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Electronics and Electrical Engineering

D-Index
30
Citations
5399
World Ranking
6726
National Ranking
108

Overview

Mehrdad Ghandhari is affiliated with the Royal Institute of Technology in Sweden, focusing their research in engineering with a specialized concentration in electrical and electronic engineering, control and systems engineering, as well as energy engineering and power technology. Their scholarly contributions extend into artificial intelligence and statistical and nonlinear physics to a lesser degree.

Their main research areas include topics such as power system optimization and stability, microgrid control and optimization, HVDC systems and fault protection, and frequency control in power systems. They have also worked on power systems and renewable energy, smart grid security and resilience, and optimal power flow distribution.

The recent papers authored or coauthored by Ghandhari reflect a commitment to addressing contemporary challenges in power systems. These include:

  • Analysis of fast frequency control using battery energy storage systems in mitigating impact of photovoltaic penetration in Ethiopia-Kenya HVDC link (2023), published in International Journal of Electrical Power & Energy Systems
  • Supplementary Power Control of an HVDC System and Its Impact on Electromechanical Dynamics (2021), published in IEEE Transactions on Power Systems
  • Construction of Multi-State Transient Stability Boundary Based on Broad Learning (2020), published in IEEE Transactions on Power Systems
  • Maximum Lyapunov Exponent Based Nearest Neighbor Algorithm For Real-Time Transient Stability Assessment (2024), published in Electric Power Systems Research
  • Investigating the Performance of MLE and CNN for Transient Stability Assessment in Power Systems (2024), published in IEEE Access

Ghandhari frequently collaborates with several researchers. Among their most frequent coauthors are Robert Eriksson and Danilo Obradović, each contributing to multiple joint publications. Additional collaborators include Marina Oluic and Getachew Biru.

Their publications appear predominantly in the venues below:

  • IEEE Transactions on Power Systems
  • IEEE Access
  • arXiv (Cornell University)
  • SSRN Electronic Journal
  • International Journal of Electrical Power & Energy Systems

Best Publications

  • Multi-terminal VSC HVDC for the European supergrid: Obstacles

    Dirk Van Hertem;Mehrdad Ghandhari

  • Use of UPFC for optimal power flow control

    M. Noroozian;L. Angquist;M. Ghandhari;G. Andersson

  • Improving power system dynamics by series-connected FACTS devices

    M. Noroozian;L. Angquist;M. Ghandhari;G. Andersson

  • On the Parameter Extraction of a Five-Parameter Double-Diode Model of Photovoltaic Cells and Modules

    Mohammad Hejri;Hossein Mokhtari;Mohammad Reza Azizian;Mehrdad Ghandhari

  • A Robust Control Strategy for Shunt and Series Reactive Compensators to Dame Electromechanical Oscillations

    M. Noroozian;M. Ghandhari;G. Andersson;J. Gronquist

  • Second-Order Cone Programming for Optimal Power Flow in VSC-Type AC-DC Grids

    Mohamadreza Baradar;Mohammad Reza Hesamzadeh;Mehrdad Ghandhari

  • A Multi-Option Unified Power Flow Approach for Hybrid AC/DC Grids Incorporating Multi-Terminal VSC-HVDC

    Mohamadreza Baradar;Mehrdad Ghandhari

  • Control Lyapunov Functions for Controllable Series Devices

    M. Ghandhari;G. Andersson;I. A. Hiskens

  • Active and reactive power control of a VSC-HVdc

    Hector Latorre;Mehrdad Ghandhari;Lennart Söder

  • Network-Constrained AC Unit Commitment Under Uncertainty: A Benders’ Decomposition Approach

    Amin Nasri;S. Jalal Kazempour;Antonio J. Conejo;Mehrdad Ghandhari

  • Technical limitations towards a SuperGrid — A European prospective

    Dirk Van Hertem;Mehrdad Ghandhari;Marko Delimar

  • Optimizing DC Voltage Droop Settings for AC/DC System Interactions

    Robert Eriksson;Jef Beerten;Mehrdad Ghandhari;Ronnie Belmans

  • Improvement of power system stability by using a VSC-HVdc ☆

    Hector Latorre;Mehrdad Ghandhari

  • Power system inertia estimation: Utilization of frequency and voltage response after a disturbance

    Dimitrios Zografos;Mehrdad Ghandhari;Robert Eriksson

  • On the stability of power systems containing doubly fed induction generator-based generation

    Katherine Elkington;Valerijs Knazkins;Mehrdad Ghandhari

  • Protection requirements for a multi-terminal meshed DC grid

    Dirk Van Hertem;Mehrdad Ghandhari;J. B. Curis;O. Despouys

  • Minimizing Wind Power Spillage Using an OPF With FACTS Devices

    Amin Nasri;Antonio J. Conejo;Seyed Jalal Kazempour;Mehrdad Ghandhari

  • Survey on power system stabilizers control and their prospective applications for power system damping using Synchrophasor-based wide-area systems

    Yuwa Chompoobutrgool;Luigi Vanfretti;Mehrdad Ghandhari

  • Control Lyapunov Functions : A Control Strategy for Damping of Power Oscillations in Large Power Systems

    Mehrdad Ghandhari

  • A control strategy for controllable series capacitor in electric power systems

    M. Ghandhari;G. Andersson;M. Pavella;D. Ernst

Frequent Co-Authors

Lennart Söder
Lennart Söder Royal Institute of Technology
Henrik Sandberg
Henrik Sandberg Royal Institute of Technology
Dimos V. Dimarogonas
Dimos V. Dimarogonas Royal Institute of Technology
Lennart Harnefors
Lennart Harnefors ABB (Sweden)
Ian A. Hiskens
Ian A. Hiskens University of Michigan–Ann Arbor
Luis Rouco
Luis Rouco Comillas Pontifical University
Jacob Østergaard
Jacob Østergaard Technical University of Denmark
Karl Henrik Johansson
Karl Henrik Johansson Royal Institute of Technology

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