Skip to main content

Rolls-Royce and VTT partner to develop smart ships

Rolls-Royce and VTT Technical Research Centre of Finland have announced a strategic partnership to design, test and validate the first generation of remote and autonomous ships. The new partnership will combine and integrate the two company’s unique expertise to make such vessels a commercial reality. Rolls-Royce is pioneering the development of remote controlled and autonomous ships and believes a remote controlled ship will be in commercial use by the end of the decade. The company is applying technol
November 15, 2016 Read time: 2 mins
4348 Rolls-Royce and 814 VTT Technical Research Centre of Finland have announced a strategic partnership to design, test and validate the first generation of remote and autonomous ships. The new partnership will combine and integrate the two company’s unique expertise to make such vessels a commercial reality.

Rolls-Royce is pioneering the development of remote controlled and autonomous ships and believes a remote controlled ship will be in commercial use by the end of the decade. The company is applying technology, skills and experience from across its businesses to this development.

VTT has deep knowledge of ship simulation and extensive expertise in the development and management of safety-critical and complex systems in demanding environments such as nuclear safety. They combine physical tests such as model and tank testing, with digital technologies, such as data analytics and computer visualisation. They will also use field research to incorporate human factors into safe ship design. As a result of working with the Finnish telecommunications sector, VTT has extensive experience of working with 5G mobile phone technology and wi-fi mesh networks. VTT has the first 5G test network in Finland.  

Working with VTT will allow Rolls-Royce to assess the performance of remote and autonomous designs through the use of both traditional model tank tests and digital simulation, allowing the company to develop functional, safe and reliable prototypes.

Related Content

  • February 2, 2012
    Automating seat belt compliance a priority for road safety
    Finland's VTT is developing a mobile, automated seatbelt compliance system. Here, the organisation's Matti Kutila discusses progress
  • June 4, 2015
    After two decades of research, ITS is getting into its stride
    Colin Sowman gets the global view on how ITS has shaped the way we travel today and what will shape the way we travel tomorrow. Over the past two decades the scope and spread of intelligent transport systems has grown and diversified to encompass all modes of travel while at the same time integrating and consolidating. Two decades ago the idea of detecting cyclists or pedestrians may have been considered impossible and why would you want to do that anyway? Today cyclists can account for a significant propor
  • June 17, 2019
    Ansys and BMW develop AV simulation tool
    Engineering company Ansys has joined forces with BMW to develop a simulation tool chain for developing autonomous vehicle (AV) technologies. Eric Bantegnie, vice president and general manager at Ansys, says the solution is designed to address “safety validation requirements for autonomous driving”. Ansys says simulation greatly reduces the need for physical testing which would require billions of miles of road tests across a range of driving conditions. The agreement is expected to help develop
  • September 20, 2012
    Developing integrated transport networks
    A major initiative in managing numerous transport networks as a single system has moved into a significant phase with design of sophisticated new ITS systems. Jon Masters reports. Detailed design work is under way on two pilot projects pursuing a common principle – that transportation can be made more efficient or effective if the various networks and modes of travel are managed as a whole system. This is the central tenet of the US Department of Transportation’s (USDOT) Integrated Corridor Management (ICM)