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Dynamics and Robust Control of a Grid-Connected VSC in Multiterminal DC Grids Considering the Instantaneous Power of DC- and AC-Side Filters and DC Grid Uncertainty

机译:考虑直流侧和交流侧滤波器的瞬时功率以及直流电网不确定性的多终端直流电网中并网VSC的动力学和鲁棒控制

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摘要

The electric energy sector is moving toward extensive integration of renewable and clean energy resources, energy storage units, and modern loads via highly efficient and flexible multiterminal dc grids integrated within the traditional ac grid infrastructure. A voltage-source converter (VSC) is the main technology enabling the interconnection of dc and ac grids. In such demanding applications, dc-link voltage control is crucial to maintain system stability. However, the dynamics and control of VSCs considering the instantaneous power of both ac- and dc-side filters and dc grid uncertainties are not addressed in the current literature. Furthermore, as shown in this paper, the uncertainty in the effective dc grid parameters, including filter capacitance and dc-side inductance owing to connecting/disconnecting electric devices to/from the dc grid remarkably affects the converter stability and performance. To overcome these difficulties, this paper presents 1) a detailed small-signal model of the dc-link dynamics in grid-connected VSCs considering the instantaneous power of both ac- and dc-side energy storage components, and 2) a robust optimal dc-link voltage controller. The proposed controller ensures excellent tracking performance, robust disturbance rejection, and robust performance against operating point and parameter variation with a simple fixed-parameter controller. A theoretical analysis, comparative simulation studies, and experimental results are presented to show the effectiveness of the proposed control structure.
机译:通过集成在传统交流电网基础设施中的高效灵活的多端直流电网,电力行业正朝着广泛整合可再生能源和清洁能源,储能装置和现代负载的方向发展。电压源转换器(VSC)是实现直流和交流电网互连的主要技术。在此类苛刻的应用中,直流链路电压控制对于维持系统稳定性至关重要。然而,在当前文献中未解决考虑交流侧和直流侧滤波器的瞬时功率以及直流电网不确定性的VSC的动力学和控制。此外,如本文所示,有效的直流电网参数的不确定性(包括滤波器电容和直流侧电感的产生)是由于将电气设备连接至直流电网或从直流电网断开而引起的,这极大地影响了转换器的稳定性和性能。为了克服这些困难,本文提出了1)考虑交流侧和直流侧储能组件的瞬时功率的并网VSC中直流链路动态的详细小信号模型,以及2)鲁棒的最佳直流电-link电压控制器。所提出的控制器可通过简单的固定参数控制器确保出色的跟踪性能,鲁棒的干扰抑制能力以及针对工作点和参数变化的鲁棒性能。进行了理论分析,比较仿真研究和实验结果,以证明所提出的控制结构的有效性。

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