World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
53
Citations
18384
World Ranking
2344
National Ranking
911

Research.com Recognitions

  • 1992 - IEEE Fellow For applications of digital analysis methods to the design of high-voltage direct current power systems and static compensators.

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Voltage
  • Capacitor

Robert H. Lasseter mainly focuses on Distributed generation, Microgrid, Electrical engineering, Electric power system and Inverter. His research investigates the connection between Distributed generation and topics such as Electricity generation that intersect with problems in Telecommunications and Electricity. The various areas that he examines in his Microgrid study include Control engineering, Distributed computing, Electrical network and Electric power.

His Control engineering study deals with Cogeneration intersecting with Systems engineering and Renewable energy. He focuses mostly in the field of Electric power system, narrowing it down to matters related to Voltage and, in some cases, Power control. Robert H. Lasseter has researched Inverter in several fields, including Electronic engineering and Control theory.

His most cited work include:

  • Microgrid: a conceptual solution (1318 citations)
  • Smart Distribution: Coupled Microgrids (742 citations)
  • Autonomous control of microgrids (660 citations)

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

Robert H. Lasseter spends much of his time researching Control theory, Microgrid, Inverter, Distributed generation and Electric power system. His Control theory research is multidisciplinary, incorporating elements of Voltage droop, Harmonics, Transient and Thyristor. His Microgrid study combines topics in areas such as Reliability engineering, Control engineering, Islanding, Energy storage and Electric power.

His study on Inverter also encompasses disciplines like

  • Electronic engineering which is related to area like Electrical engineering, AC power, Power control, Harmonic and Inductor,
  • Voltage source together with Survivability,
  • Fault and related Power-system protection. His biological study spans a wide range of topics, including Cogeneration and Distributed computing. His Electric power system study integrates concerns from other disciplines, such as Low voltage, Voltage, Electricity generation and Power transmission.

He most often published in these fields:

  • Control theory (37.19%)
  • Microgrid (36.36%)
  • Inverter (28.93%)

What were the highlights of his more recent work (between 2015-2020)?

  • Inverter (28.93%)
  • Control theory (37.19%)
  • Microgrid (36.36%)

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

His primary scientific interests are in Inverter, Control theory, Microgrid, Voltage droop and Voltage. Robert H. Lasseter interconnects Voltage source, Electronic engineering, Automatic frequency control and Electric power system in the investigation of issues within Inverter. His study looks at the relationship between Electronic engineering and fields such as Distributed generation, as well as how they intersect with chemical problems.

His Microgrid research integrates issues from Reliability engineering, Survivability, Control engineering, Test data and Inductance. His Control engineering research incorporates elements of Islanding, Autonomous control, Power rating and Energy storage. His Voltage study contributes to a more complete understanding of Electrical engineering.

Between 2015 and 2020, his most popular works were:

  • Evaluation of Control Methods to Prevent Collapse of a Mixed-Source Microgrid (29 citations)
  • Comparison of Grid Following and Grid Forming Control for a High Inverter Penetration Power System (23 citations)
  • Grid-Forming Inverters: A Critical Asset for the Power Grid (21 citations)

Best Publications

  • Microgrid: a conceptual solution

    R.H. Lasseter;P. Paigi

  • Smart Distribution: Coupled Microgrids

    R H Lasseter

  • Integration of distributed energy resources. The CERTS Microgrid Concept

    Robert Lasseter;Abbas Akhil;Chris Marnay;John Stephens

  • Autonomous control of microgrids

    P. Piagi;R.H. Lasseter

  • Making microgrids work

    B. Kroposki;R. Lasseter;T. Ise;S. Morozumi

  • Microgrids And Distributed Generation

    Robert H. Lasseter

  • Grid-Forming Inverters: A Critical Asset for the Power Grid

    Robert H. Lasseter;Zhe Chen;Dinesh Pattabiraman

  • CERTS Microgrid Laboratory Test Bed

    R H Lasseter;J H Eto;B Schenkman;J Stevens

  • Distributed Generation Interface to the CERTS Microgrid

    H. Nikkhajoei;R.H. Lasseter

  • Real-World MicroGrids-An Overview

    M. Barnes;J. Kondoh;H. Asano;J. Oyarzabal

  • Comparison of multilevel inverters for static VAr compensation

    C. Hochgraf;R. Lasseter;D. Divan;T.A. Lipo

  • Microgrid Protection

    H. Nikkhajoei;R.H. Lasseter

  • Statcom controls for operation with unbalanced voltages

    C. Hochgraf;R.H. Lasseter

  • Research Roadmap on Grid-Forming Inverters

    Yashen Lin;Joseph Eto;Brian Johnson;Jack Flicker

  • A Comparative Study of Two Widely Used Grid-Forming Droop Controls on Microgrid Small-Signal Stability

    Wei Du;Zhe Chen;Kevin P. Schneider;Robert H. Lasseter

  • Comparison of Grid Following and Grid Forming Control for a High Inverter Penetration Power System

    Dinesh Pattabiraman;R. H. Lasseter.;T. M. Jahns

  • Control of small distributed energy resources

    Robert H. Lasseter;Paolo Piagi

  • Modeling of Grid-Forming and Grid-Following Inverters for Dynamic Simulation of Large-Scale Distribution Systems

    Wei Du;Francis K. Tuffner;Kevin P. Schneider;Robert H. Lasseter

  • Providing premium power through distributed resources

    R. Lasseter;P. Piagi

  • Dynamic models for micro-turbines and fuel cells

    R. Lasseter

  • Expandable multiterminal DC systems based on voltage droop

    B.K. Johnson;R.H. Lasseter;F.L. Alvarado;R. Adapa

  • Certs Microgrid

    R.H. Lasseter

Frequent Co-Authors

Thomas M. Jahns
Thomas M. Jahns University of Wisconsin–Madison
Deepakraj M. Divan
Deepakraj M. Divan Georgia Institute of Technology
Fernando L. Alvarado
Fernando L. Alvarado University of Wisconsin–Madison
Ian Dobson
Ian Dobson Iowa State University
Thomas A. Lipo
Thomas A. Lipo University of Wisconsin–Madison
Nikos D. Hatziargyriou
Nikos D. Hatziargyriou National Technical University of Athens
Joe H. Chow
Joe H. Chow Rensselaer Polytechnic Institute
Chris Marnay
Chris Marnay Lawrence Berkeley National Laboratory
Zhe Chen
Zhe Chen Aalborg University
Brian Johnson
Brian Johnson University of Washington

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