Skip to main content

Highly automated driving ‘to spark adoption of centralised ADAS’

As vehicles become highly independent and begin to drive and react to traffic on their own, autonomous systems will aggregate and process data from a variety of on-board sensors and connected infrastructure, says ABI Research. This forces the industry to hit a hard reset on advanced driver assistance systems (ADAS) architectures, currently dominated by distributed processing and smart sensors. Automotive OEMs will need to adopt new platforms based on powerful, centralised processors and high-speed low la
August 18, 2016 Read time: 2 mins
As vehicles become highly independent and begin to drive and react to traffic on their own, autonomous systems will aggregate and process data from a variety of on-board sensors and connected infrastructure, says 5725 ABI Research.

This forces the industry to hit a hard reset on advanced driver assistance systems (ADAS) architectures, currently dominated by distributed processing and smart sensors. Automotive OEMs will need to adopt new platforms based on powerful, centralised processors and high-speed low latency networking. ABI Research forecasts 13 million vehicles with centralised ADAS platforms will ship in 2025.

James Hodgson, industry analyst at ABI Research, believes the distributed approach to ADAS systems will prove unsustainable as OEMs look to deliver highly automated driving around 2020. The new centralised ADAS architectures will unify sensing, processing, and actuation to deliver integrated decision-making for smooth path planning and effective collision avoidance.

This transition will present major opportunities for vendors new to the industry, as well as old incumbents, including NVIDIA, NXP, and Mobileye, who all announced centralised autonomous driving platforms. While each is in a different stage of development, all have common themes emerging, particularly in relation to processing power. The platforms average between eight and twelve teraflops (TFLOPs), a figure that is orders of magnitude beyond the typical smart sensor currently deployed in ADAS.

Physical separation of numerous dumb sensors and centralised processing will also open up opportunities for in-vehicle networking vendors. Ethernet-based solutions from vendors such as Marvell Semiconductor and Valens Semiconductor are well-positioned to meet the needs of high bandwidth and stringent automotive-grade requirements at a low cost.

"We are fast approaching the end of what can be achieved in automation within the confines of legacy architectures," concludes Hodgson. "While there are not yet any specific standards for centralised ADAS, it is interesting that three separate Tier 2s announced very similar platforms in quick succession. Vendors across the ecosystem need to take this time to plan accordingly in order to appropriately manage the industry transition toward centralised ADAS architectures."

For more information on companies in this article

Related Content

  • Frequency changes threaten vehicle safety applications
    January 24, 2012
    The use of frequency spectrum at 5.9GHz for vehicle safety applications is at risk because of two draft bills currently before Congress. Here, we look at why and what’s being done to address the issue. In the US, the right of cooperative infrastructure to use frequency at 5.9GHz is under threat as a result of the proposal of two bills in Congress. The chronology of spectrum allocation for Dedicated Short- Range Communications (DSRC)-based Vehicle-to-Infrastructure (V2I) and Vehicle-to-Vehicle (V2V) safety a
  • B&C Transit modernises Miami-Dade Metrorail’s control systems
    June 1, 2016
    Jason Gomez and Daniel Mondesir describe how passenger disruption was minimised during a major upgrading of the control room of Miami-Dade’s Metrorail. In 1984 when the Miami-Dade Department of Transportation and Public Works’ (DTPW) Metrorail system was launched in southern Florida, trains ran 18km along a single line and stopped at 10 stations.
  • Ansys and Velodyne team up on AV safety
    May 4, 2021
    Lidar sensors will improved hazard identification for highly advanced autonomous vehicles
  • Qualcomm expands investment in automotive technology
    January 7, 2016
    Qualcomm subsidiary, Qualcomm Technologies, has expanded its automotive technology portfolio to provide a collection of industry-leading technologies enabling timely innovation across all tiers of the automotive industry through highly integrated solutions in the areas of telematics and connectivity, as well as high definition graphics and multimedia for rich infotainment systems, machine intelligence and sensor fusion for advanced driver assistance systems (ADAS), GNSS location technologies, V2X (vehicle t