Page 70 - 《中国电力》2026年第5期
P. 70
2026 年 第 59 卷
LI Zhengxi, CHEN Laijun, ZHOU Wanpeng, et al. A low-carbon identification method for distribution networks based on reclosing-
scheduling strategy for electricity-heat-hydrogen integrated energy phase active power[J]. Automation of Electric Power Systems, 2024,
systems considering equivalent energy storage[J]. Distributed 48(15): 151–159.
Energy, 2025, 10(6): 62–74. [32] 罗旭恒, 蔡志文, 曾光辉, 等. 基于共模功率的交直流混合配电网单
[26] 康海鹏, 张衡, 张沈习, 等. 基于源-网-荷-储多类型资源协同的连锁 极接地故障识别方法 [J]. 广东电力, 2023, 36(2): 66–75.
故障阻断方法 [J]. 电力系统自动化, 2026, 50(1): 143–156. LUO Xuheng, CAI Zhiwen, ZENG Guanghui, et al. Single-pole
KANG Haipeng, ZHANG Heng, ZHANG Shenxi, et al. Cascading grounding fault identification method based on common mode power
failure blocking method based on coordination of multiple types of in AC/DC hybrid distribution system[J]. Guangdong Electric Power,
source-grid-load-storage resources[J]. Automation of Electric Power 2023, 36(2): 66–75.
Systems, 2026, 50(1): 143–156. [33] 贺世庚, 杨理斌, 喻锟, 等. 基于馈线功率的配电网对地参数测量与
[27] 符林贝, 王海生, 李中中, 等. 考虑用户侧共享储能的山区微电网优 接地故障灵敏感知新方法 [J]. 湖南电力, 2023, 43(1): 50–57.
化调度策略 [J]. 浙江电力, 2025, 44(6): 50–57. HE Shigeng, YANG Libin, YU Kun, et al. A new method of ground
FU Linbei, WANG Haisheng, LI Zhongzhong, et al. An optimal parameter measurement and grounding fault sensitive perception for
scheduling strategy for mountainous microgrids considering user-side distribution network based on feeder power[J]. Hunan Electric
shared energy storage[J]. Zhejiang Electric Power, 2025, 44(6): Power, 2023, 43(1): 50–57.
50–57. [34] 冯侃, 魏立保, 吴兆彬, 等. 基于集群划分的含高比例户用光伏配电
[28] 彭钢, 寇启龙, 方涛, 等. 考虑新能源消纳率的主动配电网储能优化 网电压控制研究 [J]. 综合智慧能源, 2025, 47(2): 60–70.
配置策略 [J]. 浙江电力, 2025, 44(1): 84–94. FENG Kan, WEI Libao, WU Zhaobin, et al. Research on voltage
control of distribution networks with high-proportion household
PENG Gang, KOU Qilong, FANG Tao, et al. An optimal strategy for
photovoltaics based on cluster division[J]. Integrated Intelligent
energy storage allocation in active distribution networks considering
Energy, 2025, 47(2): 60–70.
new energy consumption rates[J]. Zhejiang Electric Power, 2025,
[35] 郭国栋, 徐倩雯, 龚雁峰. 考虑需求响应的互联交直流混合微电网
44(1): 84–94.
[29] 江璐, 万忠杨, 单体华, 等. 考虑电网承载能力的微能源网集群共享 的分布式经济调度模型 [J]. 电测与仪表, 2023, 60(5): 116–125,
储能双层优化配置 [J]. 分布式能源, 2024, 9(6): 56–64. 153.
GUO Guodong, XU Qianwen, GONG Yanfeng. A distributed
JIANG Lu, WAN Zhongyang, SHAN Tihua, et al. Bilevel optimal
economic dispatching model for networked hybrid AC/DC
allocation of micro-energy grid cluster sharing energy storage
microgrids considering demand response[J]. Electrical Measurement
considering grid carrying capacity[J]. Distributed Energy, 2024, 9(6):
& Instrumentation, 2023, 60(5): 116–125, 153.
56–64.
[30] 李超, 李博睿, 李斌, 等. 功率方向元件在电化学储能电站接入配电 作者简介:
网中的适应性分析 [J]. 电力系统自动化, 2025, 49(11): 126–135. 唐佳杰(1998),男,通信作
LI Chao, LI Borui, LI Bin, et al. Adaptability analysis of power 者,工程师,从事电力系统运行与控
directional elements in electrochemical energy storage power stations 制研究,E-mail:942706435@qq.com;
connected to distribution networks[J]. Automation of Electric Power 袁松(1974),男,高级工程师,
Systems, 2025, 49(11): 126–135. 从事电力系统调控运行研究, E-mail:
[31] 常仲学, 李欢, 张志华, 等. 基于重合相有功功率的配电网永久性故 yuanxsong@sina.com。
障识别方法 [J]. 电力系统自动化, 2024, 48(15): 151–159.
CHANG Zhongxue, LI Huan, ZHANG Zhihua, et al. Permanent fault (责任编辑 杨彪)
66

