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A generalized MPC framework for the design and comparison of VSI current controllers

机译:用于VSI电流控制器设计和比较的通用MPC框架

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摘要

Model predictive control (MPC) has been widely advocated as a design strategy for many aspects of industrial electronics. The methodology has been strongly promoted by some researchers but has also attracted criticism from others. In this context, the purpose of this paper is twofold. First, we show that many existing and popular control strategies, including finite set MPC and linear controllers [proportional integral, proportional resonant (PR)], can be viewed as special cases of MPC. Second, we show that the predictive control framework allows one to embellish these classical control architectures with novel features and to design new and advanced control architectures to address various challenges posed by power electronics applications. The findings of the paper are supported by a practical example of designing of a novel form of PR controller with superior tracking performance and delay compensation, confirmed via simulation and experiments.
机译:模型预测控制(MPC)已被广泛提倡作为工业电子产品许多方面的设计策略。该方法已被一些研究人员大力推广,但也引起了其他人的批评。在这种情况下,本文的目的是双重的。首先,我们证明了许多现有的和流行的控制策略,包括有限集MPC和线性控制器[比例积分,比例谐振(PR)],可以看作是MPC的特例。其次,我们证明了预测控制框架允许人们用新颖的特性修饰这些经典的控制体系结构,并设计出新的和先进的控制体系结构来应对电力电子应用带来的各种挑战。本文的发现得到了一个具有新颖的PR控制器设计实例的支持,该PR控制器具有出色的跟踪性能和延迟补偿,并通过仿真和实验得到了证实。

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