一种基于动态变化voronoi图的FS-MPC开关损耗降低策略

G. Mirzaeva, G. Goodwin, C. Townsend
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引用次数: 2

摘要

有限集模型预测控制(FS-MPC)是一种强大而流行的电力电子变流器控制策略。FS-MPC的一个重要方面是在跟踪给定参考时限制开关损耗。这通常是通过在成本函数中包括开关损失和跟踪误差的显式度量来实现的。对于这两种不同的测量方法,通常通过试错法分配适当的加权系数。本文提出了一种新颖且非常有效的方法来减少开关损失,而不需要在代价函数中明确地惩罚它们。这是通过虚构的电压状态来实现的,这些电压状态根据当前选择的开关状态改变其位置。本文提出了一种基于计算几何原理的实现算法,特别是Voronoi图。与标准的二次代价函数相比,该算法效率高,几乎没有额外的计算负担。它的应用大大降低了FS-MPC的开关损耗,而不会对其谐波失真造成重大影响。此外,本文还表明,该算法可以很容易地与围绕MPC的其他最新进展相结合。本文给出了大量的仿真结果,显示了所提出方法的优点,并比较了其各种选项的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple and effective strategy to reduce switching losses under FS-MPC based on dynamically changing voronoi diagrams
Finite Set Model Predictive Control (FS-MPC) is a powerful and popular strategy to control power electronic converters. One important aspect of FS-MPC is to limit switching losses while tracking a given reference. This is typically achieved by including in the cost function an explicit measure of switching losses alongside the tracking error. Appropriate weighting coefficients to these two different measures are typically assigned by trial and error. The paper proposes a novel and very effective way to reduce switching losses without penalising them explicitly in the cost function. This is achieved by virtue of fictitious voltage states, which change their positions depending on the currently chosen switching state. An implementation algorithm proposed in the paper is based on principles of computational geometry, specifically, Voronoi diagrams. The algorithm is very efficient and poses almost no additional computational burden compared to standard quadratic cost function. Its application significantly reduces switching losses of FS-MPC without a major penalty in terms of its harmonic distortion. Moreover, the paper shows that the proposed algorithm can be easily combined with other advances recently developed around MPC. The paper presents extensive simulation results showing the advantages of the proposed method and comparing the performance of its various options.
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