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Estimation of air velocity for a high velocity spinning projectile using transverse accelerometers

机译:使用横向加速度计估算高速旋转弹丸的空气速度

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In this article, we propose a method to estimate the velocity of a projectile from strap-down transverse accelerometers. The ballistic projectile under consideration has a high velocity and a high spin rate. The transverse accelerometers measure the aerodynamics forces in a frame that is oscillating due to the pitching and yawing motion. We exploit the linearized pendulum-like equations of motion of the rotation dynamics to determine the frequencies contained in the spectrum of the measurements. Analytically, we show that three frequencies are present, the expressions of which explicitely contain the air velocity. Further, it is shown that, for the most part of the flight, only one frequency is truly visible. Extracting the value of this frequency from accelerometer signals can be performed over short time windows with a super resolution algorithm. Eventually the velocity can be estimated from an inversion of the analytic formula of the theoretical value of the frequency obtained from the aerodynamic model of the projectile. Realistic simulation results are presented, stressing the relevance of the approach, along with perspectives on the treatment of real in-flight data.
机译:在本文中,我们提出了一种从捷联式横向加速度计估算弹丸速度的方法。所考虑的弹道弹丸具有高速度和高自旋速率。横向加速度计测量由于俯仰和偏航运动而振动的框架中的空气动力。我们利用旋转动力学的线性类摆运动方程来确定测量频谱中包含的频率。从分析上看,我们表明存在三个频率,它们的表达式明确地包含了空气速度。此外,表明在飞行的大部分时间内,只有一个频率是真正可见的。可以使用超分辨率算法在较短的时间窗口内从加速度计信号中提取该频率的值。最终,可以根据从弹丸的空气动力学模型获得的频率理论值的解析公式的反演来估算速度。提出了逼真的仿真结果,强调了该方法的相关性,以及对实际飞行中数据处理的观点。

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