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Small-signal Stability Analysis and Control System Design of a Meshed Multi-terminal High-Voltage Direct Current Grid with a Current Flow Controller

机译:带电流控制器的网状多端子高压直流电网小信号稳定性分析与控制系统设计

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摘要

A DC current flow controller can provide branch current control in a meshed multi-terminal high-voltage direct current (HVDC) grid. However, the introduction of a DC current flow controller may affect the stability of the multi-terminal HVDC. Hence, the dynamic characteristics of the multi-terminal HVDC with the DC current flow controller should be investigated. This article focuses on small-signal stability analysis of a current flow controller-equipped meshed three-terminal HVDC system. A small-signal model for the multi-terminal HVDC with the DC current flow controller is established. Based on the stability analysis of the small-signal model, a control system is designed for the DC current flow controller, fulfilling the system stability requirement. Finally, non-linear dynamic simulations on the real-time digital simulator are conducted, and simulation results are compared with a theoretical model to validate the proposed controller for the DC current flow controller. In addition, dynamic impacts of the DC current flow controller on the meshed multi-terminal HVDC grid are discussed.
机译:直流电流控制器可以在网状多端子高压直流(HVDC)网格中提供分支电流控制。但是,引入直流电流控制器可能会影响多端子HVDC的稳定性。因此,应研究带有直流电流控制器的多端子HVDC的动态特性。本文着重于对装有电流控制器的网状三端子HVDC系统的小信号稳定性分析。建立了带有直流电流控制器的多端子HVDC的小信号模型。在小信号模型稳定性分析的基础上,设计了直流电流控制器的控制系统,满足了系统的稳定性要求。最后,在实时数字仿真器上进行了非线性动态仿真,并将仿真结果与理论模型进行了比较,从而验证了所提出的直流电流控制器的有效性。此外,还讨论了直流电流控制器对网状多端子HVDC电网的动态影响。

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