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Model predictive control of three-phase Voltage Source Rectifiers under unbalanced grid voltage conditions

机译:电网电压不平衡条件下三相电压源整流器的模型预测控制

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A new indirect power control strategy based on Model Predictive Current Control (MPCC) for the three-phase Voltage Source Rectifiers (VSR) is proposed in this paper. The proposed strategy regulates the instantaneous AC-side power to ensure stable DC-side voltage under unbalanced gird voltage conditions while no Phase Locked Loop (PLL) or coordinate transformations are needed. This paper analyzes the influence of AC-side inductance on the reference currents, and deduces the direct relationship between the Grid-side current and the AC-side power with a basis of AC-side power mathematical model. To eliminate the impact of AC-side inductance on AC-side power and stabilize the AC-side power under the unbalanced input voltages, MPCC was utilized to regulate the grid-side current. Experiments on a VSR prototype were carried out to validate the effectiveness of the proposed strategy, and the results demonstrated that the ripple of DC-side voltage was reduced and the performance of VSR under unbalanced grid conditions was improved.
机译:提出了一种基于模型预测电流控制(MPCC)的三相电压源整流器(VSR)间接功率控制策略。所提出的策略可调节交流侧的瞬时功率,以确保在不平衡电网电压条件下稳定的直流侧电压,而无需锁相环(PLL)或坐标变换。本文分析了交流侧电感对参考电流的影响,并基于交流侧功率数学模型推导了电网侧电流与交流侧功率之间的直接关系。为了消除交流侧电感对交流侧电源的影响并在不平衡输入电压下稳定交流侧电源,MPCC被用来调节电网侧电流。通过在VSR原型上进行实验以验证该策略的有效性,结果表明,在不平衡电网条件下,直流侧电压的纹波得到了降低,VSR的性能得到了改善。

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