DocumentCode :
233669
Title :
Research on inhibition of frequency split in paraboloid of revolution shaped resonator
Author :
Li Haitao ; Su Zhong ; Liu Hong ; Liu Ning ; Ma Xiaofei
Author_Institution :
Beijing Key Lab. of High Dynamic Navig. Technol., Beijing Inf. Sci. & Technol. Univ., Beijing, China
fYear :
2014
fDate :
28-30 July 2014
Firstpage :
589
Lastpage :
592
Abstract :
Paraboloid of revolution shaped resonator(abbreviated as PRSR) as a new solid-state wave gyroscope resonator, is the core component of Bell-shaped vibratory angular rate gyro(abbreviated as BVG) which sensitizes angular movement through the Coriolis effect of standing wave in resonance state of axisymmetric shell. Structural characteristics of the resonator make itself have the feature of withstand high overload and high impact, which make it has broad application prospects in high dynamic low-precision angular rate measurement occasions. It is well known that when structural irregularities are present, destroying the symmetry of the structure and will lead to frequency split between drive mode and sense mode. This work puts forward a method of precise balance to reduce the frequency split to an acceptable level for drive and sensing modes by removing the resonator edge mass. Finite element simulation analysis and experimental tests proved that this method can effectively inhibit the natural frequency split of resonator, make the natural frequency split reduced to 0.2Hz or less.
Keywords :
Coriolis force; finite element analysis; gyroscopes; resonators; Coriolis effect; angular movement; bell-shaped vibratory angular rate gyro; finite element simulation analysis; natural frequency split; paraboloid of revolution shaped resonator; solid-state wave gyroscope resonator; Finite element analysis; Gyroscopes; Materials; Mathematical model; Optical resonators; Resonant frequency; Vibrations; BVG; Frequency split; Paraboloid of revolution shaped resonator;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2014 33rd Chinese
Conference_Location :
Nanjing
Type :
conf
DOI :
10.1109/ChiCC.2014.6896690
Filename :
6896690
Link To Document :
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