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High-Bandwidth and Strong Robust Current Regulation for PMLSM Drives Considering Thrust Ripple

机译:考虑推力波动的PMLSM驱动器的高带宽和强大鲁棒电流调节

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This paper presents a high-performance current controller for the permanent-magnet linear synchronous motor considering the bandwidth and disturbances caused by the parameter variation and thrust ripple. First, an improved predictive current control (PCC) scheme based on the discretized model is proposed to increase the current control bandwidth. Besides the time-delay issue, it is noteworthy that the parameter variation in the PCC method can degrade the steady-state response. Through utilizing the information of first two sampling periods, the proposed PCC strategy can overcome such two issues at the same time. Second, a new discrete-time linearization observer is designed to estimate the thrust ripple. Then, the ripple can be suppressed by injecting the estimated value into the control system. Meanwhile, the stability analysis is given by the Lyapunov stability theory. A precise test platform based on the aerostatic guideway is established, and experimental results are shown to demonstrate the effectiveness and correctness of the proposed scheme.
机译:本文提出了一种用于永磁直线同步电动机的高性能电流控制器,该控制器考虑了因参数变化和推力波动引起的带宽和干扰。首先,提出了一种基于离散模型的改进的预测电流控制(PCC)方案,以增加电流控制带宽。除了时间延迟问题之外,值得注意的是,PCC方法中的参数变化会降低稳态响应。通过利用前两个采样周期的信息,提出的PCC策略可以同时克服这两个问题。其次,设计了一个新的离散时间线性化观测器来估算推力波动。然后,可以通过将估计值注入控制系统来抑制波动。同时,通过李雅普诺夫稳定性理论给出了稳定性分析。建立了基于空气静力导轨的精密测试平台,并通过实验结果证明了该方案的有效性和正确性。

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