Search

Vamsi K Vegunta

age ~37

from San Diego, CA

Also known as:
  • Vamsi Krishna Vegunta
  • Vamsi Vegunpa
  • Vegunta Vamsi
Phone and address:
14121 Brent Wilsey Pl UNIT 3, San Diego, CA 92128

Vamsi Vegunta Phones & Addresses

  • 14121 Brent Wilsey Pl UNIT 3, San Diego, CA 92128
  • Arlington, TX
  • Cupertino, CA

Work

  • Company:
    Qualcomm
    Aug 2011
  • Position:
    Lte test engineer

Education

  • School / High School:
    University of Texas at Arlington- Arlington, TX
    May 2011
  • Specialities:
    MS in Wireless Communications, Digital Signal Processing, Electromagnetic

Skills

Rf • Lte • Rf Engineering • Wireless • Antennas • Testing • Optimization • Wcdma • Spectrum Analyzer • Rf Design • Matlab • Mimo • Ofdm • Github • Labview • Machine Learning • Python • Numpy • Mobile Devices • C • Microsoft Office • Microsoft Excel • Scikit Learn • Pandas • Wlan • Graphlab Create • Gnu Octave • Ansible • Playbook • Vr5 • Jupyter • Tensorflow • Sql • Rest Api

Languages

English • Telugu • Hindi

Ranks

  • Certificate:
    License Mfm2Jt6Bm3Pm

Industries

Wireless

Resumes

Vamsi Vegunta Photo 1

Staff Engineer

view source
Location:
San Diego, CA
Industry:
Wireless
Work:
Qualcomm - Greater San Diego Area since Jun 2012
Engineer

Qualcomm Aug 2011 - Jul 2012
LTE Test Engineer

Mycom - Greater Denver Area Jul 2010 - Jan 2011
RF Engineer

University of Texas at Arlington Aug 2008 - Jun 2010
Graduate Research Assistant

University of Texas at Arlington Aug 2008 - Jan 2009
Graduate Teaching Assistant
Education:
The University of Texas at Arlington 2008 - 2011
MS, Electrical Engineering
Anna University 2004 - 2008
BS, Electronics and Communication; Electrical Engineering Scholar
Skills:
Rf
Lte
Rf Engineering
Wireless
Antennas
Testing
Optimization
Wcdma
Spectrum Analyzer
Rf Design
Matlab
Mimo
Ofdm
Github
Labview
Machine Learning
Python
Numpy
Mobile Devices
C
Microsoft Office
Microsoft Excel
Scikit Learn
Pandas
Wlan
Graphlab Create
Gnu Octave
Ansible
Playbook
Vr5
Jupyter
Tensorflow
Sql
Rest Api
Languages:
English
Telugu
Hindi
Certifications:
License Mfm2Jt6Bm3Pm
License Vclh38Shskdz
License Bbfe65Dcsvlc
License Uc-Lb8M7Tla
Machine Learning Foundations: A Case Study Approach
Machine Learning: Regression
Machine Learning
Automate the Boring Stuff With Python Programming
Neural Networks and Deep Learning
Improving Deep Neural Networks: Hyperparameter Tuning, Regularization and Optimization
Structuring Machine Learning Projects
Programming Foundations: Real-World Examples
Convolutional Neural Networks
Introduction To Deep Learning
Sequences, Time Series and Prediction
Vamsi Vegunta Photo 2

Vamsi Vegunta San Diego, CA

view source
Work:
Qualcomm

Aug 2011 to 2000
LTE Test Engineer
MyCom

Aug 2010 to Jan 2011
RF Engineer
Education:
University of Texas at Arlington
Arlington, TX
May 2011
MS in Wireless Communications, Digital Signal Processing, Electromagnetic
Anna University
Chennai, Tamil Nadu
Apr 2008
BS in Electronics and Communication Engineering
Vamsi Vegunta Photo 3

Vamsi Krishna Vegunta

view source

Us Patents

  • Passive Positioning With Radio Frequency Sensing

    view source
  • US Patent:
    20220329330, Oct 13, 2022
  • Filed:
    Apr 13, 2021
  • Appl. No.:
    17/229798
  • Inventors:
    - San Diego CA, US
    Bibhu MOHANTY - Del Mar CA, US
    Daniel Hendricus Franciscus DIJKMAN - Haarlem, NL
    Farhad GHAZVINIAN ZANJANI - Almere, NL
    Ilia KARMANOV - Amsterdam, NL
    Brian Michael BUESKER - San Diego CA, US
    Harshit JOSHI - San Diego CA, US
    Vamsi VEGUNTA - San Diego CA, US
  • International Classification:
    H04B 17/318
    H04W 64/00
    H04W 16/20
    H04W 24/02
    H04W 4/02
  • Abstract:
    Disclosed are systems, methods, and non-transitory media for sensing radio frequency signals. For instance, radio frequency data can be received by an apparatus and from at least one wireless device in an environment. Based on the radio frequency data received from the at least one wireless device, the apparatus can determine sensing coverage of the at least one wireless device. The apparatus can further provide the determined sensing coverage and a position of at least one device to a user device.
  • Self-Supervised Passive Positioning Using Wireless Data

    view source
  • US Patent:
    20220329973, Oct 13, 2022
  • Filed:
    Apr 13, 2021
  • Appl. No.:
    17/229825
  • Inventors:
    - San Diego CA, US
    Daniel Hendricus Franciscus DIJKMAN - Haarlem, NL
    Farhad GHAZVINIAN ZANJANI - Almere, NL
    Simone MERLIN - San Diego CA, US
    Brian Michael BUESKER - San Diego CA, US
    Vamsi VEGUNTA - San Diego CA, US
    Harshit JOSHI - San Diego CA, US
    Fatih Murat PORIKLI - San Diego CA, US
    Joseph Binamira SORIAGA - San Diego CA, US
    Bibhu MOHANTY - Del Mar CA, US
  • International Classification:
    H04W 4/029
    G06N 20/00
  • Abstract:
    Disclosed are systems, methods, and non-transitory media for performing passive radio frequency (RF) location detection operations. In some aspects, RF data, such as RF signals including channel state information (CSI), can be received from a wireless device. The RF data can be provided to a self-supervised machine-learning architecture that is configured to perform object location estimation.
  • Techniques For Controlling A Network

    view source
  • US Patent:
    20220295339, Sep 15, 2022
  • Filed:
    May 17, 2022
  • Appl. No.:
    17/746695
  • Inventors:
    - San Diego CA, US
    Yanjun Sun - San Diego CA, US
    Hemanth Sampath - San Diego CA, US
    Bibhu Mohanty - Del Mar CA, US
    Brian Michael Buesker - San Diego CA, US
    Yuan Zhou - San Diego CA, US
    Eric Vanbuhler - San Diego CA, US
    Danyang Cong - San Diego CA, US
    Raamkumar Balamurthi - San Diego CA, US
    Harshit Joshi - San Diego CA, US
    Vamsi Vegunta - San Diego CA, US
    Danny Jen - San Diego CA, US
    Nitin Ravinder - San Diego CA, US
  • International Classification:
    H04W 28/02
    H04L 5/00
    H04W 74/08
    H04W 8/24
  • Abstract:
    This disclosure describes systems, devices, apparatus, and methods, including computer programs encoded on storage media, for controlling a network with one or more access points (APs). A controller may be configured to schedule at least some resources of the one or more APs to improve network efficiency. The APs may measure and report a variety of information and statistics to the controller. The controller may determine one or more transmission parameters and one or more operations a given AP is permitted to perform during a respective time interval. The controller may communicate the one or more transmission parameters using an indication, such as a message. At least one AP associated with the controller may communicate with stations (STAs) using the one or more transmission parameters.
  • Techniques For Controlling A Network

    view source
  • US Patent:
    20200112871, Apr 9, 2020
  • Filed:
    Sep 11, 2019
  • Appl. No.:
    16/567415
  • Inventors:
    - San Diego CA, US
    Yanjun Sun - San Diego CA, US
    Hemanth Sampath - San Diego CA, US
    Bibhu Mohanty - Del Mar CA, US
    Brian Michael Buesker - San Diego CA, US
    Yuan Zhou - San Diego CA, US
    Eric Vanbuhler - San Diego CA, US
    Danyang Cong - San Diego CA, US
    Raamkumar Balamurthi - San Diego CA, US
    Harshit Joshi - San Diego CA, US
    Vamsi Vegunta - San Diego CA, US
    Danny Jen - San Diego CA, US
    Nitin Ravinder - San Diego CA, US
  • International Classification:
    H04W 28/02
    H04W 8/24
    H04W 74/08
    H04L 5/00
  • Abstract:
    This disclosure describes systems, devices, apparatus, and methods, including computer programs encoded on storage media, for controlling a network with one or more access points (APs). A controller may be configured to schedule at least some resources of the one or more APs to improve network efficiency. The APs may measure and report a variety of information and statistics to the controller. The controller may determine one or more transmission parameters and one or more operations a given AP is permitted to perform during a respective time interval. The controller may communicate the one or more transmission parameters using an indication, such as a message. At least one AP associated with the controller may communicate with stations (STAs) using the one or more transmission parameters.

Get Report for Vamsi K Vegunta from San Diego, CA, age ~37
Control profile