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Electronics and Electrical Engineering

D-Index
36
Citations
4441
World Ranking
5409
National Ranking
40

Overview

Javad Sadeh is affiliated with Ferdowsi University of Mashhad in Iran and focuses primarily on engineering, with a specialization in electrical and electronic engineering as well as control and systems engineering. Their research spans several key areas, emphasizing power systems fault detection and islanding detection in power systems. Additional topics of interest include HVDC systems and fault protection, microgrid control and optimization, power transformer diagnostics and insulation, power system optimization and stability, and photovoltaic system optimization techniques.

Their recent publications demonstrate a concentration on microgrid systems, photovoltaic systems, and fault detection methods in power engineering. Notable recent papers include:

  • "Two-Level Islanding Detection Method for Grid-Connected Photovoltaic System-Based Microgrid With Small Non-Detection Zone," 2020, IEEE Transactions on Smart Grid
  • "Maximum Power Point Tracking Injection Method for Islanding Detection of Grid-Connected Photovoltaic Systems in Microgrid," 2020, IEEE Transactions on Power Delivery
  • "New voltage feedback-based islanding detection method for grid-connected photovoltaic systems of microgrid with zero non-detection zone," 2020, IET Renewable Power Generation
  • "An adaptive characteristic for overcurrent relays considering uncertainty in presence of distributed generation," 2021, International Journal of Electrical Power & Energy Systems
  • "Review on islanding detection methods for grid-connected photovoltaic systems, existing limitations and future insights," 2022, IET Renewable Power Generation

Frequent publication venues for their work include:

  • International Journal of Electrical Power & Energy Systems
  • IET Renewable Power Generation
  • Electric Power Systems Research
  • Electric Power Components and Systems
  • IEEE Transactions on Smart Grid

Javad Sadeh collaborates extensively with several co-authors. Frequent collaborators include:

  • Reza Bakhshi-Jafarabadi
  • Marjan Popov
  • Elyas Rakhshani
  • Faeze Mohajer
  • Seyed Ebrahim Hosseini Kakolaki

Their research contributions are concentrated in the fields of electrical and electronic engineering and control and systems engineering, with a smaller focus on renewable energy, sustainability and the environment, materials chemistry, and safety, risk, reliability, and quality.

Best Publications

  • Considering Different Network Topologies in Optimal Overcurrent Relay Coordination Using a Hybrid GA

    A.S. Noghabi;J. Sadeh;H.R. Mashhadi

  • Optimal Coordination of Directional Overcurrent Relays Considering Different Network Topologies Using Interval Linear Programming

    Abbas Saberi Noghabi;Habib Rajabi Mashhadi;Javad Sadeh

  • Accurate fault location algorithm for series compensated transmission lines

    J. Sadeh;N. Hadjsaid;A.M. Ranjbar;R. Feuillet

  • A Novel Fault-Location Method for HVDC Transmission Lines Based on Similarity Measure of Voltage Signals

    Mohammad Farshad;Javad Sadeh

  • A new and accurate fault location algorithm for combined transmission lines using Adaptive Network-Based Fuzzy Inference System

    Javad Sadeh;Hamid Afradi

  • Accurate fault location algorithm for series compensated transmission lines

    J. Sadeh;A.M. Ranjbar;N. Hadsaid;R. Feuillet

  • Frequency response analysis (FRA) of transformers as a tool for fault detection and location: A review

    Reza Khalili Senobari;Javad Sadeh;Hossein Borsi;Hossein Borsi

  • Practical Viewpoints on Load Frequency Control Problem in a Deregulated Power System

    Elyas Rakhshani;Javad Sadeh

  • Design of augmented fuzzy logic power system stabilizers to enhance power systems stability

    H.A. Toliyat;J. Sadeh;R. Ghazi

  • A new fault location algorithm for radial distribution systems using modal analysis

    Javad Sadeh;Ehsan Bakhshizadeh;Rasoul Kazemzadeh

  • Accurate Single-Phase Fault-Location Method for Transmission Lines Based on K-Nearest Neighbor Algorithm Using One-End Voltage

    M. Farshad;J. Sadeh

  • Modified FFT based high impedance fault detection technique considering distribution non-linear loads: Simulation and experimental data analysis

    Adel Soheili;Javad Sadeh;Reza Bakhshi

  • Fault section estimation in power distribution network using impedance-based fault distance calculation and frequency spectrum analysis

    Rahman Dashti;Javad Sadeh

  • A new single ended fault location algorithm for combined transmission line considering fault clearing transients without using line parameters

    Ismail Niazy;Javad Sadeh

  • Two-Level Islanding Detection Method for Grid-Connected Photovoltaic System-Based Microgrid With Small Non-Detection Zone

    Reza Bakhshi-Jafarabadi;Javad Sadeh;Jose de Jesus Chavez;Marjan Popov

  • Accurate fault location algorithm for transmission line in the presence of series connected FACTS devices

    Javad Sadeh;Aniseh Adinehzadeh

  • Size optimization of new hybrid stand-alone renewable energy system considering a reliability index

    M. Bashir;J. Sadeh

  • MILP approach for optimal coordination of directional overcurrent relays in interconnected power systems

    Yaser Damchi;Mohammad Dolatabadi;Habib Rajabi Mashhadi;Javad Sadeh

  • Maximum Power Point Tracking Injection Method for Islanding Detection of Grid-Connected Photovoltaic Systems in Microgrid

    Reza Bakhshi-Jafarabadi;Javad Sadeh;Marjan Popov

  • Transient-Based Fault Location on Three-Terminal and Tapped Transmission Lines Not Requiring Line Parameters

    Masoud Davoudi;Javad Sadeh;Ebadollah Kamyab

  • Optimal economic designing of grid-connected photovoltaic systems with multiple inverters using linear and nonlinear module models based on Genetic Algorithm

    Reza Bakhshi;Javad Sadeh;Hamid-Reza Mosaddegh

  • Optimal sizing of hybrid wind/photovoltaic/battery considering the uncertainty of wind and photovoltaic power using Monte Carlo

    M. Bashir;J. Sadeh

  • A New Single Ended Fault Location algorithm for Combined Transmission Line Considering Fault Clearing Transients without Using Line Parameters

    Javad Sadeh;Ebrahim Niazy

Frequent Co-Authors

Ali Mohammad Ranjbar
Ali Mohammad Ranjbar Sharif University of Technology
Marjan Popov
Marjan Popov Delft University of Technology
Hamid A. Toliyat
Hamid A. Toliyat Texas A&M University
Pedro Rodriguez
Pedro Rodriguez Luxembourg Institute of Science and Technology
Ehsan Afshari
Ehsan Afshari University of Michigan–Ann Arbor
Kashem M. Muttaqi
Kashem M. Muttaqi University of Wollongong
Ali Emadi
Ali Emadi McMaster University
Alvaro Luna
Alvaro Luna Universitat Politècnica de Catalunya

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