[1] PARAG Y, SOVACOOL B K. Electricity market design for the prosumer era[J]. Nature Energy, 2016, 1(4): 16032 [2] 国家发展改革委, 国家能源局. 关于加强电网调峰储能和智能化调度能力建设的指导意见[EB/OL]. 北京: 中华人民共和国国家发展和改革委员会, 2024[2024-03-22]. https://www.ndrc.gov.cn/xxgk/zcfb/tz/202402/t20240227_1364257.html. [3] 刘一欣, 郭力, 王成山. 多微电网参与下的配电侧电力市场竞价博弈方法[J]. 电网技术, 2017, 41(8): 2469-2476 LIU Yixin, GUO Li, WANG Chengshan. Optimal bidding strategy for microgrids in electricity distribution market[J]. Power System Technology, 2017, 41(8): 2469-2476 [4] 施泉生, 刘玮, 闫豪楠, 等. 微电网交易电价机制构建研究——基于合作博弈的分析[J]. 价格理论与实践, 2018(7): 111-114 SHI Quansheng, LIU Wei, YAN Haonan, et al. Research on the construction of transaction price mechanism for microgrid—Analysis based on cooperative game[J]. Price: Theory & Practice, 2018(7): 111-114 [5] 孙权, 李军祥. 基于合作博弈的电力生产商多能互补优化策略[J]. 工业工程, 2020, 23(3): 84-90 SUN Quan, LI Junxiang. Multi-energy complementary optimization strategy of power producers based on cooperative game[J]. Industrial Engineering Journal, 2020, 23(3): 84-90 [6] 李陆, 代业明. 广告视角下智能小区实时定价博弈分析研究[J]. 工业工程, 2019, 22(3): 77-85 LI Lu, DAI Yeming. Real-time pricing based on game theory in smart community from advertisement perspective[J]. Industrial Engineering Journal, 2019, 22(3): 77-85 [7] 代业明, 高岩, 朱红波, 等. 考虑消费者激励因素的智能电网多零售商多用户实时定价策略[J]. 工业工程, 2017, 20(1): 12-19 DAI Yeming, GAO Yan, ZHU Hongbo, et al. Real-time pricing scheme considering incentive factor between multi-retailers and multi-users in smart grid[J]. Industrial Engineering Journal, 2017, 20(1): 12-19 [8] 吴志强, 高岩, 王波, 等. 负载预测更新下的实时电价Stackelberg博弈模型[J]. 工业工程, 2021, 24(6): 116-122 WU Zhiqiang, GAO Yan, WANG Bo, et al. A Stackelberg game-theoretic approach to real-time pricing under load forecasting update[J]. Industrial Engineering Journal, 2021, 24(6): 116-122 [9] 段金鹏, 代业明, 齐尧, 等. 基于用户可再生能源偏好的电力市场需求响应模型[J]. 工业工程, 2022, 25(2): 146-154 DUAN Jinpeng, DAI Yeming, QI Rao, et al. A demand response model based on user's renewable energy preference[J]. Industrial Engineering Journal, 2022, 25(2): 146-154 [10] TSAO Y C, VU T L. A decentralized microgrid considering blockchain adoption and credit risk[J]. Journal of the Operational Research Society, 2022, 73(9): 2116-2128 [11] POURAKBARI-KASMAEI M, ASENSIO M, LEHTONEN M, et al. Trilateral planning model for integrated community energy systems and PV-based prosumers-a bilevel stochastic programming approach[J]. IEEE Transactions on Power Systems, 2020, 35(1): 346-361 [12] 解百臣, 时永恒, 郝鹏. 非对称信息视角下光伏产消者并网激励机制设计[J]. 系统工程理论与实践, 2023, 43(9): 2726-2740 XIE Baichen, SHI Yongheng, HAO Peng. Mechanism design of grid-connected incentivization for photovoltaic prosumer under asymmetric information[J]. Systems Engineering — Theory & Practice, 2023, 43(9): 2726-2740 [13] ANOH K, MAHARJAN S, IKPEHAI A, et al. Energy peer-to-peer trading in virtual microgrids in smart grids: A game-theoretic approach[J]. IEEE Transactions on Smart Grid, 2020, 11(2): 1264-1275 [14] ENGLBERGER S, CHAPMAN AC, TUSHAR W, et al. Evaluating the interdependency between peer-to-peer networks and energy storages: a techno-economic proof for prosumers[J]. Advances in Applied Energy, 2021, 3: 1-10 [15] AN J, LEE M, YEOM S, et al. Determining the peer-to-peer electricity trading price and strategy for energy prosumers and consumers within a microgrid[J]. Applied Energy, 2020, 261: 114335 [16] 夏元兴, 徐青山. 考虑价格歧视的端对端正负瓦特耦合市场: 基于纳什谈判的合作模型[J]. 电力自动化设备, 2023, 43(5): 30-37 XIA Yuanxing, XU Qingshan. Peer-to-peer watt-negawatt coupled market considering price discrimination: game model based on Nash negotiation[J]. Electric Power Automation Equipment, 2023, 43(5): 30-37 [17] 陈磊, 牛玉刚, 贾廷纲. 基于主从博弈的多微电网能量调度策略[J]. 电力系统保护与控制, 2020, 48(19): 35-42 CHEN Lei, NIU Yugang, JIA Tinggang. Multi-microgrid energy scheduling strategy based on master-slave game[J]. Power System Protection and Control, 2020, 48(19): 35-42 [18] TUSHAR W, CHAI B, YUEN C, et al. Three-party energy management with distributed energy resources in smart grid[J]. IEEE Transactions on Industrial Electronics, 2014, 62(4): 2487-2498 [19] LIU N, TANG Q F, ZHANG J H, et al. A hybrid forecasting model with parameter optimization for short-term load forecasting of micro-grids[J]. Applied Energy, 2014, 129: 336-345 [20] MA L, LIU N, ZHANG J H, et al. Energy management for joint operation of CHP and PV prosumers inside a grid-connected microgrid: a game theoretic approach[J]. IEEE Transactions on Industrial Informatics, 2016, 12(5): 1930-1942
|