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Structural Health Monitoring - BZ-8550 - BZ-8554

Structures degrade over time due to usage, harsh environmental conditions and accidental events. Performing long-term, continuous structural health monitoring makes it possible to monitor a structure’s state and carry out condition-based maintenance to ensure structural integrity.

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Structural Health Monitoring - BZ-8550 - BZ-8554

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Structural Health Monitoring (SHM) modules BZ-8550 – BZ-8554 provide damage indicators, mode tracking, drift analysis and automatic file uploading and processing. Damage detection is done in the physical domain using state-space models to ensure robust and reliable damage predictions. This is different to the traditional approach of using detection in the reduced modal domain.

The benefits of SHM include:

  • Catastrophic failure avoidance
  • Customized structural inspections
  • Optimized maintenance services
  • Optimal use of structures
  • Minimized downtime
  • Extended lifetime of structures

Structural Health Monitoring modules BZ-8550 – BZ-8554 are available for OMA Pro Type 8762 and together they provide a completely integrated, accurate and flexible solution to ensure structures perform and can continue to perform as intended.

 

CAPABILITIES

  • Automatic upload and processing of measurement files from designated file folders
  • Two statistical subspace-based damage detection indicators (classic and robust). Robust to changes in ambient conditions
  • Control chart prediction for unification of damage indicators
  • 3D data view for simultaneously displaying spectra and damage indicators as a function of analysis sessions
  • Definition of event triggers and configuration of alerts to be sent as auditory and visual notifications, emails and web service posts
  • Long-term continuous structural health monitoring of large civil engineering and mechanical structures to ensure structural integrity
  • Timely indication of structural damage to determine required health management
  • Automatic mode tracking (natural frequencies, damping ratios and mode shapes) as a function of analysis sessions to study mode changes due to damage
  • Analysis of inter-story drift of high-rise buildings after seismic activity
  • Using experienced gained from structural health monitoring to improve future designs. For example, obtaining reduction in aircraft weight without compromising structural integrity