基于预测电压控制器的动态电压恢复-多电平逆变器

H. N. Tran, P. Q. Dzung, N. A. Le, T. Nguyen
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引用次数: 5

摘要

本文介绍了一种用于动态电压恢复器的多电平逆变器的电压预测控制器,该控制器能够动态保护敏感负载免受电网电压下降的影响。通过锁相环检测电网电压的相位和幅值,然后与负载参考电压进行比较,得到补偿电压。使用带输出LC滤波器的三相NPC逆变器产生交流电压,通过注入变压器注入负载以补偿凹陷电压。提出了一种基于预测控制器产生高质量补偿电压的新方法。建立了NPC逆变器和LC滤波器的系统模型,建立了下一次采样时补偿电压和直流链路电压电容未来值的计算方程。然后,选择使补偿电压和直流链路电容误差都最小的最优电压矢量作为NPC逆变器的下一个开关状态。仿真结果验证了理论分析的正确性。当电压跌落时,补偿电压几乎是正弦的,负载电压始终稳定,THD小于2%。
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Dynamic voltage restorer-multilevel inverter based on predictive voltage controller
This paper introduces a predictive voltage controller for multilevel inverter used in Dynamic Voltage Restorer, which is able to protect a sensitive load against grid voltage sags dynamically. The compensated voltages are obtained by using Phase-Lock Loop to detect the phase and the magnitude of the grid voltage then compare to the load reference voltage. A three-phase NPC inverter with output LC filter is used to generate the ac voltage that will be injected to the load via injection transformer to compensate sag voltages. A new method to generate very high quality compensated voltages based on predictive controller will be presented. The model of the systems include NPC inverter and LC filter are built to establish the equations that can be applied to calculate the future values of the compensated voltage and the dc link voltage capacitor at the next sampling time. After that, the optimal voltage vectors that minimize both the compensated voltage and the dc link capacitor errors will be chosen for the next switching state of the NPC inverter. Obtained simulation results verified the theoretical analysis. The compensated voltage is almost sinusoidal and the load voltage is always constant with THD lower than 2% when facing voltage sags.
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