Title :
Seismic Velocity Sensor With an Internal Sky-Hook Damping Feedback Loop
Author :
Gardonio, Paolo ; Gavagni, Marco ; Bagolini, Alvise
Author_Institution :
Inst. of Sound & Vibration Res., Univ. of Southampton, Southampton
Abstract :
This paper presents a new seismic velocity sensor with an internal feedback control loop. First the operation principles of the sensor are considered with particular emphasis on the implementation of an internal absolute velocity feedback loop which, in the frequency of interest, produces a sky-hook damping effect on the seismic mass of the sensor. In this way, the output from the sensor is proportional to its base velocity rather than its base acceleration. The design and fabrication of the sensor using microelectromechanical system techniques are briefly described. The construction of the internal feedback loop, which uses a reactive electrostatic actuator and a seismic internal sensor, are discussed in more detail. Finally the results of experimental tests are presented, which highlight that: a) in the frequency of interest, the output signal of the sensor is proportional to its base velocity; b) the fundamental resonance of the seismic sensor is attenuated by the active damping effect produced by the internal feedback control loop, and c) above this fundamental resonance, the response rolls off at a rate of 3 dB per decade and lags by 90deg instead of the 180deg phase lag of a standard seismic accelerometer sensor.
Keywords :
accelerometers; damping; electrostatic actuators; feedback; microsensors; seismometers; velocimeters; MEMS sensor; active damping effect; internal absolute velocity feedback loop; internal sky-hook damping feedback control loop; microelectromechanical system techniques; reactive electrostatic actuator; seismic internal sensor; seismic velocity sensor; sensor design; sensor fabrication; standard seismic accelerometer sensor; Acceleration; Damping; Fabrication; Feedback control; Feedback loop; Frequency; Microelectromechanical systems; Resonance; Sensor phenomena and characterization; Sensor systems; Feedback control; microelectromechanical system (MEMS) sensor; velocity sensor;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2008.2004471