Page 142 - 《中国电力》2026年第4期
P. 142
2026 年 第 59 卷
[7] 杨舒婷, 陈新, 黄通, 等. 考虑 MMC 环流控制的海上风电经柔直送 differentiated dispatch and control method for flexible distribution
出系统阻抗塑造方法 [J]. 中国电力, 2023, 56(4): 38–45. system with high proportion of renewable energy[J]. Automation of
YANG Shuting, CHEN Xin, HUANG Tong, et al. Impedance Electric Power Systems, 2025, 49(6): 66–77.
modeling method of offshore wind farm integration through MMC- [15] 钱敏慧, 刘艳章, 胡同宇, 等. 基于直流电容电压同步的构网型永磁
HVDC with MMC circulation control[J]. Electric Power, 2023, 直驱风电机组暂态电压支撑策略 [J]. 可再生能源, 2025, 43(9):
56(4): 38–45. 1249–1259.
[8] 廖修谱, 周全, 李磊, 等. 一种适用于远海风电直流汇集送出换流阀 QIAN Minhui, LIU Yanzhang, HU Tongyu, et al. Transient voltage
的拓扑及其技术经济性分析 [J]. 中国电力, 2022, 55(6): 118–127.
support strategy for grid-forming permanent magnet direct-driven
LIAO Xiupu, ZHOU Quan, LI Lei, et al. A feasible topology of DC
wind turbine based on DC voltage synchronization[J]. Renewable
collection valve for long-distance offshore wind farms and cost-
Energy Resources, 2025, 43(9): 1249–1259.
effective analysis[J]. Electric Power, 2022, 55(6): 118–127.
[16] 林泓宏, 余涛, 张桂源, 等. 基于数据驱动的高比例新能源配电网无
[9] 刘昊宇. 多端柔性直流输电系统频率支持及直流电压控制方法研
功优化算法 [J]. 综合智慧能源, 2023, 45(11): 10–19.
究 [D]. 北京: 华北电力大学, 2023.
LIN Honghong, YU Tao, ZHANG Guiyuan, et al. Data-driven
LIU Haoyu. Research on frequency support and DC voltage
reactive power optimization algorithm for the distribution network
regulation schemes for VSC-MTDC system[D]. Beijing: North China
with high proportion of renewable energy[J]. Integrated Intelligent
Electric Power University, 2023.
Energy, 2023, 45(11): 10–19.
[10] 刘昊宇, 刘崇茹, 郑乐, 等. 直流电压准无差修正的 VSC-MTDC 系
[17] 朱润泽, 王德军. 基于 LSTM 神经网络的光伏系统功率预测 [J]. 电
统协同优化下垂控制 [J]. 电力系统自动化, 2022, 46(6): 117–126.
力科技与环保, 2023, 39(3): 201–206.
LIU Haoyu, LIU Chongru, ZHENG Le, et al. Cooperative optimal
ZHU Runze, WANG Dejun. Power prediction of photovoltaic system
droop control for VSC-MTDC system with quasi non-error DC
based on LSTM neural network[J]. Electric Power Environmental
voltage regulation[J]. Automation of Electric Power Systems, 2022,
Protection, 2023, 39(3): 201–206.
46(6): 117–126.
[18] YANG M, PEI X J, ZHANG M, et al. An improved master-slave
[11] 邓银秋, 汪震, 韩俊飞, 等. 适用于海上风电接入的多端柔直网内不
control strategy for automatic DC voltage control under the master
平衡功率优化分配控制策略 [J]. 中国电机工程学报, 2020, 40(8):
station failure in MTDC system[J]. IEEE Journal of Emerging and
2406–2415.
Selected Topics in Power Electronics, 2023, 11(2): 1530–1541.
DENG Yinqiu, WANG Zhen, HAN Junfei, et al. Control strategy on
[19] 韩磊. MMC-MTDC 系统启动及协调控制策略研究 [D]. 镇江: 江
optimal redistribution of unbalanced power for offshore wind farms
苏大学, 2021.
integrated VSC-MTDC[J]. Proceedings of the CSEE, 2020, 40(8):
HAN Lei. Research on start-up and coordinated control strategy of
2406–2415.
[12] 孙媛媛, 葛俊, 许庆燊, 等. 计及多频耦合影响的谐波解耦贡献评 MMC-MTDC system[D]. Zhenjiang: Jiangsu University, 2021.
估 [J]. 中国电机工程学报, 2025, 45(21): 8268–8281. [20] LI Z, WEI Z A, ZHAN R P, et al. Operation modes analysis and
coordinated control strategies for the novel hybrid MTDC system[C]//
SUN Yuanyuan, GE Jun, XU Qingshen, et al. Decoupling harmonic
2019 IEEE Sustainable Power and Energy Conference (iSPEC).
contribution evaluation considering multi-frequency coupling
effects[J]. Proceedings of the CSEE, 2025, 45(21): 8268–8281. Beijing, China. IEEE, 2020: 856-860.
[13] 刘育明, 张澳归, 李小菊, 等. 基于控切配合的高比例风电电力系统 [21] 于滨, 傅晓帆, 龙凌, 等. 面向大容量风电并网的 VSC-MTDC 功率
紧急频率控制方法 [J]. 智慧电力, 2023, 51(7): 9–15. 协调控制 [J]. 机械与电子, 2024, 42(6): 16–21.
LIU Yuming, ZHANG Aogui, LI Xiaoju, et al. Emergency frequency YU Bin, FU Xiaofan, LONG Ling, et al. Power coordination control
control method of high proportion wind power system based on strategy of VSC-MTDC system for large-scale wind power grid
control switching coordination[J]. Smart Power, 2023, 51(7): 9–15. connection[J]. Machinery & Electronics, 2024, 42(6): 16–21.
[14] 杨晓东, 刘蕊宁, 吴红斌, 等. 含高比例新能源柔性配电系统的事件 [22] ANSARI J A, LIU C R, KHAN S A. MMC based MTDC grids: a
驱动型差异化调控方法 [J]. 电力系统自动化, 2025, 49(6): 66–77. detailed review on issues and challenges for operation, control and
YANG Xiaodong, LIU Ruining, WU Hongbin, et al. Event-driven protection schemes[J]. IEEE Access, 2020, 8: 168154–168165.
138

