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Modified FHA-based Diode Rectifier Representation for SN-Compensated Inductive WPT Links

机译:用于SN补偿电感WPT链路的修改基于FHA的二极管整流器表示

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Some popular applications of wireless power transfer (such as electric vehicle charging) include transmitter residing on a static platform (charging station) and a dynamic receiver (vehicle). In such applications, compensation may be excluded from the receiver in order to minimize it. If transmitter compensation is also simplified, series-none (SN) compensation topology is created. It was recently shown that classical first harmonic approximation (FHA)based analysis fails to accurately predict RMS values of system currents, thus overestimating the achievable coil-to-coil efficiency. Consequently, this paper establishes modified FHA(MFHA) equivalent circuit of SNcompensated inductive power transfer link (IWPTL) utilizing analytical expressions of primary and secondary currents based on time-domain differential equations (DE) based solution. It is shown that the outcomes of proposed MFHA and DE methods are very close, justifying the proposed methodology. Simulations and experiments based on 400V, 1.2kW SN-compensated WPTL demonstrate excellent matching, validating the presented analysis.
机译:无线电力传输(例如电动车辆充电)的一些流行应用包括驻留在静态平台(充电站)和动态接收器(车辆)上的发射器。在这种应用中,可以从接收器中排除补偿以最小化。如果还简化了发射器补偿,则会创建系列 - 无(SN)补偿拓扑。最近显示,经典的第一谐波近似(FHA)的分析不能准确地预测系统电流的RMS值,从而估计可实现的线圈到线圈效率。因此,利用基于时域微分方程(DE)基于时域微分方程的初级和二次电流的分析表达式建立了SNCompensated电感电力传输链路(IWPTL)的改进的FHA(MFHA)等效电路。结果表明,所提出的MFHA和DE方法的结果非常接近,证明所提出的方法。基于400V的模拟和实验,1.2KW SN补偿WPTL展示出色的匹配,验证所提出的分析。

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