Optimization strategy for microgrid storage and load coordination considering natural gas pressure energy

被引:0
|
作者
Zhang A. [1 ]
Liu A. [1 ]
Qu G. [1 ]
Yang W. [1 ]
Lin D. [2 ]
机构
[1] School of Electrical Engineering and Information, Southwest Petroleum University, Chengdu
[2] Petro China Southwest Oil & Gas Field Company, Chengdu
来源
Taiyangneng Xuebao/Acta Energiae Solaris Sinica | 2022年 / 43卷 / 07期
关键词
Coordinated scheduling; Electric power system; Microgrids; Natural gas pressure energy; Optimization;
D O I
10.19912/j.0254-0096.tynxb.2020-1216
中图分类号
学科分类号
摘要
In order to solve the pressure energy waste problem in the natural gas transmission process and improve the utilization rate of natural gas energy, this paper proposes to introduce the natural gas pressure energy power generation system into the overall dispatching scheme of the microgrid. Aiming at the heat supplement needs of the front and rear ports in the natural gas pressure energy power generation system, the air-cooled heat pump supplementary heating system in the microgrid is coupled with the pressure energy power generation system. Taking into account the pressure energy output fluctuations caused by flow fluctuations in the natural gas pipeline network and environmental factors, a micro- grid integrated load storage coordination optimization scheme was proposed to ensure efficient and stable operation of the system. Based on the above content, a microgrid optimization dispatching model considering the controllable power output cost, energy storage dispatching cost, interaction cost between microgrid and distribution network and load dispatching cost is constructed, and Yalmip toolkit is used to write the optimal dispatching program. Finally, by simulating the data of a voltage regulating station in the southwestern region, the economy and reliability of the scheme in this paper are verified. © 2022, Solar Energy Periodical Office Co., Ltd. All right reserved.
引用
收藏
页码:499 / 505
页数:6
相关论文
共 18 条
  • [1] ZHANG A A, FENG Y T, LIN D, Et al., Gas-electricity demand response model for micro-energy grid considering comprehensive utilization of natural gas pressure energy, Automation of electric power systems, 44, 8, pp. 19-33, (2020)
  • [2] CHEN Y., Theory analysis and calculation of natural gas pressure recovery electricity, Gas turbine technology, 26, 3, pp. 65-68, (2013)
  • [3] XU W D, LIU Y C, CAI Z P, Et al., Research progress and expectation on power generation technology by using pressure energy of natural gas pipeline network, Modern chemical industry, 39, 12, pp. 11-15, (2019)
  • [4] ANNA D, YULI W, YI G, Et al., Development and application of screw expander in natural gas pressure energy recovery at city gas station, Applied thermal engineering, 142, pp. 665-673, (2018)
  • [5] FU R Y., Study on post evaluation of S group natural gas pressure energy generation project, (2018)
  • [6] FARZANEH-GORD M, GHEZELBASH R, SADI M, Et al., Integration of vertical ground-coupled heat pump into a conventional natural gas pressure drop station: energy, economic and CO<sub>2</sub> emission assessment, Energy, 112, pp. 998-1014, (2016)
  • [7] HOWARD C, OOSTHUIZEN P, PEPPLEY B., An investigation of the performance of a hybrid turboexpanderfuel cell system for power recovery at natural gas pressure reduction stations, Applied thermal engineering, 31, 13, pp. 2165-2170, (2011)
  • [8] TAO J S., Research on two-stage coordination and optimization method of source storage and load for microgrid group, (2019)
  • [9] LI J, XUE Y, TIAN L, Et al., Research on optimal configuration strategy of energy storage capacity in gridconnected microgrid, Protection and control of modern power systems, 2, 1, (2017)
  • [10] YANG M, WANG J X., Optimal Scheduling of Islanded microgrid Considering Uncertain Output of Renewable Energy, Proceedings of the CSEE, 41, 3, pp. 973-984, (2021)