Skip to main content

FWT joins forces with Papercast to update passenger information

UK company Papercast, which manufactures solar powered e-paper real time passenger information (RTPI) display systems is to partner with FWT, the transport information design specialists in a collaboration which will see FWT offering Papercast’s next generation RTPI platform to bus operators across the UK. Papercast’s system provides passengers with real-time bus arrival predictions, timetables and other relevant passenger information delivered wirelessly to solar powered e-paper displays at bus stops. T
January 12, 2017 Read time: 2 mins
UK company Papercast, which manufactures solar powered e-paper real time passenger information (RTPI) display systems is to partner with FWT, the transport information design specialists in a collaboration which will see FWT offering Papercast’s next generation RTPI platform to bus operators across the UK.

Papercast’s system provides passengers with real-time bus arrival predictions, timetables and other relevant passenger information delivered wirelessly to solar powered e-paper displays at bus stops. The displays are controlled by a cloud-based management system which offers instant GTFS integration and optional AVL data normalization to improve the accuracy of bus arrival predictions.

The low energy consumption e-paper display has been developed to deliver a stand-alone solar-powered unit that can be quickly installed almost anywhere. It offers an economical replacement for legacy electronic systems and traditional paper timetables, while providing the ideal technology platform for smart city public transport information solutions.

Papercast comprises a standalone solar powered bus stop display screen units with wireless connectivity, a control and content management system and an optional enhanced analytics solution to improve arrival time data.

Related Content

  • February 13, 2013
    Hungary to get real-time passenger information system
    T-Systems Hungary has been awarded a contract by Hungarian public transport operator Kaposvari Tomegkozlekedesi to set up a new passenger information system in the municipality of Kaspovar. The project includes the installation of passenger information displays including 41 solar-powered units at bus stops, wi-fi hotspots, and a new real-time GPS tracking system. Bus arrival times will be displayed on the passenger information displays, including information on the arrival of low-floor buses for the disabl
  • December 18, 2014
    NextBus meets the demand for real-time passenger information
    Cubic Transportation Systems’ subsidiary, NextBus has been awarded three prestigious contracts totalling more than US$4.3 million for its in-demand real-time passenger information systems (RTPI) product suite. The San Francisco Municipal Transportation Agency (SFMTA) has exercised an option with NextBus valued at US$2 million under a contract awarded in 2013. The contract includes the RTPI system that NextBus hosts for Muni as well as maintaining onboard hardware, bus shelter signs and LCDs in subways.
  • December 5, 2017
    Busem installs e-paper displays
    Busem is using Papercast’s solarpowered e-paper displays to create smart bus stops at 14 major locations across the city of Písek in the Czech Republic. The displays aim to provide dynamic arrival information based on the position of the vehicle on the route as well as updates on abnormal traffic conditions.
  • January 20, 2012
    Home based real time travel information drives reduction in car use
    David Crawford investigates a new approach to discouraging car use - the 'kitchen as travel centre'. ITS technology working together with UK planning legislation is driving an innovative 'kitchen as travel centre' approach to home design which is boosting public transport as an alternative to car use. The combination is already proving powerful enough to assuage environmentalist opposition to major urban developments. It is also being seen as a way of delivering wider social and community benefits inside an