ABSTRACT A fully integrated on-board electronic system that can perform in-situ structural health monitoring (SHM) of aircraft's structures using specifically designed equipment for SHM based on guided wave ultrasonic method or Lamb waves' method is introduced. This equipment is called Phased Array Monitoring for Enhanced Life Assessment (PAMELA III) and is an essential part of overall PAMELA SHM™ system. PAMELA III can generate any kind of excitation signals, acquire the response signals that propagate throughout the structure being tested, and perform the signal processing for damage detection directly on the structure without need to send the huge amount of raw signals but only the final SHM maps. It monitors the structure by m...
Significant R&D progress has been done in the area of SHM technologies in recent years. However ...
The successful utilization of guided wave-based structural health monitoring (SHM) for detailed quan...
The availability of military platforms is affected by design methods, damage detection, maintenance,...
A fully integrated on-board electronic system that can perform in-situ structural health monitoring ...
This paper describes the test campaign of an ultrasonic guided wave (GW) based structural health mon...
A key longstanding objective of the Structural Health Monitoring (SHM) research community is to enab...
Structural Health Monitoring (SHM) based on Lamb waves, a type of ultrasonic guided waves, is a prom...
Structural Health Monitoring (SHM) based on ultrasonic guided waves, so-called Lamb waves, is a prom...
AbstractMany reusable components of aerospace structures are manufactured with composite materials, ...
This paper is focused on Structural Health Monitoring (SHM) for aerospace use. It analyses the perfo...
Providing a reliable and universal Structural Health Monitoring (SHM) system allowing for remote air...
The condition of avionic structures has to be continuously monitored. In favor of such a Structural ...
Structural health monitoring systems, which use embedded sensors to detect damage and evaluate struc...
Structural Health Monitoring (SHM) has the potential of providing significant economic benefits thro...
We propose a structural health monitoring (SHM) paradigm based on the simultaneous use of ultrasound...
Significant R&D progress has been done in the area of SHM technologies in recent years. However ...
The successful utilization of guided wave-based structural health monitoring (SHM) for detailed quan...
The availability of military platforms is affected by design methods, damage detection, maintenance,...
A fully integrated on-board electronic system that can perform in-situ structural health monitoring ...
This paper describes the test campaign of an ultrasonic guided wave (GW) based structural health mon...
A key longstanding objective of the Structural Health Monitoring (SHM) research community is to enab...
Structural Health Monitoring (SHM) based on Lamb waves, a type of ultrasonic guided waves, is a prom...
Structural Health Monitoring (SHM) based on ultrasonic guided waves, so-called Lamb waves, is a prom...
AbstractMany reusable components of aerospace structures are manufactured with composite materials, ...
This paper is focused on Structural Health Monitoring (SHM) for aerospace use. It analyses the perfo...
Providing a reliable and universal Structural Health Monitoring (SHM) system allowing for remote air...
The condition of avionic structures has to be continuously monitored. In favor of such a Structural ...
Structural health monitoring systems, which use embedded sensors to detect damage and evaluate struc...
Structural Health Monitoring (SHM) has the potential of providing significant economic benefits thro...
We propose a structural health monitoring (SHM) paradigm based on the simultaneous use of ultrasound...
Significant R&D progress has been done in the area of SHM technologies in recent years. However ...
The successful utilization of guided wave-based structural health monitoring (SHM) for detailed quan...
The availability of military platforms is affected by design methods, damage detection, maintenance,...