【陆帅导师】招生“电气工程学院”研究生介绍

更新于 2025-03-15 导师主页
陆帅 讲师 硕士生导师
电气工程学院
电气工程
电力及综合能源系统,先进计算技术,优化理论
shuai_lu@seu.edu.cn

       陆帅,博士,2016年本科毕业于南京理工大学,2021年博士毕业于东南大学,师从顾伟教授,2019年于澳大利亚新南威尔士大学联合培养,合作导师董朝阳教授。

       长期从事电力与综合能源系统、先进计算技术、优化理论等领域研究。近年来,主持国家自然科学基金青年基金项目1项、参与国家重点研发计划项目1项,主持电网公司科技项目10余项。共发表SCI/EI论文80余篇。截止2025年3月,Google Scholar总引用3200余次,H指数30。

       担任Applied Energy、电力自动化设备、电力信息与通信技术等期刊青年编委。担任NatureCommunications, IEEE Transactions on Power Systems/Smart Grid/Sustainable Energy/Industrial Informatics, European Journal of Operational Research,  Information Fusion, Artificial Intelligence Review等期刊审稿人


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科研项目

  1. (1)国家重点研发计划项目,促进系统调节能力提升的城市级电-气-热-储多能协同调控关键技术,2023.01~2016.12,子课题负责人

    (2)国家自然科学基金(青年)项目,“双碳”目标下电热耦合系统灵活资源物理-数据联合驱动聚合建模与动态定价方法,2023.01~2025.12,主持

    (3)2022年江苏省“双创博士”项目,主持

    (4)中国南方电网公司项目,考虑灵活资源的区域多能系统多层级调控研究,2022~2024,主持

    (5)江苏省电力公司,面向碳交易的综合能源系统能量流-碳流建模与优化研究服务,2022~2023,主持

    (6)国家重点研发计划,“一带一路”共建国家城市智慧能源网络协同能量管理与运行优化技术联合研发与示范,2020~2023,参与

    (7)国家自然科学基金智能电网联合基金项目,能源市场环境下多能互补系统协调运行理论及方法研究,2019-2022,参与


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研究成果

主要论文:

■ 2024

[1]    Shuai Lu, Jiayi Ding, Mingji Chen, et al., “On the Solution Uniqueness of Data-Driven Modeling of Flexible Loads,” IEEE Transactions on Smart Grid, doi:10.1109/TSG.2024.3518094.

[2]    Shuai Lu, Zihang Gao, Yong Sun, et al., “Aggregate Model of District Heating Network for Integrated Energy Dispatch: A Physically Informed Data-Driven Approach,” IEEE Transactions on Sustainable Energy, vol. 15, no. 3, pp. 1859-1871, Jul, 2024.

[3]    Zeyin Hou, Shuai Lu*, Yijun Xu, et al.,“Privacy-Preserved Aggregate Thermal Dynamic Model of Buildings,” IEEETransactions on Smart Grid, vol. 15, no. 6, pp. 5653-5664, Nov, 2024,

[4]    张苏涵,陆帅*,顾伟,等.综合能源系统分析——从数值到解析(二):热网解析法[J]. 中国电机工程学报, 2024, 44(19):7603-7615+10.

[5]    李沅, 陆帅*顾伟, 等. 考虑热动态的综合能源系统碳排放流建模与分析[J]. 电力自动化设备, 2024, 44(7):205-213.

[6]    Zihang Gao, Shuai Lu*, SuhanZhang, et al., “An Online Estimation Approach for the Aggregate Model of District Heating Network,” 2023 IEEE 7th Conference on Energy Internet and Energy System Integration (EI2), Hangzhou, China, 2023, pp. 906-912.

■ 2023

[7]    Shuai Lu, Yijun Xu, Wei Gu, et al., “OnThermal Dynamics Embedded Static Voltage Stability Margin,” IEEE Transactions on Power Systems, vol. 38, no. 3, pp. 2982-2985, May, 2023.

[8]    Shuai Lu, Wei Gu, Yijun Xu, et al., “Unlockthe Thermal Flexibility in Integrated Energy Systems: A Robust Nodal Pricing Approach for Thermal Loads,” IEEE Transactions on Smart Grid, vol.14, no. 4, pp. 2734-2746, Jul, 2023.

[9]    Shuai Lu, Yuan Li, Shixing Ding, et al.,“Combined Electrical and Heat Load Restoration Based on Bi-Objective Distributionally Robust Optimization,” IEEE Transactions on IndustrialInformatics, vol. 19, no. 8, pp. 9239-9252, Aug, 2023.

[10]    Shuai Lu, Yuan Li, Wei Gu, et al., “Economy-carbon coordination in integrated energy systems: Optimal dispatch and sensitivity analysis,” Applied Energy, vol. 351, 121871, 2023.

[11]    Shuai Lu, Guannan Lou, Wei Gu, et al., “Optimal dispatch with flexible uncertainty set for multi-energy systems: an IGDT based two-stage decision framework,” CSEE Journal of Power and Energy Systems, vol. 9, no. 6, pp. 2374-2385, Nov, 2023.

[12]    Shixing Ding, Shuai Lu*, YijunXu, et al., “Review of cybersecurity for integrated energy systems with integration of cyber-physical systems,” Energy Conversion and Economics, vol.4 no. 5, pp. 334-345, Oct, 2023.

[13]     Wei Gu, Shixing Ding, Shuai Lu, e tal., “Coordinated Heat and Power Cyber-Attacks With Time Window Matching Strategy,” IEEE Transactions on Smart Grid, vol. 14, no. 4, pp.2747-2761, Jul, 2023.

■ Before 2023

[14]    Shuai Lu, Wei Gu, Shixing Ding, et al., “Data-Driven Aggregate ThermalDynamic Model for Buildings: A Regression Approach,” IEEE Transactions on Smart Grid,vol. 12, no. 1, pp. 227-242, Jan, 2022.

[15]    邱玥, 陆帅*, 陆海, 等. “综合能源系统灵活性:基本内涵、数学模型与研究框架,” 电力系统自动化, vol. 46, no 17, pp.16-43, 2022.

[16]    Shixing Ding, Wei Gu, Shuai Lu*, et al., “Cyber-attack against heating system in integrated energy systems: Model and propagation mechanism,” Applied Energy, vol. 311, 118650, 2022.

[17]    Shuai Lu, Wei Gu, Ke Meng, et al., “Economic Dispatch of Integrated Energy Systems With Robust Thermal Comfort Management,” IEEE Transactions onSustainable Energy, vol. 12, no. 1, pp. 222-233, Jan, 2021.

[18]    Shuai Lu, Wei Gu, Ke Meng, et al., “ThermalInertial Aggregation Model for Integrated Energy Systems,” IEEE Transactions on Power Systems, vol. 35, no. 3, pp. 2374-2387, May, 2020.

[19]    Shuai Lu, Wei Gu, Cuo Zhang, et al., “Hydraulic-ThermalCooperative Optimization of Integrated Energy Systems: A Convex Optimization Approach,” IEEE Transactions on Smart Grid, vol. 11, no. 6, pp. 4818-4832, Nov, 2020.

[20]    Shuai Lu, Wei Gu, Suyang Zhou, et al., “High-ResolutionModeling and Decentralized Dispatch of Heat and Electricity Integrated Energy System,” IEEE Transactions on Sustainable Energy, vol. 11, no. 3, pp. 1451-1463, Jul, 2020.

[21]    Shuai Lu, Wei Gu, Suyang Zhou, et al., “AdaptiveRobust Dispatch of Integrated Energy System Considering Uncertainties of Electricity and Outdoor Temperature,” IEEE Transactions on Industrial Informatics, vol. 16, no. 7, pp.4691-4702, Jul, 2020.

[22]    Shuai Lu, Wei Gu, Shuai Yao, et al., “Dispatch of Integrated Energy Systems Considering Thermal Dynamics of Thermal Energy Storage,” IEEE PES General Meeting 2020.

[23]    顾伟, 陆帅, 姚帅, 等, “综合能源系统混合时间尺度运行优化,” 电力自动化设备, vol. 39, no. 8, pp. 203-213, 2019.

[24]    Shuai Lu, Wei Gu, Jinhui Zhou, et al., “Coordinated dispatch of multi-energy system with district heating network: Modeling and solution strategy,” Energy, vol. 152, pp. 358-370, Jun, 2018.

[25]    Wei Gu, Shuai Lu, Zhi Wu, et al., “Residential CCHP microgrid withload aggregator: Operation mode, pricing strategy, and optimal dispatch,” Applied Energy, vol. 205, pp.173-186, 2017.

[26]    顾伟, 陆帅, 王珺, 等, “多区域综合能源系统热网建模及系统运行优化,” 中国电机工程学报, vol. 37, no. 5, pp. 1305-1315, 2017.


授权专利:

[1]  Wei Gu, Shuai Lu, et al., Integrated energy system optimization method based on heating grid and home thermal inertia, US11016455B2. (美国专利)

[2]  顾伟, 陆帅, 等. 一种基于运行优化模型的多区域综合能源系统运行方法, CN106447113B.

[3]  顾伟, 陆帅, 等. 基于两阶段协调优化与控制的冷热电联供型微网运行方法, CN106505634B.

[4]  顾伟, 陆帅, 等. 一种基于鲁棒优化的冷热电联供型微网运行方法, CN106786793B.

[5]  顾伟, 陆帅, 等. 一种综合能源系统两阶段鲁棒优化调度方法, CN109298634B.

[6]  顾伟, 陆帅, 等. 考虑电热双重不确定性的综合能源系统鲁棒优化调度方法, CN109034508B.


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学院风采

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