World's Best Scientists 2026 revealed!

D-Index & Metrics

Computer Science

D-Index
44
Citations
6723
World Ranking
7670
National Ranking
3319

Electronics and Electrical Engineering

D-Index
43
Citations
6593
World Ranking
3949
National Ranking
1419

Overview

What is he best known for?

The fields of study he is best known for:

  • Computer network
  • Operating system
  • Telecommunications

His primary areas of study are Computer network, Wireless, Real-time computing, Transmission and Network packet. Santosh Paul Abraham has included themes like Wireless network and Wi-Fi array in his Computer network study. The various areas that Santosh Paul Abraham examines in his Wireless study include Distributed computing, Frame, Field, Identifier and Decoding methods.

His Real-time computing research includes themes of Data path, Data link, Window, Communication channel and Synchronization. His Transmission research is multidisciplinary, incorporating elements of Node, Switched mesh, Station and Adaptation. The concepts of his Network packet study are interwoven with issues in Quality of service, Media access control, Wireless mesh network, Electronic engineering and Preamble.

His most cited work include:

  • Server-assisted device-to-device discovery and connection (198 citations)
  • Method and apparatus for flow control of data in a mesh network (167 citations)
  • Dynamic carrier sensing thresholds (117 citations)

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

His primary scientific interests are in Computer network, Wireless, Wireless network, Real-time computing and Transmission. In his research, Key distribution in wireless sensor networks is intimately related to Wi-Fi array, which falls under the overarching field of Computer network. His Wireless research includes elements of Computer program, Identifier, Signal, Electrical engineering and Electronic engineering.

The Electronic engineering study combines topics in areas such as White spaces and Preamble. Santosh Paul Abraham combines subjects such as Synchronization, Paging and Telecommunications link with his study of Real-time computing. His Transmission research includes themes of Node, Data transmission and Transmitter.

He most often published in these fields:

  • Computer network (73.13%)
  • Wireless (40.53%)
  • Wireless network (17.18%)

What were the highlights of his more recent work (between 2015-2020)?

  • Computer network (73.13%)
  • Wireless (40.53%)
  • Data link (4.85%)

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

Santosh Paul Abraham mainly investigates Computer network, Wireless, Data link, Wireless network and Transmission. His Computer network study incorporates themes from Schedule and Point. His biological study spans a wide range of topics, including Window, User equipment and Electrical engineering.

Within one scientific family, he focuses on topics pertaining to White spaces under Electrical engineering, and may sometimes address concerns connected to Signal. The study incorporates disciplines such as Network data, Communication channel, World Wide Web, Hop and Topology in addition to Data link. Santosh Paul Abraham has researched Transmission in several fields, including Interface and Data transmission.

Between 2015 and 2020, his most popular works were:

  • Schedule selection and connection setup between devices participating in a nan data link (34 citations)
  • Methods and apparatus for wireless discovery location and ranging within a neighborhood aware network (15 citations)
  • Group key announcement and distribution for a data link group (15 citations)

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

  • Computer network
  • Operating system
  • Telecommunications

Santosh Paul Abraham focuses on Computer network, Wireless, Data link, Schedule and Window. His Computer network study frequently links to related topics such as Wi-Fi array. His Wireless study integrates concerns from other disciplines, such as Communication source, User equipment, Ranging, Real-time computing and Radio access network.

His work in Data link covers topics such as Network data which are related to areas like Offset and Synchronizing. His Schedule research incorporates elements of Transmission schedule, Quality of service, Knowledge management and Process management. His Window study deals with Paging intersecting with Ultra low power, Electrical engineering, Unicast and Advertising.

Best Publications

  • Server-assisted device-to-device discovery and connection

    Yan Zhou;George Cherian;Santosh Paul Abraham

  • DYNAMIC CARRIER DETECTION THRESHOLD VALUES

    Nandagopalan Saj;Abrakham Santosh

  • Systems and methods for synchronization within a neighborhood aware network

    Santosh Paul Abraham;George Cherian;Alireza Raissinia;Guido Robert Frederiks

  • Method and apparatus for scheduling in a wireless network

    Arnaud Meylan;Santosh P. Abraham

  • Systems and methods for sharing context information in a neighbor aware network

    Shankar Sadasivam;Ashwin Swaminathan;Jin Won Lee;Santosh Paul Abraham

  • Systems and methods for wireless communication of packets having a plurality of formats

    Sameer Vermani;Santosh Paul Abraham;Mohammad Taghavi Nasrabadi;Vincent Knowles Jones

  • METHODS AND APPARATUSES FOR SCHEDULING UPLINK REQUEST SPATIAL DIVISION MULTIPLE ACCESS MESSAGES IN A SPATIAL DIVISION MULTIPLE ACCESS CAPABLE WIRELESS LAN

    Abraham Santosh P;Sridhara Vinay

  • Apparatus and method for wireless communication via at least one of directional and omni-direction antennas

    Sanjiv Nanda;Saishankar Nandagopalan;Santosh P. Abraham;Jay Rodney Walton

  • Systems and methods for fast initial network link setup

    George Cherian;Santosh Paul Abraham;Simone Merlin

  • Method and apparatus for supporting adaptive channel state information feedback rate in multi-user communication systems

    Gregory A. Breit;Santosh Paul Abraham;Sameer Vermani;Hemanth Sampath

  • Preamble design for television white space transmissions

    Sameer Vermani;Santosh Paul Abraham;Stephen J. Shellhammer;Albert van Zelst

  • Apparatus and method for wireless communication using directional and omni-directional antennas

    Sanjiv Nanda;Saishankar Nandagopalan;Santosh Abraham;J. Rodney Walton

  • Transmit opportunity (txop) based channel reuse

    Hao Zhu;Srinivas Katar;Simone Merlin;Chao Zou

  • SYSTEMS AND METHODS FOR ESTABLISHING SYNCHRONIZATION ACROSS MULTIPLE NETWORKS AND PARTICIPATING STAs VIA OPERATIONS ON A KNOWN COMMON CHANNEL

    Abhishek Pramod Patil;George Cherian;Santosh Paul Abraham

  • Method and apparatus for managing data flow through a mesh network

    Sanjiv Nanda;Saishankar Nandagopalan;Santosh Abraham;Xiaofei Wang

  • Multi-user multiple input multiple output wireless communications

    Hemanth Sampath;Vincent Knowles Jones;Maarten Menzo Wentink;Santosh P. Abraham

  • Apparatus and methods for media access control header compression

    Maarten Menzo Wentink;Santosh Paul Abraham;Simone Merlin;Geert Awater

  • System and method of communication using distributed channel access parameters

    Maarten Menzo Wentink;Simone Merlin;Alfred Asterjadhi;Zhi Quan

  • Using a mobile device to enable another device to connect to a wireless network

    George Cherian;Jouni Malinen;Santosh Paul Abraham;Peerapol Tinnakornsrisuphap

  • Methods and apparatus for scheduling wireless transmissions

    Santosh P. Abraham;Alok Aggarwal;Vinay Sridhara;Sameer Vermani

  • Neighbor discovery in a wireless system

    Arnaud Meylan;Santosh Abraham;Shravan K. Surineni;Sanjiv Nanda

Frequent Co-Authors

Simone Merlin
Simone Merlin Qualcomm (United States)
George Cherian
George Cherian Qualcomm (United States)
Vincent Knowles Jones
Vincent Knowles Jones Qualcomm (United States)
naga bhushan
naga bhushan Qualcomm (United States)
Sanjiv Nanda
Sanjiv Nanda Qualcomm (United States)
Sanjiv Nanda
Sanjiv Nanda Qualcomm (United States)
Ashwin Sampath
Ashwin Sampath Qualcomm (United States)
Jay Rodney Walton
Jay Rodney Walton Qualcomm (United States)
Junyi Li
Junyi Li Qualcomm (United States)

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