Synchrophasor measurement network and its applications in Indian grid

R. B. Sharma, G. Dhole
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引用次数: 7

Abstract

Indian power sector is expanding at a high rate with present installed generation capacity has reached more than 250 GW as of 30 November 2015. Indian grid is fourth biggest in the world, transferring power using five regional grids. Due to, deregulation, competitive electricity market, expansion of transmission and distribution network, reliable electricity supply, increased applications of power electronics make the India power system more complex. Thus, forcing power system to operate closer to their limits and to utilize the existing assets more efficiently. The process of making national grid of more than 250GW capacity is also underway. For decades, traditional SCADA measurements have been providing the power system steady state information. However, monitoring, operate and control of such large power system Grid only steady state information may not be sufficient. Synchrophasor measurement technology (Wide area measurement technology) is a new term, which provides dynamic view of the grid. In order to achieve the goal of Electricity to all, Ministry of power, Government of India initiated and supported various smart grid projects. The installation of phasor measurement unit (PMU) based wide area measurement system (WAMS) is one of such major initiative. This paper summarizes the details regarding synchrophasor measurement technology planned, installed and application of PMU data in Indian grid to make the Indian grid smart.
同步相量测量网络及其在印度电网中的应用
印度电力部门正在高速扩张,截至2015年11月30日,目前的装机容量已超过250吉瓦。印度电网是世界第四大电网,通过五个地区电网输送电力。由于放松管制、竞争激烈的电力市场、输配电网络的扩大、可靠的电力供应、电力电子技术的应用增加,使得印度的电力系统更加复杂。因此,迫使电力系统更接近其极限,并更有效地利用现有资产。建设容量超过250吉瓦的国家电网的进程也在进行中。几十年来,传统的SCADA测量一直在提供电力系统的稳态信息。然而,对这样的大型电力系统进行监测、运行和控制,仅靠电网的稳态信息可能是不够的。同步相量测量技术(广域测量技术)是一个提供电网动态视图的新术语。为了实现“人人有电”的目标,印度政府电力部发起并支持了各种智能电网项目。基于相量测量单元(PMU)的广域测量系统(WAMS)的安装就是其中一个重大举措。本文综述了印度电网同步相量测量技术的规划、安装和PMU数据在印度电网中的应用,以实现印度电网的智能化。
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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