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Design of Control Architecture for Stacked Low-Inertia Converters with Fast Dynamic Control

机译:快速动态控制的堆叠式低惯量变频器的控制架构设计

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Control architectures based on distributed controllers are favored in control of modular stacked converters because of their scalability, ease of installation and stable structure. However, the existing solutions are only applicable to traditional voltage source converters (VSCs) with high-inertia components, i.e., larger DC-link capacitance which are controlled with slow proportional-integral controllers. Therefore, there is no demanding requirement on the communication speed. This paper presents the challenges in the design of control architecture of low-inertia converters, such as soft-switching solid-state transformers (S4T), particularly using fast-dynamic control. It also proposes a methodology to realize the control architecture for such stacked low-inertia converters. The proposed control architecture is verified on a two-module S4T operating at 4 kV using hardware-in-loop simulation in the OPAL-RT platform and by experiments.
机译:基于分布式控制器的控制体系结构因其可伸缩性,易于安装和稳定的结构而在模块化堆叠式转换器的控制中受到青睐。然而,现有的解决方案仅适用于具有高惯性分量的传统电压源转换器(VSC),即,较大的直流母线电容,其由慢速比例积分控制器控制。因此,对通信速度没有苛刻的要求。本文介绍了低惯性转换器(例如软开关固态变压器(S4T))的控制体系结构设计中的挑战,尤其是使用快速动态控制时。它还提出了一种方法来实现这种堆叠式低惯量转换器的控制架构。使用OPAL-RT平台中的硬件在环仿真并通过实验,在4 kV下运行的两模块S4T上对提出的控制体系结构进行了验证。

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