参数。

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