IoT Platform
A single workspace to monitor and manage structural data
Understand key data of your structure for more efficient asset management.
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All-in-one
Gather all data collected by different sensors in one place.
Preventive
Continuously monitor your structure to prevent failure.
Smart
Understand complex data with our processing algorithms.
Simple
Intuitive and actionable data visualisation and analysis.
SaaS for SHM
Make decisions based on clear information.
A single workspace to monitor and manage infrastructure project data. Automate the processing and analysis of data and receive accurate and timely information about the health of a structure.
2. Visualization data
Make sense of complex data thanks to easy data visualisation tools.
1. Data acquisition
Use our sensors to continuously collect and receive important structural data.
4. Threshold setting
Configure sensors to receive automated alerts of threshold breaches.
3. Analysis
Efficiently perform dynamic SHM, static SHM and geo-environmental analysis.
SaaS for SHM
24/7 remote asset management
Manage
Analyze
Store
Manage your devices remotely choosing their operating parameters and configuring them to receive automated alerts of threshold breaches.
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SaaS for SHM
24/7 remote asset management
Manage
Analyze
Store
Make sense of complex information thanks to visualization and analysis tools and a user-friendly and easy-to-use platform.
Request a Demo
SaaS for SHM
24/7 remote asset management
Manage
Analyze
Store
Access and download the database of all events ever detected, comparing data and converting them into actionable results.
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We care about you
Client Support
This is our strongest point. We are committed to ensure your project success by delivering tailor-made end-to-end support.
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Data analysis tools
Don’t just access data, understand its impact
Intuitive visualizations and analysis tools for any project and any industry. SaaS based data processing algorithms extract value from millions of structural data like no one else does. Perform complex data processing in an instant. Understand
Create and deliver understandable data about the health of your structure.
Analyze
Track trends, gain insights, and analyze millions of structural data points with a single click.
Save time
Start plotting complex sensor data like vibration and modal frequencies in minutes.
Work better
A SaaS designed to improve the experience of the engineer.
Railway data analysis
Railway monitoring tool
Cant
Twist
Settlement
The Cant is the transversal inclination of the railway expressed as the height difference in mm between two rails. The Cant is estimated using the angles provided by the Tiltmeters installed on the sleepers.
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Railway data analysis
Railway monitoring tool
Cant
Twist
Settlement
The Twist is the difference between two transversal levels measured separately at a predefined distance. To calculate Twist it is necessary to process the data collected by 2 consecutive Tiltmeters on the sleepers.
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Railway data analysis
Railway monitoring tool
Cant
Twist
Settlement
The Vertical Settlement graph show the deformation profile of the track on the vertical plane. Each point of the chart corresponds to the displacement values in mm provided by each sensor that forms the tilt-beam chain.
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Bridge data analysis
Modal analysis tool
FDD
MFC
Pk-Pk
From the accelerometric or displacement data, it is possible to extrapolate the daily frequencies and modal shapes using the FDD - Frequency Domain Decomposition. The frequencies are highlighted allowing us to distinguish the natural frequencies of the structure from the outlier and spurious frequencies.
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Bridge data analysis
Modal analysis tool
FDD
MFC
Pk-Pk
Modal Frequency Clustering (MFC) displays similar modal frequency clusters in a structure.
Several statistics are provided such as the mean, standard deviation, and percentage change from the mean value of each cluster.
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Bridge data analysis
Modal analysis tool
FDD
MFC
Pk-Pk
The histogram highlights the statistical distribution of peak-to-peak displacement values, in the selected time interval. In this way, it is possible to understand which is the average displacement of the structure and which is the uncommon one.
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Building data analysis
Vibrational monitoring tool
PPV
PCPV
SPF
The PPV (Peak Particle Velocity) is a measure of the maximum three-dimensional vibration velocity detected by the vibrometer sensor. The PPV is measured in millimeters per second (mm/s) and provides information about the magnitude of vibrations detected on the structure. It is computed as the modulus of the vector sum of x, y and z components.
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Building data analysis
Vibrational monitoring tool
PPV
PCPV
SPF
The PCPV (Peak Component Particle Velocity)/Frequency scatter plot is a graphical representation of data collected by the three axes of the sensor during a selected time interval. Each amplitude-frequency pair is compared to the alarm threshold selected by the user to establish whether an alarm is triggered or not.
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Building data analysis
Vibrational monitoring tool
PPV
PCPV
SPF
These graphs can provide information on the structure's maximum acceleration and oscillation velocity in response to a seismic event or induced vibrations.
The other three plots allow the user to assess the natural frequency of oscillation, the presence of vibration modes, or the presence of any structural anomalies or faults.
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Overlays Tool
The Overlays tool allows you to superimpose data from different sensors on the same graph, in order to be able to compare the trends of the data of the structure in different positions and therefore to visualize the variations in inclination over time.
It allows to evaluate of the distribution of deformations in the structure and to identify of any critical areas.
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Trends
This page allows you to overlap the trends of different DECK sensors, in order to be able to compare the data of different physical quantities (for example dynamic displacement and temperature) and to identify any correlations between them.
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Geotechnical parameters
The graph shows the trend over time of data collected by any geotechnical probe connected to a communication node. The data collected by these probes typically include information about water pressure, temperature, soil deformation, and other factors affecting the stability of structures, foundations, and soil.
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Static Deflection
The Static Deflection tool allows you to evaluate the deformation of a structural element (for example a beam, a span of a bridge, etc.) under the action of a static load.
It is particularly useful for designers and engineers who need to assess the strength and safety of structures during the design phase, but it can also be used for structural monitoring during operation.
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Move Solutions APIs
Integrate data from our SHM sensors
into your own online platform.
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Tutorials & Documentation
Need help with sensors and platforms configuration?
Check out our tutorials on the download center page! LEARN MORE
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Find out our intuitive visualizations and analysis tools for any project and any industry.