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[1] X. Su, C. He, T. Liu and L. Wu, "Full Parallel Power Flow Solution: A GPU-CPU-Based Vectorization Parallelization and Sparse Techniques for Newton–Raphson Implementation," in IEEE Transactions on Smart Grid, vol. 11, no. 3, pp. 1833-1844, May 2020, doi: 10.1109/TSG.2019.2943746.
[2] L. Nan, L. Wu, T. Liu, Y. Liu and C. He, "Vulnerability Identification and Evaluation of Interdependent Natural Gas-Electricity Systems," in IEEE Transactions on Smart Grid, vol. 11, no. 4, pp. 3558-3569, July 2020, doi: 10.1109/TSG.2020.2968178.
[3] J. Ma, X. Wang, F. Blaabjerg, W. Song, S. Wang and T. Liu, "Real-Time Calculation Method for Single-Phase Cascaded H-Bridge Inverters Based on Phase-Shifted Carrier Pulsewidth Modulation," in IEEE Transactions on Power Electronics, vol. 35, no. 1, pp. 977-987, Jan. 2020, doi: 10.1109/TPEL.2019.2911422.
[4] 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, doi: 10.1049/el.2019.4080.
[5] X. Zeng, T. Liu, S. Wang, Y. Dong, B. Li and Z. Chen, "Coordinated control of MMC-HVDC system with offshore wind farm for providing emulated inertia support," in IET Renewable Power Generation, vol. 14, no. 5, pp. 673-683, 6 4 2020, doi: 10.1049/iet-rpg.2019.0505.
[6] J. Shu, S. Wang, J. Ma, T. Liu and Z. He, "An Active Z-Source DC Circuit Breaker Combined with SCR and IGBT," in IEEE Transactions on Power Electronics, doi: 10.1109/TPEL.2020.2980543.
[7] J. Ma, X. Wang, F. Blaabjerg, W. Song, S. Wang and T. Liu, "Multisampling Method for Single-Phase Grid-Connected Cascaded H-Bridge Inverters," in IEEE Transactions on Industrial Electronics, vol. 67, no. 10, pp. 8322-8334, Oct. 2020, doi: 10.1109/TIE.2019.2947864.
[8] Q. Jiang, B. Li and T. Liu, "Investigation of hydro-governor parameters’ impact on ULFO," in IET Renewable Power Generation, vol. 13, no. 16, pp. 3133-3141, 9 12 2019, doi: 10.1049/iet-rpg.2019.0610.
[9] Q. Peng, Q. Jiang, Y. Yang, T. Liu, H. Wang and F. Blaabjerg, "On the Stability of Power Electronics-Dominated Systems: Challenges and Potential Solutions," in IEEE Transactions on Industry Applications, vol. 55, no. 6, pp. 7657-7670, Nov.-Dec. 2019, doi: 10.1109/TIA.2019.2936788.
[10] S. Wang, T. Liu, X. Huang and Y. Yu, "Capacitor voltage balancing control with reducing the average switching frequency in MMC," in The Journal of Engineering, vol. 2019, no. 16, pp. 2375-2380, 3 2019, doi: 10.1049/joe.2018.8643.
[11] Nan L, Liu T, He C. Identification of transmission sections based on power grid partitioning[J]. International Transactions on Electrical Energy Systems, 2019, 29(4): e2793.
[12] N. Jiao, S. Wang, T. Liu, Y. Wang and Z. Chen, "Harmonic Quantitative Analysis for Dead-Time Effects in SPWM Inverters," in IEEE Access, vol. 7, pp. 43143-43152, 2019, doi: 10.1109/ACCESS.2019.2907176.
[13] C. He, X. Zhang, T. Liu and L. Wu, "Distributionally Robust Scheduling of Integrated Gas-Electricity Systems With Demand Response," in IEEE Transactions on Power Systems, vol. 34, no. 5, pp. 3791-3803, Sept. 2019, doi: 10.1109/TPWRS.2019.2907170.
[14] He C, Wu L, Liu T, et al. Robust co-optimization planning of interdependent electricity and natural gas systems with a joint N-1 and probabilistic reliability criterion[J]. IEEE Transactions on Power Systems, 2018, 33(2): 2140-2154.
[15] C. He, C. Dai,L. Wu, and T. Liu, “Robust Network Hardening Strategy for Enhancing Resilience of Integrated Electricity and Natural Gas Distribution Systems Against Natural Disasters,” IEEE Trans. Power Syst.,vol. 33, no. 5, pp. 5787-5798, 2018.
[16] 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.
[17] X. Su, T. Liu and L. Wu, "Fine-Grained Fully Parallel Power Flow Calculation by Incorporating BBDF Method Into a Multistep NR Algorithm," in IEEE Transactions on Power Systems, vol. 33, no. 6, pp. 7204-7214, Nov. 2018, doi: 10.1109/TPWRS.2018.2834734.
[18] C. He, X. Zhang, T. Liu, L. Wu, and M. Shahidehpour, “Coordination of Interdependent Electricity Grid and Natural Gas Network – A Review,” Current Sustainable/Renewable Energy Reports, vol. 5, no. 1, pp. 23-26, 2018
[19] C. He, L. Wu,T. Liu, W. Wei, and C. Wang, “Co-optimization scheduling of interdependent power and gas systems with electricity and gas uncertainties,” Energy,vol. 159, pp. 1003-1015, 2018.
[20] C. He, T. Liu, L. Wu, and M. Shahidehpour, "Robust Coordination of Interdependent Electricity And Natural Gas Systems in Day-Ahead Scheduling for Facilitating Volatile Renewable Generations via Power-to-Gas Technology," J. Mod. Power Syst. Clean Energy, vol. 5, no. 3, pp. 375-388, 2017.
[21] C. He, Q. Shu, T. Liu, and X. Han, "A Time-Domain Statistical Approach for Harmonics Separation and Analysis," Int Trans. Electr. Energy Syst., vol. 27, no. 1, pp. 1-18, 2017.
[22] 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
[23] 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
[24] He C, Wu L, Shahidehpour M. Robust Co-Optimization Scheduling of Electricity and Natural Gas Systems via ADMM[J]. IEEE Transactions on Sustainable Energy, 2016.
[25] Wang F, Liu T, Li X. Decreasing the frequency of HVDC commutation failures caused by harmonics[J]. IET Power Electronics, 2017, 10(2): 215-221.
[26] Jiao N, Wang S, Liu T, Wang Y and Chen Z, "Harmonic Quantitative Analysis for Dead-Time Effects in SPWM Inverters," in IEEE Access, vol. 7, pp. 43143-43152, 2019.
[27] Shu J, Wang S, Liu T, Jiao N. A novel current-limiting circuit based on resistive-type SFCL for fault in DC power system [J]. Microelectronics Reliability, 2018, 88-90 (9): 1201-1205.
[28] Wang S, Liu T, Huang X, Yu Y. Capacitor Voltage Balancing Control with Reducing the Average Switching Frequency in MMC [J]. IET Journal of Engineering, 2018.
[29] 刘天琪,张琪,何川.考虑气电联合需求响应的气电综合能源配网系统协调优化运行[J/OL].中国电机工程学报:1-15.
http://kns.cnki.net/kcms/detail/11.2107.TM.20200622.1437.003.html.
[30] 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/OL].中国电机工程学报:1-14.
https://doi.org/10.13334/j.0258-8013.pcsee.191167.
[31] 王峰,刘天琪,由新红,苏国强,刘洋,刘合金.基于暂态直流电流预测的换相失败临界电压瞬时值判据[J/OL].高电压技术:1-9.
https://doi.org/10.13336/j.1003-6520.hve.20200430017.
[32] 刘麒麟,张英敏,陈若尘,刘天琪,曾琦,贺之渊.张北柔直电网单极接地故障机理分析[J/OL].电网技术:1-8.
http://kns.cnki.net/kcms/detail/11.2410.TM.20200420.1828.004.html.
[33] 周攀,刘天琪,王顺亮,马俊鹏,张海川.考虑谐波耦合特性的LCC-HVDC换流站小信号建模[J/OL].电网技术:1-11.
http://kns.cnki.net/kcms/detail/11.2410.TM.20200331.1512.009.html.
[34] 焦宁,刘天琪,王顺亮,李媛.三相两电平逆变器死区效应谐波分析及其补偿方法研究[J].电网技术,2020,44(06):2169-2176.
[35] 印月,刘天琪,丁理杰,艾青,胡晓通,江琴.换相失败下弱送端系统安全稳定风险评估[J].电网技术,2020,44(06):2177-2186.
[36] 曾雪洋,刘天琪,王顺亮,喻悦箫,江琴,陈相.换相失败下柔性直流与传统直流互联输电系统的暂态无功协调控制策略[J].电力自动化设备,2019,39(12):28-35.
[37] 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.
[38] 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.
[39] 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.
[40] 刘天琪,曾红,何川,苏学能,胡晓通,艾青,卢俊.考虑电转气设备和风电场协同扩建的气电互联综合能源系统规划[J].电力自动化设备,2019,39(08):144-151.
[41] 刘天琪,卢俊,何川,谢彦祥.考虑联合热电需求响应与高比例新能源消纳的多能源园区日前经济调度[J].电力自动化设备,2019,39(08):261-268.
[42] 谢彦祥,刘天琪,苏学能.Hadoop架构下基于分布式粒子群算法的暂态稳定评估特征量选择[J].电网技术,2018,42(12):4107-4115.
[43] 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.
[44] 卢智雪,刘天琪,陈相,何川,陶艳.考虑两端换流器影响的直流输电系统谐波不稳定风险评估[J].电力系统自动化,2018,42(19):83-91.
[45] 江琴,刘天琪,曾雪洋,艾青,印月,刘明忠.大规模风电与直流综合作用对送端系统暂态稳定影响机理[J].电网技术,2018,42(07):2038-2046.
[46] 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.
[47] 喻悦箫,刘天琪,王顺亮,彭乔,王峰.基于平均值模型的双端MMC-HVDC系统小信号建模[J].中国电机工程学报,2018,38(10):2999-3006+3150.
[48] 苏学能,刘天琪,王彪,焦慧明,汤凡.基于改进GN分裂算法的电磁环网分区及方案评估方法[J].中国电机工程学报,2017,37(06):1686-1695.
[49] 曾雪婷,刘天琪,李茜,何川,肖汉,秦浩庭.高水电比重系统电力电量平衡混合整数二次规划模型及算法研究[J].中国电机工程学报,2017,37(04):1114-1125.
[50] 苏学能,刘天琪,曹鸿谦,焦慧明,于亚光,何川,沈骥.基于Hadoop架构的多重分布式BP神经网络的短期负荷预测方法[J].中国电机工程学报,2017,37(17):4966-4973+5216.
[51] 胡晓通,刘天琪,何川,刘舒,刘一奎.计及蓄电池损耗特性的微网多目标优化运行[J].中国电机工程学报,2016,36(10):2674-2681.
[52] 王峰,刘天琪,周胜军,李兴源,乔光尧.谐波对HVDC系统换相失败的影响机理及定量分析方法[J].中国电机工程学报,2015,35(19):4888-4894.
[53] 丁媛媛,刘天琪,高峰,李兴源.基于多级线性最优方法的多频段直流附加阻尼控制器设计[J].电工技术学报,2017,32(06):76-84.
[54] 李从善,刘天琪,刘利兵,李兴源,李文峰.直流多落点系统自抗扰附加阻尼控制[J].电工技术学报,2015,30(07):10-17.
[55] 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.
[56] 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.
[57] 何川,刘天琪,胡晓通,李茜,李兴源.基于超短期风电预测和混合储能的风电爬坡优化控制[J].电网技术,2017,41(03):782-790.
[58] 王峰,刘天琪,丁媛媛,曾琦,李兴源.直流闭锁引起的暂态过电压计算方法及其影响因素分析[J].电网技术,2016,40(10):3059-3065.
[59] 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.
[60] 曾雪婷,刘天琪,李茜,王福军,关铁英.基于虚拟电源配置策略的风光水火多源互补短期优化调度[J].电网技术,2016,40(05):1379-1386.
[61] 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.
[62] 曾雪婷,刘天琪,李茜,陈振寰,王福军,关铁英.基于动态调峰裕度的风电并网协调优化调度[J].电网技术,2015,39(06):1685-1690.
[63] 应林志,刘天琪,王建全.基于改造粒子群游的超高压故障限流器全局优化配置算法[J].电力自动化设备,2018,38(02):145-152.
[64] 胡晓通,刘天琪,何川.考虑随机特性的独立微网储能裕度计算方法[J].电力自动化设备,2017,37(12):80-85.
[65] 赵磊,刘天琪,李兴源.基于变结构控制理论的高压直流附加频率控制器设计[J].电力自动化设备,2017,37(11):218-223.
[66] 焦慧明,刘天琪,苏学能,王彪,白懿鹏.基于回溯思想改进GN算法的电磁环网自动分区方法[J].电力自动化设备,2017,37(05):177-183.
[67] 丁媛媛,刘天琪,周胜军,乔光尧,李兴源,王文慧.双回并行直流输电谐波不稳定判据研究及改进[J].电力自动化设备,2017,37(01):157-162.
[68] 李乐,刘天琪.基于近邻传播聚类和回声状态网络的光伏预测[J].电力自动化设备,2016,36(07):41-46.
[69] 李茜,刘天琪,何川,周宜广,李兴源.含风电系统的有功和备用协调优化方法[J].电力自动化设备,2016,36(07):7-14.
[70] 李保宏,刘天琪,许韦华,李强,李兴源,张英敏.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(05):23-29.
[71] 胡晓通,刘天琪,刘舒,何川,刘一奎.基于动态奖惩电价的微电网与配网协调优化运行[J].电力自动化设备,2016,36(03):33-40.