Active-reactive power scheduling of integrated electricity-gas network with multi-microgrids

被引:0
|
作者
Tao Jiang
Xinru Dong
Rufeng Zhang
Xue Li
Houhe Chen
Guoqing Li
机构
[1] Northeast Electric Power University,Department of Electrical Engineering
来源
Frontiers in Energy | 2023年 / 17卷
关键词
combined cooling; heating; and power (CCHP); integrated energy systems (IES); natural gas; power distribution system; gas distribution system;
D O I
暂无
中图分类号
学科分类号
摘要
Advances in natural gas-fired technologies have deepened the coupling between electricity and gas networks, promoting the development of the integrated electricity-gas network (IEGN) and strengthening the interaction between the active-reactive power flow in the power distribution network (PDN) and the natural gas flow in the gas distribution network (GDN). This paper proposes a day-ahead active-reactive power scheduling model for the IEGN with multi-microgrids (MMGs) to minimize the total operating cost. Through the tight coupling relationship between the subsystems of the IEGN, the potentialities of the IEGN with MMGs toward multi-energy cooperative interaction is optimized. Important component models are elaborated in the PDN, GDN, and coupled MMGs. Besides, motivated by the non-negligible impact of the reactive power, optimal inverter dispatch (OID) is considered to optimize the active and reactive power capabilities of the inverters of distributed generators. Further, a second-order cone (SOC) relaxation technology is utilized to transform the proposed active-reactive power scheduling model into a convex optimization problem that the commercial solver can directly solve. A test system consisting of an IEEE-33 test system and a 7-node natural gas network is adopted to verify the effectiveness of the proposed scheduling method. The results show that the proposed scheduling method can effectively reduce the power losses of the PDN in the IEGN by 9.86%, increase the flexibility of the joint operation of the subsystems of the IEGN, reduce the total operation costs by $32.20, and effectively enhance the operation economy of the IEGN.
引用
收藏
页码:251 / 265
页数:14
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