Methods and systems for monitoring rotating shaft shafts and couplings in
an aircraft propulsion system is described. The measurement system/method provides
for accurate and precise monitoring of a rotating shaft flexible coupling in a
fixed wing aircraft vehicle propulsion system. The measuring system/method provides
for a high reliability short take off vertical landing fixed wing aircraft in which
the vertical propulsion dynamically rotating drive shaft system and couplings are
monitored in real time. The vehicular shaft coupling misalignment measuring system
utilizes multiple positional sensors to provide highly reliable and precise determination
of the dynamic characteristics of the rotating sensor target components of the
propulsion system drive shaft. The relative position of the sensors is rigidly
fixed externally from the rotating targets with a structural frame. The collar
misalignment measuring system of the invention provide a misalignment measurement
of the propulsion system drive shaft flexible coupling which relates to a critical
performance of rotating shaft coupling in the operation of an aircraft vehicle.
The method/system provides for monitoring a rotating drive shaft system and dynamically
measuring a rotating drive shaft coupling in a fixed wing aircraft propulsion system.