Adarsh Raj

Systems Integration Engineer at Torc Robotics
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Contact Information
us****@****om
(386) 825-5501
Location
Blacksburg, Virginia, United States, US

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5.0

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Ritesh Mehta

Adarsh and I worked together at Udelv. Adarsh's technical knowledge, ability to diagnose and explain complex issues in simple terms, knowledge of software tools and processes and ability to collaborate with others (engineers and contractors) were exceptional. His willingness to continuously learn and improve makes him a great co-worker and employee.

Enosh Reeder

Adarsh is an extremely motivated and hard working engineer who consistently meets and exceeds requirements and gives every project his all. His excellent communication and organizational skills make collaboration fun and enjoyable, and I highly recommend him for any controls application as he would be a great asset for any team.

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Experience

    • United States
    • Truck Transportation
    • 500 - 600 Employee
    • Systems Integration Engineer
      • Feb 2023 - Present

    • United States
    • Motor Vehicle Manufacturing
    • 1 - 100 Employee
    • Vehicle Robotics Controls Engineer
      • Oct 2021 - Feb 2023

    • United States
    • Truck Transportation
    • 700 & Above Employee
    • Vehicle Controls Engineer
      • Aug 2019 - Oct 2021

      • Develop and advance brake control algorithms for next gen commercial vehicles • Lead the software development to integrate new hardware into the brake system. • Review and code brake control software to adhere legal and design constraints. • Collaborate with cross-functional teams locally and internationally to enhance brake control strategies. • Validate brake control algorithms and functions through HIL and vehicle testing. • Identify and troubleshooted faults and bugs in… Show more • Develop and advance brake control algorithms for next gen commercial vehicles • Lead the software development to integrate new hardware into the brake system. • Review and code brake control software to adhere legal and design constraints. • Collaborate with cross-functional teams locally and internationally to enhance brake control strategies. • Validate brake control algorithms and functions through HIL and vehicle testing. • Identify and troubleshooted faults and bugs in upcoming hardware and control algorithms. Show less • Develop and advance brake control algorithms for next gen commercial vehicles • Lead the software development to integrate new hardware into the brake system. • Review and code brake control software to adhere legal and design constraints. • Collaborate with cross-functional teams locally and internationally to enhance brake control strategies. • Validate brake control algorithms and functions through HIL and vehicle testing. • Identify and troubleshooted faults and bugs in… Show more • Develop and advance brake control algorithms for next gen commercial vehicles • Lead the software development to integrate new hardware into the brake system. • Review and code brake control software to adhere legal and design constraints. • Collaborate with cross-functional teams locally and internationally to enhance brake control strategies. • Validate brake control algorithms and functions through HIL and vehicle testing. • Identify and troubleshooted faults and bugs in upcoming hardware and control algorithms. Show less

    • United States
    • Higher Education
    • 700 & Above Employee
    • Graduate Teaching Assistant
      • Jan 2018 - May 2019

      • Supervised, taught and graded the lab sessions for the Mechanics for Electrical Mechanical Engineering Technology class. • Assisted and graded the Applied Finite Elements Analysis classes and lab sessions focused on using ANSYS Workbench

    • Graduate Student Researcher
      • Sep 2017 - May 2019

      Master's Thesis - A Model-Free Control Algorithm Based On The Sliding Mode Method With Applications to Unmanned Aircraft Systems. (https://scholarworks.rit.edu/theses/10043/) • Developed a model free control algorithm based on the sliding mode control method for Unmanned Aircraft System applications. • Simulated and advanced the control law for position tracking with sensor delays, noise and actuator dynamics. • Formulated state estimation algorithms for a quadcopter to determine… Show more Master's Thesis - A Model-Free Control Algorithm Based On The Sliding Mode Method With Applications to Unmanned Aircraft Systems. (https://scholarworks.rit.edu/theses/10043/) • Developed a model free control algorithm based on the sliding mode control method for Unmanned Aircraft System applications. • Simulated and advanced the control law for position tracking with sensor delays, noise and actuator dynamics. • Formulated state estimation algorithms for a quadcopter to determine roll and pitch angles • Analyzed and investigated hardware data for optimal motion tracking. • Successfully achieved autonomous flight control on a real quadrotor.

    • United States
    • Motor Vehicle Manufacturing
    • 700 & Above Employee
    • Product Engineer Co-Op - Light Duty Diesel, Liquid Engineering
      • Jun 2016 - Jun 2017

      • Developed an innovative production prototype for DVP&R to improve manufacturability, minimize waste and reduce cost. • Collaborated with cross-functional teams for Design Quality Review, Pilot, PPAP and Production runs of fuel filters. • Published a technical report to enhance quality control for valve installation on filter heads using DVA tool • Identified configurations to increase efficiency and longevity of filters using DOE. • Mentored incoming Co-Ops and interns. • Developed an innovative production prototype for DVP&R to improve manufacturability, minimize waste and reduce cost. • Collaborated with cross-functional teams for Design Quality Review, Pilot, PPAP and Production runs of fuel filters. • Published a technical report to enhance quality control for valve installation on filter heads using DVA tool • Identified configurations to increase efficiency and longevity of filters using DOE. • Mentored incoming Co-Ops and interns.

Education

  • Rochester Institute of Technology
    Master of Science - MS, Mechanical Engineering (specialization in Automotive and Control Systems)
    2015 - 2019
  • Vellore Institute of Technology
    Bachelor of Technology (BTech), Mechanical Engineering
    2011 - 2015

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