A fast time-frequency response based differential spectral energy protection of AC microgrids including fault location

被引:21
作者
O. Dharmapandit
R. K. Patnaik
P. K. Dash
机构
[1] Siksha O Anusandhan University,Electrical Engineering Department, Institute of Technical Education and Research, Institute of Technical Education and Research
[2] GMR Instittute of Technology,Electrical and Electronics Engineering Department
关键词
Microgrid; Differential spectral energy protection; Time-frequency representation; Fault classification; Fault location;
D O I
10.1186/s41601-017-0062-0
中图分类号
学科分类号
摘要
This paper proposes a pattern recognition based differential spectral energy protection scheme for ac microgrids using a Fourier kernel based fast sparse time-frequency representation (SST or simply the sparse S-Transform). The average and differential current components are passed through a change detection filter, which senses the instant of fault inception and registers a change detection point (CDP). Subsequently, if CDP is registered for one or more phases, then half cycle data samples of the average and differential currents on either side of the CDP are passed through the proposed SST technique, which generates their respective spectral energies and a simple comparison between them detects the occurrence and type of the fault. The SST technique is also used to provide voltage and current phasors and the frequency during faults which is further utilized to estimate the fault location. The proposed technique as compared to conventional differential current protection scheme is quicker in fault detection and classification, which is least effected from bias setting, has a faster relay trip response (less than one cycle from fault incipient) and a better accuracy in fault location. The significance and accuracy of the proposed scheme have been verified extensively for faults in a standard microgrid system, subjected to a large number of operating conditions and the outputs vindicate it to be a potential candidate for real time applications.
引用
收藏
相关论文
共 47 条
[1]  
Arefifar SA(2013)Optimum microgrid design for enhancing reliability and supply-security IEEE Trans Smart Grid 4 1567-1575
[2]  
Yasser AR(2017)Emerging power quality problems and state-of-the-art solutions IEEE Trans Ind Electron 64 761-763
[3]  
El-Fouly TH(2017)A review on issues and approaches for microgrid protection Renew Sust Energ Rev 67 988-997
[4]  
Khadkikar V(2013)Optimal protection coordination for microgrids with grid-connected and islanded capability IEEE Trans Ind Electron 60 1668-1677
[5]  
Xu D(2015)Optimal protection coordination for meshed distribution systems with DG using dual setting directional over-current relays IEEE Trans Smart Grid 6 115-123
[6]  
Cecati C(2013)Overcurrent and overload protection of directly voltage-controlled distributed resources in a microgrid IEEE Trans Ind Electron 60 5629-5638
[7]  
Brearley BJ(2016)A communication-assisted overcurrent protection scheme for radial distribution systems with distributed generation IEEE Trans Smart Grid 7 114-123
[8]  
Prabu RR(2012)A communication-assisted protection strategy for inverter-based medium-voltage microgrids IEEE Trans Smart Grid 3 2088-2099
[9]  
Najy WK(2011)A simple adaptive overcurrent protection of distribution systems with distributed generation IEEE Trans Smart Grid 2 428-437
[10]  
Zeineldin HH(2014)A differential sequence component protection scheme for microgrids with inverter-based distributed generators IEEE Trans Smart Grid 5 29-37