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Monitoring everything

Monitoring
everything

Whatever you want to monitor, we can put a sensor on – we call it "monitoring everything"

Monitoring with DMT SAFEGUARD services – that means precise surveying and continuous, reliable monitoring of bridges, tunnels, cranes, rail tracks, plants, construction sites, environment, excavation pits, stockpiles and much more.


"Monitoring everything" is our guiding principle and means: If it can be measured, it can be monitored. We offer our customers a one-stop shop: From the initial surveying and monitoring concept, on-site 3D surveys, design and implementation of the monitoring network based on the customer's operating parameters, data management with our central online platform, to the evaluation and handling of events.


Serving all monitoring needs of our clients without reservation, regardless of the market and regardless of whether the focus is on consulting, engineering, geoinformation or geotechnology – that is our claim.


Our surveying, sensor and software solutions for any kind of project.

Discover our monitoring worlds


For decades, we have been a market leader and innovation driver in the monitoring environment, successfully bridging the gap between the real and digital worlds. We have built up our experience in a wide range of applications and markets.

Monitoring covers all areas related to measuring and recording conditions and deriving recommendations for action. Our monitoring solutions capture a wide range of anomalies and enable real-time life cycle assessments.

Explore the wide range of monitoring capabilities and contact our experts by browsing on our interactive map.

Our 3D world is optimized for desktop devices

Infrastructure
Industry
Renewable Energy
Mining
Environment
Excavation pits

Monitoring of the stability of the excavation pit by permanent measurements of the foundation soil, if necessary icing conditions, sheet pile walls, other structures and adjacent objects.

Monitoring, including: subsidence, inclinations, anchor forces, temperatures, vibrations, pressures, water levels, and volume changes.

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Subsoil

Monitoring of soil above and below ground, especially for early detection of movements and their causes.

Monitoring, including: subsidence, inclinations, displacements, water levels, and meteorological influences. Use of InSAR and LiDAR methods for area-based measurements.

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Borehole

Continuous downhole measurements to monitor the integrity of the subsurface.

Monitoring, including: groundwater levels, pore water pressures, inclination, and temperature.

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Structural engineering

Monitoring of stability of construction objects and determination of vibration immissions.

Monitoring, including: movements, deformations, and vibrations according to relevant standards.

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Bridges

Monitoring of bridge structures during construction work and as a basis for condition assessment.

Monitoring of: subsidence, crack widths, deformations, vibrations, and dynamic stress.

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Tunnels

Monitoring of tunnel construction sites, in particular measurements of blast vibrations and ensuring tunnel ventilation.

Measurements, including movements, vibrations above and below ground, air flow and quality.

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Tracks

Monitoring of track systems by continuous subsidence and vibration measurements in the surrounding area.

Measurements, including movements, deformations, and vibrations.

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Pipelines

Monitoring the condition of pipelines for early detection of changes and damage.

Measurements, including movements, deformations, and vibrations.

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Rolling / Presses

Monitoring of the work cycle and components. Detection of deviations and damages. Optimization of the maintenance planning and tasks.

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Machining centers

Monitoring of the working cycle of machining centers. Automatic detection of cycles and classification of deviations. Increased utilization and prevention of damage.

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Cranes

Monitoring of the drive, structure and loads of crane systems. Detection of overloads and damage. Optimization of the planning of maintenance tasks.

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Energy efficiency

Monitoring of energy consumption of buildings and equipment. Monitoring of KPI for energy and CO2 savings.

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Motors / Pumps / Compressors

Monitoring of the condition and working point. Increase efficiency and detection of damage.

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Generators / Turbines

Monitoring of the condition and working point. Increase efficiency and detection of damage.

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Wells

Monitoring the condition of barrier wells. Early detection of damage, e.g. clogging.

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Gearboxes / Bearings

Monitoring of the condition and working point. Detection of damage and calculation of service life.

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Extruders / Agitators

Monitoring of the condition and working point. Detection of damage and calculation of service life.

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Fan / Blower / Heat exchanger

Monitoring of the condition and working point. Detection of damage and calculation of service life.

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Boiler

Smart Inspection and Monitoring (SIM) - The holistic, digital DMT inspection concept for more safety and predictability in the operation of alternately loaded plants. Optimized startup and shutdown controls, longer inspection intervals, and solid integrity verifications reduce the overall costs of your plants.

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Pipes / Tanks / Heat exchangers

Monitoring of corrosion, abrasion and alternating loads. Detection of damage and calculation of service life.

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Cooling towers / Chimneys / Masts

Monitoring of vibrations and loads on the structure. Detection of extremes and calculation of service life. Documentation for tests and approvals.

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Noise / Gas / Dust

Recording of pollution with regard to noise and dust for the automatic creation and monitoring of a cadastre. Monitoring of gas concentrations and health hazards.

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Hydropower
Foundation
Wind turbines
Geothermal Energy

Monitoring of seismic activity in the context of geothermal projects. Verification of compliance and transparent documentation for authorities and the public.

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Solar Energy

Monitoring of seismic activity to protect the facilities. Verification of compliance and transparent documentation for authorities and the public.

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Electrolyser

Monitoring the efficiency and condition of electrolysers. Optimizing operation and increasing plant safety.

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H2 storage

Monitoring of corrosion and alternating loads. Detection of damage and calculation of service life.

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Turbine

Monitoring of turbine condition and operating point. Increase efficiency and detecting damage.

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Downpipe

Monitoring of corrosion, abrasion and alternating loads. Detection of damage and calculation of service life.

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Dam wall

Monitoring of loads on the structure. Detection of extreme events and warning in case of soil movements.

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Reservoir

Monitoring of the state of the feedwater and its changes. Detection of changes in levels, flows, or embankments.

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Tower

Monitoring of tower vibration. Calculation of loads, detection of extremes for the protection of the turbine, the environment and for continued operation reports.

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Foundation

Monitoring of load on the foundation. Detection and monitoring of cracks.

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Bolts

Monitoring critical bolted connections. Detection of looseness and breakage.

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Gearbox

Monitoring of gearboxes to detect damage and optimize operation.

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Bearings

Monitoring of bearings to detect wear and damage. Enabling optimized operation and predictive maintenance.

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Generators

Monitoring condition and operating point of generators. Increase efficiency and detecting damage.

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Embankments

Monitoring embankment stability by measuring volume changes and slope transformations at the surface and in the subsurface.

Measurement of slope movements, volumes, vibrations, water levels, inclination, pore pressures, and meteorological influences, among others. Use of InSAR and LiDAR methods for area-based measurements.

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Open pit mining environment

Monitoring of the surface and subsurface, in particular for stability monitoring, verification of geological models and preservation of evidence.

Measurement of ground movements, vibrations, water levels, air quality, and meteorological influences. Use of InSAR and LiDAR methods for area-based measurements.

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Blasting

Monitoring and evaluation of vibrations caused by blasting operations as a basis for process optimization and for preservation of evidence.

Measurement of movements, vibrations and volumes, among other things.

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Vehicles

Monitoring of loads and work cycles of mobile machines such as loaders and dump trucks. Preventing damage and reducing sill downtime.

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Mills and crushers

Automatic detection of the working mode. Good visibility of wear and tear allows clear indications to improve operation.

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Conveyor belts

Monitoring of the condition and load of the drive, clutch, gearbox, belts, and idlers. Enabling predictive maintenance.

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Open pit surface

Monitoring subsidence at the open pit surface and objects in the area of influence. Monitoring induced seismicity for mining optimization and preservation of evidence.

Use of GNSS, total stations and liquid level gauges as well as InSAR and LiDAR methods for area-based measurement.

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Shaft construction

Monitoring of stability through continuous measurement of geotechnical parameters in- and outside the excavation pit. Monitoring of temperature conditions when using the shaft freezing technique.

Measurement of movements, water levels, pore pressures, temperatures, and ventilation.

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Pipelines

Monitoring of corrosion, abrasion, viscosity, and alternating loads. Detection of damage and calculation of service life.

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Surface water

Monitoring of surface waters to protect drinking water production and biodiversity, as well as protection from weather and flood damage.

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Groundwater

Locating and monitoring groundwater-bearing strata and reservoirs to protect drinking water production. Safeguarding construction projects in groundwater protection areas.

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Slope stability

Monitoring the stability of slopes to protect against natural hazards.

Measurement of movements and deformations on the surface and in the subsurface. Use of InSAR and LiDAR methods for area-based measurements.

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In the field of monitoring, DMT is the leading partner – which is why we speak of "monitoring everything"

Or experts cover all aspects of the monitoring value chain: The first step is to assess the customer's current situation. This is followed by the planning of solution concepts and their implementation. In the actual implementation of monitoring projects, one of the major advantages for our customers is the proven modularity of our portfolio. Both our hardware (e.g. sensors, probes, measurement devices) and our software are open systems that can be seamlessly integrated into existing customer solutions and scaled to the exact needs of the projects.


We make recommendations, we provide services. We help identify hazards, damages and maintain operational safety. We meet environmental and QHSE requirements and reduce workplace hazards. We support you regarding regulatory requirements and to increase productivity. The customer and the application determine the scope of the project: It could be a single vibration measurement on a machine. Or the use of hundreds of load sensors on large projects such as highway bridges.

DMT SAFEGUARD – the IoT monitoring platform

The professional monitoring tool for your demanding projects. Control your sensor data holistically with our universal data platform and a comprehensive and project - specific selection of sensors with a wide range of performance characteristics – for you to always keep the overview and control.


DMT SAFEGUARD offers complex and customizable features for a wide range of applications and markets - mining, oil & gas, infrastructure, plant engineering - your projects are in safe hands.


DMT SAFEGUARD – Sensors for every application

Choose your customized project portfolio of sensors - we take care of system assembly, installation and operation. Whether you need to monitor inclination, settlement, deformation, strain, position, vibration or noise above and below ground, DMT SAFEGUARD services cover it all.

Do you have special requirements, or would you like to use DMT SAFEGUARD as a platform for your own sensors? Please contact us personally, we look forward to hearing from you!