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[The Future of Urban Mobility: Airbus’s Vision for Autonomous Air Taxis]-[Ep. 23: How Airbus A³ Plans to Bring Autonomous Air Taxis to Urban Skies]

NVIDIA AI Podcast · B2 · 2017-05-22

Technology
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📋 Summary

Introduction: The Shift to the Third Dimension

As urbanization accelerates, with 31 megacities globally hosting over 10 million residents, the traditional ground-based commute has reached a breaking point. Dr. Arne Stoschek, Head of Autonomous Systems at A-Cubed (Airbus), argues that the current infrastructure is "at capacity or beyond capacity." To solve the "painful" reality of daily traffic congestion, Airbus is pioneering the development of autonomous "air taxis"—a utility designed to utilize the "third dimension" to move people from A to B efficiently.

Vehicle Design and Technical Innovation

The proposed air taxi is an electric VTOL (Vertical Takeoff and Landing) vehicle designed to function in dense urban environments. Unlike traditional helicopters, these vehicles employ a "tilting mechanism," where eight electric motors and propellers mounted on tilting wings allow for both vertical takeoff and the efficiency of fixed-wing cruise flight. With a footprint roughly the size of "two parking spots," the vehicle is optimized for urban landing surfaces, such as rooftops or designated "vertiports."

Electrification is a foundational pillar of this project. Dr. Stoschek highlights that moving from a traditional combustion engine to an electric propulsion system offers a "cost savings of almost 70%" due to reduced maintenance and energy expenses. Furthermore, electric propulsion provides "inherent redundancy," as having eight motors creates a significantly safer architecture than the single-engine systems found in conventional aircraft.

The Challenges of Autonomous Flight

Developing pilotless flight systems presents unique challenges compared to autonomous cars. While ground-level operations share similarities with self-driving cars—navigating obstacles like "humans, pets, bicyclists, and cars"—high-speed cruise flight is a "3D problem" with very little room for traditional braking. In the air, "closing speeds of about 100 meters per second" mean that the system must identify obstacles at distances up to 500 meters to ensure safety.

Machine learning training remains a critical hurdle. Unlike autonomous cars, which can learn from human drivers, air taxis require a "clean sheet approach." Airbus utilizes a mix of physical and virtual verification to handle outlier scenarios, such as detecting and classifying airborne objects like a "Canadian goose" or other drones, and calculating appropriate "escape maneuvers" based on the specific kinematics and risk profiles of those objects.

Regulatory Framework and Future Outlook

A primary advantage of the air taxi project is that it avoids the "legacy problem" inherent in autonomous cars, which must navigate roads alongside 260 million human-driven vehicles. By starting with a "white sheet of paper," Airbus can work with regulators like the FAA to define new rules for safety, throughput, and noise control.

Looking toward the future, the team aims to fly a full-size prototype by the end of the year, with a "productizable demonstrator" targeted for 2020. While the technology is advancing rapidly, Dr. Stoschek anticipates that broad market traction for urban air mobility will likely occur within a 10-year timeframe. By creating a system of "air roads" and leveraging scalable manufacturing, Airbus hopes to transform the daily commute from a painful slog into an efficient, 15-minute journey across the city.

🎯Key Sentences

1
I like to think of it as air taxi.
2
It's also very painful.
3
Believe me, I commute across the Bay Bridge almost every day and it's painful.
4
We believe it's now time to take it up there.
5
What are the problems, and you know, they have their own problems
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📝Key Phrases

1
a fair bit
2
get from A to B
3
at capacity
4
break down
5
value proposition
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📖 Transcript

Thank you. Welcome to NVIDIA's AI podcast, and we're recording from the floor of the 2017 GPU Technology Conference A gathering of the AI faithful here in Silicon Valley.
We have talked on this podcast a fair bit about self-driving cars.
I am very excited to talk about self-flying vehicles.
To do that with us, we have Dr. Arne Stoschek, who is head of autonomous systems at A-Cubed Airbus.
You know of Airbus as that little company that makes those massive planes.
Arnie, welcome. Pleasure to be here. Thank you.

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