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A hierarchical model predictive voltage control for NPC/H-bridge converters with a reduced computational burden

机译:用于NpC / H桥转换器的分层模型预测电压控制,具有减少的计算负担

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摘要

In recent years, voltage source multilevel converters are very popular in medium/high-voltage industrial applications, among which the NPC/H-Bridge converter is a popular solution to the medium/high-voltage drive systems. The conventional finite control set model predictive control (FCS-MPC) strategy is not practical for multilevel converters due to their substantial calculation requirements, especially under high number of voltage levels. To solve this problem, a hierarchical model predictive voltage control (HMPVC) strategy with referring to the implementation of g-h coordinate space vector modulation (SVM) is proposed. By the hierarchical structure of different cost functions, load currents can be controlled well and common mode voltage can be maintained at low values. The proposed strategy could be easily expanded to the systems with high number of voltage levels while the amount of required calculation is significantly reduced and the advantages of the conventional FCS-MPC strategy are reserved. In addition, a HMPVC-based field oriented control scheme is applied to a drive system with the NPC/H-Bridge converter. Both steady-state and transient performances are evaluated by simulations and experiments with a down-scaled NPC/H-Bridge converter prototype under various conditions, which validate the proposed HMPVC strategy.
机译:近年来,电压源多电平转换器在中/高压工业应用中非常受欢迎,其中NPC / H桥转换器是中/高压驱动系统的流行解决方案。常规的有限控制集模型预测控制(FCS-MPC)策略由于对多电平转换器的大量计算要求(特别是在大量电压电平下)而不实用。为了解决这个问题,提出了一种基于g-h坐标空间矢量调制(SVM)实现的分层模型预测电压控制(HMPVC)策略。通过不同成本函数的分层结构,可以很好地控制负载电流,并且可以将共模电压保持在较低的值。所提出的策略可以容易地扩展到具有高电压电平数量的系统,同时所需的计算量大大减少,并且保留了传统FCS-MPC策略的优点。此外,基于HMPVC的磁场定向控制方案已应用于带有NPC / H桥转换器的驱动系统。通过在各种条件下使用缩小的NPC / H-Bridge转换器原型进行仿真和实验来评估稳态和瞬态性能,这验证了所提出的HMPVC策略。

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