针对具有开关约束条件的中性点箝位转换器的快速 FCS-MPC

IF 5.4 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Dimas A. Schuetz , Fernanda de M. Carnielutti , Mokhtar Aly , Margarita Norambuena , José Rodriguez , Humberto Pinheiro
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引用次数: 0

摘要

最近开发出了用于控制并网变流器的模型预测控制算法。然而,在优化问题中加入变流器开关约束和高计算负担是这些算法面临的一些主要挑战。因此,本文针对三相中性点钳位逆变器提出了一种快速有限控制集模型预测控制算法,该算法考虑到了逆变器的开关约束,且计算负担较低。首先,在线电压坐标中获得无约束解的矢量,以最小化电流跟踪误差。然后,作为中间步骤,将其限制为椭圆,以确保所选电压矢量是可行的,并限制开关转换。受限矢量被舍入为最近的逆变器线对线电压矢量,以便在下一个采样周期内实施。在线生成 NPC 冗余相位电压矢量,以避免潜在的破坏性开关转换。考虑到获得的冗余相电压矢量,通过最小化成本函数来平衡中性点,并在每个采样周期内最多评估两次。由于两个控制目标都是以级联顺序处理的,因此所提出的快速 FCS-MPC 避免了加权因子的设计,具有计算负担小、瞬态响应快和稳态性能好等优点。最后,介绍了硬件在环结果,将所提出的快速 FCS-MPC 与文献中介绍的其他策略进行了比较,并通过实验原型证明了所提算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast FCS-MPC for neutral-point clamped converters with switching constraints

Model Predictive Control algorithms have been recently developed for controlling grid-tied converters. However, the inclusion of the converter switching constraints in the optimization problem and the high computational burden are some of the main challenges of these algorithms. In this way, this paper proposes a Fast Finite Control Set Model Predictive Control algorithm with a low computational burden for a three-phase Neutral Point Clamped inverter considering its switching constraints. Initially, the vector with the unconstrained solution in the line-to-line voltage coordinates is obtained to minimize the current tracking error. Then, it is limited to ellipses as an intermediate step to ensure that the selected voltage vector is feasible and to restrict the switching transitions. The constrained vector is rounded to the nearest inverter line-to-line voltage vector to be implemented in the next sampling period. The NPC redundant phase-voltage vectors are generated online to avoid the potentially destructive switching transitions. The neutral point is balanced by minimizing a cost function, considering the obtained redundant phase voltage vectors, and is evaluated at most twice in each sampling period. As both control objectives are treated in a cascaded sequence, the proposed Fast FCS-MPC avoids the design of weighting factors and has the advantages of low computational burden, fast transient response, and good steady-state performance. Finally, Hardware-in-the-Loop results are presented to compare the proposed Fast FCS-MPC to other strategies presented in the literature, and the effectiveness of the proposed algorithm is also demonstrated by means of an experimental prototype.

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来源期刊
Control Engineering Practice
Control Engineering Practice 工程技术-工程:电子与电气
CiteScore
9.20
自引率
12.20%
发文量
183
审稿时长
44 days
期刊介绍: Control Engineering Practice strives to meet the needs of industrial practitioners and industrially related academics and researchers. It publishes papers which illustrate the direct application of control theory and its supporting tools in all possible areas of automation. As a result, the journal only contains papers which can be considered to have made significant contributions to the application of advanced control techniques. It is normally expected that practical results should be included, but where simulation only studies are available, it is necessary to demonstrate that the simulation model is representative of a genuine application. Strictly theoretical papers will find a more appropriate home in Control Engineering Practice''s sister publication, Automatica. It is also expected that papers are innovative with respect to the state of the art and are sufficiently detailed for a reader to be able to duplicate the main results of the paper (supplementary material, including datasets, tables, code and any relevant interactive material can be made available and downloaded from the website). The benefits of the presented methods must be made very clear and the new techniques must be compared and contrasted with results obtained using existing methods. Moreover, a thorough analysis of failures that may happen in the design process and implementation can also be part of the paper. The scope of Control Engineering Practice matches the activities of IFAC. Papers demonstrating the contribution of automation and control in improving the performance, quality, productivity, sustainability, resource and energy efficiency, and the manageability of systems and processes for the benefit of mankind and are relevant to industrial practitioners are most welcome.
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