Spot Market Mechanism for Energy Constrained Generation Units in High Proportion Renewable Energy Power System

被引:0
|
作者
Meng F. [1 ]
Zhong H. [1 ]
Xia Q. [1 ]
机构
[1] Department of Electrical Engineering, Tsinghua University, Haidian District, Beijing
来源
基金
中国国家自然科学基金;
关键词
capacity mechanism; energy constrained unit; energy storage; reservoir hydropower station;
D O I
10.13335/j.1000-3673.pst.2022.2355
中图分类号
学科分类号
摘要
It is necessary to design a reasonable market mechanism for the flexible resources which are urgently needed in the new power system. However, the cost characteristics of the energy constrained units, such as the energy storage or the reservoir hydropower stations, are significantly different from those of the traditional power sources. The spot market mechanism designed for the power system based on thermal power units is not suitable for the characteristics of the energy constrained units. Therefore, the characteristic differences of the energy constrained units are analyzed in this paper. It is found that when the scarce resources of the energy constrained units are changed from energy into power the cost is embodied in the form of energy rather than in the power. The necessity of building a new bidding mechanism for the characteristics of energy constrained units is demonstrated. On this basis, the bidding mechanism of the energy constrained units in the spot market is put forward, that is, changing from the power-based volume price curve to the energy-based volume price curve, a new clearing model of the spot market considering the energy constrained units is designed. In order to encourage energy storage to participate in the spot market, an energy storage capacity mechanism coupled with the spot market is also proposed in this paper. A numerical example verifies the effectiveness of the proposed mechanism and model. © 2023 Power System Technology Press. All rights reserved.
引用
收藏
页码:1047 / 1055
页数:8
相关论文
共 23 条
  • [1] LI Mingjie, CHEN Guoping, DONG Cun, Research on power balance of high proportion renewable energy system[J], Power System Technology, 43, 11, pp. 3979-3986, (2019)
  • [2] YANG Chunxiang, ZHANG Tianyu, ZHANG Xiaobin, Mechanism design and operation analysis of bilateral spot market in Gansu province under high renewable energy integration[J], Power System Technology, 46, 1, pp. 63-69, (2022)
  • [3] KANG Lijun, WANG Beibei, XUE Bike, Research on the balance strategy for power grid with high proportion renewable energy considering the ramping scenario coverage[J], Transactions of China Electrotechnical Society, 37, 13, pp. 3275-3288, (2022)
  • [4] YANG Jun, LI Fengting, ZHANG Gaohang, Power system planning method with high new energy penetration considering flexibility requirements[J], Power System Technology, 46, 6, pp. 2171-2181, (2022)
  • [5] SHU Yinbiao, CHEN Guoping, HE Jingbo, Building a new electric power system based on new energy sources[J], Strategic Study of CAE, 23, 6, pp. 61-69, (2021)
  • [6] JIANG Haiyang, DU Ershun, ZHU Guiping, Review and prospect of seasonal energy storage for power system with high proportion of renewable energy[J], Automation of Electric Power Systems, 44, 19, pp. 194-207, (2020)
  • [7] XUAN Zongheng, JING Zhaoxia, YE Wensheng, New energy market mechanism considering flexible state of energy in energy storage[J], Power System Technology, 46, 10, pp. 3810-3820, (2022)
  • [8] WANG Renshun, ZHAO Yu, MA Fuyuan, Operational bottleneck analysis and energy storage demand evaluation for high proportional renewable energy consumption in receiving-end grid[J], Power System Technology, 46, 10, pp. 3777-3785, (2022)
  • [9] SHEN Jianjian, WANG Yue, CHENG Chuntian, Research status and prospect of generation scheduling for hydropower-wind-solar energy complementary system[J], Proceedings of the CSEE, 42, 11, pp. 3871-3884, (2022)
  • [10] CHENG Chuntian, Function remolding of hydropower systems for carbon neutral and its key problems[J], Automation of Electric Power Systems, 45, 16, pp. 29-36, (2021)