Improved accuracy metallic resonator CVG

Metallic resonator Q-factor is very sensitive to the resonator's material, its thermal and chemical treatment, design, and environment; i.e., pressure and temperature. In order to obtain higher accuracy for CVG it is necessary to use resonator evacuation. Resonator mass plays a very important r...

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Veröffentlicht in:IEEE aerospace and electronic systems magazine 2009-05, Vol.24 (5), p.40-43
Hauptverfasser: Chikovani, V V, Yatsenko, Yu A, Barabashov, A S, Marusyk, P I, Umakhanov, E O, Taturin, V N
Format: Magazinearticle
Sprache:eng
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Zusammenfassung:Metallic resonator Q-factor is very sensitive to the resonator's material, its thermal and chemical treatment, design, and environment; i.e., pressure and temperature. In order to obtain higher accuracy for CVG it is necessary to use resonator evacuation. Resonator mass plays a very important role in sensitivity to angle rate, in stability of vibration, in response to environmental condition changes, and also to external vibration and shock resistance. Innalabs Holding Inc. uses a cylindrical resonator with increased rim thickness of up to 2 mmn and more. This concerns resonator material and design parameters selection, material thermal treatment to increase resonator Q-factor, and improved control algorithms in order to increase metallic CVG accuracy. As a result, CVG bias instability of 0.025 degth and random walk of 0.008 degvh for the resonator diameter 43 mmn, and 0.2 deg/h for the resonator diameter 25 mm were obtained. Future opportunities for Innalabs CVG is also discussed herein. Test results are presented for CVG43 and CVG25. Three-axis CVG unit under control of one DSP "Share" and IMU parameters are forecasted.
ISSN:0885-8985
1557-959X
DOI:10.1109/MAES.2009.5109952