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A High-Spin Rate Measurement Method for Projectiles Using a Magnetoresistive Sensor Based on Time-Frequency Domain Analysis

机译:基于时频域分析的磁阻传感器弹丸高转速测量方法

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摘要

Traditional artillery guidance can significantly improve the attack accuracy and overall combat efficiency of projectiles, which makes it more adaptable to the information warfare of the future. Obviously, the accurate measurement of artillery spin rate, which has long been regarded as a daunting task, is the basis of precise guidance and control. Magnetoresistive (MR) sensors can be applied to spin rate measurement, especially in the high-spin and high-g projectile launch environment. In this paper, based on the theory of a MR sensor measuring spin rate, the mathematical relationship model between the frequency of MR sensor output and projectile spin rate was established through a fundamental derivation. By analyzing the characteristics of MR sensor output whose frequency varies with time, this paper proposed the Chirp z-Transform (CZT) time-frequency (TF) domain analysis method based on the rolling window of a Blackman window function (BCZT) which can accurately extract the projectile spin rate. To put it into practice, BCZT was applied to measure the spin rate of 155 mm artillery projectile. After extracting the spin rate, the impact that launch rotational angular velocity and aspect angle have on the extraction accuracy of the spin rate was analyzed. Simulation results show that the BCZT TF domain analysis method can effectively and accurately measure the projectile spin rate, especially in a high-spin and high-g projectile launch environment.
机译:传统的炮兵制导可以显着提高弹丸的攻击精度和总体作战效率,使其更适应未来的信息战。显然,长期以来一直被认为是艰巨的任务,对炮击自旋速率的精确测量是精确制导和控制的基础。磁阻(MR)传感器可用于自旋速率测量,特别是在高自旋和高g弹丸发射环境中。本文基于磁阻传感器测量自旋速率的理论,通过基本推导建立了磁阻传感器输出频率与弹丸自旋速率之间的数学关系模型。通过分析频率随时间变化的MR传感器输出特性,提出了一种基于Blackman窗函数(BCZT)滚动窗的Chirp z变换(CZT)时频(TF)域分析方法提取弹丸的自旋速率。为了付诸实践,BCZT被用于测量155毫米炮弹的旋转速度。提取旋转速率后,分析了发射旋转角速度和纵横角对旋转速率提取精度的影响。仿真结果表明,BCZT TF域分析方法可以有效,准确地测量弹丸的自旋速率,特别是在高自旋和高克弹丸发射环境中。

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