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Control strategies are designed and optimized to meet system performance, safety, and reliability requirements, followed by implementation of embedded software using model-based development and C/C++. Verification and validation are performed through simulation, hardware-in-the-loop testing, and system integration to ensure robust real-time operation

Engineering & Technology Talks

Sharing expertise through technical presentations on systems engineering, embedded systems, electrification, power electronics, aerospace, and emerging technologies.

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Charging Systems & Power Electronics

Experience includes architecting, designing, and verifying AC/DC and DC/DC power conversion systems for electrified transportation and industrial applications. Work spans systems engineering, requirements definition, power electronics, embedded control software, and hardware integration across the full product lifecycle. Control algorithms are developed in MATLAB/Simulink and implemented in C/C++ for real‑time embedded controllers, with validation through simulation, SIL, HIL, lab testing, and full system integration.

Engineering activities also include electrical and electronic hardware design, PCB development and review, schematic analysis, component selection, debugging, root‑cause analysis, DFM/DFT, and manufacturing support to deliver reliable, efficient, production‑ready charging and power conversion solutions.

Battery Management Systems (BMS)

Experience includes systems engineering, architecture, and development of high‑voltage Battery Management Systems (BMS). Responsibilities span requirements definition, battery control strategies, embedded software development, hardware integration, communication networks, and verification of battery performance, safety, and reliability. Expertise includes SOC, SOE, SOP, SOH, thermal management algorithms, diagnostics, fault detection, balancing strategies, and functional safety.

Additional activities include PCB design and review, schematic verification, hardware bring‑up, debugging, FMEA, system integration, and cross‑functional collaboration with software, electrical, mechanical, manufacturing, and test teams to deliver robust, production‑ready battery systems from concept through launch

Hossein Dehnavifard Engineering Academy

Experience includes tutoring and mentoring engineering students at the university level, supported by extensive industry work across aerospace, rail transportation, heavy equipment, electrification, and embedded systems. This blend of academic and practical engineering expertise enables delivery of professional courses that connect engineering theory with real‑world product development.

 

Course topics include Systems Engineering, MBSE, systems architecture, requirements engineering, control strategy development, MATLAB/Simulink, embedded C/C++ development, electric machines and drives, motor control, power electronics, BMS, electrical and electronic hardware design, PCB development, communication networks, SIL/PIL/HIL verification, system integration, functional safety, FMEA, and the full product development lifecycle from concept through manufacturing and production.

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Software, Motor Drives & Embedded Control

Experience includes developing embedded software and advanced control strategies for electric propulsion, motor drives, and power electronic systems in transportation and industrial applications. Work spans system requirements, control topology development, model‑based design in MATLAB/Simulink and Stateflow, embedded C/C++ implementation, and real‑time optimization.

Practical experience covers dynamic braking, traction control, electric drive systems, communication networks, and embedded control for safety‑critical applications. Verification and validation are performed through simulation, SIL, PIL, HIL, lab testing, and full system integration to ensure reliable, high‑performance operation

Power Electronics, PCB Design & Hardware Development

Experience includes designing and integrating power electronic systems, electrical and electronic hardware, and PCB‑based control platforms for electrified transportation and industrial equipment. Responsibilities span systems architecture, converter topology selection, schematic development, component selection, PCB layout review, prototype bring‑up, hardware debugging, and manufacturing support.

Projects include high‑power DC/DC converters, motor drive inverters, battery charging systems, and energy storage applications, where thermal management, packaging constraints, EMC, DFM, and DFT are critical to delivering reliable, production‑ready designs. 

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