Skip to main content

Camera-based DMS to be chief enablers of safe, semi-autonomous driving, says research

ABI Research has identified camera-based driver monitoring systems (DMS) as the chief enablers of safe, semi-autonomous driving. The market is forecast to reach 17.5 million camera-based DMS shipments in 2026. Biometric availability encompasses the driver's alertness, his or her engagement with the driving process and even the driver's ability to manually interact with the system as required. The key to enabling such a holistic driver monitoring system (DMS) is the use of internal cameras, either stereos
October 21, 2016 Read time: 2 mins
5725 ABI Research has identified camera-based driver monitoring systems (DMS) as the chief enablers of safe, semi-autonomous driving. The market is forecast to reach 17.5 million camera-based DMS shipments in 2026.

Biometric availability encompasses the driver's alertness, his or her engagement with the driving process and even the driver's ability to manually interact with the system as required. The key to enabling such a holistic driver monitoring system (DMS) is the use of internal cameras, either stereoscopic or time-of-flight, to identify and track facial features, gaze direction, and upper body position. ABI Research identifies a number of vision analytics companies active in this space, including EDGE3 Technologies, FotoNation, Jungo Connectivity and gestigon.

According to James Hodgson, industry analyst at ABI Research, a number of semi-autonomous system launches from OEMs like Mercedes-Benz, Nissan, and Tesla have highlighted the importance of a robust human machine interface, or HMI, in scenarios that require an automated system to work in tandem with a human driver. Leveraging camera-based DMS to provide the host autonomous system with a comprehensive understanding of the driver's biometric availability is the foundation of safe, semi-autonomous HMI.

"In many ways, this represents a new cost burden to OEMs looking to deploy semi-autonomous systems," concludes Hodgson. "As gesture control and driver identification emerge as popular features to justify the additional cost of an autonomous system to the end users, OEMs are exploring how these new features can be offered via the enabling hardware for next generation DMS, in order to capitalise on this movement."

Related Content

  • January 6, 2017
    Vehicles to become the new living space, say researchers
    Improvements in advanced driver assistance system (ADAS) sensors are driving automation features in original equipment manufacturer (OEM) vehicles. By collaborating with leading technology providers in the autonomous driving space, OEMs have an opportunity to transform into mobility service providers and introduce levels 4 and 5 autonomous cars earlier than expected, say Frost & Sullivan researchers. With several suppliers already at work on over-the-air upgrades, the adoption of this feature is expected be
  • February 14, 2014
    More than 20 million connected cars with built-in software-based security by 2020
    The findings of ABI Research’s Automotive Safety & Autonomous Driving and Cybersecurity Research Services indicate that while traditional safety telematics services such as eCall, bCall, stolen vehicle tracking, and diagnostics aimed at the physical protection of vehicles, drivers and passengers are becoming main stream, awareness is growing about the threat of cyber-attacks and their impact on the physical integrity of persons, especially with vehicle-to-vehicle communication and autonomous vehicles. This
  • December 19, 2022
    Traffic cameras embrace AI
    Artificial intelligence is spreading into many aspects of mobility – but what about traffic management and enforcement cameras? ITS International invited a few vision experts to ponder a couple of leading questions…
  • September 22, 2015
    Americans steer away from autonomous parking
    According to a new survey from AAA, nearly 80 per cent of American drivers are confident in their parallel parking abilities and only one-in-four would trust this technology to park their vehicle. Despite this, AAA testing found self-parking technology outperformed unassisted drivers in four key areas. In partnership with the Automobile Club of Southern California's Automotive Research Center, AAA tested self-parking features on five vehicles: a 2015 Lincoln MKC, a 2015 Mercedes-Benz ML400 4Matic, a 2015