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Fast finite control set model predictive control for three-phase five-level nested neutral point piloted converter

机译:三相五电平嵌套中性点有功变频器的快速有限控制集模型预测控制

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Conventional finite control set model predictive control (FCS-MPC) for multilevel converters can realize multi-objective control and contain the nonlinear characteristics. However, conventional FCS-MPC may lead to high computational complexity and unwanted switching transition, which is not easy to implement. To solve the issues of computational burden and unwanted switching transition, this paper proposes the fast FCS-MPC for three-phase five-level nested neutral point piloted (NNPP) converter. According to the switching principle, the finite control subset of the effective candidates is obtained from all of the switching combinations, which significantly reduces the necessary iterations and computational complexity. The proposed fast FCS-MPC also avoids output level jump and unwanted switching transition. Moreover, the neutral-point voltage balance and reducing switching frequency are also taken into account in the cost function. Finally, the five-level NNPP converter simulation model is built. The simulation results verify the correctness of the proposed fast FCS-MPC.
机译:用于多电平转换器的常规有限控制集模型预测控制(FCS-MPC)可以实现多目标控制并包含非线性特性。然而,常规的FCS-MPC可能导致高计算复杂度和不期望的切换转换,这不容易实现。为了解决计算负担和不必要的切换过渡问题,本文提出了一种用于三相五电平嵌套中性点导频(NNPP)转换器的快速FCS-MPC。根据切换原理,可以从所有切换组合中获得有效候选的有限控制子集,从而显着降低了必要的迭代次数和计算复杂度。所提出的快速FCS-MPC还避免了输出电平跳变和不必要的开关转换。此外,在成本函数中还考虑了中性点电压平衡和降低的开关频率。最后,建立了五级NNPP转换器仿真模型。仿真结果验证了所提出的快速FCS-MPC的正确性。

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