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Control of indirect matrix converter based on finite state machine

机译:基于有限状态机的间接矩阵转换器控制

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In this paper, in order to simplify the control of indirect matrix converter (IMC) and ensure the reliability of it, the theory of finite state machine (FSM) is employed. Essentially, power electronics system consists of limited amount of states, so FSM can be introduced to the design of power electronics control system. The topology of IMC is made up of two stages: rectifier stage and inverter stage. The modulation strategy and commutation method of each stage are analyzed respectively, and the control algorithm based on finite state machine is developed. Simulation is finished by Matlab-Stateflow. The results have verified the effectiveness of the proposed control method.
机译:在本文中,为了简化间接矩阵转换器(IMC)的控制,并确保其可靠性,采用了有限状态机(FSM)的理论。基本上,电力电子系统由有限的状态组成,因此可以将FSM引入电力电子控制系统的设计。 IMC的拓扑由两个阶段组成:整流器级和逆变器阶段。分别分析了每个阶段的调制策略和换向方法,开发了基于有限状态机的控制算法。模拟由Matlab-StateFlow完成。结果已经验证了所提出的控制方法的有效性。

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