Skip to main content

VTT develops new technology for autonomous ship navigation systems

Finland’s VTT Technical Research Centre is developing safe steering for the remote-monitored and controlled autonomous ships of the future.
June 19, 2017 Read time: 2 mins

Finland’s 814 VTT Technical Research Centre is developing safe steering for the remote-monitored and controlled autonomous ships of the future.

VTT says the ships of the future will largely be controlled by artificial intelligence, but must be monitored and controlled on demand by land-based professionals. This trend sets new challenges also for autonomous ship navigation systems, which must be able to control ships in various situations.

The Apilot autopilot under development by VTT has three modes: track, heading and slow joystick control for docking situations.

In track mode, Apilot steers the ship along a previously agreed route. If the ship detects another vessel, which must be avoided, the autopilot switches to heading mode, which enables Apilot to avoid the other vessel with a small change in the ship’s heading. Autopilot returns to track mode after the other vessel has been avoided.

In joystick mode, control and propulsion equipment are adjusted to low speeds manoeuvrings. Apilot puts the ship into the desired operating mode, for example to manoeuvre sideways into a dock.

In all situations, the autopilot ensures that the ship remains within a set distance from the planned route. If the limits are exceeded, the autopilot gives a warning and remote control must be taken of the ship.

VTT has studied interaction between humans and technology in maritime transport and has developed new concepts for the bridges and remote shore control centres of the autonomous ships of the future. The aim is to make operations more safe, efficient and comfortable by seeking new solutions that enhance operating methods, as well as the usability and user experience of technologies.

For more information on companies in this article

Related Content

  • Research into weather impact on transport
    May 17, 2012
    Finland's VTT Technical Research Centre is heading a research project into the harmful impact of weather phenomena on transport in the EU. The EWENT project will set a precedent as no previous studies have been conducted on this scale. It will investigate evidence that heavy rainfall in particular impacts on European transport as with climate change, the occurrence of extreme weather is expected to increase. Weather is a major factor in traffic flow and safety as sudden storms and flash floods can paralyse
  • VTT utilises 5G network to improve road safety
    December 12, 2018
    VTT’s Technical Research Centre in Finland has carried out an experiment using the 5G mobile network to help improve road safety, control self-driving cars and assist road maintenance providers. The company says 5G networks and fast data transmission solutions can collect sensor, video and radar data from vehicles. Public funding agency Business Finland subsidised the VTT's 5G-Safe project. It is part of the Challenge Finland competition, an initiative which explores the use of augmented reality an
  • ITS World Congress examines challenges of autonomous vehicles?
    December 11, 2015
    The 2015 ITS World Congress opening ceremony saw PSA Peugeot Citroën executives arrive in an autonomous vehicle, so the International Benefits, Evaluation and Costs (IBEC) Working Group’s dedicated session proved very timely.
  • TM 2.0 boost TMC data feed and driver influence
    November 15, 2017
    TM 2.0 views connected vehicles and V2I as two-way communications channels, benefitting traffic management and drivers, as Alan Dron discovers. As connected vehicles are progressively rolled out there will come a point at which traffic managers and traffic management centres (TMCs) will have to gear up to cope with a rapidly-evolving road scenario. The TM 2.0 Platform (see box) is promoting a concept of new-generation traffic management (which carries the same TM 2.0 title) and is studying how future T