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Voltage Feedforward Control with Time-Delay Compensation for Grid-Connected Converters

机译:并网转换器的带时滞补偿的电压前馈控制

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摘要

In grid-connected converter control, grid voltage feedforward is usually introduced to suppress the influence of grid voltage distortion on the converter's grid-side AC current. However, owing to the time-delay in control systems, the suppression effect of the grid voltage distortion is seriously affected. In this paper, the positive effects of the grid voltage feedforward control are analyzed in detail, and the time-delay caused by the low-pass filter (LPF) in the voltage filtering circuits and digital control are summarized. In order to reduce the time-delay effect on the performance of the feedforward control, a voltage feedforward control strategy with time-delay compensation is proposed, in which, a leading correction of the feedforward voltage is used. The optimal leading step used in this strategy is derived from analyzing the phase-frequency characteristics of a LPF and the implementation of digital control. By using the optimal leading step, the delay in the feedforward path can be further counteracted so that the performance of the feedforward control in terms of suppressing the influence of grid voltage distortion on the converter output current can be improved. The validity of the proposed method is verified through simulation and experiment results.
机译:在并网逆变器控制中,通常会引入电网电压前馈,以抑制电网电压畸变对转换器电网侧交流电流的影响。然而,由于控制系统中的时间延迟,严重影响了电网电压畸变的抑制效果。本文详细分析了电网电压前馈控制的积极作用,总结了电压滤波电路中的低通滤波器(LPF)和数字控制引起的时延。为了减少时间延迟对前馈控制性能的影响,提出了一种具有时间延迟补偿的电压前馈控制策略,其中使用了前馈电压的超前校正。通过分析LPF的相频特性和数字控制的实现,可以得出此策略中使用的最佳领先步骤。通过使用最佳提前步骤,可以进一步抵消前馈路径中的延迟,从而可以在抑制电网电压畸变对转换器输出电流的影响方面改善前馈控制的性能。仿真和实验结果验证了该方法的有效性。

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