Load shedding method aimed fast voltage recovery to prevent interference of FIDVR with UV relays

Author:

Ghotbi‐Maleki Mahdi1ORCID,Mohammadi Reza1ORCID,Javadi Hamid12

Affiliation:

1. Department of Electrical Engineering Shahid Beheshti University Tehran Iran

2. Monenco Iran Consulting Engineers Tehran Iran

Abstract

AbstractThe fault‐induced delayed voltage recovery (FIDVR) and short‐term voltage instability (STVI) phenomena appear in networks with high penetration of induction motor loads because the increase in requested reactive powers of these loads prevents the voltages from quickly returning to their pre‐fault levels. Load shedding (LS) is one of the ways to deal with FIDVR and STVI and reduce the imbalance between the generation and demand of reactive power. Under‐voltage (UV) relays that disconnect loads during voltage drop cannot effectively deal with this phenomenon because of their inability to detect the effective loads on the reduction of FIDVR and STVI severities. Therefore, the operation of UV relays during these phenomena causes unnecessary load disconnection, and the interference of their operations with FIDVR and STVI must be avoided. This paper presents two wide‐area approaches based on network and loads parameters, the first of which deals with the most critical FIDVR, and the second tries to simultaneously handle critical FIDVRs of all buses. Also, bus prioritization for LS during STVI has been addressed. Simulation results revealed the better performance of the proposed approaches than the previous ones in terms of the amount of LS and the number of selected buses for LS.

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Control and Systems Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multi-objective dynamic VAR planning against fault-induced delayed voltage recovery using heuristic optimization;Electrical Engineering;2024-04-10

2. An optimized synchronous approach to DC/DC droop backstepping control considering voltage compensation in DC microgrids;Electric Power Systems Research;2024-03

3. PV Inverter Control Design for Mitigating Fault-Induced Delayed Voltage Recovery (FIDVR);2023 IEEE International Conference on Energy Technologies for Future Grids (ETFG);2023-12-03

4. Comparison of Load Shedding Methods for Mitigating FIDVR;2023 International Conference on Protection and Automation of Power Systems (IPAPS);2023-01-24

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