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    bevictor伟德官网電機系本科生
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    bevictor伟德官网電機系研究生
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    bevictor伟德官网電機系校友會
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    清華四川能源互聯網研究院
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王鵬

bevictor伟德官网電機系電力系統研究所

研究方向

電力系統低碳規劃與運行模拟、分布式優化算法

北京市海澱區bevictor伟德官网西主樓3區121

wangpeng2020@mail.tsinghua.edu.cn

010-62794361

  • 個人簡介
  • 論著專利

個人簡曆:

2023.03 -- 至今:bevictor伟德官网電機系,助理研究員

2020.07 -- 2023.03: bevictor伟德官网電機系,博士後

2014.08 -- 2020.07: 北京理工大學自動化學院,控制科學與工程,工學博士

2018.11 -- 2019.11:蘇黎世聯邦理工學院(ETH),自動控制實驗室,訪問學者

2010.08 -- 2014.07:北京理工大學自動化學院,電氣工程及其自動化,工學學士


個人概述:

2014年7月于北京理工大學自動化學院本科畢業,獲得工學學士學位,獲北京理工大學優秀畢業生;2020年7月于北京理工大學自動化學院畢業,獲得工學博士學位;2018年11月至2019年11月,前往蘇黎世聯邦理工學院(ETH)交流訪問1年;2020年7月起于bevictor伟德官网電機系從事博士後研究工作;2023年3月起任bevictor伟德官网電機系助理研究員。

主要從事電力系統規劃與運行模拟、分布式優化算法及其電網應用等方向研究,發表SCI/EI論文30餘篇,申請或授權發明專利20餘項,軟件著作權4項,成果轉化7項;參與國家自然基金重點項目1項,國網/南網等企事業單位科技項目20餘項,相關成果已在各省網公司及設計研究院得到應用,獲日内瓦發明展金獎2項,國家電網科技進步一等獎1項,南方電網科研院、國網經研院科技進步獎各1項。


1. 國際期刊論文:

[1] Jiawei Zhang, Jiaxin Wang , Ning Zhang, Peng Wang, Yating Wang, Chen Fang. Droop Coefficient Placements for Grid-side Energy Storage Considering Nodal Frequency Constraints under Large Disturbances[J]. Applied Energy. Early Access, 2024.

[2] Yuchen Fang, Ershun Du, Haoyi Wang, Peng Wang, Yidan Chen, Ning Zhang. Dynamic frequency control strategy for the CSP plant in power systems with low inertia[J]. IET Renewable Power Generation, 2023, 17(12): 3063-3074.

[3] Haiyang Jiang, Ershun Du, Boyu He, Ning Zhang, Peng Wang, Fuqiang Li, Jie Ji. Analysis and Modeling of Seasonal Characteristics of Renewable Energy Generation, Renewable Energy, 2023, 219: 119414.

[4] Haiyang Jiang, Ershun Du, Ning Zhang, Zhenyu Zhuo, Peng Wang, Zhidong Wang, and Yan Zhang. Renewable electric energy system planning considering seasonal electricity imbalance risk, in IEEE Transactions on Power Systems, 2023, 38(6): 5432-5444.

[5] Peng Wang, Zhongjing Ma, Mingdi Shao et al. Data-driven Energy Management in Residential Areas Leveraging Demand Response[J]. Energy and Buildings, 2022, 269: 112235.

[6] Peng Wang, Suli Zou, Jinhui Zhang and Zhongjing Ma. Robust Charging and Discharging Coordination of Electric Vehicles with State Dynamics Uncertainties[J]. International Journal of Control, Automation, and Systems (IJCAS), 2022, 20(7): 2120-2128.

[7] Ning Zhang, Haiyang Jiang, Ershun Du, Zhenyu Zhuo, Peng Wang, Zhidong Wang, Yan Zhang. An Efficient Power System Planning Model Considering Year-round Hourly Operation Simulation[J]. IEEE Transactions on Power Systems, 2022 37(6)4925-4935.

[8] Peng Wang, Ershun Du, Ning Zhang, et al. Power system planning with high renewable energy penetration considering demand response[J]. Global Energy Interconnection, 2021, 4(1): 69-80.

[9] Jiawei Zhang, Peng Wang, Ning Zhang. Frequency Regulation From Distributed Energy Resource Using Cloud-Edge Collaborations Under Wireless Environments[J]. IEEE Transactions on Smart Grid, 2021, 13(1): 367-380.

[10] Jiawei Zhang, Peng Wang, Ning Zhang. Distribution Network Admittance Matrix Estimation With Linear Regression[J]. IEEE Transactions on Power Systems, 2021, 36(5): 4896-4899.

[11] Suli Zou, Zhongjing Ma, Peng Wang, et al. Stackelberg game-based decentralised supply chain coordination considering both futures and spot markets[J]. International Journal of Control, 2020, 93(12): 2804-2813.

[12] Xu Zhou, Suli Zou, Peng Wang, et al. ADMM-based coordination of electric vehicles in constrained distribution networks considering fast charging and degradation[J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 22(1): 565-578.

[13] Xu Zhou, Suli Zou, Peng Wang, et al. Voltage regulation in constrained distribution networks by coordinating electric vehicle charging based on hierarchical ADMM[J]. IET Generation, Transmission & Distribution, 2020, 14(17): 3444-3457.

[14] Peng Wang, Suli Zou, Zhongjing Ma, Parallel Demand Side Auction Mechanism for Dynamic and Efficient Resource Allocation[J]. IET Control Theory & Applications, 2019, 13(15): 2399-2406.

[15] Peng Wang, Suli Zou, Zhongjing Ma, A Partial Augmented Lagrangian Method for Decentralized Electric Vehicle Charging in Capacity-Constrained Distribution Networks[J]. IEEE ACCESS, 2019, 7: 118229-118238.

[16] Peng Wang, Suli Zou, Xiaojuan Wang and Zhongjing Ma, A Stackelberg Game Approach for Price Response Coordination of Thermostatically Controlled Loads[J]. Applied Sciences, 2018, 8(8): 1370.


2. 國内期刊論文:

[1] 王鵬,魏招毅,周保榮等. 考慮火電有序退役的源--儲協同多階段規劃方法[J]. 中國電機工程學報, 2023, accepted

[2] 潘建輝,張甯,雍培,王鵬.面向海量靈活性資源的兩階段分布式協同調度方法[J].電力系統自動化, 2023,47(15):67-79.

[3] 李姚旺,張甯,張世旭,劉昱良,杜爾順,王鵬,肖偉,慈松.面向電力系統的多能源雲儲能模式:基本概念與研究展望[J].中國電機工程學報, 2023, 43(06): 2179-2190.

[4] 魏泓屹,卓振宇,張甯,杜爾順,肖晉宇,王鵬,康重慶. 中國電力系統碳達峰、碳中和轉型路徑優化與影響因素分析[J]. 電力系統自動化, 2022, 19(46): 1-12.

[5] 康重慶,杜爾順,李姚旺,張甯,陳啟鑫,郭鴻業,王鵬. 新型電力系統的“碳視角”:科學問題與研究框架[J].電網技術, 2022, 46(03): 821-833.


3. 國際會議論文:

[1] Ge Y, Liu G, Wang P, et al. “Source-Network-Storage” Collaborative Planning with Dynamic Carbon Emission Factors[C]//2023 International Conference on Power System Technology (PowerCon). IEEE, 2023: 1-6.

[2] Hongyi Wei, Qihuan dong, Peng Wang, et al. Large-Scale EV Integrated Multi-energy System Optimal Dispatch and Carbon Flow Analysis[C]. 2022 12th International Conference on Power and Energy Systems (ICPES). IEEE, 2022: 543-548.

[3] Peng Wang, Ershun Du, Jingyi Zhang, et al. Improving the accommodation of renewable resources by distributed energy management in a grid-connected system considering multiple demand responses[C]. 2021 International Conference on Power System Technology, 2021, pp. 176-181.

[4] Xiaoyan Hu, Yi Ge, Bingjie Li, Ziyang Zhang, Jiaxin Wang, Peng Wang, Ershun Du. Generation-network-storage Collaborative Planning of Jiangsu Power Grid Towards Carbon Neutrality [C]. 2021 International Conference on Power System Technology, 2021, pp. 313-319.

[5] Xu Zhou, Suli Zou, Peng Wang, et al. Optimal Energy Management in Combined Heat and Power System via A Decentralized Consensus-Based ADMM[C]. 21st IFAC World Congress, July 12, 2020 - July 17, 2020, pp. 4026-4031.  

[6] Peng Wang, Long Ran, Yunfeng Shao, et al. Charging and discharging control of plug-in electric vehicles with uncertainties via robust model predictive control method[C]. 2017 36th Chinese Control Conference (CCC), 2017, pp. 2644-2650.


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