1. 西安科技大学电气与控制工程学院,西安,710054
2. 西安交通大学电气工程学院,西安,710049
: 2022-10-11。作者简介: 高淑萍(1970—),女,副教授,硕士生导师。基金项目: 国家自然科学基金资助项目(51777166)
网络首发:2023-05-10,
纸质出版:2023
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高淑萍, 吕宇星, 宋国兵, 等. 利用改进变分模态分解突变能量的直流配电网保护方法[J]. 西安交通大学学报, 2023,57(5):159-170.
A DC Distribution Network Protection Method Based on Improved VMD and Abrupt Energy[J]. 2023, 57(5): 159-170.
高淑萍, 吕宇星, 宋国兵, 等. 利用改进变分模态分解突变能量的直流配电网保护方法[J]. 西安交通大学学报, 2023,57(5):159-170. DOI: 10.7652/xjtuxb202305016.
A DC Distribution Network Protection Method Based on Improved VMD and Abrupt Energy[J]. 2023, 57(5): 159-170. DOI: 10.7652/xjtuxb202305016.
为了有效识别环状直流配电网中的故障
提高直流配电网保护的可靠性、选择性、速动性和灵敏性
保证系统的稳定运行
提出一种利用改进变分模态分解(VMD)突变能量的线路纵联保护方法。因为VMD算法需要先设置模态数
且模态数与分解效果息息相关
所以首先利用麻雀搜索算法(SSA)找到VMD算法合适的模态数
使得在此参数下的分解效果最优。然后根据线路首末两端突变能量的差异
构造保护方案。将故障时采集的电压、电流故障分量进行SSA-VMD分解
得到若干模态分量并计算其突变能量。根据区内、区外的突变能量大小差异构造区内、外故障判据
由故障时正负极的突变能量比值差异构造故障极判据。在PSCAD/EMTDC中搭建环状直流配电网模型
利用MATLAB进行保护方法验证
结果表明:在不同故障类型下
所提方法均可在3 ms内快速可靠动作; 可以识别区内外故障并实现故障选极
保护线路全长; 可耐受过渡电阻20 Ω
耐受过渡电阻能力强; 在40 dB噪声情况下
依旧可以识别故障
有一定的抗干扰能力。
In this paper
a line longitudinal protection method based on improved variational mode decomposition(VMD)and abrupt energy is proposed to effectively identify faults in ring-shaped DC distribution network
improve the protection reliability
selectivity
speed and sensitivity
and ensure the stable operation of the system. To use the VMD algorithm
the number of modes that matters to the decomposition effect needs to be set first. Hence the Sparrow search algorithm(SSA)is used to find a better number of modes for the VMD algorithm so as to ensure optimal decomposition effect under this parameter. Then a protection scheme is devised according to the difference of abrupt energy at the head and tail of the line. The voltage and current fault components collected are decomposed by SSA-VMD to obtain several modal components and calculate their abrupt energy. The internal and external fault criteria are developed according to the difference of abrupt energy in the areas separated by the direct current reactor. The fault pole criteria are developed according to the difference of the abrupt energy ratio between positive and negative poles at the time of failure. A circular DC distribution network mo-del is built in PSCAD/EMTDC
and the protection method is validated by MATLAB. The results show that the proposed method works quickly(within 3 ms)and reliably for different types of faults. It can identify both internal and external faults
realize fault pole selection and protect the full length of the line. It can also well withstand transition resistance(up to 20 Ω). Under a noise level of 40 dB
it can still identify faults and resist jamming to a certain extent.
刘海金, 李斌, 温伟杰, 等. 柔性直流系统的线路保护关键技术与展望 [J]. 电网技术, 2021, 45(9): 3463-3477.
LIU Haijin, LI Bin, WEN Weijie, et al. Review and prospect on transmission line protection in flexible DC system [J]. Power System Technology, 2021, 45(9): 3463-3477.
HE Jinghan, CHEN Keao, LI Meng, et al. Review of protection and fault handling for a flexible DC grid [J]. Protection and Control of Modern Power Systems, 2020, 5(1): 15.
郑涛, 吕文轩. 基于级联全桥型直流断路器的直流配电网自适应重合闸方案 [J]. 电力系统自动化, 2020, 44(22): 78-86.
ZHENG Tao, LV Wenxuan. Adaptive reclosing scheme for DC distribution network based on cascaded full-bridge DC circuit breaker [J]. Automation of Electric Power Systems, 2020, 44(22): 78-86.
杨赛昭, 向往, 文劲宇. 架空柔性直流电网线路故障保护综述 [J]. 中国电机工程学报, 2019, 39(22): 6600-6616.
YANG Saizhao, XIANG Wang, WEN Jinyu. Review of DC fault protection methods for the MMC based DC grid [J].Proceedings of the CSEE, 2019, 39(22): 6600-6616.
LEE J Y, KIM H S, JUNG J H. Enhanced dual-active-bridge DC-DC converter for balancing bipolar voltage level of DC distribution system [J]. IEEE Transactions on Industrial Electronics, 2020, 67(12): 10399-10409.
李妮, 焦在滨, 齐杉. 基于直流断路器动作响应的环状柔性直流配电网后备保护方案 [J/OL]. 中国电机工程学报: 1-14[2022-10-07]. http://kns.cnki.net/kcms/detail/11.2107.tm.20220803.1329.010.html.
LI Ni, JIAO Zaibin, QI Shan. A backup protection scheme based on the response of the DC circuit breaker tripping for the meshed DC distribution networks [J/OL]. Proceedings of the CSEE: 1-14[2022-10-07]. http://kns.cnki.net/kcms/detail/11.2107.tm.20220803.1329.010.html.
高淑萍, 高悦, 宋国兵, 等. 利用Teager能量算子瞬时能量的模块化多电平换流器多端柔性直流电网保护方法 [J]. 西安交通大学学报, 2020, 54(9): 40-48.
GAO Shuping, GAO Yue, SONG Guobing, et al. A protection method based on instantaneous energy of Teager energy operator for modular multilevel converter multiterminal flexible direct current grid [J]. Journal of Xi'an Jiaotong University,2020, 54(9): 40-48.
徐瑞东, 宋国兵, 侯俊杰, 等. 采用换流器控制信号变化量极性特征的高压直流线路纵联保护 [J]. 西安交通大学学报, 2021, 55(5): 143-153.
XU Ruidong, SONG Guobing, HOU Junjie, et al. Pilot protection for high voltage direct current transmission line based on polarity characteristics of converter control signal deviation [J]. Journal of Xi'an Jiaotong University, 2021, 55(5): 143-153.
YANG Yachao, HUANG Chun, XU Qianming. A fault location method suitable for low-voltage DC line [J]. IEEE Transactions on Power Delivery, 2020, 35(1): 194-204.
贾科, 陈聪, 刘子奕, 等. 基于单端电流暂态量的柔性直流配电网保护及其整定 [J]. 电力系统自动化, 2022, 46(6): 144-152.
JIA Ke, CHEN Cong, LIU Ziyi, et al. Protection of flexible DC distribution network based on single-end current transient and its setting [J]. Automation of Electric Power Systems, 2022, 46(6): 144-152.
杨乐, 秦文萍, 陈晓乾, 等. 基于限流控制与保护协同的柔性直流配电线路整体保护方案 [J]. 电网技术, 2022, 46(12): 4634-4646.
YANG Le, QIN Wenping, CHEN Xiaoqian, et al. Overall protection scheme for flexible DC distribution lines based on synergy of current limiting control and protection [J]. Power System Technology, 2022, 46(12): 4634-4646.
戴志辉, 刘雪燕, 刘自强, 等. 基于限流电抗电压积分值的环状柔性直流配电网保护方案 [J]. 电力自动化设备, 2020, 40(12): 104-112.
DAI Zhihui, LIU Xueyan, LIU Ziqiang, et al. Protection scheme for ring flexible DC distribution grids based on integration of current-limiting reactance voltage [J]. Electric Power Automation Equipment, 2020, 40(12): 104-112.
高淑萍, 邵明星, 宋国兵, 等. 一种适用于中压直流配电网单极故障的保护方法 [J]. 湖南大学学报(自然科学版), 2021, 48(8): 78-89.
GAO Shuping, SHAO Mingxing, SONG Guobing, et al. A new type of protection method suitable for single-pole fault in medium voltage DC distribution network [J]. Journal of Hunan University(Natural Sciences), 2021, 48(8): 78-89.
李卫丰, 王超, 薛永端, 等. 基于暂态功率方向的柔性直流配电网线路单极接地保护方法 [J]. 电力系统保护与控制, 2021, 49(23): 1-10.
LI Weifeng, WANG Chao, XUE Yongduan, et al. A flexible DC distribution network line unipolar grounding protection method based on transient power direction [J]. Power System Protection and Control, 2021, 49(23): 1-10.
上官鑫, 秦文萍, 夏福良, 等. 基于暂态电压Pearson相关性的MMC多端柔性直流配电网单极接地故障保护方案 [J]. 高电压技术, 2020, 46(5): 1740-1749.
SHANGGUAN Xin, QIN Wenping, XIA Fuliang, et al. Pole-to-ground fault protection scheme for MMC multi-terminal flexible DC distribution network based on Pearson correlation of transient voltage [J]. High Voltage Engineering, 2020, 46(5): 1740-1749.
余修勇, 肖立业, 林良真, 等. 基于单端量的柔性直流电网故障识别方案 [J]. 高电压技术, 2018, 44(2): 440-447.
YU Xiuyong, XIAO Liye, LIN Liangzhen, et al. Single-ended fast fault detection scheme for MMC-based HVDC [J]. High Voltage Engineering, 2018, 44(2): 440-447.
时伯年, 李岩, 孙刚, 等. 基于快速重合闸的多端直流配电网极间故障隔离恢复策略 [J]. 电力系统保护与控制, 2019, 47(8): 88-95.
SHI Bonian, LI Yan, SUN Gang, et al. Fault isolation recovery strategy for multi-terminal DC distribution network based on DC breaker reclosing [J]. Power System Protection and Control, 2019, 47(8): 88-95.
高淑萍, 宋晓辰, 宋国兵. 基于VMD能量熵的混合双端直流输电线路纵联保护方案 [J]. 电力系统保护与控制, 2022, 50(14): 123-132.
GAO Shuping, SONG Xiaochen, SONG Guobing. Longitudinal protection scheme of hybrid double-terminal DC transmission lines based on VMD energy entropy [J]. Power System Protection and Control, 2022, 50(14): 123-132.
杨冬锋, 王鹤, 刘晓军, 等. 基于VMD-SVD的多端柔直电网故障测距方案 [J]. 电网技术, 2022, 46(8): 3084-3093.
YANG Dongfeng, WANG He, LIU Xiaojun, et al. Fault location scheme for multi-terminal MMC-HVDC system based on VMD-SVD [J]. Power System Technology, 2022, 46(8): 3084-3093.
刘维, 刘辉. 改进变分模态分解-多尺度排列熵结合广义回归神经网络的高压直流输电线路故障辨识 [J]. 科学技术与工程, 2022, 22(1): 211-219.
LIU Wei, LIU Hui. High voltage direct current transmission lines fault identification method based on improved VMD-MPE and general regression neural network [J]. Science Technology and Engineering, 2022, 22(1): 211-219.
陈祥祥, 史治宇, 赵宗爽. 基于参数优化变分模态分解的瞬时模态参数识别 [J/OL]. 航空动力学报: 1-8[2022-09-01]. https://doi.org/10.13224/j.cnki.jasp.20220301.
CHEN Xiangxiang, SHI Zhiyu, ZHAO Zongshuang. Instantaneous modal parameter identification based on parameter optimized variational mode decomposition [J/OL]. Journal of Aerospace Power: 1-8[2022-09-01]. https://doi.org/10.13224/j.cnki.jasp.20220301.
申勇, 章翔峰, 姜宏, 等. 计入传动轴柔性的齿轮故障系统建模及VMD-Lempel-Ziv损伤评估 [J]. 西安交通大学学报, 2021, 55(3): 126-135.
SHEN Yong, ZHANG Xiangfeng, JIANG Hong, et al. Gear fault system modeling and VMD-Lempel-Ziv damage assessment considering transmission shaft flexibility [J].Journal of Xi'an Jiaotong University, 2021, 55(3): 126-135.
李浩, 张禄亮. 基于改进VMD和特征分布系数的配电网高阻接地故障检测方法 [J]. 南方电网技术, 2022, 16(12): 109-117.
LI Hao, ZHANG Luliang. High impedance grounding fault detection method for distribution network based on improved VMD and characteristic distribution coefficient [J]. Southern Power System Technology, 2022, 16(12): 109-117.
张治, 王新宇, 王林. 基于麻雀搜索算法的光伏阵列参数辨识 [J]. 电气传动, 2022, 52(13): 75-80.
ZHANG Zhi, WANG Xinyu, WANG Lin. Photovoltaic array parameter identification based on sparrow search algorithm [J]. Electric Drive, 2022, 52(13): 75-80.
王红君, 李万丰, 赵辉, 等. 基于改进VMD-SSA的直流微电网故障检测技术研究 [J]. 电工电能新技术, 2022, 41(2): 53-62.
WANG Hongjun, LI Wanfeng, ZHAO Hui, et al. Research on fault detection technology of DC microgrid based on improved VMD-SSA [J]. Advanced Technology of Electrical Engineering and Energy, 2022, 41(2): 53-62.
陈少宇, 黄文焘, 邰能灵, 等. 基于单端暂态电压的含限流电抗器直流配电网保护方法 [J]. 电力系统自动化, 2021, 45(8): 185-193.
CHEN Shaoyu, HUANG Wendao, TAI Nengling, et al. Protection method based on single-terminal transient voltage for DC distribution network with current limiting reactor [J]. Automation of Electric Power Systems, 2021, 45(8): 185-193.
王圣辉, 范春菊, 姜山. 基于暂态电压比原理的直流配电网故障保护方案 [J]. 电力自动化设备, 2020, 40(7): 196-203.
WANG Shenghui, FAN Chunju, JIANG Shan. Fault protection scheme for DC distribution network based on ratio of transient voltage principle [J]. Electric Power Automation Equipment, 2020, 40(7): 196-203.
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