Design and Application of Security and Stability Control System in Matiari-Lahore HVDC Transmission Project of Pakistan

Tianyi Liu, Aiwen Xue, Yening Lai, Guangyuan Shi, Ning Sun, Yunsong Yan
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Abstract

With the operation of Matiari-Lahore HVDC, Pakistan power grid has been transformed from a 500kV pure AC grid to a hybrid AC and DC grid. With the change in the structure and scale of Pakistan power grid, there is an urgent need to analyze and study the security and stability characteristics of the grid. This paper analyzes the stability characteristics of the grid after a fault in Matiari-Lahore HVDC. It proposes stability control strategies for typical modes and each AC-DC power combination case. Based on the simulation analysis of the hybrid AC-DC grid in Pakistan, this paper presents the architecture of the security and stability control system (hereafter referred to as SSCS) to support the stable operation of the Pakistan power system. The operation mode of the security and stability control device (hereafter referred to as SSCD) is studied. The interface between SSCS and HVDC, control and protection system, is realized. The innovative SSCS was applied to the Matiari-Lahore HVDC transmission project to realize the DC fault matching cutter control strategy based on different operating conditions. At the same time, the research and application are significant to the design, development, and implementation of SSCS for other DC transmission projects.
巴基斯坦玛蒂里—拉合尔直流输电工程安全稳定控制系统设计与应用
随着Matiari-Lahore高压直流输电项目的运行,巴基斯坦电网由500kV纯交流电网转变为交直流混合电网。随着巴基斯坦电网结构和规模的变化,迫切需要对电网的安全稳定特性进行分析和研究。本文分析了马蒂亚里—拉合尔直流输电故障后电网的稳定性特征。针对典型模式和各种交直流电源组合情况,提出了稳定控制策略。本文在对巴基斯坦交直流混合电网进行仿真分析的基础上,提出了支持巴基斯坦电力系统稳定运行的安全稳定控制系统(以下简称SSCS)体系结构。研究了安全稳定控制装置(以下简称SSCD)的运行方式。实现了SSCS与高压直流控制保护系统的接口。将创新的SSCS应用于Matiari-Lahore高压直流输电工程,实现了基于不同运行工况的直流故障匹配切割机控制策略。同时,本文的研究和应用对其他直流输电工程中SSCS的设计、开发和实施具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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