Power Generation Technology ›› 2026, Vol. 47 ›› Issue (2): 383-394.DOI: 10.12096/j.2096-4528.pgt.260215
• Virtual Power Plant • Previous Articles
Hengjie LI1, Zunkang ZHANG1, Yun ZHOU2, Donghan FENG2, Xiping MA3
Received:2025-04-12
Revised:2026-06-20
Published:2026-04-30
Online:2026-04-21
Supported by:CLC Number:
Hengjie LI, Zunkang ZHANG, Yun ZHOU, Donghan FENG, Xiping MA. Electric Vehicle Charging Guidance Strategy Considering User Decision Preferences[J]. Power Generation Technology, 2026, 47(2): 383-394.
充电站 编号 | 经度/(°) | 纬度/(°) | 快充桩数/个 | 充电功率/kW |
|---|---|---|---|---|
| 1 | 121.435 761 | 31.030 488 | 4 | 120 |
| 2 | 121.437 324 | 31.024 187 | 3 | 120 |
| 3 | 121.438 716 | 31.032 043 | 6 | 120 |
| 4 | 121.442 952 | 31.032 809 | 3 | 120 |
| 5 | 121.445 364 | 31.027 119 | 15 | 120 |
| 6 | 121.446 612 | 31.036 348 | 6 | 120 |
Tab. 1 Charging station information in test area
充电站 编号 | 经度/(°) | 纬度/(°) | 快充桩数/个 | 充电功率/kW |
|---|---|---|---|---|
| 1 | 121.435 761 | 31.030 488 | 4 | 120 |
| 2 | 121.437 324 | 31.024 187 | 3 | 120 |
| 3 | 121.438 716 | 31.032 043 | 6 | 120 |
| 4 | 121.442 952 | 31.032 809 | 3 | 120 |
| 5 | 121.445 364 | 31.027 119 | 15 | 120 |
| 6 | 121.446 612 | 31.036 348 | 6 | 120 |
电动汽车 编号 | 经度/(°) | 纬度/(°) | 平均时间 成本/min | 平均费用 成本/元 |
|---|---|---|---|---|
| 1 | 121.444 817 | 31.037 233 | 10.57 | 52.93 |
| 2 | 121.444 861 | 31.037 296 | 48.13 | 51.55 |
| 3 | 121.444 613 | 31.036 693 | 47.97 | 41.24 |
| 4 | 121.453 379 | 31.037 606 | 63.17 | 50.86 |
| 5 | 121.453 878 | 31.037 655 | 62.22 | 49.49 |
| 6 | 121.453 588 | 31.036 732 | 49.07 | 53.61 |
| 7 | 121.447 221 | 31.039 355 | 37.12 | 51.55 |
| 8 | 121.454 439 | 31.034 745 | 39.00 | 48.80 |
| 9 | 121.445 932 | 31.038 703 | 41.15 | 54.30 |
| 10 | 121.447 353 | 31.039 620 | 30.22 | 43.30 |
Tab. 2 Historical data of some electric vehicles in test area
电动汽车 编号 | 经度/(°) | 纬度/(°) | 平均时间 成本/min | 平均费用 成本/元 |
|---|---|---|---|---|
| 1 | 121.444 817 | 31.037 233 | 10.57 | 52.93 |
| 2 | 121.444 861 | 31.037 296 | 48.13 | 51.55 |
| 3 | 121.444 613 | 31.036 693 | 47.97 | 41.24 |
| 4 | 121.453 379 | 31.037 606 | 63.17 | 50.86 |
| 5 | 121.453 878 | 31.037 655 | 62.22 | 49.49 |
| 6 | 121.453 588 | 31.036 732 | 49.07 | 53.61 |
| 7 | 121.447 221 | 31.039 355 | 37.12 | 51.55 |
| 8 | 121.454 439 | 31.034 745 | 39.00 | 48.80 |
| 9 | 121.445 932 | 31.038 703 | 41.15 | 54.30 |
| 10 | 121.447 353 | 31.039 620 | 30.22 | 43.30 |
| 成本类型 | 簇数 | ||||
|---|---|---|---|---|---|
| 3 | 4 | 5 | 6 | 7 | |
| 时间成本SHAP值 | 0.523 | 0.702 | 0.516 | 0.516 | 0.516 |
| 费用成本SHAP值 | 0.477 | 0.298 | 0.484 | 0.484 | 0.484 |
Tab. 3 SHAP values of time cost and economic cost
| 成本类型 | 簇数 | ||||
|---|---|---|---|---|---|
| 3 | 4 | 5 | 6 | 7 | |
| 时间成本SHAP值 | 0.523 | 0.702 | 0.516 | 0.516 | 0.516 |
| 费用成本SHAP值 | 0.477 | 0.298 | 0.484 | 0.484 | 0.484 |
| 用户类别 | 平均时间/min | 平均费用/元 | 频数 |
|---|---|---|---|
| A类用户 | 13.97 | 48.21 | 21 |
| B类用户 | 22.24 | 45.31 | 24 |
| C类用户 | 8.04 | 44.84 | 17 |
| D类用户 | 11.15 | 53.27 | 18 |
| E类用户 | 23.13 | 52.31 | 20 |
Tab. 4 Profiling result information
| 用户类别 | 平均时间/min | 平均费用/元 | 频数 |
|---|---|---|---|
| A类用户 | 13.97 | 48.21 | 21 |
| B类用户 | 22.24 | 45.31 | 24 |
| C类用户 | 8.04 | 44.84 | 17 |
| D类用户 | 11.15 | 53.27 | 18 |
| E类用户 | 23.13 | 52.31 | 20 |
| 用户类别 | 时间成本权重 | 费用成本权重 | 平均时间/min | 平均费用/元 |
|---|---|---|---|---|
| A类用户 | 0.556 3 | 0.443 7 | 13.97 | 48.21 |
| B类用户 | 0.225 2 | 0.774 8 | 22.24 | 45.31 |
| C类用户 | 0.525 3 | 0.474 7 | 8.04 | 44.84 |
| D类用户 | 0.892 3 | 0.107 7 | 11.15 | 53.27 |
| E类用户 | 0.563 2 | 0.436 8 | 23.13 | 52.31 |
Tab. 5 Weights of users’ charging station selection habits
| 用户类别 | 时间成本权重 | 费用成本权重 | 平均时间/min | 平均费用/元 |
|---|---|---|---|---|
| A类用户 | 0.556 3 | 0.443 7 | 13.97 | 48.21 |
| B类用户 | 0.225 2 | 0.774 8 | 22.24 | 45.31 |
| C类用户 | 0.525 3 | 0.474 7 | 8.04 | 44.84 |
| D类用户 | 0.892 3 | 0.107 7 | 11.15 | 53.27 |
| E类用户 | 0.563 2 | 0.436 8 | 23.13 | 52.31 |
| 指标 | ||
|---|---|---|
| 时间成本/min | 0 | 240 |
| 价格成本/元 | 0 | 100 |
Tab. 6 Thresholds of time cost and economic cost
| 指标 | ||
|---|---|---|
| 时间成本/min | 0 | 240 |
| 价格成本/元 | 0 | 100 |
| 策略 | 排队时间/h | 行驶时长/h | 充电费用/元 | 总体满意度 |
|---|---|---|---|---|
| 1 | 78.2 | 22.3 | 5 775.5 | 0.595 |
| 2 | 276.1 | 29.2 | 4 577.9 | 0.484 |
| 3 | 53.7 | 26.1 | 5 173.2 | 0.728 |
Tab. 7 User satisfaction under different strategies
| 策略 | 排队时间/h | 行驶时长/h | 充电费用/元 | 总体满意度 |
|---|---|---|---|---|
| 1 | 78.2 | 22.3 | 5 775.5 | 0.595 |
| 2 | 276.1 | 29.2 | 4 577.9 | 0.484 |
| 3 | 53.7 | 26.1 | 5 173.2 | 0.728 |
| 策略 | 总服务时长/h | 总费用/元 | 单位时间盈利/(元⋅h-1) |
|---|---|---|---|
| 1 | 185.2 | 5 775.5 | 31.2 |
| 2 | 345.6 | 4 577.9 | 13.2 |
| 3 | 123.5 | 5 173.2 | 41.9 |
Tab. 8 Profit per unit time of charging stations under different strategies
| 策略 | 总服务时长/h | 总费用/元 | 单位时间盈利/(元⋅h-1) |
|---|---|---|---|
| 1 | 185.2 | 5 775.5 | 31.2 |
| 2 | 345.6 | 4 577.9 | 13.2 |
| 3 | 123.5 | 5 173.2 | 41.9 |
| 场景 | 满意度 | |||||
|---|---|---|---|---|---|---|
| A类用户 | B类用户 | C类用户 | D类用户 | E类用户 | 总体 | |
| 1 | 0.75 | 0.60 | 0.70 | 0.93 | 0.71 | 0.731 |
| 2 | 0.75 | 0.59 | 0.70 | 0.93 | 0.71 | 0.728 |
| 3 | 0.75 | 0.59 | 0.70 | 0.94 | 0.71 | 0.731 |
Tab. 9 Guidance results under three typical scenarios
| 场景 | 满意度 | |||||
|---|---|---|---|---|---|---|
| A类用户 | B类用户 | C类用户 | D类用户 | E类用户 | 总体 | |
| 1 | 0.75 | 0.60 | 0.70 | 0.93 | 0.71 | 0.731 |
| 2 | 0.75 | 0.59 | 0.70 | 0.93 | 0.71 | 0.728 |
| 3 | 0.75 | 0.59 | 0.70 | 0.94 | 0.71 | 0.731 |
| 策略 | 总费用/元 | 充电桩总服务时间/h | 充电桩单位时间盈利/(元⋅h-1) | 用户平均满意度 |
|---|---|---|---|---|
| 1 | 595 493.9 | 32 147 | 18.5 | 0.22 |
| 3 | 564 262.6 | 14 976 | 37.7 | 0.61 |
Tab. 10 Profit per unit time of charging piles under different strategies
| 策略 | 总费用/元 | 充电桩总服务时间/h | 充电桩单位时间盈利/(元⋅h-1) | 用户平均满意度 |
|---|---|---|---|---|
| 1 | 595 493.9 | 32 147 | 18.5 | 0.22 |
| 3 | 564 262.6 | 14 976 | 37.7 | 0.61 |
| [1] | 刘祺,王承民,谢宁,等 .新型配电系统中考虑电动汽车差异化行为特性的充换电站规划方法[J].智慧电力,2024,52(9):18-24. |
| LIU Q, WANG C M, XIE N,et al .Charging and swapping stations planning method considering differentiated behavior characteristics of electric vehicles in new distribution system[J].Smart Power,2024,52(9):18-24. | |
| [2] | 陈腾生,杨汝泉,隋坤明,等 .考虑用户决策不确定性的电动汽车充电站用户参与度优化方法[J].电力科学与技术学报,2024,39(4):128-137. |
| CHEN T S, YANG R Q, SUI K M,et al .Optimization of user participation in electric vehicle charging stations considering uncertainty of user decision[J].Journal of Electric Power Science and Technology,2024,39(4):128-137. | |
| [3] | 庞松岭,赵海龙,张晨佳 .计及充电需求差异的电动汽车充电设施协同优化配置[J].电测与仪表,2024,61(12):171-177. doi:10.19753/i.issnlOOl-1390.2024.12.021 |
| PANG S L, ZHAO H L, ZHANG C J .Collaborative optimization configuration of electric vehicle charging facilities considering differences in charging demand[J].Electrical Measurement & Instrumentation,2024,61(12):171-177. doi:10.19753/i.issnlOOl-1390.2024.12.021 | |
| [4] | 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电优化调度策略[J].中国电力,2025,58(4):119-130. doi:10.11930/j.issn.1004-9649.202404112 |
| YUAN J H, ZHANG T Y, CHEN G S,et al .Optimization and scheduling strategy for regional multi-dimensional charging of electric vehicles based on compensation mechanism[J].Electric Power,2025,58(4):119-130. doi:10.11930/j.issn.1004-9649.202404112 | |
| [5] | 胡俊杰,潘羿,徐成明,等 .基于动态交通推演的电动汽车充电快速引导策略[J].电工技术学报,2025,40(9):2880-2896. |
| HU J J, PAN Y, XU C M,et al .Fast guidance strategy for electric vehicle charging based on dynamic traffic inference[J].Transactions of China Electrotechnical Society,2025,40(9):2880-2896. | |
| [6] | 崔露,刘世林,苗婉,等 .考虑电转氢和需求响应的风光储综合充能站优化运行策略[J].发电技术,2025,46(1):31-41. doi:10.12096/j.2096-4528.pgt.24090 |
| CUI L, LIU S L, MIAO W,et al .Optimized operation strategy of wind-solar-storage integrated charging station considering power-to-hydrogen and demand response[J].Power Generation Technology,2025,46(1):31-41. doi:10.12096/j.2096-4528.pgt.24090 | |
| [7] | 马永翔,韩子悦,闫群民,等 .考虑电动汽车充电负荷及储能寿命的充电站储能容量配置优化[J].电网与清洁能源,2024,40(4):92-101 |
| MA Y X, HAN Z Y, YAN Q M,et al .Optimization of storage capacity allocation at charging stations considering EV charging load and storage lifetime[J].Advances of Power System & Hydroelectric Engineering,2024,40(4):92-101. | |
| [8] | 庞松岭,赵雨楠,张瑞恩,等 .市场环境下计及用户响应的电动汽车充电站优化运行策略[J].电力建设,2024,45(10):59-68. |
| PANG S L, ZHAO Y N, ZHANG R E,et al .The optimal operation strategy of electric vehicle charging stations considering user response in market environment[J].Electric Power Construction,2024,45(10):59-68. | |
| [9] | 吴小汉,张谦,粟尧嘉,等 .基于区块链的私有充电桩共享平台交易策略[J].发电技术,2022,43(3):439-451. doi:10.12096/j.2096-4528.pgt.21134 |
| WU X H, ZHANG Q, SU Y J,et al .Sharing platform trading strategy of private charging pile based on blockchain[J].Power Generation Technology,2022,43(3):439-451. doi:10.12096/j.2096-4528.pgt.21134 | |
| [10] | 詹华,江昌旭,苏庆列 .基于分层强化学习的电动汽车充电引导方法[J].电力自动化设备,2022,42(10):264-272. |
| ZHAN H, JIANG C X, SU Q L .Electric vehicle charging navigation method based on hierarchical reinforcement learning[J].Electric Power Automation Equipment,2022,42(10):264-272. | |
| [11] | 杨有为,徐春梅,彭道刚,等 .动态能源与地理信息融合的光储充电站电动汽车充电路径引导[J].电力自动化设备,2024,44(2):72-80. doi:10.16081/j.epae.202303040 |
| YANG Y W, XU C M, PENG D G,et al .Charging path guidance of electric vehicles at photovoltaic-storage charging stations based on dynamic energy and geographic information fusion[J].Electric Power Automation Equipment,2024,44(2):72-80. doi:10.16081/j.epae.202303040 | |
| [12] | 江昌旭,卢玥君,邵振国,等 .基于图神经网络多智能体强化学习的电力-交通融合网协同优化运行[J].高电压技术,2023,49(11):4622-4631. doi:10.13336/j.1003-6520.hve.20221965 |
| JIANG C X, LU Y J, SHAO Z G,et al .Collaborative optimization operation of integrated electric power and traffic network based on graph neural network multi-agent reinforcement learning[J].High Voltage Engineering,2023,49(11):4622-4631. doi:10.13336/j.1003-6520.hve.20221965 | |
| [13] | LIU L, ZHOU K .Electric vehicle charging scheduling considering urgent demand under different charging modes[J].Energy,2022,249:123714. doi:10.1016/j.energy.2022.123714 |
| [14] | 刘丽军,陈昌,胡鑫,等 .基于“车-路-站-网”信息耦合的电动汽车有序充电策略[J].高电压技术,2024,50(2):693-703. |
| LIU L J, CHEN C, HU X,et al .Ordered charging strategy for electric vehicles based on the information coupling of vehicle-road-station-grid[J].High Voltage Engineering,2024,50(2):693-703. | |
| [15] | 房宇轩,胡俊杰,马文帅 .计及用户意愿的电动汽车聚合商主从博弈优化调度策略[J].电工技术学报,2024,39(16):5091-5103. |
| FANG Y X, HU J J, MA W S .Optimal dispatch strategy for electric vehicle aggregators based on stackelberg game theory considering user intention[J].Transactions of China Electrotechnical Society,2024,39(16):5091-5103. | |
| [16] | 谢龙韬,谢仕炜,陈铠悦,等 .考虑用户出行成本预算的电力-交通耦合网络充电站定价策略[J].电力系统自动化,2024,48(7):201-209. |
| XIE L T, XIE S W, CHEN K Y,et al .Pricing strategy of charging station in power-transportation coupling network considering user travel cost budget[J].Automation of Electric Power Systems,2024,48(7):201-209. | |
| [17] | 杨帅,戴朝华,郭爱,等 .考虑负荷空间均衡和充电站合作博弈的快速充电定价机制[J].电力系统自动化,2024,48(7):190-200. doi:10.7500/AEPS20230614001 |
| YANG S, DAI C H, GUO A,et al .Fast charging pricing mechanism considering load space balance and cooperative game of charging stations[J].Automation of Electric Power Systems,2024,48(7):190-200. doi:10.7500/AEPS20230614001 | |
| [18] | HE Z, HOU H, HOU T,et al .Multi-objective optimization for improving EV users’ adhesion with hybrid demand response strategy[J].Energy Reports,2023,9:316-322. doi:10.1016/j.egyr.2023.04.306 |
| [19] | 毕军,杜宇佳,王永兴,等 .基于用户综合满意度的电动汽车充电诱导优化模型[J].清华大学学报(自然科学版),2023,63(11):1750-1759. doi:10.16511/j.cnki.qhdxxb.2023.26.038 |
| BI J, DU Y J, WANG Y X,et al .Optimization model of electric vehicle charging induction based on comprehensive satisfaction of users[J].Journal of Tsinghua University (Science and Technology),2023,63(11):1750-1759. doi:10.16511/j.cnki.qhdxxb.2023.26.038 | |
| [20] | 李振华,张成浩,刘奕舟,等 .基于多特征提取和多层级迁移学习的电动汽车充电站充电量预测[J].电力系统保护与控制,2025,53(6):150-162. |
| LI Z H, ZHANG C H, LIU Y Z,et al .Electric vehicle charging station charging forecasting based on multi-feature extraction and multi-level transfer learning[J].Power System Protection and Control,2025,53(6):150-162. | |
| [21] | 李宏胜,李鵾,汪洋,等 .基于SVC的电动汽车集群并网鲁棒优化调度模型[J].高电压技术,2024,50(1):386-393. |
| LI H S, LI K, WANG Y,et al .Robust optimal scheduling model of grid-connected electric vehicle clusters based on SVC[J].High Voltage Engineering,2024,50(1):386-393. | |
| [22] | 石天琛,杨烨,刘明光,等 .基于有限信息的电动汽车用户充电行为特征识别[J].电力建设,2024,45(10):69-77. |
| SHI T C, YANG Y, LIU M G,et al .Identification of charging behavior characteristics of electric vehicle users based on limited information[J].Electric Power Construction,2024,45(10):69-77. | |
| [23] | CUI D, WANG Z, LIU P,et al .Stacking regression technology with event profile for electric vehicle fast charging behavior prediction[J].Applied Energy,2023,336:120798. doi:10.1016/j.apenergy.2023.120798 |
| [24] | 李浩,陈钰,俞璐,等 .实际数据驱动的纯电动汽车途中充电潜在偏好行为分析[J].同济大学学报(自然科学版),2022,50(1):104-113. doi:10.11908/j.issn.0253-374x.21132 |
| LI H, CHEN Y, YU L,et al .Empirical data driven approach for modeling the latent en-route charging preference behavior of battery electric vehicle users[J].Journal of Tongji University (Natural Science),2022,50(1):104-113. doi:10.11908/j.issn.0253-374x.21132 | |
| [25] | 苏粟,李玉璟,贾泽瑞,等 .基于GPS轨迹挖掘的电动出租车充电站规划[J].电力自动化设备,2022,42(10):255-263. |
| SU S, LI Y J, JIA Z R,et al .Electric taxi charging station planning based on GPS trajectory mining[J].Electric Power Automation Equipment,2022,42(10):255-263. | |
| [26] | ULLAH I, LIU K, YAMAMOTO T,et al .Modeling of machine learning with SHAP approach for electric vehicle charging station choice behavior prediction[J].Travel Behaviour and Society,2023,31:78-92. doi:10.1016/j.tbs.2022.11.006 |
| [27] | 黄学劲,钟锦星,路京雨,等 .基于用户画像的电动汽车充电负荷预测方法[J].吉林大学学报(工学版),2023,53(8):2193-2200. |
| HUANG X J, ZHONG J X, LU J Y,et al .Electric vehicle charging load forecasting method based on user portrait[J].Journal of Jilin University (Engineering and Technology Edition),2023,53(8):2193-2200. | |
| [28] | 李恒杰,夏宇轩,余苏敏,等 .基于用户侧主动充电引导的城市电动汽车充电站扩容规划研究[J].中国电机工程学,2023,43(14):5342-5358. doi:10.13334/j.0258-8013.pcsee.220233 |
| LI H J, XIA Y X, YU S M,et al .Research on capacity expansion and planning for urban electric vehicle charging station based on user-side active charging guidance[J].Proceedings of the CSEE,2023,43(14):5342-5358. doi:10.13334/j.0258-8013.pcsee.220233 |
| [1] | Jiawei LÜ, Zhaoyi HUO, Feng LIU, Ning XIE, Wenjing WANG. Advanced Exergoeconomics Analysis of Gas-Steam Combined Cycle Power Generation System [J]. Power Generation Technology, 2024, 45(5): 941-950. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||