Earth fault location based on a Modified Takagi Method for MV distribution networks

Author(s):  
T.D. Le ◽  
M. Petit
2016 ◽  
Vol 10 (10) ◽  
pp. 2389-2398 ◽  
Author(s):  
Mahmoud A. Elsadd ◽  
Tamer A. Kawady ◽  
Matti Lehtonen ◽  
Abdel-Maksoud I. Taalab ◽  
Nagy I. Elkalashy

2019 ◽  
Vol 139 ◽  
pp. 01041
Author(s):  
A.L. Kulikov ◽  
V.Ju. Osokin ◽  
D.I. Bezdushniy

The single-phase earth faults location are the predominant type of damage in distribution networks of 6-35 kV. The problem of remotely determining the fault location during single-phase earth faults has not definitely accepted practical and accurate solution. The article proposes and substantiates the intellectual methods of determining the fault location with using artificial introduction of short-term double earth faults. In the future by recorded oscillograms of currents and voltages, an accurate calculation of the distance to the damage is assumed.


2016 ◽  
Vol 27 (5) ◽  
pp. e2307 ◽  
Author(s):  
Mahmoud A. Elsadd ◽  
Nagy I. Elkalashy ◽  
Tamer A. Kawady ◽  
Abdel-Maksoud I. Taalab

Author(s):  
Jevgēnijs Linčiks ◽  
Dzintars Baranovskis

Single Phase Earth Fault Location in the Medium Voltage Distribution NetworksThis paper gives a description of the single phase earth fault location methods in the medium voltage networks. The single phase earth fault location in the medium voltage distribution networks is problematic now. The technical devices which are using in Latvia now do not allow to detect the single phase earth faults fast and high accuracy. Fast earth fault location should be possible by using the equipments which are calculating distance to earth faults. But precisely calculate the distance to the single phase earth faults in the medium voltage networks is very difficult. The paper presents the single earth fault location methods including the calculation methods for fault distance.


Energies ◽  
2021 ◽  
Vol 14 (11) ◽  
pp. 3242
Author(s):  
Hamid Mirshekali ◽  
Rahman Dashti ◽  
Karsten Handrup ◽  
Hamid Reza Shaker

Distribution networks transmit electrical energy from an upstream network to customers. Undesirable circumstances such as faults in the distribution networks can cause hazardous conditions, equipment failure, and power outages. Therefore, to avoid financial loss, to maintain customer satisfaction, and network reliability, it is vital to restore the network as fast as possible. In this paper, a new fault location (FL) algorithm that uses the recorded data of smart meters (SMs) and smart feeder meters (SFMs) to locate the actual point of fault, is introduced. The method does not require high-resolution measurements, which is among the main advantages of the method. An impedance-based technique is utilized to detect all possible FL candidates in the distribution network. After the fault occurrence, the protection relay sends a signal to all SFMs, to collect the recorded active power of all connected lines after the fault. The higher value of active power represents the real faulty section due to the high-fault current. The effectiveness of the proposed method was investigated on an IEEE 11-node test feeder in MATLAB SIMULINK 2020b, under several situations, such as different fault resistances, distances, inception angles, and types. In some cases, the algorithm found two or three candidates for FL. In these cases, the section estimation helped to identify the real fault among all candidates. Section estimation method performs well for all simulated cases. The results showed that the proposed method was accurate and was able to precisely detect the real faulty section. To experimentally evaluate the proposed method’s powerfulness, a laboratory test and its simulation were carried out. The algorithm was precisely able to distinguish the real faulty section among all candidates in the experiment. The results revealed the robustness and effectiveness of the proposed method.


2021 ◽  
Vol 12 (1) ◽  
pp. 574-588
Author(s):  
Nan Peng ◽  
Rui Liang ◽  
Guanhua Wang ◽  
Peng Sun ◽  
Chunyu Chen ◽  
...  

1998 ◽  
Vol 13 (4) ◽  
pp. 1086-1092 ◽  
Author(s):  
Zhang Qingchao ◽  
Zhang Yao ◽  
Song Wennan ◽  
Fang Dazhong

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