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Fixed frequency finite-state model predictive control for indirect matrix converters with optimal switching pattern

机译:具有最佳开关模式的间接矩阵变换器的固定频率有限状态模型预测控制

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Finite States Model Predictive Control (MPC) has been recently applied to several converters topologies for the many advantages it can provide such as fast dynamics, multi-target control capabilities, easy implementation on digital control board and capability of including constraints in the control law. However, its variable switching frequency and lower steady state waveform quality, with respect to standard control plus modulator systems, represents a limitation to its applicability. Modulated Model Predictive Control (M2PC) combines all the advantages of the simple concept of MPC together with the fixed switching frequency characteristic of PWM algorithms. In particular this work focuses on the Indirect Matrix Converter (IMC), where the tight coupling between rectifier stage and inverter stage has to be taken into account in the M2PC design. This paper proposes an M2PC solution, suitable for IMC, with an optimal switching pattern to emulate the desired waveform quality features of Space Vector Modulation (SVM). In the optimal pattern, the switching sequences of the rectifier stage and inverter stage are rearranged in order to always achieve zero-current switching on the rectifier stage, thus simplifying its commutation strategy. In addition, the optimal pattern enables M2PC to produce sinusoidal source current, sinusoidal output current and maintain all desirable characteristics of MPC.
机译:有限状态模型预测控制(MPC)最近因其可提供的许多优势而应用于多种转换器拓扑,例如快速动态,多目标控制功能,易于在数字控制板上实现以及在控制法则中包含约束的功能。但是,相对于标准控制加调制器系统,其可变的开关频率和较低的稳态波形质量代表了其适用性的局限性。调制模型预测控制(M2PC)结合了MPC简单概念的所有优点以及PWM算法的固定开关频率特性。特别是,这项工作着重于间接矩阵转换器(IMC),在M2PC设计中必须考虑整流器级和逆变器级之间的紧密耦合。本文提出了一种适用于IMC的M2PC解决方案,该解决方案具有最佳的开关模式,可以模拟所需的空间矢量调制(SVM)波形质量特征。在最佳模式下,整流器级和逆变器级的开关顺序被重新安排,以便始终在整流器级上实现零电流开关,从而简化了其换向策略。此外,最佳模式使M2PC能够产生正弦源电流,正弦输出电流并保持MPC的所有理想特性。

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