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Formula 1 Dutch GP

FIA explains laser scanning system for F1 car scrutineering

How does the FIA's laser scanning system for F1 car scrutineering work?

FIA Scrutineering area

FIA Scrutineering area

Photo by: Giorgio Piola

Following the move to ground effect cars in the major aerodynamic rules reset the championship implemented for 2022, the FIA introduced a new scrutineering process to aid with checking the designs the teams run each weekend with the information they have supplied ahead of each race event.

Alex Albon was disqualified from qualifying for the 2024 Dutch Grand Prix after his floor, which Williams' own measurements deemed legal, failed to pass the FIA's own checks.

Since 2022, the teams have shared their CAD data on developments with the FIA, with the laser scans used to check the physical car correlates with that data information.

The laser tool, which was evaluated during 2022 pre-season testing, is required because the previous metal cut-outs the FIA used to check aero parts were complying with the prescribed limits where development was and was not permitted under the previous formula are not suitable to use for the new machines.

As has been the case in F1 since 2020, the teams provide the FIA with pre-event data on their cars stating they are in compliance with the rules and the cars are then checked throughout the weekend to ensure their physical reality matches.

The FIA now uses the laser tool to complete additional random scans throughout race weekends as an added method to ensure the teams are following the rules.

FIA Scrutineering area

FIA Scrutineering area

Photo by: Giorgio Piola

Physical tests to ensure wing and floor flexing on the cars are legal are still done on the rigs in the FIA garage at each race, as are checks such as the DRS-opening space measurement.

“The aerodynamic regulations have become quite a lot more complex, as it [is] not a matter of deciding whether you are in a box, there are a lot more regulations determining the geometry permissible,” FIA head of single-seater matters, Nikolas Tombazis, said of the laser scanning system ahead of its implementation.

“Because of that we needed to up the game on checks, so we have gone for a fully electronic state-of-the-art scanning system.

“We check the cars on [a] computer to make sure they satisfy all the geometric constraints, and we have done that with all teams, and then we check the physical car against the computer model by scanning the car and that's the process we are using now.

“The system consists of a track that detects the position of a device held by one of our scrutineers. We either scan the surface by holding a sensor over the surface or we check specific points on the car which are then checked against CAD, on the co-ordinates, and based on those measurements we can draw the final conclusions.

“We have two checks: a quick check where we look at basic parameters - width, height, making sure that the car isn't running too low etc - and then we have a more detailed check whereby we scan the whole surface of the car, which takes a bit longer.”

FIA Scrutineering area

FIA Scrutineering area

Photo by: Giorgio Piola

Tombazis also said that the FIA hoped to “eventually do the quick scans on all the cars across a race weekend” but added “we are still learning about the process, especially in a race weekend environment”.

He continued: “The more detailed scans will take place on a more random basis, probably a couple of cars per race and that means the team or teams selected won't know they will be scanned, thus promoting compliance.

“Clearly if a car does get protested or if we have serious concerns about the legality of a car or a competitor has concerns, then we may individually pick a car to be scanned in order to obtain the information required to deliver a ruling.

“So far, the system has been working quite well. There is still quite a lot to learn, but it's a step in the right direction to further improve our capability at the track.”

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