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Beyond safety drivers: Applying air traffic control principles to support the deployment of driverless vehicles

Author

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  • Robert C Hampshire
  • Shan Bao
  • Walter S Lasecki
  • Andrew Daw
  • Jamol Pender

Abstract

By adopting and extending lessons from the air traffic control system, we argue that a nationwide remote monitoring system for driverless vehicles could increase safety dramatically, speed these vehicles’ deployment, and provide employment. It is becoming clear that fully driverless vehicles will not be able to handle “edge” cases in the near future, suggesting that new methods are needed to monitor remotely driverless vehicles’ safe deployment. While the remote operations concept is not new, a super-human driver is needed to handle sudden, critical events. We envision that the remote operators do not directly drive the vehicles, but provide input on high level tasks such as path-planning, object detection and classification. This can be achieved via input from multiple individuals, coordinated around a task at a moment’s notice. Assuming a 10% penetration rate of driverless vehicles, we show that one remote driver can replace 14,840 human drivers. A comprehensive nationwide interoperability standard and procedure should be established for the remote monitoring and operation of driverless vehicles. The resulting system has potential to be an order of magnitude safer than today’s ground transportation system. We articulate a research and policy roadmap to launch this nationwide system. Additionally, this hybrid human–AI system introduces a new job category, likely a source of employment nationwide.

Suggested Citation

  • Robert C Hampshire & Shan Bao & Walter S Lasecki & Andrew Daw & Jamol Pender, 2020. "Beyond safety drivers: Applying air traffic control principles to support the deployment of driverless vehicles," PLOS ONE, Public Library of Science, vol. 15(5), pages 1-15, May.
  • Handle: RePEc:plo:pone00:0232837
    DOI: 10.1371/journal.pone.0232837
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    Cited by:

    1. Eugene Furman & Adam Diamant & Murat Kristal, 2021. "Customer Acquisition and Retention: A Fluid Approach for Staffing," Production and Operations Management, Production and Operations Management Society, vol. 30(11), pages 4236-4257, November.
    2. Bryce McLaughlin & Jann Spiess, 2022. "Algorithmic Assistance with Recommendation-Dependent Preferences," Papers 2208.07626, arXiv.org, revised Jan 2024.

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