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Harish Krishnaswamy

Harish Krishnaswamy

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
41
Citations
5537
World Ranking
4357
National Ranking
1542

Overview

Harish Krishnaswamy is an academic affiliated with Columbia University in the United States, whose research primarily spans the field of Engineering, with a strong focus on Electrical and Electronic Engineering. Their scholarly work encompasses several specialized subfields including Aerospace Engineering, Computer Networks and Communications, and Atomic and Molecular Physics, and Optics.

Their research interests concentrate notably on Full-Duplex Wireless Communications, aligning with significant contributions in related areas such as Electromagnetic Compatibility and Measurements, Energy Harvesting in Wireless Networks, Radar Systems and Signal Processing, Radio Frequency Integrated Circuit Design, Magneto-Optical Properties and Applications, and Electromagnetic Simulation and Numerical Methods.

Harish Krishnaswamy has published extensively in several leading journals and conferences. Frequent publication venues include:

  • IEEE Journal of Solid-State Circuits
  • IEEE Open Journal of the Communications Society
  • Proceedings of the IEEE
  • IEEE/ACM Transactions on Networking
  • Physical Review Applied

Their recent papers highlight advancements in integrated circuit design and wireless communication technologies. Notable publications include:

  • A Full-Duplex Receiver With True-Time-Delay Cancelers Based on Switched-Capacitor-Networks Operating Beyond the Delay-Bandwidth Limit, 2021, IEEE Journal of Solid-State Circuits
  • Multi-Watt, 1-GHz CMOS Circulator Based on Switched-Capacitor Clock Boosting, 2020, IEEE Journal of Solid-State Circuits
  • Ultra-Wideband Switched-Capacitor Delays and Circulators-Theory and Implementation, 2021, IEEE Journal of Solid-State Circuits
  • A Survey and Quantitative Evaluation of Integrated Circuit-Based Antenna Interfaces and Self-Interference Cancellers for Full-Duplex, 2021, IEEE Open Journal of the Communications Society
  • Wideband Full-Duplex Phased Array With Joint Transmit and Receive Beamforming: Optimization and Rate Gains, 2021, IEEE/ACM Transactions on Networking

Their frequent collaborators include Tingjun Chen, Gil Zussman, Aravind Nagulu, Sasank Garikapati, and Manav Kohli. These coauthors have contributed to numerous joint research efforts, indicating a collaborative approach to addressing complex topics in wireless systems and integrated circuit technology.

Best Publications

  • Magnetic-free non-reciprocity based on staggered commutation

    Negar Reiskarimian;Harish Krishnaswamy

  • Integrated Wideband Self-Interference Cancellation in the RF Domain for FDD and Full-Duplex Wireless

    Jin Zhou;Tsung-Hao Chuang;Tolga Dinc;Harish Krishnaswamy

  • A CMOS Passive LPTV Nonmagnetic Circulator and Its Application in a Full-Duplex Receiver

    Negar Reiskarimian;Jin Zhou;Harish Krishnaswamy

  • Integrated Full Duplex Radios

    Jin Zhou;Negar Reiskarimian;Jelena Diakonikolas;Tolga Dinc

  • A 60 GHz CMOS Full-Duplex Transceiver and Link with Polarization-Based Antenna and RF Cancellation

    Tolga Dinc;Anandaroop Chakrabarti;Harish Krishnaswamy

  • Silicon-based ultra-wideband beam-forming

    Jonathan Roderick;Harish Krishnaswamy;Kenneth Newton;Hossein Hashemi

  • Synchronized conductivity modulation to realize broadband lossless magnetic-free non-reciprocity.

    Tolga Dinc;Mykhailo Tymchenko;Aravind Nagulu;Dimitrios Sounas

  • Challenge: COSMOS: A city-scale programmable testbed for experimentation with advanced wireless

    Dipankar Raychaudhuri;Ivan Seskar;Gil Zussman;Thanasis Korakis

  • 9.8 Receiver with integrated magnetic-free N-path-filter-based non-reciprocal circulator and baseband self-interference cancellation for full-duplex wireless

    Jin Zhou;Negar Reiskarimian;Harish Krishnaswamy

  • Low-noise active cancellation of transmitter leakage and transmitter noise in broadband wireless receivers for FDD/Co-existence

    Jin Zhou;Anandaroop Chakrabarti;Peter R. Kinget;Harish Krishnaswamy

  • A Millimeter-Wave Non-Magnetic Passive SOI CMOS Circulator Based on Spatio-Temporal Conductivity Modulation

    Tolga Dinc;Aravind Nagulu;Harish Krishnaswamy

  • High-Power High-Efficiency Class-E-Like Stacked mmWave PAs in SOI and Bulk CMOS: Theory and Implementation

    Anandaroop Chakrabarti;Harish Krishnaswamy

  • A T/R antenna pair with polarization-based reconfigurable wideband self-interference cancellation for simultaneous transmit and receive

    Tolga Dinc;Harish Krishnaswamy

  • 18.2 Highly-linear integrated magnetic-free circulator-receiver for full-duplex wireless

    Negar Reiskarimian;Mahmood Baraani Dastjerdi;Jin Zhou;Harish Krishnaswamy

  • CMOS Integrated Magnetless Circulators Based on Spatiotemporal Modulation Angular-Momentum Biasing

    Ahmed Kord;Mykhailo Tymchenko;Dimitrios L. Sounas;Harish Krishnaswamy

  • Non-reciprocal electronics based on temporal modulation

    Aravind Nagulu;Negar Reiskarimian;Negar Reiskarimian;Harish Krishnaswamy

  • Calibration-Kit Design for Millimeter-Wave Silicon Integrated Circuits

    D. F. Williams;P. Corson;J. Sharma;H. Krishnaswamy

  • High power, high efficiency stacked mmWave Class-E-like power amplifiers in 45nm SOI CMOS

    Anandaroop Chakrabarti;Harish Krishnaswamy

  • 19.1 Receiver with >20MHz bandwidth self-interference cancellation suitable for FDD, co-existence and full-duplex applications

    Jin Zhou;Tsung-Hao Chuang;Tolga Dinc;Harish Krishnaswamy

  • Resource Allocation and Rate Gains in Practical Full-Duplex Systems

    Jelena Marasevic;Jin Zhou;Harish Krishnaswamy;Yuan Zhong

  • 17.2 A 28GHz magnetic-free non-reciprocal passive CMOS circulator based on spatio-temporal conductance modulation

    Tolga Dinc;Harish Krishnaswamy

  • Analysis and Design of Commutation-Based Circulator-Receivers for Integrated Full-Duplex Wireless

    Negar Reiskarimian;Mahmood Baraani Dastjerdi;Jin Zhou;Harish Krishnaswamy

  • Ultra-wideband variable-phase ring-oscillator arrays, architectures, and related methods

    Harish Krishnaswamy;Hossein Hashemi

Frequent Co-Authors

Gil Zussman
Gil Zussman Columbia University
Hossein Hashemi
Hossein Hashemi University of Southern California
Arun Natarajan
Arun Natarajan Oregon State University
Andrea Alù
Andrea Alù City University of New York
Peter R. Kinget
Peter R. Kinget Columbia University
Dimitrios L. Sounas
Dimitrios L. Sounas Wayne State University
Ioannis Kymissis
Ioannis Kymissis Columbia University
Michal Lipson
Michal Lipson Columbia University
Sorin P. Voinigescu
Sorin P. Voinigescu University of Toronto
Kenneth L. Shepard
Kenneth L. Shepard Columbia University

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