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Single Phase-to-Ground Fault Line Identification and Section Location Method for Non-Effectively Grounded Distribution Systems Based on Signal Injection
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作者 潘贞存 王成山 +1 位作者 丛伟 张帆 《Transactions of Tianjin University》 EI CAS 2008年第2期92-96,共5页
A diagnostic signal current trace detecting based single phase-to-ground fault line identifica- tion and section location method for non-effectively grounded distribution systems is presented in this paper.A special d... A diagnostic signal current trace detecting based single phase-to-ground fault line identifica- tion and section location method for non-effectively grounded distribution systems is presented in this paper.A special diagnostic signal current is injected into the fault distribution system,and then it is detected at the outlet terminals to identify the fault line and at the sectionalizing or branching point along the fault line to locate the fault section.The method has been put into application in actual distribution network and field experience shows that it can identify the fault line and locate the fault section correctly and effectively. 展开更多
关键词 single phase-to-ground fault (SPGF) signal injection method fault line identification fault location
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Fault diagnosis in neutral point indirectly grounded system basedon information fusion
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作者 于飞 鞠丽叶 +2 位作者 刘喜梅 崔平远 钟秋海 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2003年第4期434-437,共4页
In neutral point indirectly grounded systems, phase-to-ground fault is putting new demands on fault diagnosis technology. Information fusion is applied to detect the phase-to-ground fault, which integrates several sou... In neutral point indirectly grounded systems, phase-to-ground fault is putting new demands on fault diagnosis technology. Information fusion is applied to detect the phase-to-ground fault, which integrates several sources of information, including line current, line voltage, zero sequence current and voltage, and quintic harmonic wave component. This method is testified through the simulation of Matlab. Simulation results show that the precision and reliability of the detection has been greatly increased. 展开更多
关键词 information fusion fault diagnosis neutral point indirectly grounded system phase-to-ground fault
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Grounding Systems for Power Supply Facilities
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作者 Vladimir Anatolevich Konusarov Evgeniy Alekseevich Shutov Tatyana Evgenievna Turukina 《Energy and Power Engineering》 2019年第1期1-14,共14页
The goal of this work is creation of optimal grounding model at the substation 10/0.4 kV of the urban power distribution network. The electric current can pose a major threat to the man’s life and health. In addition... The goal of this work is creation of optimal grounding model at the substation 10/0.4 kV of the urban power distribution network. The electric current can pose a major threat to the man’s life and health. In addition to pose a threat for health, the rise of the short circuit, as a consequence of insulation faults, poses a threat to retirement of electric systems and fire risks. The reliable grounding system design has significant implications for protection of human being as well as for electrical facility protection. The set objective was performed on the base of analytical and software-based methods. Analytical method gives a qualitative indication at each step in analysis. It also allows evaluating the values effect on the result, but the method is not susceptible of tolerable accuracy, that is why analytical method serves as initial approximation in differentiating. Specified estimation can be performed in such software package as MATLAB or ETAP. Software-based estimation is based on the finite element method (FEM), the main advantage of which is the ability to create different forms of grounding and allows obtaining distribution graphs of the step potential on the earth’s surface and touch potential. The calculation results in comparison of analytical and software-based methods taking into account the grounding optimization. There are conclusions on the most effective ground network. 展开更多
关键词 Grounding Device Current-Using Equipment Short-Circuit fault Single phase-to-ground fault Main STEP Down Substation (MSDS) TN-C TN-S TN-C-S TT IT Indirect Contact STEP Potential FEM IEEE
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