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Load monitoring and output voltage control for SP topology IPT system using a single-side controller without any output measurement

机译:使用单侧控制器的SP拓扑IPT系统的负载监控和输出电压控制,无需任何输出测量

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This paper presents the method to estimate load value and output voltage of the inductive power transfer (IPT) system with series-parallel (SP) compensation topology. This technique uses primary side measured variables without the need of secondary side measurement and communication devices between the circuits. In addition, the magnitude of the output voltage has been controlled by using only a single-side controller located in the primary circuit. The Phase shift (PS) control of the full-bridge inverter is used instead of the primary side DC-DC converter to regulate the output voltage. This lowers the overall system cost, size, complexity and loss compared to the conventional IPT dual-side controllers. The proposed estimation technique has been investigated through phasor analysis of the mutual inductance coupling model and also verified by the computer simulation. Performance of the proposed primary side single controller against the step change in output voltage reference and load value is shown in the simulation results. Experimental results of the output voltage control against load variation validating the viability of the proposed single-side controller.
机译:本文提出了一种采用串联-并联(SP)补偿拓扑结构来估算感应功率传输(IPT)系统的负载值和输出电压的方法。该技术使用一次侧测量变量,而无需二次侧测量和电路之间的通信设备。另外,仅通过使用位于初级电路中的单侧控制器来控制输出电压的大小。使用全桥逆变器的相移(PS)控制代替初级侧DC-DC转换器来调节输出电压。与传统的IPT双面控制器相比,这降低了总体系统成本,尺寸,复杂性和损耗。通过对互感耦合模型的相量分析对提出的估计技术进行了研究,并通过计算机仿真对其进行了验证。仿真结果显示了所提出的一次侧单控制器对输出电压基准和负载值的阶跃变化的性能。针对负载变化的输出电压控制的实验结果验证了所提出的单侧控制器的可行性。

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