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首页> 外文期刊>IEEE Transactions on Power Electronics >FCS-MPC Without Steady-State Error Applied to a Grid-Connected Cascaded H-Bridge Multilevel Inverter
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FCS-MPC Without Steady-State Error Applied to a Grid-Connected Cascaded H-Bridge Multilevel Inverter

机译:FCS-MPC而不会施加到网格连接的级联H桥多级逆变器上的稳态误差

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摘要

Cascaded H-bridge multilevel (CHB-ML) inverters are an attractive alternative for supplying power to ac grids as they have high reliability and offer an acceptable quality of voltage at their output terminals. In order to achieve efficient operation in these CHB-ML inverters, they must work at low switching frequencies. The finite-control set model predictive control (FCS-MPC) scheme is a very intuitive strategy for controlling this type of converter, but traditional FCS-MPC algorithms generally have a steady-state error when operating at low sampling frequencies and/or if there are parameters mismatch in the prediction model, regarding those of the real system. In this article, a grid-connected CHB-ML inverter that uses an improved FCS-MPC scheme is proposed. The proposed strategy eliminates the steady-state error in an MPC operating at low sampling frequencies and maintains correct operation when a change in the control reference occurs. Experimental results from a grid-connected CHB-ML inverter with three units (seven levels) demonstrate the feasibility of the proposal.
机译:级联H桥多电平(CHB-ML)逆变器是一种有吸引力的替代方案,用于向AC电网供电,因为它们具有高可靠性,并且在其输出端子处提供可接受的电压质量。为了在这些CHB-ML逆变器中实现有效的操作,它们必须在低开关频率下工作。有限控制设定模型预测控制(FCS-MPC)方案是控制这种转换器的非常直观的策略,但是在低采样频率下操作时,传统的FCS-MPC算法通常具有稳态误差和/或如果有关于预测模型中的参数不匹配,关于真实系统的模型。在本文中,提出了使用改进的FCS-MPC方案的电网连接的CHB-ML逆变器。所提出的策略在低采样频率下运行的MPC中消除了稳态误差,并在发生控制参考的变化时保持正确的操作。具有三个单位(七个级别)的网格连接的CHB-ML逆变器的实验结果证明了该提案的可行性。

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