D-Index & Metrics Best Publications

D-Index & Metrics

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Electronics and Electrical Engineering D-index 32 Citations 5,069 148 World Ranking 3116 National Ranking 3

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Artificial intelligence
  • Control theory

Elias Kyriakides mostly deals with Electric power system, Control theory, Electronic engineering, Observability and Phasor. Elias Kyriakides is involved in the study of Electric power system that focuses on Power-system protection in particular. His research integrates issues of Phasor measurement unit, Estimator, Voltage, Measurement uncertainty and Propagation of uncertainty in his study of Control theory.

His Electronic engineering study combines topics in areas such as Phase-locked loop and Electrical network. His Observability study combines topics from a wide range of disciplines, such as Redundancy and Permanent magnet synchronous generator. He integrates many fields in his works, including Phasor and Units of measurement.

His most cited work include:

  • Optimal Placement of Phasor Measurement Units for Power System Observability (382 citations)
  • Placement of Synchronized Measurements for Power System Observability (248 citations)
  • Metrics and Quantification of Operational and Infrastructure Resilience in Power Systems (168 citations)

What are the main themes of his work throughout his whole career to date?

Elias Kyriakides spends much of his time researching Electric power system, Control theory, Electronic engineering, Phasor and Voltage. Elias Kyriakides does research in Electric power system, focusing on Phasor measurement unit specifically. The Control theory study combines topics in areas such as State estimator, Estimator and Measurement uncertainty.

His Estimator research includes themes of Convergence and Estimation theory. His studies in Electronic engineering integrate themes in fields like Phase-locked loop, Decoupling, Photovoltaic system and Power. His Phasor study integrates concerns from other disciplines, such as Transmission line and Electric power transmission.

He most often published in these fields:

  • Electric power system (49.75%)
  • Control theory (40.61%)
  • Electronic engineering (22.84%)

What were the highlights of his more recent work (between 2018-2021)?

  • Electric power system (49.75%)
  • Voltage (15.23%)
  • Low voltage (6.60%)

In recent papers he was focusing on the following fields of study:

His scientific interests lie mostly in Electric power system, Voltage, Low voltage, Control theory and Renewable energy. His work on Battery energy storage system as part of general Electric power system research is often related to Dynamic testing, thus linking different fields of science. His Low voltage research is multidisciplinary, incorporating elements of Photovoltaics, Transformer, Electronic engineering and Reactance.

He has researched Electronic engineering in several fields, including Distributed generation and Smart grid. Many of his research projects under Control theory are closely connected to Observational error with Observational error, tying the diverse disciplines of science together. The concepts of his Measurement uncertainty study are interwoven with issues in Phasor, Current transformer and Electric power transmission.

Between 2018 and 2021, his most popular works were:

  • A Real-Time Controlled Islanding and Restoration Scheme Based on Estimated States (17 citations)
  • Multi-functional distributed generation control scheme for improving the grid power quality (12 citations)
  • Phase Balancing and Reactive Power Support Services for Microgrids (11 citations)

In his most recent research, the most cited papers focused on:

  • Electrical engineering
  • Artificial intelligence
  • Algorithm

The scientist’s investigation covers issues in Photovoltaic system, Scheme, Electric power system, Control theory and Distributed computing. He usually deals with Photovoltaic system and limits it to topics linked to Converters and Electricity, Harmonics, Photovoltaics, Power electronics and Harmonic analysis. Specifically, his work in Electric power system is concerned with the study of Phasor measurement unit.

His work deals with themes such as Phasor, Transmission line and Voltage, which intersect with Control theory. His research in Distributed computing intersects with topics in Phase balancing, AC power and Prosumer, Renewable energy. His work carried out in the field of Islanding brings together such families of science as Control system and Observability.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

Optimal Placement of Phasor Measurement Units for Power System Observability

S. Chakrabarti;E. Kyriakides.
IEEE Transactions on Power Systems (2008)

555 Citations

Placement of Synchronized Measurements for Power System Observability

S. Chakrabarti;E. Kyriakides;D.G. Eliades.
IEEE Transactions on Power Delivery (2009)

362 Citations

Metrics and Quantification of Operational and Infrastructure Resilience in Power Systems

Mathaios Panteli;Pierluigi Mancarella;Dimitris N. Trakas;Elias Kyriakides.
IEEE Transactions on Power Systems (2017)

244 Citations

Inclusion of PMU current phasor measurements in a power system state estimator

S. Chakrabarti;E. Kyriakides;G. Ledwich;Arindam Ghosh.
Iet Generation Transmission & Distribution (2010)

203 Citations

Measurements get together

S. Chakrabarti;E. Kyriakides;Tianshu Bi;Deyu Cai.
IEEE Power & Energy Magazine (2009)

189 Citations

A GA-API Solution for the Economic Dispatch of Generation in Power System Operation

I. Ciornei;E. Kyriakides.
IEEE Transactions on Power Systems (2012)

166 Citations

Short Term Electric Load Forecasting: A Tutorial

Elias Kyriakides;Marios M. Polycarpou.
Trends in Neural Computation (2007)

149 Citations

PMU Measurement Uncertainty Considerations in WLS State Estimation

S. Chakrabarti;E. Kyriakides.
IEEE Transactions on Power Systems (2009)

140 Citations

A Comparison of Smart Grid Technologies and Progresses in Europe and the U.S.

M. G. Simoes;R. Roche;E. Kyriakides;S. Suryanarayanan.
IEEE Transactions on Industry Applications (2012)

135 Citations

A New Hybrid PLL for Interconnecting Renewable Energy Systems to the Grid

Lenos Hadjidemetriou;Elias Kyriakides;Frede Blaabjerg.
IEEE Transactions on Industry Applications (2013)

131 Citations

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