Parametrization of ground-fault relays in MV distribution networks with resonant grounding

被引:2
|
作者
Polajzer, Bostjan [1 ]
Pintaric, Matej [1 ]
Ribic, Janez [1 ]
Roser, Miran [2 ]
Stumberger, Gorazd [1 ]
机构
[1] Univ Maribor, Fac Elect Engn & Comp Sci, Koroska 46, Maribor 2000, Slovenia
[2] Elektro Celje Dd, Vrunceva 2a, Celje 3000, Slovenia
关键词
Phase-to-ground faults; Resonantly grounded networks; Ground-fault relay; Timing coordination; PROTECTION;
D O I
10.1016/j.ijepes.2022.108449
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper proposes a methodology for the parametrization of Ground-Fault Relays (GFRs) in medium-voltage distribution networks with resonant grounding. In these networks, a Petersen coil suppresses the self-distinguishing Phase-to-Ground (Ph-G) faults, whereas permanent Ph-G faults are detected by connecting a low-ohmic grounding resistor in parallel with the Petersen coil, thus enabling the operation of the assigned GFRs. The proposed methodology assures the security of the GFRs by considering the transient response of residual (zero-sequence) currents before the connection of a grounding resistor. Furthermore, safety is assured through the maximum-allowed operating times of the GFRs, given by the dangerous touch and step voltages, which are critical for back-up GFRs during distant Ph-G faults. The selectivity is achieved through timing coordination of the GFRs' operation, using self-adaptive differential evolution and variable penalties. The proposed optimization model minimizes the pick-up-current settings together with the GFRs' operating times for metallic and resistive Ph-G faults, thus increasing the sensitivity considerably. For radial network topologies the proposed methodology assures reliable and safe GFR operations for Ph-G faults with a resistance of up to 100 Omega. Moreover, since the dependability of distant in-loop GFRs is questionable, a communication-assisted solution is proposed based on a directional criterion.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Faulty Feeder Detection Under High-Impedance Fault for Active Distribution Networks in Resonant Grounding Mode
    Wang, Xiaowei
    Wang, Xue
    Liu, Weibo
    Gao, Jie
    Wei, Xiangxiang
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024, 73
  • [32] A COORDINATION-FREE GROUND-FAULT RELAY FOR AC MINE DISTRIBUTION-SYSTEMS
    TRUTT, FC
    ROTITHOR, HG
    KOHLER, JL
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 1989, 25 (05) : 819 - 823
  • [33] Ground Fault Temporary Overvoltages in MV Networks: Evaluation and Experimental Tests
    Cerretti, Alberto
    Gatta, Fabio Massimo
    Geri, Alberto
    Lauria, Stefano
    Maccioni, Marco
    Valtorta, Giovanni
    IEEE TRANSACTIONS ON POWER DELIVERY, 2012, 27 (03) : 1592 - 1600
  • [34] MV Ground Fault Current Distribution: an Analytical Formulation of the Reduction Factor
    Colella, Pietro
    Pons, Enrico
    Tommasini, Riccardo
    2017 1ST IEEE INTERNATIONAL CONFERENCE ON ENVIRONMENT AND ELECTRICAL ENGINEERING AND 2017 17TH IEEE INDUSTRIAL AND COMMERCIAL POWER SYSTEMS EUROPE (EEEIC / I&CPS EUROPE), 2017,
  • [35] Impact of MV Ground Fault Current Distribution on Global Earthing Systems
    Pons, Enrico
    Colella, Pietro
    Napoli, Roberto
    Tommasini, Riccardo
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2015, 51 (06) : 4961 - 4968
  • [37] The effects of very-high-resistance grounding on the selectivity of ground-fault relaying in high-voltage longwall power systems
    Novak, T
    IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2001, 37 (02) : 398 - 406
  • [38] Active Fault Locating Method Based on SOP for Single Phase Grounding Faults in the Resonant Grounding Distribution Network
    Ye Y.
    Ma X.
    Lin X.
    Li Z.
    Xu F.
    Wang C.
    Ni X.
    Ding C.
    Ma, Xiao (1815708181@qq.com), 1600, Chinese Society for Electrical Engineering (40): : 1453 - 1464
  • [39] Faulty Phase Recognition Method for Single-Line-to-Ground Fault in Resonant Grounded Distribution Networks
    Ma, Mingwen
    Wang, Wen
    Wang, Faliang
    Ren, Xingqiang
    Wang, Zhen
    2018 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY (POWERCON), 2018, : 351 - 357
  • [40] Performance of hall sensors when used in ground fault protections in MV networks
    Miedzinski, B
    Szymanski, A
    Dzierzanowski, W
    Wojszczyk, B
    UPEC 2004: 39th International Universitities Power Engineering Conference, Vols 1-3, Conference Proceedings, 2005, : 753 - 757