动态调谐陀螺仪速率系统再平衡回路优化设计

Huang Ye-xu, Shi Zhong-ke, L. Rong, Li Lei, L. Ya
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引用次数: 2

摘要

动态调谐陀螺仪速率系统的带宽直接影响系统的动态性能。采用二阶优化模型对陀螺仪的再平衡回路进行补偿,并利用主导极点确定二阶系统惯性元件的截止频率。在低频时附加零点抵消陀螺仪的极点,在高频时利用附加极点抵消陀螺仪的极点。通过对再平衡回路参数的优化和电路的重新设计,使带宽从35 Hz增加到80 Hz,最大测量范围从70°/s增加到170°/s,输出噪声从5 mV(RMS)降低到0.7 mV(RMS)。它不仅提高了带宽和测量范围,而且降低了输出噪声。仿真验证了系统的动态性能,实验测试了系统的动、静态性能。实验和仿真结果验证了设计的合理性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization Design of Rebalance Loop for Rate System of Dynamical Tuned Gyroscope
The bandwidth of rate system of dynamical tuned gyroscope affects the dynamic performance of system. Second-order optimization model is used to compensate the rebalance loop of gyroscope, and uses dominant pole to determine the cut-off frequency of second-order system inertial element. Additional zero cancels the pole of gyroscope in low frequency, and use additional pole to cancel the zero of gyroscope in high frequency. The optimization of parameters for rebalance loop and redesigned to circuits make the bandwidth increase to 80 Hz from 35 Hz, and the max measuring rang is enlarged from 70deg/s to 170deg/s, and the output noise is reduced to 0.7 mV(RMS) from 5 mV(RMS). It not only improves bandwidth and measuring range, but also reduces output noise. Simulating validates the dynamic performance of system, and experimentation tests the dynamic and static performance of system. The results of experimentation and simulation verify the rationality and validity of design.
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