1 |
朱奇先,朱玉鑫,王晓兰,等 .网格式交直流配电网潮流计算及其损耗特性[J].电力系统及其自动化学报,2020,32(3):39-45. doi:10.19635/j.cnki.csu-epsa.000256
|
|
ZHU Q X, ZHU Y X, WANG X L,et al .Power flow calculation and loss characteristics of meshed AC/DC distribution network[J].Proceedings of the CSU-EPSA,2020,32(3):39-45. doi:10.19635/j.cnki.csu-epsa.000256
|
2 |
陈培育,金尧,郑骁麟,等 .基于可观性和可计算性的配电网关键量测识别方法[J].智慧电力,2024,52(3):110-116.
|
|
CHEN P Y, JIN Y, ZHENG X L,et al .Identification of critical measurement for distribution network based on observability and computability[J].Smart Power,2024,52(3):110-116.
|
3 |
冀肖彤,杨东俊,方仍存,等 .“双碳”目标下未来配电网构建思考与展望[J].电力建设,2024,45(2):37-48.
|
|
JI X T, YANG D J, FANG R C,et al .Research and prospect of future distribution network construction under dual carbon target[J].Electric Power Construction,2024,45(2):37-48.
|
4 |
潘可佳,冯川洋,潘雪 .基于大数据的配电网馈线故障智能识别定位方法研究[J].光学与光电技术,2022,20(4):145-152.
|
|
PAN K J, FENG C Y, PAN X .Intelligent identification and location method of fault line in distribution network based on big data[J].Optics & Optoelectronic Technology,2022,20(4):145-152.
|
5 |
刘刚,王秀茹,李华,等 .考虑风电不确定性的配电网区间潮流计算[J].电测与仪表,2022,59(2):126-132.
|
|
LIU G, WANG X R, LI H,et al .Interval power flow calculation for distribution networks considering the uncertainty of wind power[J].Electrical Measurement & Instrumentation,2022,59(2):126-132.
|
6 |
邱冬,贾勇勇,韩少华,等 .基于区间-概率潮流分析的配电网调压手段适应性评估方法[J].浙江电力,2024,43(4):85-94.
|
|
QIU D, JIA Y Y, HAN S H,et al .An adaptability evaluation method for voltage regulation measures in distribution networks based on interval and probability power flow analysis[J].Zhejiang Electric Power,2024,43(4):85-94.
|
7 |
米阳,申杰,卢长坤,等 .考虑含储能的三端智能软开关与需求侧响应的主动配电网有功无功协调优化[J].电力系统保护与控制,2024,52(3):104-118.
|
|
MI Y, SHEN J, LU C K,et al .Active and reactive power coordination optimization of an active distribution network considering a three-terminal soft open point with energy storage and demand response[J].Power System Protection and Control,2024,52(3):104-118.
|
8 |
袁兆祥,张翼,聂铭,等 .分布式新能源接入的10 kV配电网保护适应性分析[J].电力建设,2024,45(2):49-57. doi:10.12204/j.issn.1000-7229.2024.02.005
|
|
YUAN Z X, ZHANG Y, NIE M,et al .Protection adaptability analysis of distributed generation connected to 10 kV distribution network[J].Electric Power Construction,2024,45(2):49-57. doi:10.12204/j.issn.1000-7229.2024.02.005
|
9 |
邓祥力,葛慧宁,廖玥琳,等 .基于多源数据交互的高渗透率主动配电网保护策略[J].电力科学与技术学报,2024,39(2):101-111.
|
|
DENG X L, GE H N, LIAO Y L,et al .Active distribution network protection strategy based on multi-source data interaction under high permeability[J].Journal of Electric Power Science and Technology,2024,39(2):101-111.
|
10 |
邓丰,李欣然,曾祥君,等 .基于多端故障行波时差的含分布式电源配电网故障定位新方法[J].中国电机工程学报,2018,38(15):4399-4409.
|
|
DENG F, LI X R, ZENG X J,et al .A novel multi-terminal fault location method based on traveling wave time difference for radial distribution systems with distributed generators[J].Proceedings of the CSEE,2018,38(15):4399-4409.
|
11 |
HUANG K, CAI R, ZHAO J,et al .Analysis of current protection in distribution networks with clean energy access[J].Frontiers in Energy Research,2023,10:1035781. doi:10.3389/fenrg.2022.1035781
|
12 |
GHOTBI-MALEKI M, CHABANLOO R M, ZEINELDIN H H,et al .Design of setting group-based overcurrent protection scheme for active distribution networks using MILP[J].IEEE Transactions on Smart Grid,2021,12(2):1185-1193. doi:10.1109/tsg.2020.3027371
|
13 |
PARK J D, CANDELARIA J, MA L,et al .DC ring-bus microgrid fault protection and identification of fault location[J].IEEE Transactions on Power Delivery,2013,28(4):2574-2584. doi:10.1109/tpwrd.2013.2267750
|
14 |
于成澳,高湛军,刘朝,等 .基于自适应制动补偿系数的有源配电网电流纵联差动保护[J].电力系统保护与控制,2023,51(17):1-14.
|
|
YU C A, GAO Z J, LIU Z,et al .A current longitudinal differential protection method based on adaptive braking compensation coefficient for active distribution networks[J].Power System Protection and Control,2023,51(17):1-14.
|
15 |
FARSADI M, YAZDANI NEJADI A, ESMAEILYNASAB A .Reducing over-current relays operating times in adaptive protection of distribution networks considering dg penetration[C]//2015 9th International Conference on Electrical and Electronics Engineering (ELECO).Bursa,Turkey:IEEE,2016:463-468. doi:10.1109/eleco.2015.7394439
|
16 |
EKKA K C, KALE V S, KHOND S .Improved adaptive micro-grid over current protection scheme considering false tripping[EB/OL].(2023-04-28)[2023-06-01]. .
|
17 |
FARKHANI J S, ZAREEIN M, SOROUSHMEHR H,et al .Coordination of directional overcurrent protection relay for distribution network with embedded DG[C]//2019 5th Conference on Knowledge Based Engineering and Innovation (KBEI).Tehran,Iran:IEEE,2019:281-286. doi:10.1109/kbei.2019.8735025
|
18 |
KHESHTI M, KANG X .Optimal overcurrent relay coordination in distribution network based on lightning flash algorithm[J].Engineering Computations,2018,35(3):1140-1160. doi:10.1108/ec-01-2017-0003
|
19 |
ALAEE P, AMRAEE T .Optimal coordination of directional overcurrent relays in meshed active distribution network using imperialistic competition algorithm[J].Journal of Modern Power Systems and Clean Energy,2020,9(2):416-422. doi:10.35833/mpce.2019.000184
|
20 |
RAJALAKSHMI J, DURAIRAJ S .Application of multi-objective optimization algorithm for siting and sizing of distributed generations in distribution networks[J].Journal of Combinatorial Optimization,2021,41(2):267-289. doi:10.1007/s10878-020-00681-2
|
21 |
SAMET H, GHANBARI T, JARRAHI M A,et al .Efficient current-based directional relay algorithm[J].IEEE Systems Journal,2019,13(2):1262-1272. doi:10.1109/jsyst.2018.2868861
|
22 |
CHU T, WANG G, WANG T,et al .Distributed relay protection for distribution network based on hybrid power method and current method[J].Energy Reports,2022,8:749-756. doi:10.1016/j.egyr.2022.02.207
|
23 |
王宁,韩国栋,高厚磊,等 .有源配电网电流差动保护判据研究[J].电力系统保护与控制,2023,51(7):14-23.
|
|
WANG N, HAN G D, GAO H L,et al .The current differential protection criterion of active distribution networks[J].Power System Protection and Control,2023,51(7):14-23.
|
24 |
HAFEZ D M, ELDIN E H S, MAHMOUD A A .A novel unit protective relaying concept based on sequential overlapping derivative transform:Interconnected network application[J].International Journal of Electrical Power & Energy Systems,2013,45(1):206-216. doi:10.1016/j.ijepes.2012.07.047
|
25 |
李冬梅,胡扬宇,王利利,等 .基于改进注入法的直流配电网双端测距故障定位方法[J].智慧电力,2019,47(12):110-116.
|
|
LI D M, HU Y Y, WANG L L,et al .Double-end distance measurement fault location method for DC distribution network based on improved injection method[J].Smart Power,2019,47(12):110-116.
|
26 |
张宏亮 .基于信号注入的10 kV配电网故障定位系统设计[D].广州:华南理工大学,2017.
|
|
ZHANG H L .Design of fault location system of 10 kV distribution network based on signal injection method[D].Guangzhou:South China University of Technology,2017.
|
27 |
杨锴 .基于S变换与相关算法的配电网雷击故障识别与定位[J].现代建筑电气,2018,9(2):16-22.
|
|
YANG K .Lightning fault identification and location based S-transform and correlation algorithm in distribution network[J].Modern Architecture Electric,2018,9(2):16-22.
|
28 |
俞君杰,戴华冠 .电网雷击故障监测中人工智能应用方案[J].微型电脑应用,2022,38(8):154-158.
|
|
YU J J, DAI H G .Application of artificial intelligence in lightning fault monitoring of power grid[J].Microcomputer Applications,2022,38(8):154-158.
|
29 |
徐春营,朱毅,何辉,等 .配网雷击故障识别与定位装置的应用[J].自动化应用,2023,64(2):107-109.
|
|
XU C Y, ZHU Y, HE H,et al .Application of lightning fault identification and location device in distribution network[J].Automation Application,2023,64(2):107-109.
|
30 |
王志成,宋国兵,常仲学,等 .配电网单相接地故障时的对地参数实时测量和选线方法[J].电网技术,2023,47(9):3762-3772.
|
|
WANG Z C, SONG G B, CHANG Z X,et al .Real-time measurement of ground parameters and line selection for single-phase grounding faults of distribution network[J].Power System Technology,2023,47(9):3762-3772.
|
31 |
李景丽,刘鹏,赵子敬,等 .中低压配电网单相接地故障熄弧处理方法研究[J].电瓷避雷器,2022(5):125-132.
|
|
LI J L, LIU P, ZHAO Z J,et al .Treatment methods of single-phase grounding fault arc extinction in medium and low voltage distribution network[J].Insulators and Surge Arresters,2022(5):125-132.
|