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Closed-loop SHE-PWM technique for power converters through Model Predictive Control

机译:通过模型预测控制实现功率转换器的闭环SHE-PWM技术

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In this work, a Model Predictive Control (MPC) strategy that combines Finite-Control-Set MPC (FCS-MPC) with Selective Harmonic Elimination (SHE) modulation pattern in its formulation is proposed to govern power converters. The key idea here is to define a desired steady-state in terms of the converter current and voltage. To do this, based on the converter current (system state) reference, an associated predefined SHE pattern is used as control input reference. Both system state and control references are included in the cost function. Therefore, during transients, the resulting predictive controller prefers to track the converter current while preserving the SHE pattern during steady-state. Thus, a fast dynamic response can be achieved throughout transients while a predefined voltage and current spectrum with low commutation frequency is obtained in steady-state by adjusting only the weighting factor of the cost function. Simulation results of the proposed SHE-MPC strategy when governing a Cascaded H-Bridge (CHB) converter are presented to highlight the benefits of the proposed predictive controller.
机译:在这项工作中,提出了一种模型预测控制(MPC)策略,该策略在其制定中将有限控制集MPC(FCS-MPC)与选择性谐波消除(SHE)调制模式相结合。此处的关键思想是根据转换器电流和电压定义所需的稳态。为此,基于转换器电流(系统状态)参考,将关联的预定义SHE模式用作控制输入参考。成本函数中包含系统状态参考和控制参考。因此,在瞬态期间,最终的预测控制器更喜欢跟踪转换器电流,同时在稳态期间保留SHE模式。因此,可以在整个瞬态过程中实现快速的动态响应,而仅通过调整成本函数的加权因子就可以在稳态下获得具有低换向频率的预定义电压和电流频谱。提出了在控制级联H桥(CHB)转换器时所提出的SHE-MPC策略的仿真结果,以突出所提出的预测控制器的优势。

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