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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >A Novel Universal Control Scheme for Transcutaneous Energy Transfer (TET) Applications
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A Novel Universal Control Scheme for Transcutaneous Energy Transfer (TET) Applications

机译:经皮能量转移(TET)应用的新型通用控制方案

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A key feature of future active implants will include wireless transcutaneous energy transfer (TET). A novel closed-loop control scheme is presented here for coupled resonant tank circuits that is capable of providing stable and maximally efficient power transfer under various load and disturbance conditions as well as for varying implants. The control algorithm consists of four cascaded control loops using capacitance, frequency, and voltage as the primary control variables. The innermost, D, control loop uses the primary side voltage to control the secondary side current. The C-loop uses the excitation frequency to set the optimal working point for the TET system and the secondary side tank behavior. The secondary side tank may either act as voltage or current source dependent upon the frequency setting of the primary side. The TETs transfer function is shaped by setting the primary capacitance in the B-control loop, determining the performance and transmission efficiency. The exact positioning of primary and secondary coils is determined by an online measurement of the mutual inductance M. In this paper, the D-control loop has been both simulated and realized, for the A–C loops a proof of concept is shown.
机译:未来有源植入物的关键特征将包括无线经皮能量转移(TET)。这里提出了一种用于耦合谐振回路的新颖的闭环控制方案,该方案能够在各种负载和干扰条件下以及对于变化的植入物提供稳定且最大效率的功率传输。该控制算法由四个级联控制回路组成,这些回路使用电容,频率和电压作为主要控制变量。最里面的D控制回路使用初级侧电压来控制次级侧电流。 C回路使用激励频率来设置TET系统和次级侧油箱性能的最佳工作点。取决于初级侧的频率设置,次级侧储罐可以充当电压源或电流源。通过设置B控制回路中的初级电容,确定性能和传输效率来调整TET传递函数。初级线圈和次级线圈的精确定位由互感M的在线测量确定。在本文中,已经模拟并实现了D控制回路,对于A–C回路,则显示了概念证明。

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