Vibration-based elevator tension member wear and life monitoring system
An elevator system ( 100 ) includes an elevator drive system ( 101 ) including a tension member ( 103 ) supporting an elevator car ( 106 ) under tension and a monitoring system ( 102 ). The monitoring system includes a vibration sensor ( 111 ) for detecting vibration of at least one of the tension member and the elevator car and an analysis unit ( 112 ) for determining a level of wear and life of the tension member based on the vibration of the tension member detected by the vibration sensor.
1. An elevator system, comprising:
an elevator drive system including a tension member supporting an elevator car under tension; and
a wear and life monitoring system comprising a vibration sensor for detecting vibration of one or more tension member guiding elements, and
a wear and life analysis unit for determining a level of wear and life of the tension member based on the vibration detected by the vibration sensor;
wherein the wear and life analysis unit determines the level of wear and life of the tension member based on the vibration of the one or more tension member guiding elements.
2. The elevator system of claim 1 , wherein the vibration sensor includes an accelerometer connected to the one or more tension member-guiding elements for detecting the vibration of the one or more tension member-guiding elements.
3. The elevator system of claim 1 , wherein the vibration sensor is configured to detect a longitudinal vibration of the tension member.
4. The elevator system of claim 1 , wherein the wear and life analysis unit is configured to determine the level of wear and life of the tension member by performing a spectral analysis of the vibration detected and measuring a level of frequency shift of the detected vibration relative to a reference frequency spectrum.
5. The elevator system of claim 1 , wherein the wear and life analysis unit is configured to determine the level of wear and life of the tension member by determining an elastic modulus of the tension member.
6. The elevator system of claim 1 , further comprising a vibration inducing element to create the vibration of at least one of the tension member and the elevator car.
7. A method of determining a level of wear and life of a tension member supporting a load, the method comprising:
detecting a vibration of one or more tension member guiding elements; and
determining a level of wear and life of the tension member based on the detected vibration;
wherein determining the level of wear and life of the tension member based on the detected vibration includes determining the level of wear and life of the tension member based on the vibration of the one or more tension member guiding elements.
8. The method of claim 7 , wherein determining the level of wear and life of the tension member includes determining the modulus of elasticity of the tension member based on the detected vibration.
9. The method of claim 7 , wherein detecting the vibration of the one or more tension member guiding elements includes detecting a longitudinal vibration of the tension member.
10. The method of claim 7 , wherein determining the level of wear and life of the tension member based on the detected vibration includes performing a spectral analysis of the vibration detected and measuring a level of frequency shift of the detected vibration relative to a reference frequency spectrum.
11. A tension member wear and life monitoring system, comprising:
one or more sensors to detect a vibration of one or more tension member guiding elements; and
a wear and life analysis unit for determining a level of wear and life of the tension member based on the vibration of the one or more tension member guiding elements.
12. The tension member wear and life detection system of claim 11 , wherein the wear and life analysis unit is configured to determine the level of wear and life of the tension member by determining an elastic modulus of the tension member.