UK transport technology specialist Aurrigo is creating a digital twin of airside operations at Gerald R Ford International Airport in the US.
Aurrigo, a first- and last-mile autonomous passenger transport and aviation baggage and cargo solutions specialist, will use its Auto-Sim software platform to create the system.
Emerging air travel solutions
The Ford Launchpad for Innovative Technologies and Entrepreneurship (Flite) provides testing opportunities to companies focused on bringing emerging air travel solutions to market.
Through the initiative, Aurrigo will identify cost-savings, enhance customer experience, achieve environmental improvements and lay the foundations for how the airport could implement autonomous operations in the future.
Utilising a PlanetM Testing Grant from the Michigan Economic Development Corporation, Aurrigo will build a model of airside operations, covering roadways, intersections, stands and all operational vehicle types and movements.
A team of expert simulation engineers and project management specialists, based in its advanced engineering centre in the UK, will work with Ford International Airport planning staff to integrate vehicle fleet capacity and flight schedules so they can simulate airside servicing to benchmark current operations and predict future scenarios.
“Auto-Sim will enable Ford International Airport to be the first in the US to complete a real-world feasibility study of a current airport using digital twin technology”
As well as modelling operations, the Auto-Sim software platform can also simulate the effects of staff shortages due to Covid-19, flights delays, the de-icing schedule for departing aircraft and severe weather events including heavy snow and ice.
“The world’s airports are all facing the same challenge of providing greater levels of customer service with the most cost-effective use of resources and minimal environmental impact,” said David Keene, CEO of Aurrigo. “It’s a careful balancing act and one brought into even sharper focus with the impact of the Covid-19 pandemic.
“Auto-Sim will enable Ford International Airport to be the first in the US to complete a real-world feasibility study of a current airport using digital twin technology.”
He continued: “This allows airport planners to model the operational processes, financial implications, customer journey experience and environmental impact of implementing new technology without the risk of expensive mistakes.
“We hope it will encourage other airports within the US and around the world to utilise the Auto-Sim platform to streamline operations and reduce their environmental impact, whilst also providing the optimal customer experience and preparing them for future operations that involve airside automated vehicles.”
Aurrigo will work with Ford International Airport and consortium partners Southwest Airlines, Stantec, Seamless and the Michigan Office of Future Mobility & Electrification to complete this project by the end of May 2022.
Auto-Sim has the capability to replicate the airport’s busiest periods, which at any given day, could include 112 aircraft movements, requiring upwards of 1,000 individual activities to be serviced.
Before the pandemic, Michigan’s second busiest airport catered for nearly 3.6 million annual passengers and, in 2019, handled 41.4 million kg of air freight – all considerations that will be factored into the modelling work.
The technology can also generate detailed energy consumption data for every vehicle modelled in the airside operations, including optimising current operations and exploring ways to minimise distance travelled to service the flight schedule.
”Flite enables us to partner with entrepreneurs and established companies focused on developing innovative new products and services to improve airport operations and air travel experience for guests,” said Tory Richardson, president and CEO of the Gerald R Ford International Airport Authority.
“We are proud to welcome Aurrigo to our airport to offer them the opportunity to test their Auto-Sim software platform alongside our airside operations.”
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