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An Improved Maximum Energy Efficiency Tracking Control Method for Inductive Power Transfer Systems

机译:一种改进的电感电力传输系统的最大能效跟踪控制方法

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A transmitting-side phase shift control strategy based on an improved perturbation and observation (P&O) method is proposed to achieve maximum energy efficiency tracking (MEET) for LCL-LCL compensated inductive power transfer (IPT) systems, which is based on minimizing the input dc current. In this method, the tracking process for the maximum efficiency point is divided into two stages (tracking and oscillation stage), and an adaptive perturbation step size is proposed. In the tracking stage, a large step size is set for the short time to reach the maximum efficiency point. The decreasing step size in the oscillation stage is introduced to reduce the steady state oscillation existed in the conventional method, and the corresponding state switching conditions are given. Hence, the trade-off for MEET between the convergence rate and the oscillation can be removed by adopting this method. Finally, simulation results are given to verify the effectiveness of the proposed algorithm.
机译:提出了一种基于改进的扰动和观察(P&O)方法的发射侧相移控制策略,以实现用于LCL-LCL补偿电感电力传输(IPT)系统的最大能效跟踪(相遇),这是基于最小化输入 直流电流。 在该方法中,最大效率点的跟踪处理被分成两个阶段(跟踪和振荡阶段),提出了一种自适应扰动步长。 在跟踪阶段,为短时间设定大的步长,以达到最大效率点。 引入振荡阶段中的减小的步长,以减小传统方法中存在的稳态振荡,并给出相应的状态切换条件。 因此,通过采用这种方法可以除去折磨与收敛速度和振荡之间的折衷。 最后,给出了仿真结果验证了所提出的算法的有效性。

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