An Improved Voltage Sensorless Model Predictive Direct Power Control for Vienna Rectifier

Chaoliang Dang, Fei Wang, Xiangqian Tong, Ding-I Liu, Xiaoyu Mu, Weizhang Song
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引用次数: 1

Abstract

The control system design of Vienna rectifier is inseparable from the parameters of grid voltage, which will increase the cost and complexity when using voltage sensors. Therefore, this paper proposes a grid voltage sensorless model predictive control strategy for Vienna rectifier. Firstly, the virtual flux mathematical model of Vienna rectifier is established to estimate the grid voltage. Due to the mathematical model contains integral operation, the integrator is modified to a second-order low-pass filter (LPF) by solving the problems of integral initial value and dc bias to improve the observation effect. Then, the given values of active power and reactive power of the system are obtained through the outer loop. Lastly, combined with direct power and model predictive control (DPMPC), it can quickly find the switch sequence of tracking target. A simplified vector selection is also used to the system to reduce the computational complexity. Thus, it is verified the correctness of the theoretical analysis, and the results shows that the proposed model predictive direct power control has good steady-state and dynamic performance.
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一种改进的维也纳整流器无电压传感器模型预测直接功率控制
维也纳整流器的控制系统设计离不开电网电压参数,在使用电压传感器时会增加成本和复杂性。为此,本文提出了一种维也纳整流器无电网电压传感器模型预测控制策略。首先,建立维也纳整流器的虚磁通数学模型,对电网电压进行估计。由于数学模型中包含积分运算,通过解决积分初值和直流偏置问题,将积分器修改为二阶低通滤波器(LPF),提高观测效果。然后,通过外环得到系统的有功功率和无功功率的给定值。最后,结合直接功率和模型预测控制(DPMPC),可以快速找到跟踪目标的切换顺序。采用简化的矢量选择方法,降低了计算复杂度。从而验证了理论分析的正确性,结果表明所提出的模型预测直接功率控制具有良好的稳态和动态性能。
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