[1] |
ZHU Xu, YANG Jun, LI Gaojunjie, DONG Xuzhu, LIU Shouwen.
Optimal Dispatching Strategy of Regional Integrated Energy System Considering Virtual Energy Storage System朱旭1,杨军1,李高俊杰1,董旭柱1,刘首文2
[J]. ELECTRIC POWER CONSTRUCTION, 2020, 41(8): 99-110.
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[2] |
ZHANG Haoyu, QIU Xiaoyan, ZHOU Shengrui, ZHAO Youlin, LI Linghao,ZHANG Kai.
Distributed Optimal Dispatch Based on Chance Constrained Goal Programming for Multi-Area Integrated Electricity-Natural Gas Energy Systems
[J]. Electric Power Construction, 2020, 41(7): 82-91.
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[3] |
WEI Zhenbo, REN Xiaolin, HUANG Yuhan.
Multi-Objective Optimal Dispatch for Integrated Energy System Considering Integrated Demand Response
[J]. Electric Power Construction, 2020, 41(7): 92-99.
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[4] |
LIN Zihan, JIANG Chenwei, CHEN Minghui, SHANG Huiyu, ZHAO Hongwei, YANG Zeng, WANG Yizheng, WEN Fushuan.
Low-Carbon Economic Operation of Integrated Energy System Considering Flexible Loads
[J]. Electric Power Construction, 2020, 41(5): 9-18.
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[5] |
LI Peng,YANG Shenbo,LI Huixuan,TIAN Chunzheng,LI Meng,TAN Zhongfu.
Optimization Scheduling Model of Park Integrated Energy System Considering Multiple Energies and Multiple Demand Responses
[J]. Electric Power Construction, 2020, 41(5): 45-57.
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[6] |
HUAN Jiajia, XIAO Yong, LU Wensheng, LIU Hong, PENG Jiaying, PAN Xianxian, LI Jifeng.
Reliability Evaluation Method for Regional Integrated Energy System Applying Complex Network Theory
[J]. Electric Power Construction, 2020, 41(4): 1-9.
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[7] |
WANG Liyan, XU Qiang, HUANG Kaiyi, WU Jian, AI Qian, ZHANG Yaxin, JIA Xuan.
A Two-Stage Stochastic Programming Method for Multi-Energy Microgrid System Considering the Uncertainty of New Energy and Load
[J]. Electric Power Construction, 2020, 41(4): 100-108.
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[8] |
FU Jianmin, YANG Bin, WANG Xiaojun, SUN Qingkai, ZHANG Yizhi, HE Jinghan, ZHANG Fang.
Planning of Integrated Energy System for High-Speed Railway Station Considering Energy Storage of Buildings
[J]. Electric Power Construction, 2020, 41(3): 13-22.
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[9] |
ZHANG Yongxin, SHEN Hong, WEN Jun.
Storage Control of Integrated Energy System for Integrated Demand Response
[J]. Electric Power Construction, 2019, 40(9): 43-51.
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[10] |
ZHANG Tao, HU Zechun, ZHANG Danyang.
Study on Optimal Capacity Planning of Building Integrated Energy System
[J]. Electric Power Construction, 2019, 40(8): 3-11.
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[11] |
CHEN Houhe,LI Wenming,ZHANG Rufeng,QIAN Yeniu.
Day-ahead Optimal Scheduling Model of Integrated Energy System in Industrial Parks Considering Energy Storage Characteristics of Cooling-supply Areas in Buildings
[J]. Electric Power Construction, 2019, 40(8): 43-50.
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[12] |
GONG Jianfeng, CAO Yuchen, HU Zhibing, CHEN Xingyi, GE Pengjiang, ZHANG Peng.
Energy Management of Industrial Park Integrated Energy System Based on Improved Genetic Algorithm
[J]. Electric Power Construction, 2019, 40(8): 51-58.
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[13] |
ZHONG Yongjie, XIE Dongliang, SUN Yonghui, ZHAI Suwei, CHANG Fugang, ZHANG Mingli.
Analysis of the Optimization of Integrated Energy System Considering Energy Subsystems and Energy Storages
[J]. Electric Power Construction, 2019, 40(8): 59-68.
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[14] |
LIU Xiaolong,LI Xinran,LIU Zhipu,LU Yinghua,LUO Zhen,LIU Mingshuang.
Study on Energy Utilization Maximization of Integrated Energy System Considering Short-term Energy Supply
[J]. Electric Power Construction, 2019, 40(8): 103-111.
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[15] |
LIU Zhipu, LI Xinran, LENG Hua, LIU Xiaolong, HUANG Keqi, SUN Rui.
Optimal IES Scheduling Considering Independent Energy Supply to Important Loads After Unplanned Off-grid
[J]. Electric Power Construction, 2019, 40(8): 112-120.
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