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Electronics and Electrical Engineering

D-Index
42
Citations
8989
World Ranking
4041
National Ranking
66

Overview

Giuseppe Durisi is affiliated with Chalmers University of Technology in Sweden. Their research primarily focuses on engineering and computer science, with a significant emphasis on electrical and electronic engineering and computer networks and communications.

Their scholarly contributions span several subfields and topics, including:

  • Electrical and Electronic Engineering
  • Computer Networks and Communications
  • Artificial Intelligence
  • Media Technology
  • Computational Mechanics

  • Advanced MIMO Systems Optimization
  • Wireless Communication Security Techniques
  • Millimeter-Wave Propagation and Modeling
  • IoT Networks and Protocols
  • Cooperative Communication and Network Coding
  • Age of Information Optimization
  • Advanced Wireless Communication Techniques

Durisi has contributed to multiple publication venues, most notably:

  • arXiv (Cornell University)
  • IEEE Transactions on Wireless Communications
  • IEEE Transactions on Communications
  • 2021 55th Asilomar Conference on Signals, Systems, and Computers
  • IEEE Journal on Selected Areas in Information Theory

The following are recent papers that illustrate the scope and focus of Durisi's research:

  • "URLLC with Massive MIMO: Analysis and Design at Finite Blocklength," 2022, published by CINECA IRIS Institutional research information system (University of Pisa)
  • "Saddlepoint Approximations for Short-Packet Wireless Communications," 2020, IEEE Transactions on Wireless Communications
  • "Generalization Bounds via Information Density and Conditional Information Density," 2020, IEEE Journal on Selected Areas in Information Theory
  • "Cell-Free Massive MIMO for URLLC: A Finite-Blocklength Analysis," 2023, IEEE Transactions on Wireless Communications
  • "Finite-Alphabet MMSE Equalization for All-Digital Massive MU-MIMO mmWave Communication," 2020, IEEE Journal on Selected Areas in Communications

Frequent collaborators in Durisi's research include:

  • Sven Jacobsson
  • Christoph Studer
  • Alejandro Lancho
  • Khac-Hoang Ngo
  • Oscar Castañeda

Best Publications

  • Toward Massive, Ultrareliable, and Low-Latency Wireless Communication With Short Packets

    Giuseppe Durisi;Tobias Koch;Petar Popovski

  • 5G Wireless Network Slicing for eMBB, URLLC, and mMTC: A Communication-Theoretic View

    Petar Popovski;Kasper Floe Trillingsgaard;Osvaldo Simeone;Giuseppe Durisi

  • Quasi-Static Multiple-Antenna Fading Channels at Finite Blocklength

    Wei Yang;Giuseppe Durisi;Tobias Koch;Yury Polyanskiy

  • Throughput Analysis of Massive MIMO Uplink With Low-Resolution ADCs

    Sven Jacobsson;Giuseppe Durisi;Mikael Coldrey;Ulf Gustavsson

  • Quantized Precoding for Massive MU-MIMO

    Sven Jacobsson;Giuseppe Durisi;Mikael Coldrey;Tom Goldstein

  • Quantized Massive MU-MIMO-OFDM Uplink

    Christoph Studer;Giuseppe Durisi

  • Performance evaluation of TH-PPM UWB systems in the presence of multiuser interference

    G. Durisi;S. Benedetto

  • On the validity of Gaussian approximation to characterize the multiuser capacity of UWB TH PPM

    G. Durisi;G. Romano

  • Short-Packet Communications Over Multiple-Antenna Rayleigh-Fading Channels

    Giuseppe Durisi;Tobias Koch;Johan Ostman;Yury Polyanskiy

  • One-bit massive MIMO: Channel estimation and high-order modulations

    Sven Jacobsson;Giuseppe Durisi;Mikael Coldrey;Ulf Gustavsson

  • Ultra-wideband channel modeling on the basis of information-theoretic criteria

    U.G. Schuster;H. Bolcskei;G. Durisi

  • Efficient error-correcting codes in the short blocklength regime

    Mustafa Cemil Coskun;Mustafa Cemil Coskun;Giuseppe Durisi;Thomas Jerkovits;Gianluigi Liva

  • On the impact of hardware impairments on massive MIMO

    Ulf Gustavsson;Cesar Sanchez-Perez;Thomas Eriksson;Fredrik Athley

  • Capacity of a nonlinear optical channel with finite memory

    E Erik Agrell;A Alex Alvarado;Giuseppe Durisi;Magnus Karlsson

  • Reliable Transmission of Short Packets Through Queues and Noisy Channels Under Latency and Peak-Age Violation Guarantees

    Rahul Devassy;Giuseppe Durisi;Guido Carlo Ferrante;Osvaldo Simeone

  • 5G physical layer: Principles, models and technology components

    Ali Abbas Syed Zaidi;F. Athley;Jonas Medbo;X. Chen

  • On the Capacity of Large-MIMO Block-Fading Channels

    Wei Yang;G. Durisi;E. Riegler

  • Performance evaluation and comparison of different modulation schemes for UWB multiaccess systems

    G. Durisi;S. Benedetto

  • 1-bit Massive MU-MIMO Precoding in VLSI

    Oscar Castaneda;Sven Jacobsson;Giuseppe Durisi;Mikael Coldrey

  • Noncoherent Capacity of Underspread Fading Channels

    G. Durisi;U.G. Schuster;H. Bolcskei;S. Shamai

  • Towards Massive, Ultra-Reliable, and Low-Latency Wireless Communication with Short Packets

    Giuseppe Durisi;Tobias Koch;Petar Popovski

Frequent Co-Authors

Petar Popovski
Petar Popovski Aalborg University
Erik Agrell
Erik Agrell Chalmers University of Technology
Erik G. Ström
Erik G. Ström Chalmers University of Technology
Thomas Eriksson
Thomas Eriksson Chalmers University of Technology
Osvaldo Simeone
Osvaldo Simeone Northeastern University
H. Vincent Poor
H. Vincent Poor Princeton University
Christian Fager
Christian Fager Chalmers University of Technology
Shlomo Shamai
Shlomo Shamai Technion – Israel Institute of Technology

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