| 参考文献:[1]卞正富,伍小杰,周跃进,等. 煤炭零碳开采技术. 煤炭学报,2023,48(7):2613-2625.BIAN Zhengfu,WU?Xiaojie,ZHOU?Yuejin,et?al.?Coal?mining?technology?with?net?zero?carbon?emission[J].JOURNAL?OF?CHINA?COAL?SOCIETY,2023,48(7):2613?2625.[2]张少锋,李佳瑞,曹语涵,等. 西北地区煤矿与新能源融合发展实施路径研究[J]. 煤炭工程,2023,12(55):178-183.ZHANG Shaofeng,LI Jiarui,CAO Yuhan,et?al.Implementation path of integrated development of coal mines andnew energy in northwest China[J]. COAL ENGINEERING,2023,12(55):178-183.[3]梁宏博,陈泓宇,张旭彪,等. 新型储能技术进展及应用分析[J]. 水电与抽水蓄能,2024,10(2):28-33.[4]LIANG Hongbo,CHEN Hongyu,ZHANG Xubiao,et?al.Progress and application analysis of new energy storage technologies[J].HYDROPOWER AND PUMPED STORAGE,2024,10(2):28-33.[5]翟璇,王松,范小平,等.基于压缩CO2的新型储能技术研究进展[J]. 电力科技与环保,2024, 40(2):178-179.ZHAI Xuan, WANG Song, FAN Xiaoping, et al. Progress in new energy storage based on compressed carbon dioxide[J].ELECTRIC POWER TECHNOLOGY AND ENVIRONMENTAL PROTECTION, 2024, 40(2):178-190.[6]吴斌,李睿,李季,等. 压缩空气储能的定位与发展[J]. 发电设备,2023,37(5):283-286.WU Bin,LI Rui,LIJi, et al.Orientation and development of compressed air energy storage[J]. POWER EQUIPMENT,2023,37(5):283-286.[7] 张品,姚丽英,陈吉顺,等. 废弃矿井重力储能现状分析及构想[J]. 内蒙古煤炭经济,2024, 2:9-11.ZHANG Pin,YAO Liying,CHEN Jishun,et al.Analysis and conception of gravity energy storage in abandoned mines [J]. INNER MONGOLIA COAL ECONOMY,2024, 2:9-11.[8] 陈力,廖传华,王常青. 液-液二氧化碳储能系统的性能分析[J]. 化工机械,2024, 51(1):151-159;164.CHEN Li, LIAO Chuanhua, WANG Changqin.Performance analysis of liquid-liquid carbon dioxide energy storage system[J].CHEMICAL ENGINEERING & MACHINERY,2024, 51(1):151-159;164.[9] 张京业,林玉鑫,邱清泉,等. 基于斜坡和山体的重力储能技术研究进展[J]. 储能科学与技术,2024, 13(3):924-933.ZHANG Jingye, LIN Yuxin, QIU Qingquan, et al. Gravity energy storage technology based on slopes and mountains[J]. ENERGY STORAGE SCIENCE AND TECHNOLOGY, 2024, 13(3): 924-933.[10] 林俐,马笑寒,丁文敏. 计及构网型储能电站的新能源基地无功协调优化控制[J].电力系统自动化.LIN Li,MA Xiaohan,DING Wenmin. Coordinated optimal reactive power control of renewable energy base considering grid-forming energy storage station[J].AUTOMATION OF ELECTRIC POWER SYSTEMS.[11] 周霞,陈文剑,戴剑丰,解相朋.考虑分布式储能SOC均衡的光储微网黑启动协调控制策略 [J/OL].上海交通大学学报.ZHOU Xia, CHEN Wenjian, DAI Jianfeng, XIE Xiangpeng.Black-start coordinated control strategy of optical storage microgrid considering soc balance of distributed energy storage[J/OL].JOURNAL OF SHANGHAI JIAOTONG UNIVERSITY.[12] 王祺,张泽轲,郭杰帅,等.新型电力系统主动构网机理与技术路径[J].中国电机工程学报,2024, 44(2):504-516.WANG Qi, ZHANG Zeke, GUO Jieshuai,et al. Mechanism and technical path of active grid-forming of new type power system [J].PROCEEDINGS OF THE CSEE,2024, 44(2):504-516.[13] 贾景姿,曾鸣. 微电网智能运行策略研究[J]. 上海电气技术,2013, 16(4):1-5.JIA Jingzi,ZENG Ming.Research on intelligent operation strategy of microgrid[J].JOURNAL OF SHANGHAI ELECTRIC TECHNOLOGY,2013, 16(4):1-5.[14] 鲁玉普. 分布式光伏的智能微电网技术应用[J]. 集成电路应用, 2023, 40(11): 270-271.LU Yupu.application of intelligent microgrid technology for distributed photovoltaics [J].APPLICATION OF IC, 2023, 40(11): 270-271.[15] 吕志敏. 自动控制与储能技术在智能微电网中的应用[J]. 储能科学与技术,2023, 12(11):3581-3582.LU Zhiming.Application of automatic control and energy storage technology in smart microgrid[J].ENERGY STORAGE SCIENCE AND TECHNOLOGY,2023, 12(11):3581-3582.[16] 安立明. “源网荷储”一体化微电网建设 [J]. 中国电力企业管理,2024, 03.AN LIming.Construction of "source-grid-load-storage" integrated microgrid [J].ENGINEERING MANAGEMENT,2024, 03.[17] 黄荣,郭家虎. 煤矿微电网综合能量调度策略的优化[J]. 煤矿机械,2023,44(8):128-131.Huang Rong,Guo Jiahu.Optimization of comprehensive energy dispatching strategy for coal mine microgrid[J].COAL MINE MACHINERY,2023,44(8):128-131. |