中国电力 ›› 2013, Vol. 46 ›› Issue (3): 9-13.DOI: 10.11930/j.issn.1004-9649.2013.3.9.4

• 电力规划 • 上一篇    下一篇

考虑电压稳定的主网无功规划方案及仿真计算

田鑫1, 牛新生1, 曹增功2   

  1. 1. 山东电力经济技术研究院,山东 济南 250001;
    2. 山东电力集团公司,山东 济南 250001
  • 收稿日期:2012-10-25 出版日期:2013-03-05 发布日期:2015-12-10
  • 作者简介:田鑫(1985—),男,山东济宁人,硕士,从事电网规划、无功优化及系统稳定研究。E-mail: aatianxin@163.com

Main Grid Reactive Planning and Simulation Considering Voltage Stability

TIAN Xin1, NIU Xin-sheng1, CAO Zeng-gong2   

  1. 1. Shandong Electric Power Economic and Technological Research Institute, Jinan 250001, China;
    2. Shandong Electric Power Company, Jinan 250001, China
  • Received:2012-10-25 Online:2013-03-05 Published:2015-12-10

摘要: 大规划体系是国家电网公司主推的五大体系之一,是其余四大体系建设的前提和保障。无功电压规划作为电网规划重要的组成部分,是保障地区电网稳定、可靠、经济运行的基础。以山东“十二五”500 kV输电网无功规划为例,计及外电入鲁等条件,在无功补偿设备的配置基础上,进行了山东电网主网架的无功优化、稳定裕度及抵御扰动能力的计算,评估了主网架的电压安全水平;明确了无功配置最优投运容量,保证了主网架的安全、经济运行。为山东电网“大规划”体系建设提供理论支撑和技术支持。

关键词: 电网, 无功规划, 平均电压稳定裕度, 原-对偶内点法, 最优补偿

Abstract: As one of the five big systems of the State Grid Corporation of China, the“big” planning system is the premise and guarantee of other four big systems. The reactive voltage planning, as a very important part of the power grid plan, is the foundation for ensuring the economic, reliable and stable operations of regional power grids. By taking the Twelfth Five-Year reactive voltage planning of the Shandong Grid as an example with consideration of importing electric power to Shandong Grid, a calculation was made of the Shandong main grid in terms of reactive power optimization, the stability margin and the ability to resist the interferences on the basis of reactive compensation equipment configuration; the voltage safety level of the main grid was evaluated; and the optimal capacity of reactive compensation equipments was determined to ensure the safe and economic operation of the main grid. This study provides a theoretical and technical support for the building of the “big planning” system of the Shandong Grid.

Key words: power grid, reactive power scheduling, average voltage stability margin, primal-dual interior-point method, optimal compensation

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