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DEVELOPMENT OF 1200 KV TRANSMISSION SYSTEM IN INDIA

机译:印度1200 KV输电系统的研制

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The Indian power system is developing at an accelerated pace and it is anticipated that peak demand shall increase to over 400 GW by 2022 and beyond for which total installed generation capacity of about 500 GWis envisaged. To optimally utilize the unevenly distributed energy resources and taking into account severe right of way issues, transfer of bulk power over long distance is required. Towards this, National Grid interconnecting all the five(5) regional electrical grids comprising high capacity400 kV/765 kV AC and ±500 kV HVDC system has been established. Today, National Grid with interregional capacity of about 17,000 MW is in place. Further, central grid comprising of the Northern, Western, Eastern and North-eastern Regions is operating asa single synchronous grid of 105 GW capacity and asynchronously connected to the Southern region of about 40 GW. To meet the growing power demand of various regions power transfer capacity of the inter-regional links are being enhanced continuously. In this direction, major bulk power transmission corridors comprising of high capacity 1200kV and 765 kV AC system along with ± 800 kV, 6000 MW HVDC system are being planned. However, the 1200 kV AC system being UHV system with high Surge Impedance Loading(SIL) level, generate huge reactive power especially under light load condition which poses a major challenge of reactive power management in 1200 kV AC system under different loading conditions. Major considerations for development of 1200 kVAC system and methodologies of reactive power management to ensure secure operation of 1200 kV system are discussed in this paper.
机译:印度的电力系统正在加速发展,预计到2022年,高峰需求将增加到超过400吉瓦,到此为止,预计总装机容量将达到约500 GWis。为了最佳地利用分布不均的能源,并考虑到严重的通行权问题,需要在远距离传输大功率。为此,已经建立了将包括高容量400 kV / 765 kV AC和±500 kV HVDC系统在内的所有五(5)个区域电网互连的国家电网。今天,区域间容量约为17,000 MW的国家电网已经到位。此外,由北部,西部,东部和东北地区组成的中央电网正在作为105 GW容量的单个同步电网运行,并异步连接到大约40 GW的南部地区。为了满足各个地区不断增长的电力需求,区域间链路的电力传输能力正在不断提高。为此,正在规划主要的大功率输电通道,包括高容量1200kV和765 kV交流系统以及±800 kV,6000 MW高压直流输电系统。然而,1200 kV交流系统是具有高电涌阻抗负载(SIL)水平的特高压系统,尤其在轻载条件下会产生巨大的无功功率,这对不同负载条件下1200 kV交流系统的无功功率管理提出了重大挑战。本文讨论了开发1200 kVAC系统的主要考虑因素和无功功率管理方法,以确保1200 kV系统的安全运行。

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