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一些电力系统发表论文参考文献范文

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参考文献

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[4] 贺国伟, 肖峻, 曹加胜(He Guowei, Xiao Jun, Cao Jiasheng). 考虑分布式光伏消纳的大型城市配电网规划实践(Planning practice of large urban distribution network considering distributed photovoltaic consumption)[J]. 供用电(Distribution & Utilization), 2021, 38(10): 26–34.

[5] 杨志淳, 沈煜, 杨帆(Yang Zhichun, Shen Yu, Yang Fan). 考虑光伏消纳能力的配电网规划方案优化(Optimization of the distribution network planning scheme considering the photovoltaic consumption capacity)[J]. 电测与仪表(Electrical Measurement & Instrumentation), 2018, 55(15): 133–137.

[6] 王守相,刘栋,于潞,等(Wang Shouxiang, Liu Dong, Yu Lu, et al).考虑交通网与配电网耦合基于数据包络分析的电动汽车充电设施多阶段规划方法(DEA-based multi-stage planning method of electric vehicle charging facilities considering coupling of transportation network and distribution network)[J].电力自动化设备(Electric Power Automation Equipment),2022,42(10):100-106.

[7] 田浩, 王可庆, 俞斌, 等(Tian Hao, Wang Keqing, Yu Bin,et al). 考虑多类型负荷及风光不确定性的配电网优化规划(Optimal planning for distribution network considering multi-type load and uncertainties in wind power and photovoltaic)[J]. 电力系统及其自动化学报(Proceedings of the CSU-EPSA), 2021, 33(9): 144–150.

[8] 张旭,李阳,刘晓, 等(Zhang Xu, Li Yang, Liu Xiao, et al).含高渗透率新能源的新型交直流储能系统的配电网规划(Distribution network planning of new AC/DC energy storage system with high penetration new energy)[J].南方电网技术(Southern Power System Technology),2022,16(4):60-67.

[9] 屈高强, 李荣, 董晓晶, 等(Qu Gaoqiang, Li Rong, Dong Xiaojing, et al). 基于随机机会约束规划的有源配电网多目标规划(Multiple-objective planning of active power distribution network based on random chance constrained programming)[J]. 电力建设(Electric Power Construction), 2015, 36(11): 10–16.

[10] 刘晋源, 吕林, 高红均, 等(Liu Jinyuan, Lü Lin, Gao Hongjun, et al). 计及分布式电源和电动汽车特性的主动配电网规划(Planning of active distribution network considering characteristics of distributed generator and electric vehicle)[J]. 电力系统自动化(Automation of Electric Power Systems), 2020, 44(12): 41–48.

[11] 吴志, 刘亚斐, 顾伟, 等(Wu Zhi, Liu Yafei, Gu Wei, et al). 基于改进Benders分解的储能、分布式电源与配电网多阶段规划(A modified decomposition method for multistage planning of energy storage, distributed generation and distribution network)[J]. 中国电机工程学报(Proceedings of the CSEE), 2019, 39(16): 4705-4715.

[12] 赵海洲,陈建凯,杨海跃,等(Zhao Haizhou, Chen Jiankai, Yang Haiyue,et al).考虑传输能力的含分布式电源配电网扩展规划方法(Expansion planning method of distribution network with distributed generation considering transmission capacity)[J].电力自动化设备(Electric Power Automation Equipment),2021,41(12):70-77.

[13] 沈阳武, 熊尚峰, 沈非凡, 等(Shen Yangwu, Xiong Shangfeng, Shen Feifan, et al). 基于分布式电源有功-无功调节能力的配电网无功规划(Reactive power planning of distribution network based on active-reactive power adjustment capability of distributed generation)[J]. 电力自动化设备(Electric Power Automation Equipment), 2018, 38(12): 46–52.

[14] 章博,刘晟源,林振智,等(Zhang Bo, Liu Shengyuan, Lin Zhenzhi, et al).高比例新能源下考虑需求侧响应和智能软开关的配电网重构(Distribution network reconfiguration with high penetration of renewable energy considering demand response and soft open point)[J].电力系统自动化(Automation of Electric Power Systems),2021,45(8):86-94.

[15] 王成山, 宋关羽, 李鹏, 等(Wang Chengshan, Song Guanyu, Li Peng, et al). 考虑分布式电源运行特性的有源配电网智能软开关SOP规划方法(Optimal configuration of soft open point for active distribution network considering the characteristics of distributed generation)[J]. 中国电机工程学报(Proceedings of the CSEE), 2017, 37(7): 1889–1897.

[16] 梅生伟, 龚媛, 刘锋(Mei Shengwei, Gong Yuan, Liu Feng). 三代电网演化模型及特性分析(The evolution model of three-generation power systems and characteristic analysis)[J]. 中国电机工程学报(Proceedings of the CSEE), 2014, 34(7): 1003–1012.

[17] 鲁宗相, 黄瀚, 单葆国, 等(Lu Zongxiang, Huang Han, Shan Baoguo, et al). 高比例可再生能源电力系统结构形态演化及电力预测展望(Morphological evolution model and power forecasting prospect of future electric power systems with high proportion of renewable energy)[J]. 电力系统自动化(Automation of Electric Power Systems), 2017, 41(9): 12–18.

[18] 周孝信, 陈树勇, 鲁宗相(Zhou Xiaoxin, Chen Shuyong, Lu Zongxiang). 电网和电网技术发展的回顾与展望——试论三代电网(Review and prospect for power system development and related technologies: a concept of three-generation power systems)[J]. 中国电机工程学报(Proceedings of the CSEE), 2013, 33(22): 1-11.

[19] 谢宇翔, 张雪敏, 罗金山, 等(Xie Yuxiang, Zhang Xuemin, Luo Jinshan, et al). 新能源大规模接入下的未来电力系统演化模型(Evolution model for future power system under massive penetration of renewable energy)[J]. 中国电机工程学报(Proceedings of the CSEE), 2018, 38(2): 421-430.

[20] 鲁宗相, 李昊, 乔颖(Lu Zongxiang, Li Hao, Qiao Ying). 从灵活性平衡视角的高比例可再生能源电力系统形态演化分析(Morphological evolution of power systems with high share of renewable energy generations from the perspective of flexibility balance)[J]. 全球能源互联网(Global Energy Interconnection), 2021, 4(1): 12–18.

[21] 周越, 吴建中, 龙超, 等(Zhou Yue, Wu Jianzhong, Long Chao, et al). 端对端能源交易现状分析与展望(State-of-the-art analysis and perspectives for peer-to-peer energy trading)[J]. 工程(Engineering), 2020, 6(7):836-853.

[22] 王宏伟, 朱雪婷, 李平(Wang Hongwei, Zhu Xueting, Li Ping). 政府补贴对光伏产业创新的影响(Research on the impact of government subsidies on solar photovoltaic industry innovation)[J]. 经济管理(Business and Management Journal), 2022, 44(2): 57–72.

[23] 蒋晓华, 要鹏飞(Jiang Xiaohua, Yao Pengfei). 超导电缆的应用系统——柔性超导直流配电环网综述(Application systems of HTS—Flexible HTS DC distribution closed-loop network: an overview)[J]. 电工电能新技术(Advanced Technology of Electrical Engineering and Energy), 2017, 36(10): 32–37.

[24] 马文忠,丁安敏,周冠宇,等(Ma Wenzhong, Ding Anmin, Zhou Guanyu,et al).基于超导磁储能装置的MMC-HVDC系统直流振荡抑制方法(Superconducting magnetic energy storage device based DC oscillation mitigation method in MMC-HVDC system)[J].电力自动化设备(Electric Power Automation Equipment),2020,40(9):184-190,210.

[25] 董长贵, 周润民, 李佳颖(Dong Changgui, Zhou Runmin, Li Jiaying). 补贴政策对中国光伏装机市场的影响——基于面板数据回归的实证分析(The effect of feed-in tariff on China's photovoltaic capacity development: An empirical analysis based on panel data regression)[J]. 资源科学(Resources Science), 2021, 43(6): 1065–1076.

[26] 徐嘉斌(Xu Jiabin). 含分布式电源的配电网重构模型与方法(Network Reconfiguration Model and Method of Distribution System with Distributed Generation)[D].青岛:山东科技大学(Qingdao: Shandong University of Science and Technology),2019.

[27] 司少卿,吉兴全,张玉振,等(Si Shaoqing l Xingquan.Zhang Yznen.et al .计及柔性负荷的配电网架规划方法(Distiution metMork plamning metod incoprating fixble oads)[].中国科技论文(China Sciencepaper) , 2020,15(7):827—834.



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