近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
2022年度
[1] Q. Jiang, Baohong Li et al.., "Time-Sharing Frequency Coordinated Control Strategy for PMSG-Based Wind Turbine," in IEEE Journal on Emerging and Selected Topics in Circuits and Systems, vol. 12, no. 1, pp. 268-278, March 2022.(SCI, IF=3.916)
[2] Z. Sun, W. Deng, B. Li, Q. Jiang and Y. Zhang, "A Novel Pole-to-Ground Fault Current Calculation Method," 2021 IEEE Sustainable Power and Energy Conference (iSPEC), 2021, pp. 2606-2611.
[3] 王子文,张英敏,李保宏,刘天琪,李峰.柔性直流电网潮流转移特性及安全运行影响分析[J].电力系统保护与控制,2022,50(03):103-113.(EI)
[4] 唐溢,李保宏,曾蕊,江琴,刘天琪.柔性直流对交流系统短路电流影响因素分析[J].电力工程技术,2022,41(01):40-47.
[5] 曾蕊,李保宏,江琴,刘天琪.级联型混合直流输电系统的自适应下垂控制策略研究[J].电力工程技术,2022,41(02):60-66.
2021年度
[1] Y. Tao, B. Li, T. Dragičević, T. Liu and F. Blaabjerg, "HVDC Grid Fault Current Limiting Method Through Topology Optimization Based on Genetic Algorithm," in IEEE Journal of Emerging and Selected Topics in Power Electronics, vol. 9, no. 6, pp. 7045-7055, Dec. 2021.(SCI, IF=5.972)
[2] Y. Tao, B. Li, T. Liu, Q. Jiang and F. Blaabjerg, "Practical Fault Current Level Evaluation and Limiting Method of Bipolar HVdc Grid Based on Topology Optimization," in IEEE Systems Journal, doi: 10.1109/JSYST.2021.3090452.(SCI, IF=4.463)
[3] Wang P, Li B, Jiang Q, et al. The occurrence mechanism and damping method of ultra‐low‐frequency oscillations[J]. IET Renewable Power Generation, 2021.(SCI, IF=3.93)
[4] Jiang Q, Li B, Liu T, et al. Fault current limiting method based on virtual impedance for hybrid high‐voltage direct current with cascaded MMC inverters[J]. Electronics Letters, 2021.(SCI, IF=1.343)
[5] Yingmin Zhang, Wenxin Zhang, Qiao Peng, Baohong Li, et al, Impact of Grid Topology on Pole-to-ground Fault Current in Bipolar DC grids: MechanisM and Evaluation[J], Journal of Modern Power Systems and Clean Energy, 2021(accepted).(SCI, IF=3.265)
[6] 曾蕊,李保宏,刘天琪,闫鹤鸣,米志伟.受端多落点级联型混合直流输电系统协调控制策略[J].电力自动化设备,2021,41(02):111-117.(EI)
[7] 王相飞,江琴,赵静波,李保宏,刘天琪.一种基于故障限流器的混合级联直流输电系统故障穿越方法[J/OL].电力自动化设备:1-8[2021-12-28]..(EI)
[8] 邓文军,刘麒麟,张英敏,刘天琪,李保宏,许韦华.张北柔直电网单极接地故障短路电流计算方法及接地策略[J/OL].高电压技术:1-12[2021-12-28].(EI)
[9] Z. J, Z. R, J. Q, B. L, et al. Coordinated DC voltage control strategy of hybrid HVDC with multi‐infeed MMC inverters considering commutation failures[J]. International Transactions on Electrical Energy Systems, 2021, 31(5): e12881.(SCI, IF=2.860)
[10] Lin C, Zhou J, Zeng R, et al. Coordinated Control Strategy Research of Multi-terminal Cascaded Hybrid HVDC System[C]//Journal of Physics: Conference Series. IOP Publishing, 2021, 1754(1): 012095.(EI)
2020年度
[1] B. Li, S. Chen and T. Liu, " Improved practical method for Low-inertia VSC-HVDC stability analysis in weak system," in IET Generation Transmission & Distribution, 2020, doi: 10.1049/iet-gtd.2019.1887.(SCI, IF=3.229)
[2] P. Wang, B. Li, J. Zhao, T. Liu, Q. Jiang and G. Chen, "The Mechanism of Ultra-Low Frequency Oscillations With the Same Mode Shapes," in IEEE Access, vol. 8, pp. 198047-198057, 2020.(SCI, IF=4.098)
[3] Y. Tao, B. Li and T. Liu, "Pole-to-ground fault current estimation in symmetrical monopole high-voltage direct current grid considering modular multilevel converter control," in Electronics Letters, vol. 56, no. 8, pp. 392-395, 16 4 2020.(SCI, IF=1.343)
[4] 王鹏,刘天琪,王顺亮,江琴,仰玲芳,李保宏.水电机组超低频振荡小信号模型及影响因素分析[J].中国电机工程学报,2020,40(18):5942-5955.(EI)
[5] 苏亚鹏,刘天琪,李保宏,江琴,韩晓言,陈刚.超低频振荡机理分析及水轮机调速系统参数优化[J].电网技术,2020,44(03):1008-1016.(EI)
2019年度
[1] Jiang Q, Li B, Liu T. Investigation of hydro-governor parameters’ impact on ULFO [J]. IET Renewable Power Generation, 2019, 13(16): 3133-3141.(SCI, IF=3.93)
[2] Jiang Q, Li B, Liu T. Large-Scale Power Base’s Impact on Low Frequency Oscillation Characteristic in UHVAC Power Transmission System [J]. IEEE Access, 2019, 7: 56423-56430.(SCI, IF=3.367)
[3] B. Li, S. Chen and T. Liu, "Theoretical analysis on the VSC instability caused by PLL in weak system," in IET Renewable Power Generation, vol. 14, no. 10, pp. 1782 -1788, 27 7 2020.(SCI, IF=3.93)
[4] 王少伟,刘天琪,李保宏.模块化多电平换流器的运行边界分析及提高运行稳定性的控制方法[J].电力自动化设备,2019,39(09):151-157.(EI)
[5] 王少伟,刘天琪,李保宏,喻悦萧.直流断线故障特性分析及一种基于控制的保护策略[J].科学技术与工程,2019,19(35):201-207.
[6] 印月,刘天琪,艾青,李保宏,江琴.预防多馈入直流输电系统换相失败的直流功率控制方法[J].电力自动化设备,2019,39(11):107-113.(EI)
2018年度
[1] Peng Q, Liu T, Wang S, et al. Determination of droop control coefficient of multi-terminal VSC-HVDC with system stability consideration[J]. IET Renewable Power Generation, 2018, 12(13): 1508-1515.(SCI, IF=3.93)
[2] Han X, Jiang Q, Liu T, et al. Research on Ultra-Low Frequency Oscillation Caused by Hydro Power in Hydro-Dominant Power System[C]//2018 International Conference on Power System Technology (POWERCON). IEEE, 2018: 1909-1914.
[3] 郑明,李保宏,陆莹,刘天琪. 海上风电场集群输电网可靠性分析[J]. 电力工程技术,2018,37(02):49-54.
[4] 张爽,曾雪洋,摆存曦,田蓓,李保宏,刘天琪. 基于混合H_2/H_∞控制理论的交直流并联系统机网阻尼协调控制[J]. 电测与仪表,2018,55(05):57-62+118.
[5] 彭乔,刘天琪,张英敏,李保宏,唐铄雅. 考虑功率裕度与系统稳定性的直流电网自适应下垂控制[J]. 中国电机工程学报,2018,38(12):3498-3506+9.(EI)
[6] 毕悦,刘天琪,李保宏. 基于改进LQR的交直流低频振荡协调控制策略[J]. 电力系统及其自动化学报,2018,30(05):80-85.
[7] 陶艳,刘天琪,李保宏,苗丹,董语晴,卢智雪. 高压柔性直流电网分层协同自适应下垂控制[J]. 电力系统自动化,2018,42(18):70-79.(EI)
[8] 王长虹,刘天琪,李保宏. 多个海上风电场输电组网拓扑研究[J]. 现代电力,2018,35(05):56-61.
2017年度
[1] Li B, Liu T, Zhang Y. Unified adaptive droop control design based on dynamic reactive power limiter in VSC-MTDC [J]. Electric Power Systems Research, 2017, 148: 18-26.(SCI, IF=3.414)
[2] 曾琦,李兴源,冯明,李保宏,曾雪洋. 基于广域测量系统的多馈入直流低压限流单元的协调控制方法[J]. 高电压技术,2017,43(04):1168-1174.(EI)
[3] 曾雪洋,刘天琪,王顺亮,李保宏,李兴源,曾琦,陈相. 风电场柔性直流并网与传统直流外送的源网协调控制策略 [J]. 电网技术,2017,41(05):1390-1398.(EI)
[4] 付伟,刘天琪,李兴源,赵睿,李保宏. 高压直流自适应变结构控制器设计[J]. 电力系统及其自动化学报,2017,29(05):28-34.
[5] 刘天琪,陶艳,李保宏. 风电场经MMC-MTDC系统并网的几个关键问题[J]. 电网技术,2017,41(10):3251-3260.(EI)
2016年度
[1] Li B, Liu T, Xu W, et al. Research on technical requirements of line-commutated converter-based high-voltage direct current participating in receiving end AC system's black start[J]. IET Generation, Transmission & Distribution, 2016, 10(9): 2071-2078.(SCI, IF=3.229)
[2] 李保宏, 刘天琪, 许韦华, 等. 直流参与受端弱交流系统黑启动的技术条件[J]. 电力自动化设备, 2016, 36(5): 23-29.(EI)
[3] 彭乔,刘天琪,李保宏,王峰,李兴源. 基于误差最小化射影控制的降阶高压直流鲁棒控制器[J]. 电网技术,2016,40(03):704-711.(EI)
[4] 丁媛媛,刘天琪,李保宏,李兴源. 基于等效解耦过程的交直流协调控制鲁棒稳定性研究[J]. 电网技术,2016,40(07):1951-1956.(EI)
[5] 丁媛媛,刘天琪,高峰,李保宏,李旭涛,田蓓. 多直流电压相互作用因子的解析表达方法[J]. 电力系统保护与控制,2016,44(17):10-17.(EI)
[6] 赵睿,卢斯煜,王曦,柳勇军,涂亮,李保宏. 云南电网和主网利用直流输电系统黑启动的策略研究[J]. 四川电力技术,2016,39(05):26-31+48.
2015年度及以前
[1] 吴学光,李保宏,许韦华,刘天琪,李兴源,张英敏. 直流控制方式与受端电压稳定性研究[J]. 智能电网,2015,3(11):983-988.
[2] 高峰, 李保宏, 李旭涛, 等. 基于线性最优控制的交直流低频振荡附加阻尼控制器设计[J]. 电测与仪表, 2015, 52(11): 90-95.
[3] 张立奎,张英敏,李兴源,李保宏. 柔性直流附加鲁棒阻尼控制器设计[J]. 现代电力,2015,32(02):70-75.
[4] 李保宏, 张英敏, 李兴源, 等. 基于改进射影控制的降阶高压直流附加控制器设计[J]. 物理学报, 2014, 63(9): 98801-098801.(SCI)
[5] 李保宏, 张英敏, 李兴源, 等. 多通道高压直流附加鲁棒控制器设计[J]. 电网技术, 2014, 38(4): 858-864.(EI)
[6] 李宽,李兴源,李保宏,陈实. 基于射影定理分层控制的次同步阻尼控制器设计[J]. 电力自动化设备,2015,35(02).(EI)