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Model Predictive Direct Power Control of Doubly Fed Induction Generators Under Balanced and Unbalanced Network Conditions

机译:平衡和不平衡网络条件下双馈感应发电机的模型预测直接功率控制

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摘要

Model predictive direct power control (MPDPC) has been widely studied for the control of doubly fed induction generator (DFIG) systems because of its conceptual simplicity and multivariable control ability. However, conventional MPDPC suffers from the problems of high power ripples and intensive computational effort. Furthermore, this approach presents highly distorted currents under unbalanced networks. To address the problems mentioned above, this article proposes a universal and low-complexity MPDPC, which can work effectively under both balanced and unbalanced networks. On one hand, the proposed method unifies conventional MPDPC and multiple-vector-based MPDPC under a common framework with lower complexity. The optimal vectors and their respective durations in the proposed MPDPC are obtained in a substantially more efficient manner than conventional enumeration-based MPDPC. On the other hand, a flexible power control method with a universal power compensation expression is proposed. By adding the calculated power compensation value to the prior power reference value, the proposed universal MPDPC method can be applied to unbalanced networks. Three control objects under unbalanced network conditions can be realized. Current distortion and power ripple can vary smoothly among the three objects by regulating the coefficient determining the universal power compensation value. The presented experimental results confirm the effectiveness of the proposed method.
机译:模型预测直接功率控制(MPDPC)由于其概念简单性和多变量控制能力,已被广泛研究用于双馈感应发电机(DFIG)系统的控制。但是,传统的MPDPC存在高功率纹波和大量计算工作的问题。此外,这种方法会在不平衡网络下呈现出高度失真的电流。为了解决上述问题,本文提出了一种通用且低复杂度的MPDPC,该MPDPC可以在平衡和非平衡网络下有效地工作。一方面,提出的方法在较低复杂度的通用框架下将传统的MPDPC和基于多向量的MPDPC统一起来。与传统的基于枚举的MPDPC相比,所建议的MPDPC中的最佳矢量及其各自的持续时间以实质上更有效的方式获得。另一方面,提出了一种具有通用功率补偿表达式的灵活功率控制方法。通过将计算出的功率补偿值与先前的功率参考值相加,可以将所提出的通用MPDPC方法应用于不平衡网络。在不平衡的网络条件下可以实现三个控制对象。通过调节确定通用功率补偿值的系数,电流失真和功率纹波可以在三个对象之间平稳变化。提出的实验结果证实了该方法的有效性。

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