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Hybridized attitude determination techniques to improve ballistic projectile navigation, guidance and control

机译:混合姿态确定技术可改善弹道导弹的导航,制导和控制

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Ballistic projectiles accuracy depends on measurement systems for position and attitude determination. Precise rotation determination is an expensive task in aircraft, as it is usually determined by strap-down sensors such as fiber optic gyros or MEMS. Particularly in ballistic projectiles, these gyro determination devices increase their price as they need to bear enormous accelerations during the initial stages but not during the ballistic flight. A new approach to improve ballistic projectile navigation, guidance and control, which integrates hybrid attitude determination methods and gravity vector estimation method, is presented in this paper. Measurements of accelerometers, GNSS-sensors and Semi-Active photo-detectors are hybridized to get such a result. The attitude determination method, avoiding the use of gyroscopes, measures pairs of vectors, i.e., gravity, velocity and line of sight vectors, in a pair of reference systems, i.e., body fixed and north-east-down reference frames. Gravity vector estimation is based on flight mechanics and aerodynamics of a ballistic projectile, which involves a deeply nonlinear behavior, but it may be extrapolated to any aircraft, and later employed in an attitude determination algorithm. Modified proportional navigation techniques and previously developed control methods are employed during flight. The presented approach is tested on a realistic nonlinear model flight simulations to prove accuracy of proposed algorithms. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:弹道导弹的精度取决于确定位置和姿态的测量系统。精确的旋转确定在飞机上是一项昂贵的工作,因为通常是由诸如陀螺仪或MEMS之类的捷联传感器确定的。这些陀螺仪确定设备特别是在弹道导弹中增加了价格,因为它们需要在初始阶段承受巨大的加速度,而在弹道飞行期间则不需要。提出了一种将混合姿态确定方法和重力矢量估计方法相结合的改进弹道导弹导航,制导和控制的新方法。加速度计,GNSS传感器和半主动光电探测器的测量结果混合在一起即可得到这样的结果。避免使用陀螺仪的姿态确定方法在一对参考系统(即身体固定参考系和东北-朝下参考系)中测量矢量对,即重力,速度和视线矢量。重力矢量估计是基于弹道导弹的飞行力学和空气动力学,它涉及深层的非线性行为,但可以推断为任何飞机,随后用于姿态确定算法中。在飞行过程中采用了改进的比例导航技术和先前开发的控制方法。在现实的非线性模型飞行仿真中对提出的方法进行了测试,以证明所提出算法的准确性。 (C)2018 Elsevier Masson SAS。版权所有。

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