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Virtual Flux Model Predictive Direct Power Control (VF-MPDPC) of AFE Rectifier with New Current Prediction Method and Negative Sequence Elimination

机译:具有新电流预测方法的AFE整流器的虚拟通量模型预测直接功率控制(VF-MPDPC)和负序列消除

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摘要

In this paper a simple method is presented in order to control a three-phase active front end (AFE) rectifier under both balanced and unbalanced network voltage conditions which consists in virtual flux based model predictive direct power control (VF-MPDPC) with a new approach on the current and power prediction. A new approach for current prediction in the unbalanced condition is proposed. The prediction procedure of the proposed method is simpler than that of the previous methods. Moreover, the influence of the negative sequence component of the grid voltage on the calculated virtual flux is compensated by using a band stop filter in orthogonal coordination. This leads to low THD of the input currents and also the unity power factor is achieved even in the network malfunction condition. Also, the method makes it possible to use the simplified balanced condition equations in the network unbalanced condition. The proposed method is verified by simulations.
机译:在本文中,提出了一种简单的方法,以便在平衡和不平衡网络电压条件下控制三相有源前端(AFE)整流器,该电压包括基于虚拟通量的模型预测直接电源控制(VF-MPDPC),其具有新的电流和功率预测的方法。提出了一种在不平衡条件下对电流预测的新方法。所提出的方法的预测过程比以前的方法更简单。此外,通过在正交协调中使用带式停止滤波器来补偿电网电压的负序列分量对计算的虚拟通量的影响。这导致输入电流的低THD,并且即使在网络故障条件下也实现了Unity功率因数。此外,该方法使得可以在网络中使用简化的平衡条件方程不平衡状态。通过模拟验证所提出的方法。

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