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Multiple Voltage Vectors Model Predictive Current Control for Single-Phase Cascaded H-Bridge Rectifiers

机译:单相级联H桥整流器的多电压矢量模型预测电流控制

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The simplification and steady-state performance issues of the model predictive control (MPC) are arising especially for multilevel converter topologies. For addressing these problems, this paper puts forward a simplified model predictive current control (MPCC) for single-phase cascaded H-bridge rectifiers, which can meet the challenge of good steady-state performance and capacitor voltage balancing. The constant switching frequency is achieved by applying predefined switching sequence. The duration of the redundant vectors is tuned by proportional-integral (PI) controller to realize capacitor voltage balancing, leading to the ease of redundant voltage vectors lookup table. Without evaluating cost function with all the voltage vectors by enumeration, redundant voltage vectors simplification and optimal switching sequence solving are utilized, which can remarkably simplify the complexity of the MPCC method. Finally, a hardware-in-loop experimental platform with DSP TMS320F28335 + RTLAB real-time simulator is developed to compare and test the traditional and proposed MPCC scheme. Experimental results are conducted to verify the validity of the proposed MPCC method.
机译:模型预测控制(MPC)的简化和稳态性能问题特别是在多电平转换器拓扑中出现。为了解决这些问题,本文提出了一种用于单相级联H桥整流器的简化模型预测电流控制(MPCC),可以满足良好的稳态性能和电容器电压平衡的挑战。恒定的开关频率通过应用预定义的开关序列来实现。冗余矢量的持续时间通过比例积分(PI)控制器进行调整,以实现电容器电压平衡,从而简化了冗余电压矢量查找表。无需通过枚举来评估所有电压矢量的成本函数,而是利用了冗余电压矢量的简化和最优开关序列的求解,可以显着简化MPCC方法的复杂性。最后,开发了具有DSP TMS320F28335 + RTLAB实时模拟器的硬件在环实验平台,以比较和测试传统和建议的MPCC方案。实验结果验证了所提出的MPCC方法的有效性。

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