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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
49
Citations
10390
World Ranking
2923
National Ranking
1107

Overview

Shilpa Talwar is affiliated with Intel in the United States. Their research primarily spans the fields of Engineering and Computer Science, with a significant focus on Electrical and Electronic Engineering and Computer Networks and Communications.

Their work addresses topics including:

  • Advanced MIMO Systems Optimization
  • Millimeter-Wave Propagation and Modeling
  • Cooperative Communication and Network Coding
  • Microwave Engineering and Waveguides
  • Power Line Communications and Noise
  • Advanced Wireless Network Optimization
  • IoT and Edge/Fog Computing

Shilpa Talwar has contributed to several recent publications, among them:

  • "The IPIN 2019 Indoor Localisation Competition-Description and Results," 2020, IEEE Access
  • "Integrated Access and Backhaul in Millimeter-Wave Cellular: Benefits and Challenges," 2022, IEEE Communications Magazine
  • "Ray-Based Modeling of Directional Millimeter-Wave V2V Transmissions in Highway Scenarios," 2020, IEEE Access
  • "Characterizing Radio Wave Propagation in Urban Street Canyon With Vehicular Blockage at 28 GHz," 2020, IEEE Transactions on Vehicular Technology
  • "Delay-Aware Link Scheduling in IAB Networks With Dynamic User Demands," 2024, IEEE Transactions on Vehicular Technology

Frequent publication venues include:

  • arXiv (Cornell University)
  • IEEE Transactions on Vehicular Technology
  • IEEE Communications Magazine
  • IEEE Access
  • IEEE Open Journal of the Communications Society

Collaboration appears frequently with colleagues such as Hosein Nikopour, Wei Mao, Oner Orhan, Shu-ping Yeh, and Sergey Andreev, reflecting consistent teamwork on various research projects.

Best Publications

  • M2M: From mobile to embedded internet

    Geng Wu;S Talwar;K Johnsson;N Himayat

  • A fourth-generation MIMO-OFDM broadband wireless system: design, performance, and field trial results

    H. Sampath;S. Talwar;J. Tellado;V. Erceg

  • Networks and devices for the 5G era

    Boyd Bangerter;Shilpa Talwar;Reza Arefi;Ken Stewart

  • Blind separation of synchronous co-channel digital signals using an antenna array. I. Algorithms

    S. Talwar;M. Viberg;A. Paulraj

  • Distributed Interference-Aware Energy-Efficient Power Optimization

    Guowang Miao;Nageen Himayat;Geoffrey Ye Li;Shilpa Talwar

  • WiMAX femtocells: a perspective on network architecture, capacity, and coverage

    Shu-ping Yeh;S. Talwar;Seong-choon Lee;Heechang Kim

  • A subspace approach to blind space-time signal processing for wireless communication systems

    A.-J. van der Veen;S. Talwar;A. Paulraj

  • Blind estimation of multiple co-channel digital signals arriving at an antenna array

    S. Talwar;M. Viberg;A. Paulraj

  • Full-duplex mobile device: pushing the limits

    Dani Korpi;Joose Tamminen;Matias Turunen;Timo Huusari

  • Blind estimation of multiple co-channel digital signals using an antenna array

    S. Talwar;M. Viberg;A. Paulraj

  • Interference management for 4G cellular standards [WIMAX/LTE UPDATE]

    N Himayat;S Talwar;A Rao;R Soni

  • Capacity and coverage enhancement in heterogeneous networks

    Shu-Ping Yeh;Shilpa Talwar;Geng Wu;Nageen Himayat

  • Enabling technologies and architectures for 5G wireless

    Shilpa Talwar;Debabani Choudhury;Konstantinos Dimou;Ehsan Aryafar

  • Low-Complexity Energy-Efficient Scheduling for Uplink OFDMA

    Guowang Miao;N. Himayat;G. Y. Li;S. Talwar

  • Intelligent access network selection in converged multi-radio heterogeneous networks

    Sergey Andreev;Mikhail Gerasimenko;Olga Galinina;Yevgeni Koucheryavy

  • Coded Computing for Low-Latency Federated Learning Over Wireless Edge Networks

    Saurav Prakash;Sagar Dhakal;Mustafa Riza Akdeniz;Yair Yona

  • Method for selecting weight in multiple channel receiver

    Shilpa Talwar

  • Blind estimation of multiple digital signals transmitted over FIR channels

    A.-J. Van der Veen;S. Talwar;A. Paulraj

  • Wideband Self-Adaptive RF Cancellation Circuit for Full-Duplex Radio: Operating Principle and Measurements

    Timo Huusari;Yang-Seok Choi;Petteri Liikkanen;Dani Korpi

  • Towards 5G: Applications, Requirements and Candidate Technologies

    Rath Vannithamby;Shilpa Talwar

  • Wireless communication system and method using stochastic space-time/frequency division multiplexing

    Arogyaswami J. Paulraj;Peroor K. Sebastian;Jose Tellado;Robert W. Heath

Frequent Co-Authors

Nageen Himayat
Nageen Himayat Intel (United States)
Jing Zhu
Jing Zhu Tsinghua University
Sergey Andreev
Sergey Andreev Tampere University
Yevgeni Koucheryavy
Yevgeni Koucheryavy National Research University Higher School of Economics
Arogyaswami Paulraj
Arogyaswami Paulraj Stanford University
Alan E. Willner
Alan E. Willner University of Southern California
Guodong Xie
Guodong Xie University of Southern California
Zhe Zhao
Zhe Zhao University of Southern California
Yongxiong Ren
Yongxiong Ren University of Southern California
Andreas F. Molisch
Andreas F. Molisch University of Southern California

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