Skip to main content

In-car electronics and user demand for connectivity make case for automotive Ethernet

According to Frost and Sullivan, the use of Ethernet technology in automotive is gaining pace in Europe and North America. The paradigm shift towards connected cars and associated services such as automotive app stores and connected location-based services is fuelling the uptake. Along with the need to integrate multiple consumer electronic devices, the importance of offering prioritised, personalised services and maintaining brand identity are compelling automotive OEMs (original equipment manufacturers) t
January 22, 2014 Read time: 3 mins
According to Frost and Sullivan, the use of Ethernet technology in automotive is gaining pace in Europe and North America. The paradigm shift towards connected cars and associated services such as automotive app stores and connected location-based services is fuelling the uptake. Along with the need to integrate multiple consumer electronic devices, the importance of offering prioritised, personalised services and maintaining brand identity are compelling automotive OEMs (original equipment manufacturers) to adopt Ethernet technology.

New analysis from the company, Strategic Outlook of Automotive Ethernet Technology in Europe and North America, expects the number of Ethernet nodes to rise to more than 100 in luxury cars, 50-60 in cars sold in the mass market, and up to 10 in entry-level cars by 2020. The global market for Ethernet ports is expected to reach 300 million by 2020, with North America and Europe contributing the most to the total revenue.

User interest in audio and video applications for advanced driver assistance systems like camera assisted parking, lane departure warning systems, collision avoidance systems, and traffic light recognition is spurring the adoption of high-speed Ethernet in the range of 100 megabits per second. As a result, automotive OEMs and tier I suppliers in Europe and North America continue to work on Ethernet-based electrical and electronic (E/E) system architecture for vehicle applications though it is a time-consuming, research-intensive, and expensive process.

“Ethernet could serve as a backbone to the electronic architecture connecting domains and sub-networks for in-vehicle applications, especially as other car networks like local interconnected network, controller area network, and FlexRay lack the specifications to meet the demand for high bandwidth and scalability,” said 2097 Frost & Sullivan automotive and transportation research analyst Divya Krishnamurthy. “This is highlighting the need for a common network that can support several in-vehicle requirements.”

Standardising Ethernet platforms will offer benefits in terms of cost, performance, interoperability, upgradability, and faster time-to-market. In fact, the OPEN Alliance Special Interest Group, a non-profit alliance of automotive industry players and technology providers, aims to make BroadR-reach Ethernet technology a standard solution for infotainment and telematics.

“Ethernet in the automotive industry will not only redefine future E/E architecture, but will also lead to the introduction of new business models, such as bundled subscription services, incremental services, targeted sales, upfront revenue, and pay-per-use for OEMs, tier I suppliers and telecom industries,” noted Krishnamurthy. “It will also open doors for innovative products like autonomous driving and application domains inside the vehicle.”

For more information on companies in this article

Related Content

  • Free whitepaper on growth and opportunities for connected cars to 2025
    March 23, 2012
    A new whitepaper, written by SBD for the GSMA, forecasts the growth and opportunities for connected cars until 2025, analysing not only how fast in-car connectivity will grow over the period, but what type of connectivity will eventually become predominant. There are many reasons why connectivity in the car is likely to become ubiquitous over the next decade. However, for telecom operators, the universal future of in-car connectivity is not on its own sufficient reason to celebrate. In-car connectivity can
  • MaaS will be adopted quicker in Europe than in the US: here’s why
    December 5, 2018
    A new report suggests that MaaS will be implemented more quickly in Europe than in the US – but why should this be? Ben Spencer examines the arguments
  • A carbon free and accident free Europe by 2015?
    February 2, 2012
    By 2050, the Europe Commission aims to make transport in Europe carbon- and accident-free. Between now and then, however, a significant technological development and deployment effort is needed. Here, Neelie Kroes, European Commission Vice-President for the Digital Agenda, talks about what's being done. In many respects, COOPERS, CVIS and SAFESPOT, set up by the European Commission (EC) to explore the potential of cooperative infrastructure systems, are already legacy projects. Between them, the three devel
  • Wi-SUN: here’s why mesh networking works
    May 10, 2019
    There are several networking options available for smart city planners. Phil Beecher of Wi-SUN Alliance makes the case for wireless mesh networks when it comes to rolling out IoT solutions The Internet of Things (IoT) is growing fast. Connecting thousands of sensors and control systems in bi-directional networks is paving the way for a new generation of smart city and transport infrastructures. For many of these applications, wireless connectivity is essential where cable installation is not practical.