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Andrew J. Campanella

Andrew J. Campanella

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
51
Citations
13494
World Ranking
2608
National Ranking
999

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Capacitor
  • Voltage

His main research concerns Resonator, Electrical engineering, Energy transfer, Dielectric resonator antenna and Helical resonator. He regularly ties together related areas like Electronic engineering in his Resonator studies. His study looks at the relationship between Electronic engineering and fields such as Signal, as well as how they intersect with chemical problems.

His work on Wireless power transfer as part of general Electrical engineering research is often related to Oscillating magnetic field, thus linking different fields of science. His Energy transfer research overlaps with other disciplines such as Variable size and Acoustics. Capacitor and Capacitive sensing is closely connected to Electric power in his research, which is encompassed under the umbrella topic of Dielectric resonator antenna.

His most cited work include:

  • Wireless energy transfer systems (518 citations)
  • Wireless energy transfer converters (459 citations)
  • Wireless energy transfer using variable size resonators and system monitoring (397 citations)

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

The scientist’s investigation covers issues in Resonator, Electrical engineering, Energy transfer, Dielectric resonator antenna and Helical resonator. His Resonator research is multidisciplinary, incorporating elements of Electronic engineering and Electric power. His biological study spans a wide range of topics, including Photovoltaic system, Television system and Electronics.

The Electrical engineering study combines topics in areas such as Maximum power transfer theorem and Electric power system. Andrew J. Campanella combines subjects such as Power factor, Amplifier, Duty cycle and Repeater with his study of Maximum power transfer theorem. His Wireless power transfer research integrates issues from Signal and Ac resistance.

He most often published in these fields:

  • Resonator (91.67%)
  • Electrical engineering (85.00%)
  • Energy transfer (60.00%)

What were the highlights of his more recent work (between 2015-2019)?

  • Resonator (91.67%)
  • Electrical engineering (85.00%)
  • Electric power system (11.67%)

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

Andrew J. Campanella mainly investigates Resonator, Electrical engineering, Electric power system, Oscillating magnetic field and Component. Andrew J. Campanella has researched Resonator in several fields, including Maximum power transfer theorem and Oscillation. His Maximum power transfer theorem research includes elements of Power semiconductor device, Signal, Amplifier, Microcontroller and Impedance matching.

His Amplifier study typically links adjacent topics like Pulse-width modulation. Oscillation and Energy transfer are two areas of study in which Andrew J. Campanella engages in interdisciplinary work. His Range research overlaps with Q factor, Energy source, Electric power transmission and Electric power.

Between 2015 and 2019, his most popular works were:

  • Wireless powered television (98 citations)
  • Signaling in wireless power systems (2 citations)
  • WIRELESS ENERGY TRANSMISSION SYSTEM (0 citations)

Best Publications

  • WIRELESS ENERGY TRANSMISSION SYSTEM

    Morris P Kesler;Aristeidis Karalis;Andre B Kurs;Andrew J Campanella

  • Wireless energy transfer systems

    Morris P. Kesler;Aristeidis Karalis;Andre B. Kurs;Andrew J. Campanella

  • Tunable wireless energy transfer for in-vehicle applications

    Morris P. Kesler;Andre B. Kurs;Aristeidis Karalis;Marin Soljacic

  • Wireless energy transfer using variable size resonators and system monitoring

    Andre B. Kurs;Aristeidis Karalis;Morris P. Kesler;Andrew J. Campanella

  • Wireless energy transfer using field shaping to reduce loss

    Aristeidis Karalis;Andre B. Kurs;Andrew J. Campanella;Konrad J. Kulikowski

  • Wireless energy transfer converters

    Katherine L. Hall;Morris P. Kesler;Konrad J. Kulikowski;Andrew J. Campanella

  • Wireless power transfer within a circuit breaker

    Andrew J. Campanella;Qiang Li;Morris P. Kesler;Katherine L. Hall

  • Wireless energy transfer for photovoltaic panels

    Morris P. Kesler;Katherine L. Hall;Eric R. Giler;Konrad J. Kulikowski

  • Multi-resonator wireless energy transfer to mobile devices

    Morris P. Kesler;Katherine L. Hall;Andrew J. Campanella;Aristeidis Karalis

  • Wireless energy transfer for vehicles

    Aristeidis Karalis;Andre B. Kurs;Marin Soljacic;Andrew J. Campanella

  • Wireless energy transfer with variable size resonators for medical applications

    Katherine L. Hall;Volkan Efe;Morris P. Kesler;Andrew J. Campanella

  • Wireless energy transfer with resonator arrays for medical applications

    Morris P. Kesler;Katherine L. Hall;Andrew J. Campanella;Aristeidis Karalis

  • Position insensitive wireless charging

    Andrew J. Campanella;Katherine L. Hall;Aristeidis Karalis;Morris P. Kesler

  • Wireless energy transfer with variable size resonators for implanted medical devices

    Morris P. Kesler;Katherine L. Hall;Konrad Kulikowski;Aristeidis Karalis

  • Wireless energy transfer for implantable devices

    Morris P. Kesler;Katherine L. Hall;Andre B. Kurs;Aristeidis Karalis

  • Safety systems for wireless energy transfer in vehicle applications

    Morris P. Kesler;Konrad J. Kulikowski;Herbert Toby Lou;Katherine L. Hall

  • Wireless energy transfer for computer peripheral applications

    Andre B. Kurs;Aristeidis Karalis;Morris P. Kesler;Andrew J. Campanella

  • Wireless energy transfer using magnetic materials to shape field and reduce loss

    Aristeidis Karalis;Andre B. Kurs;Andrew J. Campanella;Konrad J. Kulikowski

  • Wireless energy transfer using conducting surfaces to shape fields and reduce loss

    Andre B. Kurs;Andrew J. Campanella;Konrad J. Kulikowski;Katherine L. Hall

  • Secure wireless energy transfer

    Morris P. Kesler;Andre B. Kurs;Aristeidis Karalis;Marin Soljacic

Frequent Co-Authors

Katherine L. Hall
Katherine L. Hall Wellesley College
Andre B. Kurs
Andre B. Kurs WiTricity Corporation
Konrad J. Kulikowski
Konrad J. Kulikowski Boston University
Morris P. Kesler
Morris P. Kesler WiTricity Corporation
Eric R. Giler
Eric R. Giler Marin Software
Qiang Li
Qiang Li Brookhaven National Laboratory

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