Active power coordinated stability control system for the industrial enterprise power grid

被引:0
作者
Nie L. [1 ]
Yin Y. [1 ]
Li Z. [1 ]
Li Q. [2 ]
Liu F. [1 ]
Yang Y. [3 ]
机构
[1] NARI Group Corporation/State Grid Electric Power Research Institute, Nanjing
[2] Xingyi Electric Power Co., Ltd., Xingyi
[3] Lanzhou Longneng Electric Power Science & Technology Ltd., Lanzhou
来源
Nie, Luyan (nieluyan@sgepri.sgcc.com.cn) | 1600年 / Power System Protection and Control Press卷 / 48期
关键词
Active power coordinated stability control system; Industrial enterprise power grid; Steam turbine fast valve;
D O I
10.19783/j.cnki.pspc.190948
中图分类号
学科分类号
摘要
In the context of energy conservation and emission reduction, self-supplied power plant units and energy-using equipment of ithe ndustrial enterprise power grid show a trend of increasing single-unit capacity. While improving the energy efficiency of enterprises, it also brings new challenges to the safe and stable operation of the enterprise power grid. This paper looks at the power balance control problem faced by industrial enterprise power grid, and proposes an adjustment method for industrial load to participate in active power balance and introduces a fast closing valve as a means of stability control. Finally, an overall scheme and implementation path of an active coordination control system are proposed. The rapid response of power and load enables fine control of the industrial enterprise power grid normal production and accident emergency, and provides technical support for improving the safe and stable operation level of the enterprise power grid and enterprise economic benefits. Engineering practice in an electrolytic aluminum enterprise power grid shows that this method is feasible. © 2020, Power System Protection and Control Press. All right reserved.
引用
收藏
页码:133 / 140
页数:7
相关论文
共 23 条
  • [21] XIU Xiaoqing, LI Jianlin, HUI Dong, Capacity configuration and economic evaluation of energy storage system for grid peak load shifting, Electric Power Construction, 34, 2, pp. 1-5, (2013)
  • [22] MAGDY G, SHABIB G, ELBASET A A, Et al., Optimized coordinated control of LFC and SMES to enhance frequency stability of a real multi-source power system considering high renewable energy penetration, Protection and Control of Modern Power Systems, 3, 4, pp. 407-421, (2018)
  • [23] LUO Jianbo, DONG Xijian, CUI Xiaodan, Et al., Discussion on reliability of large scale security and stability control system, Power System Protection and Control, 46, 8, pp. 65-72, (2018)