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An Efficient Controller for SV-PWM VSI Based on the Multivariable Structure Function

机译:基于多变量结构函数的SV-PWM VSI高效控制器

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In this paper a novel control strategy for pulse-widh modulated voltage source inverters (PWM VSI) is presented. It is based on a linear, diagonal, low order, minimum-phase, fixed, and stable multivariable controller. It is obtained via individual channel design (ICD), a new framework that allows analysis and synthesis of multivariable control systems by means of the multivariable structure function (MSF). Such controller generates the appropriate reference voltage signals for the power inverter via a space-vector PWM (SV-PWM), which in turn provides the voltage signals for the terminals of an induction motor. The theoretical principles behind this control strategy are summarised for completeness. The similarities and differences between some current loop controllers found in literature and the scheme here proposed are discussed. In order to show the ICD controller performance a digital simulation is included. Moreover, it is also shown through the MSF that the dynamical system structure is not sensible to rotor speed or parameter variations. Therefore, it is possible to design a fixed linear robust controller for the whole speed range. Such solution is feasible for engineering applications due to its simplicity and robustness.
机译:本文提出了一种新型的脉宽调制电压源逆变器(PWM VSI)控制策略。它基于线性,对角线,低阶,最小相位,固定和稳定的多变量控制器。它是通过单个通道设计(ICD)获得的,该通道是一个新框架,该框架允许通过多变量结构函数(MSF)进行多变量控制系统的分析和综合。这种控制器通过空间矢量PWM(SV-PWM)为功率逆变器生成适当的参考电压信号,该空间矢量PWM又为感应电动机的端子提供电压信号。为了完整起见,总结了此控制策略背后的理论原理。讨论了文献中发现的一些电流环路控制器与此处提出的方案之间的异同。为了显示ICD控制器的性能,包括了数字仿真。此外,通过MSF还显示出动力学系统结构对转子速度或参数变化不敏感。因此,可以为整个速度范围设计一个固定的线性鲁棒控制器。由于其简单性和鲁棒性,这种解决方案对于工程应用是可行的。

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