[1] 李坚, 吴亮红, 张红强, 等. 基于排序交叉优化算法的冷热电联供微电网经济调度[J]. 电力系统保护与控制, 2021, 49(18): 137–145 LI Jian, WU Lianghong, ZHANG Hongqiang, et al. Microgrid economic dispatch of combined cooling, heating and power based on a rank pair learning crisscross optimization algorithm[J]. Power System Protection and Control, 2021, 49(18): 137–145 [2] 朱翰超, 马蕊. 考虑需求侧管理的冷热电联供微电网优化配置方法[J]. 电力系统保护与控制, 2019, 47(2): 139–146 ZHU Hanchao, MA Rui. Optimal configuration method of CCHP microgrid considering demand side management[J]. Power System Protection and Control, 2019, 47(2): 139–146 [3] 黄柯蒙, 刘继春. 计及需求响应和热电联产的多微电网联盟优化调度方法[J]. 智慧电力, 2021, 49(6): 107–115 HUANG Kemeng, LIU Jichun. Optimal dispatch method of multi-microgrid alliance considering demand response & CHP[J]. Smart Power, 2021, 49(6): 107–115 [4] 张双乐, 李鹏, 陈超, 等. 基于改进变尺度混沌优化算法的微网优化运行[J]. 电力自动化设备, 2013, 33(1): 70–74 ZHANG Shuangle, LI Peng, CHEN Chao, et al. Economic operation of microgrid based on improved mutative scale chaotic optimization[J]. Electric Power Automation Equipment, 2013, 33(1): 70–74 [5] 王新刚, 艾芊, 徐伟华, 等. 含分布式发电的微电网能量管理多目标优化[J]. 电力系统保护与控制, 2009, 37(20): 79–83 WANG Xingang, AI Qian, XU Weihua, et al. Multi-objective optimal energy management of microgrid with distributed generation[J]. Power System Protection and Control, 2009, 37(20): 79–83 [6] 牛铭, 黄伟, 郭佳欢, 等. 微网并网时的经济运行研究[J]. 电网技术, 2010, 34(11): 38–42 NIU Ming, HUANG Wei, GUOJIA Huan, et al. Research on economic operation of grid-connected microgrid[J]. Power System Technology, 2010, 34(11): 38–42 [7] 魏会东, 吴静怡, 王如竹. 楼宇级冷热电联产系统的应用分析[J]. 建筑科学, 2007, 23(2): 31–36 WEI Huidong, WU Jingyi, WANG Ruzhu. Analysis of CCHP system applied in a building[J]. Building Science, 2007, 23(2): 31–36 [8] MAGO P J, CHAMRA L M. Analysis and optimization of CCHP systems based on energy, economical, and environmental considerations[J]. Energy and Buildings, 2009, 41(10): 1099–1106. [9] LIU M X, SHI Y, FANG F. A new operation strategy for CCHP systems with hybrid chillers[J]. Applied Energy, 2012, 95: 164–173. [10] 张士杰, 李宇红, 叶大均. 燃机热电冷联供自备电站优化配置研究[J]. 中国电机工程学报, 2004, 24(10): 183–188 ZHANG Shijie, LI Yuhong, YE Dajun. Optimal planning of a gas turbine CCHP plant[J]. Proceedings of the CSEE, 2004, 24(10): 183–188 [11] 郭力, 许东, 王成山, 等. 冷电联供分布式供能系统能量优化管理[J]. 电力系统自动化, 2009, 33(19): 96–100 GUO Li, XU Dong, WANG Chengshan, et al. Energy optimization and management of combined cooling and power distributed energy supply system[J]. Automation of Electric Power Systems, 2009, 33(19): 96–100 [12] 姜欣, 陈红坤, 熊虎, 等. 基于预测误差不确定性的规模化间歇式电源机组组合研究[J]. 电网技术, 2014, 38(9): 2455–2460 JIANG Xin, CHEN Hongkun, XIONG Hu, et al. A prediction error uncertainty based day-ahead unit commitment of large-scale intermittent power generation[J]. Power System Technology, 2014, 38(9): 2455–2460 [13] 艾欣, 刘晓. 基于可信性理论的含风电场电力系统动态经济调度[J]. 中国电机工程学报, 2011, 31(增刊1): 12–18 AI Xin, LIU Xiao. Dynamic economic dispatch for wind farms integrated power system based on credibility theory[J]. Proceedings of the CSEE, 2011, 31(S1): 12–18 [14] 盛四清, 孙晓霞. 考虑节能减排和不确定因素的含风电场机组组合优化[J]. 电力系统自动化, 2014, 38(17): 54–59 SHENG Siqing, SUN Xiaoxia. Unit commitment optimization containing wind farms considering energy saving, emission reduction and uncertainties[J]. Automation of Electric Power Systems, 2014, 38(17): 54–59 [15] TALARI S, YAZDANINEJAD M, HAGHIFAM M R. Stochastic-based scheduling of the microgrid operation including wind turbines, photovoltaic cells, energy storages and responsive loads[J]. IET Generation, Transmission & Distribution, 2015, 9(12): 1498–1509. [16] NGUYEN D T, LE L B. Risk-constrained profit maximization for microgrid aggregators with demand response[J]. IEEE Transactions on Smart Grid, 2015, 6(1): 135–146. [17] BATTISTELLI C, BARINGO L, CONEJO A J. Optimal energy management of small electric energy systems including V2 G facilities and renewable energy sources[J]. Electric Power Systems Research, 2012, 92: 50–59. [18] NIKNAM T, GOLESTANEH F, MALEKPOUR A. Probabilistic energy and operation management of a microgrid containing wind/photovoltaic/fuel cell generation and energy storage devices based on point estimate method and self-adaptive gravitational search algorithm[J]. Energy, 2012, 43(1): 427–437. [19] 刘宝碇, 赵瑞清. 随机规划与模糊规划[M]. 北京: 清华大学出版社, 2004. [20] XU C X, XU F H, LI M, et al. Dynamic environmental economic dispatch model of combined cooling heating and power microgrid[C]//2018 2 nd IEEE Conference on Energy Internet and Energy System Integration (EI2). Beijing, China. IEEE, 2018: 1–6. [21] 王金全, 黄丽, 杨毅. 基于多目标粒子群算法的微电网优化调度[J]. 电网与清洁能源, 2014, 30(1): 49–54 WANG Jinquan, HUANG Li, YANG Yi. Optimal dispatch of microgrid based on multi-objective particle swarm optimization[J]. Power System and Clean Energy, 2014, 30(1): 49–54 [22] 吴雄, 王秀丽, 王建学, 等. 微网经济调度问题的混合整数规划方法[J]. 中国电机工程学报, 2013, 33(28): 1–9 WU Xiong, WANG Xiuli, WANG Jianxue, et al. Economic generation scheduling of a microgrid using mixed integer programming[J]. Proceedings of the CSEE, 2013, 33(28): 1–9 [23] 刘小聪, 王蓓蓓, 李扬, 等. 智能电网下计及用户侧互动的发电日前调度计划模型[J]. 中国电机工程学报, 2013, 33(1): 30–38 LIU Xiaocong, WANG Beibei, LI Yang, et al. Day-ahead generation scheduling model considering demand side interaction under smart grid paradigm[J]. Proceedings of the CSEE, 2013, 33(1): 30–38 [24] 翟俊义, 任建文, 周明, 等. 含风电电力系统的多时间尺度模糊机会约束动态经济调度模型[J]. 电网技术, 2016, 40(4): 1094–1099 ZHAI Junyi, REN Jianwen, ZHOU Ming, et al. Multi-time scale fuzzy chance constrained dynamic economic dispatch model for power system with wind power[J]. Power System Technology, 2016, 40(4): 1094–1099
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