Integrated BCM & IPC with SystemDesk, debugged CAN/LIN issues, set up CI/CV validation on VITE, automated workflows with Python.
Technical Lead
Automotive Software
& Virtualization
To leverage my 7.8 years of expertise in automotive model-based development, testing and virtualization to drive innovation, efficiency and excellence in this field. I aspire to contribute to cutting edge advancements in the automotive industry and be a leader in shaping the future of vehicle technology.
Years of
Experience
Projects
Delivered
Industry
Awards
We help you create virtual ECU environments to simulate real-world conditions. Reduce dependency on physical hardware, accelerate testing, and cut costs while improving quality. Perfect for software-defined vehicles.
Validate your systems in a virtual space before deployment. Identify defects early in the lifecycle, improve reliability, and ensure compliance with industry standards.
Transform requirements into executable test cases. Ensure every function matches design intent, detect gaps, and maintain traceability for safer, more efficient product development.
Leverage MATLAB/Simulink and similar tools to design, simulate, and validate complex systems. Enhance collaboration, reduce errors, and accelerate innovation with model-driven development.
Integrated BCM & IPC with SystemDesk, debugged CAN/LIN issues, set up CI/CV validation on VITE, automated workflows with Python.
Integrated ECU Validator with VEOS in Docker, validated AUTOSAR Level-3 Virtual ECUs, developed plant models & bus apps, debugged AUTOSAR code, explored AWS–VEOS co-simulation.
Created non-AUTOSAR Virtual ECUs, developed Embedded C for DAP, PWM, SENT & LIN, configured OS/DAP/SAB modules in SystemDesk, delivered defect-free releases via SIL testing.
Automated MIL/SIL testing with MATLAB & Simulink, built Model Advisor scripts, developed coverage automation & reports, led SME initiatives, mentored juniors, delivered defect-free releases.
Designed control algorithms for embedded systems, developed MIL/HIL testing workflows, created Simulink models & auto-code for automotive and electrical projects.
Developed automotive algorithms with MATLAB/Simulink, performed HIL validation, debugged code using ClearQuest & BuildForge, automated models with TargetLink.
Updated Simulink models per guidelines, generated auto-code with TargetLink, performed MIL/SIL testing & coverage validation.
Designed wind turbine & microgrid models, developed frequency-stability controllers, conducted smart grid research.
Thesis: Enhancement of Microgrid Frequency Stability using Microgrid Frequency Controller (MGFC) | GPA: 3.24/4
Graduated with 64.5% – First Class Division
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