World's Best Scientists 2026 revealed!

D-Index & Metrics

Computer Science

D-Index
35
Citations
5242
World Ranking
11703
National Ranking
4791

Electronics and Electrical Engineering

D-Index
35
Citations
5242
World Ranking
5562
National Ranking
1908

Overview

What is he best known for?

The fields of study he is best known for:

  • Computer network
  • Telecommunications
  • Wireless

Arty Chandra mainly investigates Computer network, Wireless, Real-time computing, Node and Telecommunications link. Arty Chandra combines Computer network and Mode in his studies. His research on Wireless focuses in particular on Wireless communication systems.

His studies in Real-time computing integrate themes in fields like Frame, Dynamic resource and Group identifier. His Node study incorporates themes from Synchronization, Control channel and High-Speed Uplink Packet Access. Arty Chandra has included themes like Real time services, Scheduling and Data rate in his Telecommunications link study.

His most cited work include:

  • Wireless communication method and system with controlled WTRU peer-to-peer communications (337 citations)
  • Methods and system for performing handover in a wireless communication system (242 citations)
  • Method and system for controlling access to a wireless communication medium (195 citations)

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

His primary areas of investigation include Computer network, Wireless, Real-time computing, Telecommunications link and Network packet. The concepts of his Computer network study are interwoven with issues in Transmission and Wireless communication systems. His research in Wireless intersects with topics in Antenna, Channel, Scheduling and Base station.

His Real-time computing study integrates concerns from other disciplines, such as Transmitter, Acknowledgement and Hybrid automatic repeat request. His Telecommunications link research is multidisciplinary, incorporating perspectives in Random access and Discontinuous reception. His work in Network packet tackles topics such as Physical layer which are related to areas like Throughput and Preamble.

He most often published in these fields:

  • Computer network (71.87%)
  • Wireless (48.12%)
  • Real-time computing (24.38%)

What were the highlights of his more recent work (between 2012-2020)?

  • Computer network (71.87%)
  • Wireless (48.12%)
  • Telecommunications link (19.38%)

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

His scientific interests lie mostly in Computer network, Wireless, Telecommunications link, Transmission Time Interval and Node. His biological study spans a wide range of topics, including Wireless communication systems, Physical layer and Preamble. The Wireless study combines topics in areas such as Handover, Communications system, Channel, Electronic engineering and Antenna.

In his study, which falls under the umbrella issue of Telecommunications link, Wireless network and Wireless systems is strongly linked to Discontinuous reception. His study in Node is interdisciplinary in nature, drawing from both Down link and Paging. His work investigates the relationship between Transmitter and topics such as Real-time computing that intersect with problems in Retransmission.

Between 2012 and 2020, his most popular works were:

  • Lawful interception for local selected ip traffic offload and local ip access performed at a non-core gateway (24 citations)
  • Wireless transmit/receive unit and method for receiving multiple transport blocks (4 citations)
  • Method for performing discontinuous reception (DRX) in wireless systems transmit receive unit (WTRU) and WTRU (3 citations)

In his most recent research, the most cited papers focused on:

  • Computer network
  • Telecommunications
  • Wireless

The scientist’s investigation covers issues in Computer network, Wireless, Transmission Time Interval, Telecommunications link and Transmitter. His research on Computer network often connects related topics like Signal. His work on Service Access Point, Physical layer, Wireless communication systems and Superframe as part of general Wireless research is frequently linked to Time domain, bridging the gap between disciplines.

His Transmission Time Interval research integrates issues from Transmission time, Retransmission and Hybrid automatic repeat request. His studies deal with areas such as Node, Handover and Discontinuous reception as well as Telecommunications link. He interconnects Frame, Transmission, Real-time computing and Antenna in the investigation of issues within Transmitter.

Best Publications

  • Wireless communication method and system with controlled WTRU peer-to-peer communications

    Gautam G. Reddy;Prabhakar R. Chitrapu;Leonid Kazakevich;Teresa Joanne Hunkeler

  • CONTENT OF THE HANDOVER COMMAND IN AN INTRA-LTE HANDOVER

    Wang Jin;Chandra Arty;Terry Stephen E

  • Method and system for controlling access to wireless communication medium

    エイ.グランディ サディール;Sudheer A Grandhi;チャンドラ アーティ;Arty Chandra

  • Method and apparatus for providing and utilizing a non-contention based channel in a wireless communication system

    Stephen E. Terry;Jin Wang;Arty Chandra;John S. Chen

  • Wireless transmitting/receiving unit, application method and infrastructure node

    Chandra Arty;Terry Stephen E

  • Dynamic resource allocation, scheduling and signaling for variable data rate service in lte

    Jin Wang;Mohammed Sammour;Arty Chandra

  • Method and apparatus for enhancing discontinuous reception in wireless systems

    Mohammed Sammour;Arty Chandra;Jin Wang;Shankar Somasundaram

  • Radio link failure detection procedures in long term evolution uplink and downlink and apparatus therefor

    Jin Wang;Stephen E. Terry;Arty Chandra;John S. Chen

  • Method and system for efficient addressing and power savings in wireless systems

    Mohammed Sammour;Sudheer A. Grandhi;Arty Chandra

  • MIT EINER INTELLIGENTEN ANTENNE IN EINEM WLAN OPERIERENDER ZUGANGSPUNKT UND ASSOZIIERTE VERFAHREN

    Iacono Ana Lucia;Chandra Arty;Steinbach Daniel P;Cha Inhyok

  • Method and apparatus for providing differentiated quality of service for packets in a particular flow

    Mohammed Sammour;Arty Chandra;Catherine M. Livet;John S. Chen

  • Multi-cell coordination for multimedia broadcast multicast services in a wireless communication system

    Guang Lu;Guodong Zhang;Arty Chandra

  • Method and apparatus for retransmission management for reliable hybrid ARQ process

    Arty Chandra;Narayan Parappil Menon;Stephen E. Terry;Junsung Lim

  • Peer-to-peer wireless communication system

    Arty Chandra;Joseph S. Levy;Sudheer A. Grandhi;Eldad M. Zeira

  • Method and system for improving responsiveness in exchanging frames in a wireless local area network

    Arty Chandra;Eldad Zeira;Mohammed Sammour;Sudheer A. Grandhi

  • Autonomous timing advance adjustment during handover

    Jin Wang;Stephen E. Terry;Arty Chandra;Allan Y. Tsai

  • METHOD AND APPARATUS FOR UPLINK TRANSMISSIONS

    Wang Jin;Chandra Arty;Chen John S;Sammour Mohammed

  • Method executed by WTRU and WTRU

    Wang Jin;Chen John S;Sammour;Mohammed Terry Stephen E

  • Extended local IP access for a converged gateway in a hybrid network

    John L. Tomici;Prabhakar R. Chitrapu;John Cartmell;Rocco Di Girolamo

  • Implementing a smart antenna in a wireless local area network

    Paul Marinier;Arty Chandra;Inhyok Cha;Vincent Roy

Frequent Co-Authors

stephen e terry
stephen e terry InterDigital (United States)
Eldad Zeira
Eldad Zeira Leucadia Wireless
Prabhakar R. Chitrapu
Prabhakar R. Chitrapu Lockheed Martin (United States)
Paul Marinier
Paul Marinier InterDigital (United States)
Kamel M. Shaheen
Kamel M. Shaheen InterDigital (Canada)
Inhyok Cha
Inhyok Cha CJ Olivenetworks
Robert L. Olesen
Robert L. Olesen InterDigital (United States)
Christopher R. Cave
Christopher R. Cave InterDigital (United States)
Guodong Zhang
Guodong Zhang InterDigital (United States)
Janet A. Stern-Berkowitz
Janet A. Stern-Berkowitz InterDigital (United States)

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