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Paper Publications
[1]1. Xiaoming Mao, et al. Modeling and application of dq-sequence dynamic phasors under unbalanced AC conditions. International Journal of Electrical Power & Energy Systems, 2025, 166:110524. SCI检索:X9O8N.
[2]2. Xiaoming Mao, et al. Optimal configuration of dynamic VAR compensators considering uncertainty and correlation, Energy Science & Engineering, 2024,12(11):5287–5298. SCI检索:N4M6F.
[3]3. Xiaoming Mao, et al. Comparative study on methods for computing electrical distance. International Journal of Electrical Power & Energy Systems, 2021,130:106923. SCI检索:SA9XU.
[4]4. Xiaoming Mao, et al. Simulation of LCC-MMC HVDC systems using dynamic phasors. IEEE Access, 2021,9:122819-122828. SCI检索:UQ4WG.
[5]5. Mao Xiaoming, et al. A configuration optimization framework for renewable energy systems integrating with electric-heating energy storage in an isolated tourist area. Energy Science & Engineering, Energy Science & Engineering, 2021,9(6):865-883. SCI检索:SK7UI.
[6]6. Mao Xiaoming(第一通讯作者), et al. Risk early warning method for distribution system with sources-networks-loads-vehicles based on fuzzy C-mean clustering. Electric Power Systems Research, 2020, 180:106059. SCI检索:KM3IR.
[7]7. Xiaoming Mao, et al. Optimal allocation of dynamic VAR sources using zoning-based distributed optimization algorithm, International Journal of Electrical Power & Energy Systems, 2019年, 113:952-962页. SCI检索:IM1XC.
[8]8. Xiaoming Mao, Junxian Chen, A Fast Method to Compute the dynamic response of induction motor loads considering the negative-sequence components in stability studies,Energies,2019, 12(9): 1802. SCI检索:IA7UD.
[9]9. X M Mao, et al. Improving power system dynamic performance using wide-area high voltage direct current damping control. IET Generation, Transmission & Distribution, 2008, 2(2):245-251. SCI检索:279ZG.
[10]10. Mao Xiao-ming, et al. Coordinated control of interarea oscillation in the China Southern Power Grid. IEEE Transactions on Power Systems, 2006, 21(2):845-852. SCI检索:039NO.
[11]11. 容景超,毛晓明,等.基于CBAM-CNN多任务模型的暂态电压稳定定量评估方法[J].高电压技术,2025,51(01):281-289. EI检索:20251218078853.
[12]12. 陈圣博,毛晓明,等.考虑源-荷不确定性的动态无功补偿优化配置[J].电力自动化设备,2025,45(02):201-208. EI检索:20250717877968.
[13]13. 毛晓明, 等. dq-序动态相量建模方法及其在电力电子设备建模中的应用[J].中国电机工程学报, 2023,43(24): 9711-9720. EI检索:20240215336241.
[14]14. 毛晓明,等. 交流故障后MIDC系统交错协调恢复研究[J]. 高电压技术,2019,45(2):571-578. EI检索:20191706819585.
[15]15. 毛晓明, 等. 奇异值分解结合均匀设计采样的半不变量法概率潮流计算[J].电力自动化设备,2019,39(6):159-165+172. EI检索:20193107267166.
[16]16. 毛晓明, 等. 分时电价机制下含蓄电池微网的优化调度. 电网技术, 2015,39(5):1192-1197. EI检索:20152300925120.
[17]17. 毛晓明,等. 城市高负荷密度新区电压层级方案适用性研究.电网技术,2014,38(3): 782-788. EI检索:20141417548334.
[18]18. 毛晓明,等. 基于机组实测相频特性的PSS参数整定.电力自动化设备,2011,31(10):56-60. EI检索:20114614524782.
[19]19. 毛晓明, 等. 基于广域测量信息的直流调制新方法. 电力系统自动化, 2007,31(7): 45-49, 65. EI检索:072010603048.
[20]20. 毛晓明, 等. 含有多馈入直流的交直流混合电网高压直流建模研究. 中国电机工程学报, 2004,24(9): 68-73. EI检索:04468459399.
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毛晓明
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