提高固态波陀螺仪精度的算法

K. A. Smirnov, E. A. Zarubailo
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引用次数: 0

摘要

介绍。波状固体陀螺仪是一种很有前途的惯性信息传感器,可用于航空航天导航系统。在过去的十年中,如何提高SWGs的精度一直是人们关注的问题。通过开发有效的算法,可以提高惯性导航仪器的测量精度,这一事实决定了本研究的相关性。在JSC指挥仪器研究所进行的研究工作旨在开发一种基于SWG的补偿型角速度传感器(AVS),该传感器带有圆柱形金属谐振器,用于振荡激励和信息读出的静电系统,带有数字反馈。基于测量通道和激励通道之间的连接,以及考虑未补偿组件,开发提高SWGs精度的方法。材料和方法。为了获取传感元件(SE)输出信号的信息,采用快速傅里叶变换(FFT)方法。采用PID控制器控制对敏感元件的影响。提出了通过补偿输出信号误差来提高基于swg的AVS精度的方法,并通过实验验证了其正确性。利用所开发的算法来降低零速度信号的不稳定性,使其启动时的均方根偏差降低了76.4%。应用所建立的方法,利用无补偿分量提高准确度,使标准偏差降低了69.52%。实验结果表明,利用不同的数学算法处理信息,可以显著提高SWG特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithms for Increasing the Accuracy of Solid-State Wave Gyroscopes
Introduction. Wave solid-state gyroscopes (SWG) are promising sensors of inertial information used in the navigation systems of air- and spacecrafts. Over the past decade, much attention has been paid to the problem of improving the accuracy of SWGs. The accuracy of measurements performed by inertial navigation instruments can be increased by developing effective algorithms, which fact determines the relevance of the present study. Research works conducted at the JSC Research Institute of Command Instruments are aimed at developing a compensationtype angular velocity sensor (AVS) based on an SWG with a cylindrical metal resonator, an electrostatic system for excitation of oscillations and information readout, with a digital feedback.Aim. To develop methods for increasing the accuracy of SWGs based on the connection between the measurement and excitation channels, as well as accounting for the uncompensated component.Materials and methods. To obtain information about the output signal of the sensing element (SE), the fast Fourier transform (FFT) method was used. A PID controller was used to control the effect on the sensitive element.Results. Methods for increasing the accuracy of an SWG-based AVS by means of compensating the output signal errors were proposed, whose correctness was confirmed experimentally. The use of the developed algorithm for reducing the instability of the zero-velocity signal allowed its root-mean-square deviation at startup to be decreased by 76.4 %. The application of the developed method for increasing the accuracy using the uncompensated component led to a decrease in the standard deviation by 69.52 %.Conclusion. The obtained experimental results demonstrate the possibility of improving SWG characteristics significantly by using various mathematical algorithms for processing information.
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