Skip to main content

Ethernet to tap new synergies for connected cars

Ethernet could be catalyst for bringing the automotive industry a step closer to connected vehicles. The latest report from Frost and Sullivan indicates that the need to integrate multiple consumer electronic devices into the car offering connected services and maintaining brand identity has led to a situation where original equipment manufacturers (OEMs) are shifting toward higher connectivity options which could power prioritised and personalised services, catering to varied consumer needs. With the parad
July 25, 2013 Read time: 3 mins
Ethernet could be catalyst for bringing the automotive industry a step closer to connected vehicles

The latest report from Frost & Sullivan indicates that the need to integrate multiple consumer electronic devices into the car offering connected services and maintaining brand identity has led to a situation where original equipment manufacturers (OEMs) are shifting toward higher connectivity options which could power prioritised and personalised services, catering to varied consumer needs. With the paradigm shift toward connected cars and associated services such as automotive-app stores and connected location based services, there is an ever-increasing need for higher data transfer bandwidths. Ethernet could serve as the backbone to the electronic architecture connecting domains and sub networks that require higher bandwidth and also cater to consumers’ need for connectivity.

Frost and Sullivan estimates that the total number of Ethernet ports globally will reach 300 million by 2020. The number of nodes or ports is expected to range from more than 100 in luxury cars, 50–60 in mass market segment cars, and less than ten nodes in entry level cars by 2020.

“Ethernet could be the catalyst for bringing the automotive industry a step closer to connected vehicles,” says Frost and Sullivan senior research analyst, Divya Krishnamurthy. “With its capability to simplify the networking architecture, higher uptake rates are expected in the near future.”

The bandwidth requirement for in-vehicle electronic applications, such as camera-assisted parking with advanced driver assistance systems (ADAS), lane departure warning systems, collision avoidance systems, and traffic light recognition is higher, in the range over 100Mbps. The number of nodes to be connected therefore is also higher. Most importantly, proven IP-based Ethernet technology enables OEMs to use a single-network platform by significantly reducing the connectivity cost and cabling weight. It is scalable and flexible enough to be used in multiple vehicle segments.

“OEMs are now working to bring in Ethernet into their future models that will fulfil all kinds of telematics and infotainment demands of end users,” says Ms Krishnamurty. “OEMs can benefit from the use of Ethernet to reduce connectivity cost and weight due to lighter cabling leading to better fuel economy.”

“It is also indicative that OEMs such as 1731 BMW, 1684 Hyundai, 3883 Jaguar Land Rover, 948 General Motors, American 1683 Honda and 1900 PSA Peugeot Citroën are also part of the open alliance (one-pair Ethernet), a special interest group (SIG) to use Ethernet as a standard solution for infotainment and telematics,” concludes Ms Krishnamurthy.

For more information on companies in this article

Related Content

  • AT&T Drive Studio partners to deliver the future of the connected car
    February 27, 2014
    Three additional companies have partnered with the AT&T Drive Studio, said to be a first-of-its-kind connected car centre for innovation and research in Atlanta. "This is an exciting ecosystem and we are committed to leading the way to take the connected car to the next level for auto manufacturers and their drivers," said Glenn Lurie, president, AT&T Emerging Enterprises and Partnerships, AT&T Mobility. "That's the essence of the AT&T Drive Studio, to bring together the best players in the auto industry
  • Co-operative infrastructure reduces congestion, increases safety
    January 30, 2012
    ITS Japan's Chairman Hiroyuki Watanabe talks to ITS International about his country's progress with cooperative infrastructures and how the experience gained to date can benefit similar initiatives elsewhere. Japan gave the rest of the world a taste of the cooperative infrastructure future when, in 1996, it went live with the Vehicle Information and Communication System (VICS). Designed to provide real-time traffic information and alerts to in-vehicle navigation systems with the dual aims of increasing safe
  • Centralised remote control in ports opens endless digitisation possibilities
    August 5, 2021
    Port Intelligent Twins speed up upgrades in the port & shipping industry
  • Managed lanes – the riddle wrapped up in an enigma
    December 15, 2014
    Managed lanes have something of a patchy track record and can pose authorities problems as well as solutions. Many authorities in the US and beyond have converted, or are converting, parts of the highway network into ‘Managed Lanes’ and charging motorists a fee to avoid the delays on the adjoining free use lanes. Some authorities have converted underused High Occupancy Vehicle (HOV) lanes into priced-managed high occupancy/toll lanes (HOT lanes) whereby the price charged can vary depending on a number of fa