[1] S. Liu, J. Zheng, Z. Li, and X. Liu, "A General Piecewise Droop Design Method for DC Microgrid," International Journal of Electronics, 2020. [2] S. Liu, R. Liu, J. Zheng, and X. Liu, "Predictive function control in tertiary level for power flow management of DC microgrid clusters," ELECTRONICS LETTERS, vol. 56, no. 13, pp. 675-676, 2020. [3] R. Liu, S. Liu, J. Zheng, W. Fang, and X. Liu, "Function Controller Design in Tertiary Level for DC Microgrid Clusters," in 2020 IEEE 9th International Power Electronics and Motion Control Conference (IPEMC2020-ECCE Asia), 2020, pp. 1199-1204. [4] X. Li, S. Liu, J. Zheng, and X. Liu, "DC Bus Signaling-Based Coordination Through Masked Sensing for DC Microgrid," in 2020 IEEE 9th International Power Electronics and Motion Control Conference (IPEMC2020-ECCE Asia), 2020, pp. 2900-2905. [5] R. Li, S. Liu, M. Xia, and X. Liu, "Analysis of Effects of Communication Conditions on Distributed Secondary Control for DC Microgrids," in 2020 IEEE 9th International Power Electronics and Motion Control Conference (IPEMC2020-ECCE Asia), 2020, pp. 2933-2938. [6] 刘宿城, 汤运泽, 刘晓东, and 李晴晴, "不同负载条件下光伏接口MPPT变换器的小信号建模及实验验证," 电子学报, vol. 47, no. 02, pp. 454-461, 2019. [7] S. Liu, J. Zheng, R. Li, X. Li, W. Fang, and X. Liu, "Multiple Lyapunov Function-Based Large Signal Stability Analysis of DC Microgrid with Coordinated Control," in 2019 22nd International Conference on Electrical Machines and Systems (ICEMS), 2019, pp. 1-6. [8] S. Liu, Z. Li, W. Liu, and X. Liu, "Multi-level bus voltage compensation of droop control with enhanced load-sharing capability for DC microgrid," The Journal of Engineering, vol. 2019, no. 16, pp. 3056-3061, 2019. [9]刘宿城, 李中鹏, 刘晓东, and 方炜, "DC-DC变换器的通用大信号自适应控制策略构建," 电源学报, vol. 16, no. 3, pp. 16-22, 2018. [10] 刘宿城, 甘洋洋, 刘晓东, and 刘雁飞, "超级电容接口双向DC-DC变换器的电压快恢复控制策略," 电工技术学报, vol. 33, no. 23, pp. 5496-5508, 2018. [11] S. Liu, X. Liu, and Y.-F. Liu, "Analysis on feedback interconnections of cascaded DC-DC converter systems," in Energy Conversion Congress and Exposition (ECCE), 2015 IEEE, 2015, pp. 5160-5166. [12] 刘宿城, 周雒维, 卢伟国, and 毕凯, "通过小信号环路估计DC/DC开关变换器的大信号稳定区域," 电工技术学报, vol. 29, no. 4, pp. 63-69, 2014. [13] L. W. Zhou, S. C. Liu, W. G. Lu, and S. C. Hu, "Quasi-steady-state large-signal modelling of DC-DC switching converter: justification and application for varying operating conditions," (in English), IET Power Electronics, vol. 7, no. 10, pp. 2455-2464, Oct 2014. [14] W. Fang, X. D. Liu, S. C. Liu, and Y. F. Liu, "A Digital Parallel Current-Mode Control Algorithm for DC-DC Converters," IEEE Transactions on Industrial Informatics, vol. 10, no. 4, pp. 2146-2153, 2014. [15] S. C. Liu, L. W. Zhou, and W. G. Lu, "Simple analytical approach to predict large-signal stability region of a closed-loop boost DC-DC converter,", IET Power Electronics, vol. 6, no. 3, pp. 488-494, 2013.
申请及授权发明专利(部分): [1] 刘宿城, 夏梦宇, 李润,刘晓东, "一种用于直流微电网集群的虚假数据注入攻击的检测方法," Patent CN111817286A. (发明专利,实质审查) [2] 刘宿城, 秦强栋, 刘锐, 刘晓东, "一种用于直流微电网集群的非参数化模型预测三次控制方法," Patent CN111817287A. (发明专利,实质审查) [3] 刘宿城, 刘锐, 秦强栋, 刘晓东, "一种用于直流微电网集群的分布式预测三次控制方法," Patent CN111525702A. (发明专利,实质审查) [4] 刘宿城, 刘锐, 秦强栋,刘晓东, "一种用于直流微电网集群的分布式经济调度预测控制方法," Patent CN111725798A. (发明专利,实质审查) [5] 刘宿城, 刘锐, 刘晓东, 方炜, "一种用于直流微电网群落的能量管理预测控制方法," Patent CN110867848A. (发明专利,实质审查) [6] 刘宿城, 李中鹏, 刘晓东,方炜, "一种具有多级母线电压补偿直流微网改进型多斜率下垂控制方法," Patent CN106961101B. (发明专利,已授权) [7] 刘宿城, 李中鹏, 刘晓东, 方炜, "一种用于直流微电网的自适应多斜率下垂控制系统及方法," Patent CN107104427B. (发明专利,已授权) [8] 刘宿城, 李中鹏, 刘晓东,方炜, "改进连续负荷条件下直流微网分段下垂控制的方法及系统," Patent CN108599132B. (发明专利,已授权) [9] 刘宿城, 李响, 吴亚伟, 刘雁飞, 刘晓东, "一种直流微电网中超级电容降容的控制系统及方法," Patent CN111355229A. (发明专利,实质审查) [10] 刘宿城, 李响, 吴亚伟,刘晓东, "含混合储能直流微电网的大扰动暂态稳定协调控制方法," Patent CN110912242A. (发明专利,实质审查) [11] 刘宿城, 李响, 刘晓东, 方炜, "一种能显著改善母线电压偏差的直流微电网分布式自主协调控制方法," Patent CN110445122B. (发明专利,已授权) [12] 刘宿城, 黄堃, 刘晓东,方炜, "一种直流微网分布式自主协调控制方法及控制系统," Patent CN109830949B. (发明专利,已授权)
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