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Efficiency Modeling of Class-E Power Oscillators for Wireless Energy Transfer

机译:电力振荡器对无线能量转移的效率建模

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Wireless energy transfer is employed in different applications such as recharging of electrical car battery, implanted biosystems and wireless sensor network nodes. In these applications, the efficiency in the energy transfer process is a key issue, requiring careful design and correct device, circuit and system modeling. In this paper, we present accurate expressions for efficiency calculation of class-E power oscillators targeting an inductive link for wireless energy powering. The model includes the influence of the load resistance variations due to changes on the magnetic coupling between the coils of the link. Moreover, we compare the results obtained from the developed model with those obtained from simulation and measurement of a class-E power oscillator operating at 125 kHz.
机译:在不同的应用中采用无线能量传输,例如电动汽车电池的再充电,植入的生物系统和无线传感器网络节点。在这些应用中,能源转移过程中的效率是一个关键问题,需要仔细设计和正确的设备,电路和系统建模。在本文中,我们提供了针对无线能量供电的电感链路的E类功率振荡器效率计算的准确表达。该模型包括由于链路线圈之间的磁耦合的变化而导致的负载电阻变化的影响。此外,我们将从开发模型中获得的结果与从模拟和测量值的仿真和测量在125 kHz工作的C类电源振荡器中进行比较。

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