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Finite Control Set Model Predictive Control Reduced computational cost applied to a Flying Capacitor Converter

机译:有限控制装置模型预测控制降低了应用于飞行电容器转换器的计算成本

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Finite Control Set Model Predictive Control (FCS-MPC) allows to deal with non-linearities of the system and obtain a fast dynamic response. Therefore FCS-MPC is a good alternative to govern complex power converters or when fast transient operation is required. A problem about the implementation of FCS-MPC is the computational cost, which is bigger for multilevel converters. This paper proposed a new method to implement FCS-MPC reducing the necessary iterations in a 3-phase 4-level Flying Capacitor converter. Simulation results show that the proposed FCS-MPC strategy produces an effective control of the load current, while keeping balanced capacitor voltages with lower necessary iterations.
机译:有限控制集模型预测控制(FCS-MPC)允许处理系统的非线性并获得快速动态响应。因此,FCS-MPC是一个良好的替代方案,用于管理复杂功率转换器或需要快速瞬态操作时。关于FCS-MPC实现的问题是计算成本,这对于多级转换器更大。本文提出了一种实现FCS-MPC的新方法,减少了3阶段4级飞行电容器转换器中必要的迭代。仿真结果表明,所提出的FCS-MPC策略会产生有效控制负载电流,同时保持具有较低必要迭代的平衡电容电压。

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