近五年来共发表或录用论文50余篇,申请专利6项(美国专利1项),参与编写英文著作1部(Springer)。部分一作/通讯作者期刊成果如下(*为通讯作者): [1] Kaiqi Sun, Huangqing Xiao, Jiuping Pan and Yilu Liu, "VSC-HVDC Interties for Urban Power Grid Enhancement," IEEE Transactions on Power Systems, vol. 36, no. 5, pp. 4745-4753, Sept. 2021. [2] Kaiqi Sun, Huangqing Xiao, Jiuping Pan and Yilu Liu, "A Station-hybrid HVDC System Structure and Control Strategies for Cross-seam Power Transmission," IEEE Transactions on Power Systems, vol. 36, no. 1, pp. 379-388, Jan. 2021. (ESI高被引) [3]Kaiqi Sun, Wei Qiu, Wenxuan Yao, Shutang You, He Yin and Yilu Liu, "Frequency Injection based HVDC Attack-defense Control via Squeeze-Excitation Double CNN," IEEE Transactions on Power Systems, 2021, Accepted. [4] Kaiqi Sun, Ke-Jun Li, Jiuping Pan, Yong Liu, Yilu Liu, "An optimal combined operation scheme for pumped storage and hybrid wind-photovoltaic complementary power generation system," Applied Energy, 242:1155-1163,2019. [5] Kaiqi Sun, Ke-Jun Li, Huadong Sun, Mingqiang Wang, Zhijie Liu, Meiyan Wang, "Operation modes and combination control for urban multivoltage-level DC grid," IEEE Transactions on Power Delivery, 33(1):360-370,2018. [6] Kaiqi Sun, Ke-Jun Li, Wei-Jen Lee, Weiyu Bao, Zhijie Liu, Meiyan Wang, "VSC-MTDC system integrating offshore wind farms based optimal distribution method for financial improvement on wind producers," IEEE Transactions on Industry Applications, 55(3):2232-2240,2019. [7] Kaiqi Sun, Huangqing Xiao, Shutang You, Hongyu Li, Jiuping Pan, Ke-Jun Li, Yilu Liu, "Frequency secure control strategy for power grid with large-scale wind farms through HVDC links," International Journal of Electrical Power & Energy Systems, 117:105706,2020. [8] Kaiqi Sun, Huangqing Xiao, Shengyuan Liu, Yilu Liu, “A Machine Learning-based Fast Frequency Response Control for a VSC-HVDC System," CSEE Journal of Power and Energy Systems,vol. 7, no. 4, pp. 688-697, July 2021. [9] Kaiqi Sun, Huangqing Xiao, Yilu Liu,” Optimized Allocation Method of the VSCMTDC System for Frequency Regulation Reserves Considering the Cost,” CSEE Journal of Power and Energy Systems, 2021, Accepted. [10]Kaiqi Sun, Huangqing Xiao, Jiuping Pan and Yilu Liu, "Cross-Seam Hybrid MTDC System for Integration and Delivery of Large-Scale Renewable Energy," Journal of Modern Power Systems and Clean Energy, 2021, Accepted. [11] Kaiqi Sun, Ke-Jun Li, Meiyan Wang, Guanyu Tian, Zhijie Liu, "Coordination control for multi-voltage-level dc grid based on the dc–dc converters," Electric Power Systems Research, 178:106050,2020. [12]Kaiqi Sun, Huangqing Xiao, Lakshmi Sundaresh, Jiuping Pan, Ke-Jun Li, Yilu Liu, "Frequency response reserves sharing across asynchronous grids through MTDC system," IET Generation, Transmission & Distribution, 13(21):4952-4959,2019. [13] Kaiqi Sun, Huangqing Xiao, Shengyuan Liu, Fan Yang, yuqing Dong, Weikang Wang, Yilu Liu, "A Review of Clean Electricity Policies—From Countries to Utilities," Sustainability, 2020, 12, 7946. [14] Wei Qiu, Kaiqi Sun*, Wenxuan Yao, Weikang Wang, Qiu Tang and Yilu Liu, "Hybrid Data-driven based HVDC Ancillary Control for Multiple Frequency Data Attacks," IEEE Transactions on Industrial Informatics, vol. 17, no. 12, pp. 8035-8045, Dec. 2021. [15]Wei Qiu, Kaiqi Sun*, Wenxuan Yao, Shutang You, He Yin and Yilu Liu, "Time-frequency based Cyber Security Defense of Wide-area Control System for Fast Frequency Reserve," International Journal of Electrical Power & Energy Systems, 2021, Accepted. [16] Huangqing Xiao, Kaiqi Sun*, Jiuping Pan, Liang Xiao, Chun Gan, Yilu Liu, "Coordinated frequency regulation among asynchronous AC grids with an MTDC system," International Journal of Electrical Power & Energy Systems, 126:106604,2020. [17] Huangqing Xiao, Kaiqi Sun*, Jiuping Pan, Yujun Li, Yilu Liu, "Review of Hybrid HVDC Systems Combining Line Communicated Converter and Voltage Source Converter," International Journal of Electrical Power & Energy Systems, 126:106604,2020. [18] Huangqing Xiao, Kaiqi Sun*, Jiuping Pan, Yilu Liu, "Operation and control of hybrid HVDC system with LCC and full-bridge MMC connected in parallel," IET Generation, Transmission & Distribution, 14(7):1344-1752,2020. [19] 孙凯祺, 李可军, 刘智杰, et al. 基于柔性直流互联的抽水蓄能与可再生能源协同运行策略. 电力系统自动化, 2019, 43(08):60-67+126. [20]孙凯祺, 李可军, Sundaresh Lakshmi,等. 基于直流互联的交流电网频率稳定控制研究. 中国电机工程学报, 2020, 40(3). [21]孙凯祺, 邱伟,李可军,姚文轩,刘奕路.面向快速频率响应系统的网络攻击防御控制策略.中国电机工程学报, 2021, 网络优先出版. |