Page 72 - 《中国电力》2026年第4期
P. 72

2026  年 第 59 卷



                  integrated with high penetration of power electronics[J]. Proceedings  WANG  Xingguo,  ZHOU  Zexin,  CHENG  Qi.  A  highly  sensitive
                  of the CSEE, 2024, 44(18): 7039–7048.             sequence-current  differential  protection  method  for  grid-connected
               [8]   冯燕波, 王姗姗, 吴广禄, 等. 新能源孤岛柔直送出系统耗能电阻优             renewable  energy  transmission  lines[J].  Zhejiang  Electric  Power,
                  化配置研究   [J]. 浙江电力, 2024, 43(7): 94–102.           2025, 44(10): 27–37.
                  FENG  Yanbo,  WANG  Shanshan,  WU  Guanglu,  et  al.  Study  on  [16]   ASHTON  P  M,  SAUNDERS  C  S,  TAYLOR  G  A,  et  al.  Inertia
                  optimal configuration of energy-dissipating resistors in VSC-HVDC  estimation  of  the  GB  power  system  using  synchrophasor
                  system  for  new  energy  island[J].  Zhejiang  Electric  Power,  2024,  measurements[J]. IEEE Transactions on Power Systems, 2015, 30(2):
                  43(7): 94–102.                                    701–709.
               [9]   周洋, 黄德志, 李培栋, 等. 考虑平衡端点相位不对称及光伏接入的          [17]   邓祥力, 陈聪颖. 频率时空差异下考虑功率波动的新能源主动调频
                  低压配电网三相潮流模型      [J]. 中国电力, 2024, 57(10): 190–198.  优化方法  [J]. 浙江电力, 2025, 44(12): 22–34.
                  ZHOU Yang, HUANG Dezhi, LI Peidong, et al. A three-phase power  DENG Xiangli, CHEN Congying. An optimization method for active

                  flow  model  for  low-voltage  distribution  networks  considering  frequency  regulation  of  renewable  energy  accounting  for  power
                  balanced  bus  phase  asymmetry  and  photovoltaic  access[J].  Electric  fluctuations  under  spatiotemporal  differences[J].  Zhejiang  Electric
                  Power, 2024, 57(10): 190–198.                     Power, 2025, 44(12): 22–34.
               [10]   张睿琪, 李梦骄, 杨洪明, 等. 动态无功补偿设备支撑高比例新能源         [18]   滕贤亮, 谈超, 昌力, 等. 高比例新能源电力系统有功功率与频率控
                  系统电压稳定能力分析      [J]. 湖南电力, 2024, 44(4): 27–33.    制研究综述及展望     [J]. 电力系统自动化, 2023, 47(15): 12–35.

                  ZHANG Ruiqi, LI Mengjiao, YANG Hongming, et al. Analysis of  TENG  Xianliang,  TAN  Chao,  CHANG  Li,  et  al.  Review  and
                  voltage stability capability of dynamic reactive power compensation  prospect of research on active power and frequency control in power
                  devices supporting high proportional new energy systems[J]. Hunan  system with high proportion of renewable energy[J]. Automation of
                  Electric Power, 2024, 44(4): 27–33.               Electric Power Systems, 2023, 47(15): 12–35.
               [11]   宋玲燕, 赵兴勇, 高兰香, 等. 基于飞轮储能的直流微电网虚拟惯量         [19]   孙传永, 孙恒阳, 黄自鹏, 等. 基于自适应分段转动惯量的虚拟同步
                  自适应控制策略    [J]. 电气自动化, 2023, 45(6): 45–48.        发电机控制策略    [J]. 湖南电力, 2025, 45(6): 114–119.
                  SONG  Lingyan,  ZHAO  Xingyong,  GAO  Lanxiang,  et  al.  Virtual  SUN  Chuanyong,  SUN  Hengyang,  HUANG  Zipeng,  et  al.  Control
                  inertia adaptive control strategy forDC microgrids based on flywheel  strategy  of  virtual  synchronous  generator  based  on  adaptive
                  energy storage[J]. Electrical Automation, 2023, 45(6): 45–48.  segmented moment of inertia[J]. Hunan Electric Power, 2025, 45(6):
               [12]   宋朋飞, 汪马翔, 杨桂兴, 等. 一种用于储能系统的动态电压-频率            114–119.
                  复合控制方法    [J]. 广东电力, 2023, 36(8): 8–14.        [20]   严干贵, 王铭岐, 段双明, 等. 考虑荷电状态恢复的储能一次调频控
                  SONG Pengfei, WANG Maxiang, YANG Guixing, et al. A dynamic  制策略  [J]. 电力系统自动化, 2022, 46(21): 52–61.
                  voltage-frequency  combined  control  method  for  energy  storage  YAN Gangui, WANG Mingqi, DUAN Shuangming, et al. Primary
                  system[J]. Guangdong Electric Power, 2023, 36(8): 8–14.  frequency  regulation  control  strategy  of  energy  storage  considering
               [13]   杨黎, 兰怡希, 林玲, 等. 风储系统中储能虚拟惯量评估与频率支撑            state of charge recovery[J]. Automation of Electric Power Systems,
                  技术  [J]. 浙江电力, 2024, 43(6): 52–60.                2022, 46(21): 52–61.
                  YANG Li, LAN Yixi, LIN Ling, et al. A virtual inertia assessment  [21]   李志军, 郭燕龙, 苗庆玉. 基于解析法的高比例可再生能源系统惯
                  and frequency support technology for wind-storage power generation  量支撑储能配置  [J]. 电测与仪表, 2023, 60(11): 11–18.
                  system[J]. Zhejiang Electric Power, 2024, 43(6): 52–60.  LI  Zhijun,  GUO  Yanlong,  MIAO  Qingyu.  High  proportion  of
               [14]   刘硕, 马兆兴, 刘金鑫, 等. 面向新能源消纳的新型电力系统优化运            renewable energy storage system for inertial support energy storage
                  行策略  [J]. 湖南电力, 2024, 44(1): 59–66.               configuration based on analytical method[J]. Electrical Measurement
                  LIU  Shuo,  MA  Zhaoxing,  LIU  Jinxin,  et  al.  Optimal  operation  & Instrumentation, 2023, 60(11): 11–18.
                  strategies  of  new  power  system  aimed  at  renewable  energy  system  [22]   叶婧, 周正坤, 何杰辉, 等. 计及负荷侧惯量和故障概率的两阶段鲁
                  consumption[J]. Hunan Electric Power, 2024, 44(1): 59–66.  棒机组组合  [J]. 山东电力技术, 2025, 52(4): 1–10.
               [15]   王兴国, 周泽昕, 程琪. 新能源送出线路高灵敏序电流差动保                YE Jing, ZHOU Zhengkun, HE Jiehui, et al. Two stage robust unit
                  护  [J]. 浙江电力, 2025, 44(10): 27–37.                combination  considering  load  side  inertia  and  fault  probability[J].

               68
   67   68   69   70   71   72   73   74   75   76   77