Smart Grid and Renewable Energy

Smart Grid and Renewable Energy

ISSN Print: 2151-481X
ISSN Online: 2151-4844
www.scirp.org/journal/sgre
E-mail: sgre@scirp.org
"High Impedance Fault Detection of Distribution Network by Phasor Measurement Units"
written by Mohsen Ghalei Monfared Zanjani, Hossein Kazemi Karegar, Hasan Ashrafi Niaki, Mina Ghalei Monfared Zanjani,
published by Smart Grid and Renewable Energy, Vol.4 No.3, 2013
has been cited by the following article(s):
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[3] Literature Review: High Impedance Fault in Power System and Detection Techniques
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[9] WAMs Based Eigenvalue Space Model for High Impedance Fault Detection
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[12] High impedance fault detection method for distribution networks under non-linear conditions
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[14] Electromagnetic field and artificial intelligence based fault detection and classification system for the transmission lines in smart grid
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[15] High Impedance Fault Detection in Primary Distribution Network Employing Voltage and Current Sequence Components
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[16] Rare Transmission Anomaly and Fault Detection based on Synchrophasors in Control Rooms
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[17] The Power SystemandMicrogrid Protection--A Review.
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[18] The power system and microgrid protection-a review
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[19] Detecção e classificação de faltas de curto-circuito em sistemas de distribuição com a inserção de geração distribuída
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[20] Back up protection scheme for high impedance faults detection in transmission systems based on synchrophasor measurements
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[21] The power system and microgrid protection—A Review
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[22] Advancement in Radial Power Distribution Network Using High impedance fault Relay
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[23] Improvement in High Impedance Fault Detection of Primary Distribution Network Using Voltage and Current Sequence Components
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[24] D-PMU based applications for emerging active distribution systems: A review
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[25] Adaptive single-end transient-based scheme for detection and location of open conductor faults in HV transmission lines
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[28] A voltage-based detection method for lightning discharges at distribution networks
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[30] Differentiation of High Impedance Faults from Other Distribution Network Events Using Microsynchrophasor Measurements
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[31] High-Impedance Fault Diagnosis: A Review
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[32] High Impedance Fault Characterization on Microsynchrophasor Measurements
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[33] High impedance fault detection and isolation in power distribution networks using support vector machines
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[35] A Data-Driven Method for Detection and Localization of Weak Fault Based on Synchronized Phasor Measurements
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[37] A Simple High Impedance Fault Detection Method based on Phase Displacement and Zero Sequence Current for Grounded Distribution Systems
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[38] Wide area monitoring and protection of microgrid with DGs using modular artificial neural networks
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[45] Detection and Error Analysis of High Impedance Fault Using Wavelet Transform, Traveling Wave and Support Vector Machine.
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[46] High impedance fault detection and localization in 11kV distribution system/Mohd Syukri Ali
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[47] High‐impedance fault detection in electrical power distribution systems using moving sum approach
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[55] High impedance fault detection in power distribution systems with impedance-based methods in frequency domain
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[56] A novel high impedance fault detection technique in distribution systems with distributed generators
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[57] Analysis of the influence of the window used in the Short-Time Fourier Transform for High Impedance Fault detection
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[58] Fault detection and autoline distribution system with Gsm module
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[59] Microgrid protection using Hilbert–Huang transform based-differential scheme
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[60] High Impedance Fault Modelling on 11Kv Feeder Using Matlab Simulink
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[61] HIF detection using wavelet transform, travelling wave and support vector machine
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[62] Microgrid protection using Hilbert–Huang transform based‐differential scheme
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[63] HIGH-IMPEDANCE FAULTS DETECTION BY USING WAVELET TRANSFORM
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[65] Proposition of an interharmonic-based methodology for high-impedance fault detection in distribution systems
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[66] Development of Hardware in the Loop Real-Time Control Techniques for Hybrid Power Systems Involving Distributed Demands and Sustainable Energy Sources
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[67] Identificação de faltas de alta impedância em redes aéreas multiaterradas.
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[68] Application of PMUs for high impedance fault detection of distribution network by considering effect of transformer vector group
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[69] Current trends on applications of PMUs in distribution systems
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