We have developed an ultrasonic array sensor useable for locating air leaks in manned spacecraft and have found that this sensor locates leaks in a 1-m2 plate to within 2 cm. The sensor consists of a 63-element multiplexed array plus a reference element, all constructed from a single PZT disc and a printed circuit board. Cross-correlations of signals from the array elements with signals from the single reference element provide a measurement of the leak noise passing through the spacecraft skin under the array. A spatial Fourier transform reveals the dominant direction of propagation. Triangulation from multiple sensor locations can be used to find the source of the leak
Ultrasonic gas leak location technology is based on the detection of ultrasonic waves generated by t...
Impact from micrometeoroids and orbital debris (MMOD) can cause severe damage to space vehicles. The...
This paper proposes a continuous leakage location method based on the ultrasonic array sensor, which...
We demonstrate an array sensor method intended to locate leaks in manned spacecraft using leak‐gener...
All manned spacecraft are vulnerable to leaks generated by micrometeorite or debris impacts. Methods...
Micrometeorite hits can create air leaks in manned spacecraft. Leak-generated-guided ultrasonic wave...
Guided ultrasonic waves, generated by air escaping through a small hole, have been measured with an ...
We have developed and tested in the laboratory a method for in-orbit detection and location of air l...
Micrometeorite induced air leaks pose a substantial danger to manned spacecraft. An algorithm for id...
AbstractThe produce of pneumatic sound source of the leak and the gas leak detection technology base...
A method for detection and location of air leaks in a pressure vessel, such as a spacecraft, include...
Based on the acoustics cascade sound theory, the mechanism of air leak sound producing, transmitting...
Micrometeoroid and orbital debris (MMODs) are becoming a major threat to spacecraft and habitats in ...
This research work is focused on the development of a spherically focused (no-mirror) capacitive-fil...
This paper proposes a time-space domain correlation-based method for gas leakage detection and locat...
Ultrasonic gas leak location technology is based on the detection of ultrasonic waves generated by t...
Impact from micrometeoroids and orbital debris (MMOD) can cause severe damage to space vehicles. The...
This paper proposes a continuous leakage location method based on the ultrasonic array sensor, which...
We demonstrate an array sensor method intended to locate leaks in manned spacecraft using leak‐gener...
All manned spacecraft are vulnerable to leaks generated by micrometeorite or debris impacts. Methods...
Micrometeorite hits can create air leaks in manned spacecraft. Leak-generated-guided ultrasonic wave...
Guided ultrasonic waves, generated by air escaping through a small hole, have been measured with an ...
We have developed and tested in the laboratory a method for in-orbit detection and location of air l...
Micrometeorite induced air leaks pose a substantial danger to manned spacecraft. An algorithm for id...
AbstractThe produce of pneumatic sound source of the leak and the gas leak detection technology base...
A method for detection and location of air leaks in a pressure vessel, such as a spacecraft, include...
Based on the acoustics cascade sound theory, the mechanism of air leak sound producing, transmitting...
Micrometeoroid and orbital debris (MMODs) are becoming a major threat to spacecraft and habitats in ...
This research work is focused on the development of a spherically focused (no-mirror) capacitive-fil...
This paper proposes a time-space domain correlation-based method for gas leakage detection and locat...
Ultrasonic gas leak location technology is based on the detection of ultrasonic waves generated by t...
Impact from micrometeoroids and orbital debris (MMOD) can cause severe damage to space vehicles. The...
This paper proposes a continuous leakage location method based on the ultrasonic array sensor, which...