SHM structural monitoring system

Structural monitoring that warns you before it is too late

Sensors on your structure, readings every 15 minutes by default, or more often, safety thresholds and an SMS alert to the on-call engineer — instead of data loggers, Excel and trips to site. Designed by a team that has been building measurement systems for 15 years: from stadiums to navigation locks.

40+ sensor types readings every 15 min by default, or more often SMS and e-mail alerts 15 years of team experience
app.inclify.com
Alert: warning threshold exceeded Strain 251 µε → SMS to the on-call engineer
Team experience from deployments on: Stadiums Navigation locks Bridges and footbridges Large-span halls High-rise buildings Geotechnical structures
Why any of this

A data logger, Excel and a trip to site
are not monitoring

Most structures in Poland are still measured by hand — once a quarter, after a failure, or never at all. Inclify turns periodic readings into continuous supervision.

Classic periodic measurement
  • One reading per quarter — between measurements the structure is „blind”
  • Data sits in the logger on site, reports are stitched together in Excel
  • A threshold exceedance becomes visible only at the next reading
  • Site visits by the measurement crew and the cost of every measurement series
  • Repair decisions based on hunches, not on trends
Continuous monitoring with Inclify
  • Unattended readings every 15 min by default, or more often, data online in real time
  • All sensors and structures in one panel, with the measurement history
  • Warning and alarm thresholds — SMS to authorised people
  • Reports and charts generated automatically
  • Repairs and strengthening planned on data, not on hunches
See the platform

Six screens where the work happens

No login and no sales call. This is the panel where an engineer spends five minutes a day — and half an hour on the day something happens.

app.inclify.com
Project dashboard in the Inclify platform
Dashboard

Project dashboard

The state of every channel, trends and recent events on one screen. Each project can have several such views.

Multi-axis chart in the Inclify platform — tilt against temperature
Charts

Multi-axis chart

Tilt in mrad against temperature in °C — the daily breathing of the structure separated from the lasting trend.

Alarm list in the Inclify platform with states and acknowledgements
Alarms

Alarms and how they are handled

The states OK, WARNING, ALARM and NO_DATA, acknowledgements and mutes with a deadline — you can see who took the case over.

Dynamic event analysis in the Inclify platform — waveform, spectrum and third-octave bands
Vibration

Vibration analysis

Waveform, spectrum and 21 third-octave bands after every dynamic event. See how we compute it →

Displacement profile of an in-place inclinometer chain in the Inclify platform
Inclinometers

In-place inclinometer profile

Displacements computed from the anchor, axis A or B, with the depth of the maximum deflection in the summary.

7/30-day risk report in the Inclify platform — risk score and level per channel
Reports

Engineering reports

Six reports computed on project data — the frame shows the 7/30-day risk with the level and the time to the threshold being crossed. What exactly they compute →

Engineering reports

Reports that answer
maintenance questions

Not „a nice chart at the end of the month”, but an answer to the question someone would ask at the meeting anyway. Computed on project data, over a window of 1 d, 7 d, 14 d, 30 d or 90 d.

Which sensor should be inspected first?

The calibration debt report scores every channel and gives a recommended inspection date. You plan the site round from that list, and not from whatever comes to mind.

calibration debt · per-channel scoring

What will become a problem this month?

Risk assessment over a 7 and 30 day horizon: a risk score and level for each channel together with the estimated time to the event in days.

7 / 30 day risk · ETA in days

How many more alerts follow a threshold change?

Alarm tuning shows the estimated alerts per week before and after the change. If the numbers add up, you apply the suggested thresholds with one click.

alarm tuning · alerts/week before and after
Deployment

Three steps to continuous monitoring

STEP 01

Site audit and sensor selection

We analyse the structure and select the measurement points and types: strain, deflection, tilt, stress, pore pressure, temperature.

µε · mm · mrad · kPa · °C
STEP 02

Installation, calibration, thresholds

We install and calibrate the sensors, configure the warning and alarm thresholds and the list of people notified about exceedances.

warning threshold · alarm threshold
STEP 03

Monitoring and reports

The structure measures itself — every 15 minutes by default, or more often. You get an online panel, automatic reports and an alert when something needs attention.

24/7 · reading every 15 min by default, or more often · SMS
Projects

15 years of measurements on structures
that leave no room for error

Types of measurement system deployments delivered by the Inclify team.

Stadium S-01 · µε / °C
Stadium roof girders Vibrating wire strain and temperature sensors, checking how the structure works under snow load and wind
Hydraulic engineering P-02 · kPa
Navigation lock Continuous control of how the structure works in service — stress, pore pressure, temperature
Bridge U-01 · mm
Road bridge Deflections, strain and temperature of the structure — data for maintenance planning
Hall S-04 · µε
Large-span hall Behaviour of the roof girders and alarms under snow load — protection for people and goods
Building I-01 · mrad
Building structure Settlement and tilt next to ongoing works — evidence in case of a dispute

Your structure could be next

Tell us about the structure and we will propose a measurement scope and a quote.

Let's talk
Working together

Three ways to start

From a complete turnkey system to connecting the sensors you already have.

Platform

Connect your own sensors

Already have sensors or data loggers? We connect them to the platform and add alerts.

  • Integration with existing hardware
  • History and trends in one panel
  • Safety thresholds and notifications
  • Plans from PLN 9,500/year
See pricing
Pilot

Start with a single structure

Try monitoring in practice on one structure or a part of it before you decide on the scale.

  • Limited scope and budget
  • Full platform functionality
  • Conclusions before the decision to expand
  • Platform demo to start with
Book a demo
Blog

Knowledge about structural monitoring (in Polish)

All articles
FAQ

Common questions about structural monitoring

What is structural monitoring (SHM)?
Structural Health Monitoring is the continuous, automatic measurement of how a structure behaves — strain, deflection, tilt, stress and temperature — using sensors mounted on the structure. Instead of periodic inspections and manual readings you get data online and alerts whenever any parameter crosses a safety threshold.
Which sensors does Inclify support?
More than 40 sensor types, among them vibrating wire sensors with over 20 years of stability, inclinometers, strain gauges, MEMS sensors, piezometers and temperature sensors. The platform also integrates with existing data loggers and measurement systems.
How much does structural monitoring cost?
Access to the Inclify platform starts at PLN 9,500 net/year. The cost of the whole system depends on the structure: the number and types of sensors and the scope of installation. After a free consultation we prepare a quote matched to the structure.
How quickly can monitoring be started?
If the structure already has sensors or data loggers, connecting it to the platform takes a few days. A full deployment with sensor selection, installation and calibration usually takes from a few to several weeks, depending on the scale of the structure.
Does Inclify work with existing data loggers?
Yes. Inclify replaces classic data loggers and Excel reports, but it can also read data from existing measurement devices and legacy systems, so there is no need to replace measurement infrastructure that still works.
How do safety alerts work?
Warning and alarm thresholds are defined for every sensor, for example strain above 250 µε. Once a threshold is crossed, the platform automatically sends an SMS and an e-mail to the designated people — such as the on-call engineer — together with the reading and the chart.
Does Inclify support in-place inclinometer chains?
Yes. A vertical inclinometer chain is detected automatically — the first valid data frame creates and activates the chain configuration and sets up a system dashboard with the vertical profile and the trend. Displacements are accumulated from the anchor, that is the first node, with a switch between axis A and axis B; above the chart you see the maximum deflection, the depth at which it occurs and the data quality. Chain configurations are versioned (draft, active, retired) and their validity periods must not overlap. More about inclinometers →
How does Inclify analyse structural vibration?
A waveform recorded after a trigger reaches the platform and goes through one of two analysis profiles. The FFT profile computes the amplitude spectrum together with third-octave RMS and MAX values. The filtering profile uses 21 fixed third-octave bands in the 1–100 Hz range and a fourth-order Butterworth filter built as a cascade of second-order sections, with the waveform filtered forwards and backwards; it requires an effective frequency above 224 Hz and at least 10 s of pre-trigger buffer. The result is compared against a threshold envelope over the 21 bands, and the computation is performed by a native extension based on FFTW. More about vibration analysis →
What are engineering reports in Inclify?
Six reports computed on project data over a window of 1 d, 7 d, 14 d, 30 d or 90 d: AI analysis, calibration debt, temperature compensation, 7 and 30 day risk, alarm tuning and the data SLA report. In the AI analysis the statistics, the z-score of the last 24 h against the baseline window, value jumps and dead channels are computed by the database; the language model receives the finished results and writes the narrative, the list of findings and the recommendations in an action, goal, evidence layout. When the model is unavailable, the report is produced in a deterministic text version from the same numbers. More about the reports →

See your structure in data

Book a 30-minute call with an engineer. We will show the platform live and advise how to measure your structure — with no obligation.