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Dynamic modelling and interaction analysis of multi-terminal VSC-HVDC grids through an impedance-based approach

机译:通过基于阻抗的方法对多端子VSC-HVDC电网进行动态建模和相互作用分析

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摘要

This paper presents an impedance-based interaction and stability analysis of multi-terminal HVDC systems. First, an analytical derivation procedure is presented to obtain the feedback impedance models of a voltage source converter (VSC) as a subsystem, with particular interest on the DC side impedance. Subsequently, in addition to the impedance models of other subsystems, an impedance aggregation method is applied to derive the dynamic closed-loop impedance matrix of the system considering the interconnected structure of the grid. Given the closed-loop impedance matrix, multi-input multi-output (MIMO) relative gain array (RGA) formulation is proposed to analyse nodal interactions between converters and the network. Furthermore, the impedance ratio matrix is proposed for HVDC stability analysis based on impedance models. Remarkably, these formulations are derived compactly without any knowledge of the internal states of any converter and therefore allows the ease of interoperability analysis. Finally, the impact of control architecture and strategy on the dynamic responses, interaction, and stability analysis from an impedance perspective is conducted as a case study. The analysis is done in the frequency domain and validated with the physical model of a three-terminal DC test grid built in Simscape (TM) MATLAB/Simulink (R).
机译:本文介绍了基于阻抗的多端子HVDC系统的相互作用和稳定性分析。首先,提出了一种解析推导程序,以获取作为子系统的电压源转换器(VSC)的反馈阻抗模型,其中特别关注DC侧阻抗。随后,除了其他子系统的阻抗模型之外,考虑到网格的互连结构,采用阻抗聚合方法来导出系统的动态闭环阻抗矩阵。给定闭环阻抗矩阵,提出了多输入多输出(MIMO)相对增益阵列(RGA)公式,以分析转换器与网络之间的节点相互作用。此外,基于阻抗模型,提出了用于高压直流输电稳定性分析的阻抗比矩阵。值得注意的是,这些公式是紧凑的,无需任何转换器的内部状态的知识,因此可以轻松进行互操作性分析。最后,作为案例研究,从阻抗的角度进行了控制体系结构和策略对动态响应,相互作用和稳定性分析的影响。该分析是在频域中完成的,并使用Simscape(TM)MATLAB / Simulink(R)中内置的三端DC测试网格的物理模型进行了验证。

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