Skip to main content

Automotive software developers call on hackers to find its flaws

A consortium of US researchers has announced the development of a universal, free, and open-source framework to protect wireless software updates in vehicles. The team issued a challenge to security experts everywhere to try to find vulnerabilities before it is adopted by the automotive industry. The new solution, called Uptane, evolves the widely used TUF (The Update Framework), developed by NYU Tandon School of Engineering Assistant Professor of Computer Science and Engineering Justin Cappos to secure
January 20, 2017 Read time: 3 mins
A consortium of US researchers has announced the development of a universal, free, and open-source framework to protect wireless software updates in vehicles. The team issued a challenge to security experts everywhere to try to find vulnerabilities before it is adopted by the automotive industry.

The new solution, called Uptane, evolves the widely used TUF (The Update Framework), developed by NYU Tandon School of Engineering Assistant Professor of Computer Science and Engineering Justin Cappos to secure software updates. Uptane is a collaboration of NYU Tandon, the University of Michigan Transport Research Institute (UMTRI), and the Southwest Research Institute (SwRI), and is supported by contracts from the US Department of Homeland Security, Science and Technology Directorate.

Modern cars contain dozens of computers, or electronic control units (ECUs), that control everything from safety equipment (airbags, brakes, engine, and transmission, and more) to entertainment systems. The increasing complexity of modern cars accompanies an increasing likelihood of flaws in the software. To combat this, vehicle makers are equipping ECUs with a secure software over-the-air (SOTA) update capability, allowing the software to be changed without visiting a service depot, resulting in fewer recalls and greater customer satisfaction. However, hackers can target these software update mechanisms to install malicious software, viruses, or even ransomware, the results of which could be catastrophic.

"Although widespread attacks are still difficult and expensive, they lie within the capabilities of nation-state cyber warriors, and it is time to begin securing the infrastructure, particularly as automotive electronics increase," Cappos said.

Uptane goes beyond TUF in order to address the unique problems posed by automotive software. For example, it allows automakers to completely control critical software but to share control when appropriate – for example, when law enforcement needs to tune a vehicle for off-road conditions. It also helps automakers to quickly deploy secure fixes for a vulnerability exploited in an attack or to remotely and inexpensively update a car's electronics.

The group has been holding regular design workgroups to develop a universal framework that could enhance the security mechanisms, protecting cars as soon as next year. As is standard practice in open-source projects, the team called upon security experts everywhere to help them find flaws in the proposed framework so that a secure final version can be adopted.

Related Content

  • Partially automated cars ‘provide financial and safety benefits’
    July 19, 2016
    Carnegie Mellon College of Engineering researchers in the US have concluded that the public could derive economic and social benefits today if safety-oriented, partially automated vehicle technologies were deployed in all cars. The researchers examined forward collision warning, lane departure warning and blind spot monitoring systems. These technologies can include partially autonomous braking or controls to help vehicles avoid crashes. Chris T. Hendrickson, director of the Carnegie Mellon Traffic21 In
  • Five names added to the ITS America’s Hall of Fame
    June 3, 2015
    At the 25th Annual Meeting & Expo, five new names have been added to ITS America’s Hall of Fame: Lawrence Burns, Abbas Mohaddes, Jeffery Paniati, William Powers and Joseph Sussman. Burns is a professor of Engineering Practice at the University of Michigan and for 10 years was vice president of research, development and planning for General Motors. He holds a PH.D in civil engineering, an M.S. in engineering/ public policy and a B.S. in mechanical engineering.
  • EU research develops method for evaluating critical infrastructure
    January 10, 2013
    The European Commission’s SeRoN research project has drawn to a close, having developed a sophisticated method of identifying and quantifying threats to critical infrastructure. In December 2008 the European Commission published the directive 2008/114/EC on the identification, designation and assessment of the need to improve ‘European critical infrastructure’. In line with the objectives formulated in this directive, the SeRoN (Security of Road Transport Networks) research project was established in Novemb
  • Terrestrial solution to stellar shortcomings
    December 5, 2013
    Inherent weaknesses in satellite communications are leading several countries to re-evaluate terrestrial-based backup systems. There is a tale frequently told in satellite navigation circles, of how landing systems at Newark Airport were disrupted by a truck driver using GPS jamming equipment as he drove along the New Jersey Turnpike. While there was no threat to flight safety as the interference to GPS reference stations being tested, the story highlights how apparently benign threats have the potential t