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Load Estimation of A Series-Series Tuned Wireless Power Transfer System

机译:负载估计系列调谐无线电力传输系统

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For an inductive wireless power transfer system, developing a high-performance controller is very challenging. Because the transmitter cannot directly sense the receiver-side voltage and currents, many conventional systems use wireless communication to feedback receiver-side information to the transmitter-side controller. However, because of delay and frequent data loss of the wireless communication causes significant problem in control. Using a synchronous reference frame model of a series-series tuned inductive power transfer system which was proposed in a previous research, receiver-side voltage and current observers for d- and q-axis currents are proposed in this study. Based on the relationship between d- and q-axis currents of the transmitter and receiver, Luenberger-style observers are developed. Using a simulation software, MATLAB/SIMULINK, estimation performance of the proposed observers are evaluated. It was found that estimated d- and q-axis currents of the receiver follow well the actual d- and q-axis currents of the receiver within 1 ms. Also, estimated voltages of the receiver follow the actual voltages within 1 ms under the step load change.
机译:对于电感无线电力传输系统,开发高性能控制器非常具有挑战性。因为发射机不能直接感测接收器侧电压和电流,所以许多传统系统使用无线通信到反馈接收器侧信息到发射器侧控制器。但是,由于延迟和频繁的数据丢失无线通信导致控制中的重大问题。使用在先前的研究中提出的串联级调谐电力传输系统的同步参考帧模型,在本研究中提出了用于D和Q轴电流的接收侧电压和电流观察者。基于发射器和接收器的D和Q轴电流之间的关系,开发了Luenberger式的观察者。使用仿真软件,MATLAB / SIMULINK,所提出的观察者的估计性能进行了评估。发现接收器的估计D和Q轴电流良好地遵循1ms内接收器的实际D和Q轴电流。此外,接收器的估计电压在步骤负载变化下遵循1ms内的实际电压。

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