[1] 韩项峰, 王志伟, 郝瑞瑞, 等. 基于接地故障类型的交流微电网限流方法的研究[J]. 智慧电力, 2022, 50(10): 45–52 HAN Xiangfeng, WANG Zhiwei, HAO Ruirui, et al. Current limiting method for AC microgrid based on grounding fault type[J]. Smart Power, 2022, 50(10): 45–52 [2] 黄剑湘, 韩建伟, 杨涛, 等. 特高压混合直流输电系统中串联换流器的电压分配策略[J]. 南方电网技术, 2021, 15(8): 71–79 HUANG Jianxiang, HAN Jianwei, YANG Tao, et al. Voltage distribution strategy of series converters in hybrid UHVDC power transmission system[J]. Southern Power System Technology, 2021, 15(8): 71–79 [3] 曹芸凯, 赵涛, 朱爱华, 等. 计及电网和线路阻抗的并联逆变器谐振抑制方法[J]. 电力科学与技术学报, 2022, 37(2): 188–196 CAO Yunkai, ZHAO Tao, ZHU Aihua, et al. Resonance suppression method for parallel inverters considering the grid and line impedance[J]. Journal of Electric Power Science and Technology, 2022, 37(2): 188–196 [4] 于希娟, 李洪涛, 马喜欢, 等. 非线性负荷接入高压-超高压系统评估方法对比[J]. 中国电力, 2021, 54(12): 54–62 YU Xijuan, LI Hongtao, MA Xihuan, et al. Comparison of assessment methods for the connection of nonlinear loads to HV-EHV power systems[J]. Electric Power, 2021, 54(12): 54–62 [5] 贺彦强, 王英, 陈小强, 等. 计及特征次谐波治理的铁路网侧储能系统控制策略[J]. 中国电力, 2022, 55(7): 33–41 HE Yanqiang, WANG Ying, CHEN Xiaoqiang, et al. Energy storage control strategy of railway network side considering characteristic harmonic control[J]. Electric Power, 2022, 55(7): 33–41 [6] 黄学民, 邓俊文, 邓京, 等. 交流滤波器避雷器电气特性分析中不同仿真模型的影响[J]. 中国电力, 2021, 54(7): 141–148 HUANG Xuemin, DENG Junwen, DENG Jing, et al. Influence of different simulation models for electrical characteristic analysis of the arrester of AC filter[J]. Electric Power, 2021, 54(7): 141–148 [7] XIAO Y, ZHAO J, MAO S J. Theory for the design of C-type filter[C]//2004 11 th International Conference on Harmonics and Quality of Power (IEEE Cat. No. 04 EX951). Lake Placid, NY, USA. IEEE, 2005: 11–15. [8] ELDEEN ABDEL ALEEM S H, ZOBAA A F, ABDEL AZIZ M M. Optimal C-type passive filter based on minimization of the voltage harmonic distortion for nonlinear loads[J]. IEEE Transactions on Industrial Electronics, 2012, 59(1): 281–289. [9] ZAMANI M A, MOGHADDASIAN M, JOORABIAN M, et al. C-type filter design based on power-factor correction for 12-pulse HVDC converters[C]//2008 34 th Annual Conference of IEEE Industrial Electronics. Orlando, FL, USA. IEEE, 2009: 3039–3044. [10] DAS J C. Design and application of a second-order high-pass damped filter for 8000-hp ID fan drives—a case study[J]. IEEE Transactions on Industry Applications, 2015, 51(2): 1417–1426. [11] 邵洋, 陈丽华, 胡海涛, 等. 基于C型与单调谐滤波器组合的高铁牵引供电系统谐波治理方法[J]. 铁道学报, 2018, 40(4): 52–59 SHAO Yang, CHEN Lihua, HU Haitao, et al. Harmonic suppression of high speed railway traction power supply system based on combination of Chebyshev filter and single tuned filter[J]. Journal of the China Railway Society, 2018, 40(4): 52–59 [12] NASSIF A B, XU W, FREITAS W. An investigation on the selection of filter topologies for passive filter applications[J]. IEEE Transactions on Power Delivery, 2009, 24(3): 1710–1718. [13] PASHAJAVID E, GOLKAR M A A. Efficient procedures to design and characterize passive harmonic filters in low power applications[C]//2010 IEEE International Symposium on Industrial Electronics. Bari, Italy. IEEE, 2010: 809–814. [14] 许德志, 汪飞, 阮毅. LCL、LLCL和LLCCL滤波器无源阻尼分析[J]. 中国电机工程学报, 2015, 35(18): 4725–4735 XU Dezhi, WANG Fei, RUAN Yi. Passive damping of LCL, LLCL and LLCCL filters[J]. Proceedings of the CSEE, 2015, 35(18): 4725–4735 [15] 吕志鹏, 吴鸣, 宋振浩, 等. 高阶无源滤波器对比分析[J]. 电力自动化设备, 2019, 39(6): 54–60 LV Zhipeng, WU Ming, SONG Zhenhao, et al. Comparative analysis of high-order passive filters[J]. Electric Power Automation Equipment, 2019, 39(6): 54–60 [16] IEEE guide for the application of shunt power capacitors[J]. IEEE Std 1036-2020 (Revision of IEEE Std 1036-2010), 2021: 1–96. [17] 国家市场监督管理总局, 国家标准化管理委员会. 标称电压1 000 V以上交流电力系统用并联电容器 第1部分: 总则: GB/T 11024.1—2019[S]. 北京: 中国标准出版社, 2019. [18] 标称电压1 000 V及以下交流电力系统用自愈式并联电容器 第1部分: 总则: GB/T 4208—2017[S]. 2017. [19] 盛四清, 李兴, 范林涛. 基于进化策略法的配电网无功规划[J]. 中国电力, 2014, 47(2): 152–155 SHENG Siqing, LI Xing, FAN Lintao. Reactive power planning of distribution network based on evolutionary strategy theory[J]. Electric Power, 2014, 47(2): 152–155 [20] 崔勇, 杨菊芳, 张栋. 基于风光互补的主动电网规划模型[J]. 中国电力, 2017, 50(5): 101–106, 125 CUI Yong, YANG Jufang, ZHANG Dong. Research on active power network planning model based on wind-solar complementation[J]. Electric Power, 2017, 50(5): 101–106, 125 [21] 任泓宇, 王主丁, 张永斌, 等. 计及技术标准的高压配网无功优化规划[J]. 电网技术, 2020, 44(4): 1463–1473 REN Hongyu, WANG Zhuding, ZHANG Yongbin, et al. Reactive power optimization planning of high-voltage distribution networks with technical standards being considered[J]. Power System Technology, 2020, 44(4): 1463–1473 [22] 徐郑. 配电网10 kV馈线及配变的无功规划研究[D]. 重庆: 重庆大学, 2005. XU Zheng. Research on reactive power planning on 10 kV feeders and transformers in distribution network[D]. Chongqing: Chongqing University, 2005. [23] ABU-HASHIM R, BURCH R, CHANG G, et al. Test systems for harmonics modeling and simulation[J]. IEEE Transactions on Power Delivery, 1999, 14(2): 579–587. [24] LI X. An investigation on harmonic filtering techniques in power systems[D]. Edmonton, AB, CAN: Alberta Univ , 2019. [25] ARRILLAGA J, WATSON N R. Power System Harmonics[M]. 2 nd ed. England: John Wiley & Sons, 2003. [26] 国家技术监督局. 电能质量 公用电网谐波: GB/T 14549—93[S]. 北京: 中国标准出版社, 1994. [27] 朱靖琨. 基于电能质量监测的电容器组指标分析与预测研究[D]. 北京: 华北电力大学, 2016. ZHU Jingkun. Research of capacitor group index analysis and prediction based on the power quality monitoring[D]. Beijing: North China Electric Power University, 2016.
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