Your car looks like a machine. But under the hood? It’s code—and code can be hacked.
From braking to acceleration, critical systems are exposed—and most drivers have no idea.
Dr. Muhammad Fahad doesn’t just understand the risk—he’s been wiring in protection before threats even surface. With a background in signal processing and a global track record—from Detroit test cells to Asian factory floors—he’s built diagnostic systems that catch problems before they become disasters.
This isn’t a theory. It’s already passed regulatory sniff tests.
Airbags protect you in a crash. Secure ECUs protect you from one.
Here’s how one engineer makes vehicles safer and smarter—and what the rest of the industry can learn from him.
As a child in Hyderabad, Pakistan, Dr. Muhammad Fahad was captivated by the mystery of tiny black chips—integrated circuits. He spent hours exploring local radio repair shops, buying LEDs, motors, and switches with whatever small money he could find. Those tiny circuits rewired something in him, and he never looked back.
But that spark only ignited thanks to the quiet determination of his parents.
His mother, a government school teacher, and his father, a draughtsman in the town planning department, worked tirelessly to support their five children. “Getting a quality education in Pakistan is not affordable for most families,” he says. “But my parents ensured we had the opportunity—even if it meant skipping meals so their kids could afford textbooks.”
That sacrifice was not wasted. Each sibling became a professional engineer, using their skills to give back to society in their own way. For Dr. Fahad, this wasn’t just childhood. It became his blueprint.
After excelling in pre-engineering, he won one of the few top seats at Mehran University of Engineering and Technology. He took his education across continents, culminating in master’s and doctoral degrees in Electrical Engineering (Signal Processing) from Michigan Technological University, supported by a Fulbright Fellowship from the U.S. Department of State.
He turned these academic milestones into a launching pad for a career dedicated to solving real-world problems through technology that improves people’s lives.
He built solar-powered irrigation from scratch for farmers who couldn’t count on the grid. He calculated load requirements, programmed VFDs (variable frequency drives), and built microcontroller-based telemetry systems—practical solutions for communities struggling with unreliable electricity and costly, unsustainable fossil fuels.
During his Fulbright-mandated return to Pakistan, he served as a Maintenance Engineer at Suleman Roshan Medical College Hospital. There, amid regular power outages and the COVID-19 crisis, he ensured emergency departments remained operational, keeping ECGs running during blackouts while COVID patients poured in.
Image: Truck ECU calibration without taking it to the dyno-cell
That job didn’t just test his skills—it proved what engineering means.
His entry into the U.S. automotive industry made him think like a machine and a hacker simultaneously. As a control systems engineer at IAV Automotive Engineering Inc., he developed a proprietary misfire monitoring system for six-cylinder heavy-duty diesel engines.
His innovation included the creation of an advanced Crank & Cam Signal Generator that simulated engine sensor signals under varied operating conditions. This generator replaced traditional dyno-cell testing with a bench-top solution that saved energy and cost.
IAV now owns this innovation as proprietary technology, which has had a measurable impact on engine calibration and diagnostic efficiency.
But that was just the bench test. Next came the drivetrain.
Dr. Fahad also contributed to the electrification of hybrid drivetrains by customizing torque-control algorithms for Permanent Magnet Synchronous Motors (PMSM)—adapting them to customer requirements and making sure they could pass CARB and EPA scrutiny with zero flags.
He turned complex vehicle requirements into safe, stable, and optimized control software using MATLAB/Simulink, ETAS INCA, and diagnostic communication protocols such as CAN bus, XCP/CCP, and SAE-J1939.
But now, the real battleground is cybersecurity.
Modern vehicles use dozens of ECUs, sensors, and wireless protocols. This connectivity enhances performance and user experience and introduces new vulnerabilities. Hackers aren’t experimenting—they’re hijacking.
This is where Dr. Fahad’s signal processing background becomes especially valuable. His expertise in interpreting complex data streams allows him to spot glitches before they become gaps attackers can slip through.
By embedding cybersecurity awareness into the early stages of system design, he helps create vehicles that are intelligent, efficient, and resilient to cyber threats.
His fluency in international automotive standards and real-world experience in North America, Europe, and Asia ensure that the systems he helps build are ready for roads in any country and any decade.
Whether tuning an ECU or spotting a rogue data packet, Fahad bridges hardware and code in ways most engineers don’t.
Dr. Fahad’s impact reaches far beyond engineering projects and prototypes. As an Adjunct Assistant Professor at Michigan Technological University, he taught Electrical Machinery, helping students grasp the fundamentals of DC, induction, and synchronous motors.
For him, teaching wasn’t just a professional role but a platform to instill ethical responsibility—so the next engineer who builds your brakes knows lives depend on it.
Alongside teaching, Dr. Fahad has made meaningful contributions to academic research. Industry professionals and scholars widely reference and apply his work to sensor networks and signal processing. As a reviewer for IEEE Transactions on Signal Processing, he continues to shape the standards of excellence in his field.
His career is also marked by awards such as:
Image: National Gold medal awardees of the year 2005 by SIEMENS. (Dr. Fahad on the extreme left)
These milestones reflect more than achievement—they represent a lifelong dedication to learning, leadership, and meaningful, globally relevant innovation.
Dr. Fahad’s future goals align closely with the challenges the automotive world faces now:
He hopes to expand his role in R&D environments focused on clean, innovative, and secure mobility solutions. His ultimate aim is to ensure that the next generation of vehicles isn’t just connected but cyber-resilient, safe, and environmentally responsible.
Dr. Muhammad Fahad’s story reminds us that the path to innovation doesn’t always begin in a high-tech lab. Sometimes, it starts in a small shop with a curious child and a handful of circuit parts.
Image: Global readership of his research work. (Courtesy of Michigan Tech library.)
Today, he is a model for what happens when technical excellence meets global grit and a childhood promise to build things that matter.
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