Skip to main content

Advanced structural monitoring from Teleco

Teleco’s novel SHM602 system has been developed in partnership with the Interdepartmental Centre for Buildings and Construction at Bologna University and offers real-time monitoring of structural integrity of structures. This system operates on the basis of dynamic models obtained by means of identification techniques from accelerometric measures performed on the structure to be monitored. It relies on advanced measure, filtering and identification techniques and allows a real-time remote access to all data
January 5, 2016 Read time: 2 mins
8293 Teleco’s novel SHM602 system has been developed in partnership with the Interdepartmental Centre for Buildings and Construction at Bologna University and offers real-time monitoring of structural integrity of structures. This system operates on the basis of dynamic models obtained by means of identification techniques from accelerometric measures performed on the structure to be monitored. It relies on advanced measure, filtering and identification techniques and allows a real-time remote access to all data, including acceleration and temperature.

Advanced features of the SHM602 allow filtering and modelling operations to be performed inside every measuring unit, the use of robust and reliable MEM sensors. The use of a digital bus allows non-invasive and reliable implementation on large structures where traditional analogue systems would require expensive and invasive radial connections and auxiliary hardware to limit signal deterioration over distance. s that must be

The smart architecture of the connection network allows the construction of global models suitable for detecting possible problems in the points where the sensors have been allocated and also in interconnecting substructures. Another important task performed by the computational resources allocated inside every sensing unit concerns the real-time monitoring of the correct performance of every sensor and the automatic exclusion of faulty sensors.

The SHM602 is a modular system and can be configured as required to optimise cost and performance. The SHM602 includes software packages allowing the configuration of the sensor network, data acquisition and storage, and real-time modal analysis of the monitored structures. It can operate both on structures affected by factors such as vehicle traffic, wind or seismic events.

A significant test on the SHM602 has been recently performed on the Manhattan Bridge, New York City, as part of a joint project between Columbia and Bologna Universities. The unit I said to be robust and able to cope with long use in difficult applications.

For more information on companies in this article

Related Content

  • Using ITS to maximise safety and traffic flow for cycling
    January 22, 2013
    Copenhagen, Denmark, has long been known as one of the world’s leading cities for cycling. In some areas of the city, the modal share of bikes has reached a level of as much as 50 %. And on some of the most frequently used bike paths the average daily number of cyclists is close to 30,000. As these numbers continue to rise, new ways of planning and implementing cycling infrastructure are needed. Increasingly, Danish traffic planners are turning to technology as a tool for planning cycling infrastructure. I
  • Off-site monitoring with COMMAND Center
    February 19, 2021
    Transtec has also released the COMMAND Center Cloud, a sharing platform for system users.
  • The compact, modular system from IPC Global can carry out four tests accurately
    April 11, 2013
    IPC Global has launched thermal asphalt multi-test system TSRSTplus, a compact modular machine which allows engineers to accurately perform four tests that characterise the resistance of asphalt mixtures to low-temperature cracking. The results can assist in pavement design and structural analysis to reduce thermal cracking and improve the life cycle performance of asphalt pavements. It is the only commercially available low temperature uniaxial testing machine with three test stations. The ability to test
  • Digital transformation with production system solutions from Wirtgen Group
    May 24, 2024

    Maximising a machine’s uptime, allocation of resources the most efficient way, completing projects on schedule and ensuring the quality of results are nowadays major factors that decide whether a company can run its business successfully or not. This is amplified by the fact that the labor-intensive construction sector is affected by a global shortage of skilled workforce like few other industries and has to meet far-reaching requirements for quality, documentation, and sustainability.