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Dynamic Stability of Beam-type Vibratory Angular Rate Sensors Subjected to Rate Fluctuations

机译:速率波动对梁式振动角速率传感器的动态稳定性

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Dynamic stability behavior of a beam-type vibratory structure, for applications in a class of vibratory angular rate sensors is investigated. A suitable mathematical model for a rotating beam perturbed by periodic velocity fluctuations is developed. The natural frequency variations due to the gyroscopic coupling present in the system are characterized. When the system is considered to be under an influence of periodic perturbations in the input angular speed, the dynamic stability is investigated. The method of averaging is employed for this purpose, and closed-form stability conditions are obtained. The analytical results are verified by direct numerical integration of the system equations.
机译:研究了用于一类振动角速率传感器的梁式振动结构的动态稳定性行为。针对周期性速度波动扰动的旋转梁,建立了合适的数学模型。表征了由于系统中存在的陀螺耦合而引起的固有频率变化。当系统被认为在输入角速度中受到周期性扰动的影响时,将研究动态稳定性。为此,采用平均方法,并获得了封闭形式的稳定性条件。通过对系统方程的直接数值积分来验证分析结果。

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