1 Experimental investigation of thermal and electrical conductivity of silicon oxide nanofluids in eth..
来源:INT J HEAT MASS TRAN( P 0017-9310 E 1879-2189 ) 发表时间: 2018/02
类型:期刊论文 为本人加分:6016.130926
贡献度:单独第一作者;单独通讯作者
2 A Stochastic-Process-Based Method for Assessing Frequency Regulation Ability of Power Systems with W..
来源:J ENVIRON INFORM( P 1726-2135 E 1684-8799 ) 发表时间: 2018/09
类型:期刊论文 为本人加分:3566.703701
贡献度:单独第一作者;单独通讯作者
3 Cooperative control framework of the wind turbine generators and the compressed air energy storage s..
来源:INT J ELEC POWER( P 0142-0615 E 1879-3517 ) 发表时间: 2021/09
类型:期刊论文 为本人加分:3505.912650
贡献度:单独通讯作者
4 Overview of wind power intermittency: Impacts, measurements, and mitigation solutions
来源:APPL ENERG( P 0306-2619 E 1872-9118 ) 发表时间: 2017/10
类型:期刊论文 为本人加分:3252.433590
贡献度:参与作者
5 Economics of physics-based solar forecasting in power system day-ahead scheduling
来源:RENEW SUST ENERG REV( P 1364-0321 E 1879-0690 ) 发表时间: 2024/07
类型:期刊论文 为本人加分:2191.726430
6 Dynamic control strategy for the participation of variable speed wind turbine generators in primary ..
来源:J RENEW SUSTAIN ENER( P 1941-7012 E ) 发表时间: 2019/01
类型:期刊论文 为本人加分:2172.454173
贡献度:单独通讯作者
7 Overviews on the applications of the Kuramoto model in modern power system analysis
来源:INT J ELEC POWER( P 0142-0615 E 1879-3517 ) 发表时间: 2021/07
类型:期刊论文 为本人加分:2144.584673
贡献度:单独第一作者
8 Optimal ancillary control for frequency regulation of wind turbine generator based on improved fatig..
来源:INT J ELEC POWER( P 0142-0615 E 1879-3517 ) 发表时间: 2022/05
类型:期刊论文 为本人加分:2035.912650
贡献度:单独通讯作者
9 Analysis and mitigation of the drive train fatigue load for wind turbine with inertial control
来源:INT J ELEC POWER( P 0142-0615 E 1879-3517 ) 发表时间: 2022/03
类型:期刊论文 为本人加分:2004.918666
贡献度:单独通讯作者
10 Coordinated Dispatch Based on Distributed Robust Optimization for Interconnected Urban Integrated En..
来源:J MOD POWER SYST CLE( P 2196-5625 E 2196-5420 ) 发表时间: 2024/05
类型:期刊论文 为本人加分:1371.715113