Skip to main content

European CO-GISTICS project launches reference architecture

Approaching the end of its first year of activities, the European CO-GISTICS (Co-Logistics) project has revealed the reference architecture that will be used for all pilot sites and services. The architecture details the standards and policies to be used to ensure interoperability and the ability to replicate the services at a wider European level. CO-GISTICS is the first European project fully dedicated to the deployment of cooperative intelligent transport systems (C-ITS) applied to logistics. CO-GI
October 22, 2014 Read time: 2 mins
Approaching the end of its first year of activities, the European CO-GISTICS (Co-Logistics) project has revealed the reference architecture that will be used for all pilot sites and services. The architecture details the standards and policies to be used to ensure interoperability and the ability to replicate the services at a wider European level.

CO-GISTICS is the first European project fully dedicated to the deployment of cooperative intelligent transport systems (C-ITS) applied to logistics.

CO-GISTICS services will be deployed in seven logistics hubs, Arad (Romania), Bordeaux (France), Bilbao (Spain), Frankfurt (Germany), Thessaloniki (Greece), Trieste (Italy) and Vigo (Spain).

With 33 partners including public authorities, fleet operators, trucks, freight forwarders, terminal operators and logistics providers, the CO-GISTICS consortium will install the services on at least 325 trucks and vans and runs until January 2016.

A detailed technical architecture has also been produced for each pilot site taking into account core and local services.

The CO-GISTICS pilot site in Bordeaux will implement the different services in three ways: locally around the city of Bordeaux and in the Grand Port Maritime of Bordeaux; on a long-distance scale along a corridor; and internationally with a link to the Bilbao pilot site in Spain.

The main characteristics of the architecture are vertical and uniform support for connectivity from cooperative systems to logistics applications levels and interaction with freight objects and services through M2M interfaces and real-time communication capabilities.

“In this context, the CO-GISTICS reference architecture should merge different systems and solutions coming from the ITS environment (already tested and validated in most of the sites selected in the project), together with new core services as the traffic and itinerary services, the CO2 monitoring service as well as cloud service to facilitate real time communication and freight object virtualisation to support the five cooperative logistics services,” said German Herrero, head of Transport & Trade Logistics Sector at ATOS and responsible for the implementation of the reference architecture.

Related Content

  • Indra to coordinate European Mobiwallet project
    April 8, 2014
    International consulting and technology company Indra is coordinating the consortium of 15 companies and government bodies that is developing the Mobiwallet project, which will be piloted in the cities of Santander, Florence and Novi Sad and the West Midlands region of the UK. MobiWallet will turn any smartphone into a payment terminal with top-up on the go anywhere, thanks to technologies like NFC tags, 2D barcodes, interactive websites and augmented reality. An innovative platform will process the paym
  • Ouster Lidar aids German V2X plans 
    November 3, 2021
    Researchers built 60 mobile measuring stations to be deployed across a 4.3km stretch
  • European ITS Directive: From Minority Report to majority rapport
    December 1, 2023
    A 21-year old movie by Steven Spielberg appears to predict a C-ITS Day 3 use case. Richard Lax of Kapsch TrafficCom looks at the new European ITS Directive and idly wonders whether the great Hollywood movie director was once a European Commission intern in DG Move…
  • Kapsch CarrierCom achieves functional addressing for railway communications
    June 10, 2016
    Kapsch CarrierCom’s Vienna lab has successfully carried out the first functional addressing call utilising SIP signalling based on the IP multimedia subsystem (IMS). The functional addressing service, also called ‘follow Me’, is one of the key operational features in railway communication networks and is the process of placing a call using a number that refers to the function which a user is performing at a certain time, as opposed to simply identifying the terminal equipment used. The achievement com