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Force to Rebalance Control of HRG and Suppression of Its Errors on the Basis of FPGA

机译:基于FPGA的HRG力再平衡控制及其误差抑制

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摘要

A novel design of force to rebalance control for a hemispherical resonator gyro (HRG) based on FPGA is demonstrated in this paper. The proposed design takes advantage of the automatic gain control loop and phase lock loop configuration in the drive mode while making full use of the quadrature control loop and rebalance control loop in controlling the oscillating dynamics in the sense mode. First, the math model of HRG with inhomogeneous damping and frequency split is theoretically analyzed. In addition, the major drift mechanisms in the HRG are described and the methods that can suppress the gyro drift are mentioned. Based on the math model and drift mechanisms suppression method, four control loops are employed to realize the manipulation of the HRG by using a FPGA circuit. The reference-phase loop and amplitude control loop are used to maintain the vibration of primary mode at its natural frequency with constant amplitude. The frequency split is readily eliminated by the quadrature loop with a DC voltage feedback from the quadrature component of the node. The secondary mode response to the angle rate input is nullified by the rebalance control loop. In order to validate the effect of the digital control of HRG, experiments are carried out with a turntable. The experimental results show that the design is suitable for the control of HRG which has good linearity scale factor and bias stability.
机译:本文介绍了一种基于FPGA的力半球陀螺仪(HRG)力平衡控制的新颖设计。提出的设计利用了驱动模式下的自动增益控制环路和锁相环配置,同时在检测模式下充分利用了正交控制环路和再平衡控制环路来控制振荡动态。首先,从理论上分析了具有不均匀阻尼和频率分裂的HRG的数学模型。此外,描述了HRG中的主要漂移机制,并提到了可以抑制陀螺仪漂移的方法。基于数学模型和漂移机制抑制方法,采用四个控制环,通过FPGA电路实现对HRG的操纵。参考相位环路和幅度控制环路用于将初级模式的振动保持在其固有频率且幅度恒定。正交回路利用来自节点正交分量的直流电压反馈,可以轻松消除频率分裂。重新平衡控制回路使对角速度输入的次级模式响应无效。为了验证HRG数字控制的效果,使用转盘进行了实验。实验结果表明,该设计方案具有良好的线性比例因子和偏置稳定性,适用于HRG的控制。

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