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采用等效小参量法分析 TET 系统的高效功率传输能力。

Efficient Power-Transfer Capability Analysis of the TET System Using the Equivalent Small Parameter Method.

出版信息

IEEE Trans Biomed Circuits Syst. 2011 Jun;5(3):272-82. doi: 10.1109/TBCAS.2010.2089685.

Abstract

Transcutaneous energy transfer (TET) enables the transfer of power across the skin without direct electrical connection. It is a mechanism for powering implantable devices for the lifetime of a patient. For maximum power transfer, it is essential that TET systems be resonant on both the primary and secondary sides, which requires considerable design effort. Consequently, a strong need exists for an efficient method to aid the design process. This paper presents an analytical technique appropriate to analyze complex TET systems. The system's steady-state solution in closed form with sufficient accuracy is obtained by employing the proposed equivalent small parameter method. It is shown that power-transfer capability can be correctly predicted without tedious iterative simulations or practical measurements. Furthermore, for TET systems utilizing a current-fed push-pull soft switching resonant converter, it is found that the maximum energy transfer does not occur when the primary and secondary resonant tanks are "tuned" to the nominal resonant frequency. An optimal turning point exists, corresponding to the system's maximum power-transfer capability when optimal tuning capacitors are applied.

摘要

经皮能量传输(TET)可在无需直接电气连接的情况下实现跨皮肤传输能量。它是为患者的整个生命周期提供植入式设备动力的机制。为实现最大功率传输,TET 系统在初级和次级两侧都必须谐振,这需要大量的设计工作。因此,迫切需要一种有效的方法来辅助设计过程。本文提出了一种适用于分析复杂 TET 系统的分析技术。通过采用所提出的等效小参数方法,可以以足够的精度获得系统的稳态闭式解。结果表明,可以在无需繁琐的迭代模拟或实际测量的情况下正确预测功率传输能力。此外,对于采用电流馈电推挽软开关谐振转换器的 TET 系统,发现当初级和次级谐振槽调谐到标称谐振频率时,最大能量传输不会发生。存在一个最佳转折点,对应于应用最佳调谐电容器时系统的最大功率传输能力。

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