Automotive Storytelling episode card on motorsport technology transfer, with Thomas Rose, Ian Palmer and four more guests
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Under The Hood: Automotive Storytelling
September 25, 2026

Motorsport Technology Transfer: Six Voices From Farnborough

The tech that makes cars faster on a track is not the one you think - S219

Behind every automotive innovation lies a human story. Hosted by Stéphane Lagresle, founder of The Storytelling Tribe, this podcast reveals how industry leaders translate complex technologies into compelling narratives. Through conversations with automotive executives, discover practical frameworks for making automotive innovations relatable and meaningful. For executives, product leaders, and marketers transforming mobility through better communication.

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The tech that makes cars faster on a track is not the one you think

Racing technology still makes teams faster, but more of the time is now found in engineering hours than in hardware. In this episode of Automotive Storytelling, Stéphane Lagresle takes you onto the floor of the first Motorsport Technology Expo at Farnborough International with two questions. Does technology really get racing teams to the finish line faster? And what bridges actually exist between motorsport and passenger and commercial vehicles? Six conversations, recorded over two days in September, gave answers that do not line up neatly. That disagreement is the episode.

Key
Insights

  • The Bottleneck Has Moved Off the Car

    Thomas Rose shows that physics still pays: a fan system that delivers downforce at any speed gives McMurtry grip exactly where wings cannot. The other conversations point somewhere else. Lucas Vieira describes teams spending whole days building reports about races that already happened, and Jan Prins explains that a tire must still be built, rig-tested and measured before any model can predict it. For most teams, the limit is how fast engineers can turn data into a decision.

  • Low Volume Made the Race Car Software Defined

    Ian Palmer argues that race cars became software defined vehicles before passenger cars did, and for economic reasons. Production runs are tiny, so hardware is reused and differentiation moves into software, configured from a single toolchain. He is just as clear that the model is getting harder to export. Motorsport stays distributed while automotive consolidates into domain controllers and Android-based cockpits, a more cautious read than Alan O’Neill’s view of racing as a straight accelerator for road technology.

  • The Real Bridges Run Through Safety, Sensing and Method

    The transfers that surfaced at Farnborough rarely follow the usual racing-to-road script. Thomas Rose describes McMurtry exploring deployable downforce under a loaded truck, triggered by brake pressure, to shorten emergency stops and prevent rollovers. Jan Prins points to accelerometers inside the tire tread that can derive load, road friction and wear from the only part of the vehicle touching the road. Lucas Vieira’s pre-built analyses, run the moment a test car unloads its data, fit any validation program.

  • The Bridge Nobody Sells Is Skills

    Alan O’Neill lectured motorsport engineering, concluded that the qualifications were not producing what teams need, and founded SCU Motorsport to change that with a new qualification, a single seater that colleges buy and prepare, and a race series. His argument sits under every other conversation in the episode. Universities train people to design electrical systems, but if nobody on the shop floor can work on them, those systems become useless very quickly.

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Key
Takeaways

  • Count the hours your test program loses to reporting Lucas Vieira’s starting point at MOVEdot was engineers spending days assembling reports instead of analyzing. Vehicle validation has the same shape: a test car returns with more data than anyone can read. Preparing analyses in advance and running them automatically when the data lands tells a team within minutes whether the test is on track.
  • Put the tire on your sensing roadmap Jan Prins notes that most vehicles give the driver only tire pressure and possibly temperature. An accelerometer inside the tread, already fitted to some production tires according to Jan, can derive load, road friction and wear. Perception stacks point outward at the world. The tire is the one sensor location actually touching the road.
  • Borrow motorsport’s toolchain discipline before its hardware Ian Palmer sees little of motorsport’s distributed electrical architecture mapping onto consolidated domain controllers and Android cockpits. What he does see transferring is the practice of configuring an entire vehicle from one software toolchain. For suppliers who pitch their racing heritage, the method is the more credible claim.
  • Budget for technicians alongside the technology Alan O’Neill’s point is that a new drivetrain is only as useful as the people able to maintain it. Hydrogen, high voltage and green fuel systems all need trained hands on the shop floor. Programs that plan for the technology and assume the skills will appear are building in a failure point.
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Where Technology Meets Narrative

Under the Hood: Automotive Storytelling uncovers the human narratives driving innovation in an industry that impacts lives worldwide. Hosted by Stéphane Lagresle, this podcast explores how the power of storytelling ultimately connects technology to humans.