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曹望璋等:基于分布式梯度投影的居民区电动汽车均衡充电策略 2026 年第 4 期
YU Lei, TAN Zhukui, WANG Yang, et al. Deep reinforcement 170–174.
learning based optimization method for ordered charging of electric [34] FACCHINEI FRANCISCO , PANG JONG-SHI. Finite-dimensional
vehicle[J]. Southern Power System Technology, 2024, 18(12): variational inequalities and complementarity problems [M]. Berlin,
148–156. Germany: Springer, 2007.
[27] 郑佳俊, 段小宇, 胡泽春, 等. 组件式移动充电设施布局优化方法与 [35] 孙志颖, 李青, 张凯. 考虑活动-出行需求特性的大规模电动汽车入
投放策略 [J]. 中国电力, 2025, 58(4): 107–118. 网影响力分析 [J]. 南方电网技术, 2024, 18(12): 138–147.
ZHENG Jiajun, DUAN Xiaoyu, HU Zechun, et al. Modular mobile SUN Zhiying, LI Qing, ZHANG Kai. Influences analysis of large-
charging facility layout optimization method and deployment scale electric vehicles interconnected with power system regarding
activity-travel demand characteristics[J]. Southern Power System
strategy[J]. Electric Power, 2025, 58(4): 107–118.
[28] 颜俊, 罗宇杰, 颜安, 等. 计及用户响应特性的电动汽车充电站设备 Technology, 2024, 18(12): 138–147.
优化配置方法 [J]. 中国电力, 2025, 58(4): 140–147. [36] CALAMAIP H, MORÉ J J. Projected gradient methods for linearly
constrained problems [M]. Math Program, 1987, 23.
YAN Jun, LUO Yujie, YAN An, et al. Optimal equipment
[37] 潘廷哲, 靳丰源, 陆泳昊, 等. 智能小区电动汽车充电动态电价策略
configuration method for electric vehicle charging stations
设计 [J]. 中国电力, 2025, 58(11): 14–24, 37.
considering user response characteristics[J]. Electric Power, 2025,
PAN Tingzhe, JIN Fengyuan, LU Yonghao, et al. Design of dynamic
58(4): 140–147.
pricing strategy for electric vehicles charging in smart
[29] 苏大威, 范旖晖, 赵天辉, 等. 基于价格激励的城市公共充电站填谷
communities[J]. Electric Power, 2025, 58(11): 14–24, 37.
潜力评估 [J]. 中国电力, 2025, 58(4): 131–139.
[38] 丁屹峰, 曾爽, 张宝群, 等. 光伏-直流智能充电桩有序充电策略与
SU Dawei, FAN Yihui, ZHAO Tianhui, et al. Valley-filling potential
应用效果 [J]. 中国电力, 2024, 57(5): 70–77.
evaluation of urban public charging stations based on price
DING Yifeng, ZENG Shuang, ZHANG Baoqun, et al. Orderly
incentive[J]. Electric Power, 2025, 58(4): 131–139.
charging strategy and application effect of PV-DC intelligent EV
[30] 屈克庆, 赵登辉, 毛玲, 等. 考虑城市空间结构和用户有限理性的电
chargers[J]. Electric Power, 2024, 57(5): 70–77.
动汽车快充负荷预测 [J]. 南方电网技术, 2024, 18(10): 151–160.
[39] 戚佳金, 尹淑淙, 张良, 等. 虚拟电厂与电动汽车运营商的主从-演
QU Keqing, ZHAO Denghui, MAO Ling, et al. Fast charging load
化混合博弈调度方法 [J]. 电力系统保护与控制, 2025, 53(18):
forecasting of electric vehicles considering urban spatial structure and
131–141.
user's bounded rationality[J]. Southern Power System Technology,
QI Jiajin, YIN Shucong, ZHANG Liang, et al. A master-slave
2024, 18(10): 151–160.
evolutionary hybrid game-based scheduling method for virtual power
[31] 袁建华, 张天宇, 陈广生, 等. 基于补偿机制的电动汽车区域多维补
plants and electric vehicle operators[J]. Power System Protection and
电优化调度策略 [J]. 中国电力, 2025, 58(4): 119–130.
Control, 2025, 53(18): 131–141.
YUAN Jianhua, ZHANG Tianyu, CHEN Guangsheng, et al.
Optimization and scheduling strategy for regional multi-dimensional 作者简介:
曹望璋(1993),男,博士,助
charging of electric vehicles based on compensation mechanism[J].
理工程师,从事电力需求侧管理、负
Electric Power, 2025, 58(4): 119–130.
荷管理研究,E-mail:caowz@csg.cn;
[32] 李晓涵, 曹伟. 弹性充电需求下电动汽车调频激励机制及控制策
陆泳昊(2000),男,通信作
略 [J]. 中国电力, 2025, 58(4): 148–158.
者,博士研究生,从事电力需求侧管
LI Xiaohan, CAO Wei. Frequency regulation incentive mechanism
理研究,E-mail:louislu@stu.xjtu.edu.
and control strategy for electric vehicles under elastic charging
cn;
demand[J]. Electric Power, 2025, 58(4): 148–158.
靳丰源(1998),女,博士研究生,从事电力需求侧
[33] GLICKSBERG I L. A further generalization of the Kakutani fixed
管理、博弈论方面研究,E-mail:fychin@stu.xjtu.edu.cn。
point theorem with application to Nash equilibrium points[J].
Proceedings of the American Mathematical Society, 1952, 3(1): (责任编辑 李博)
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