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Aspects of pure and satellite-aided inertial navigation for gun-launched munitions

机译:炮弹弹药的纯卫星辅助惯性导航

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Pure inertial navigation and satellite-aided inertial navigation have become standards in many military applications. This standard or sensors, receivers, algorithms and their implementation can be used for a wide range of systems such as ships, airplanes and missiles. However, gun-launched munitions have special requirements due to the following restrictions: initialization and transfer alignment is impossible before launch; launch shock changes sensors which results in significant unknown errors; roll rates can exceed the range of gyros. The resulting system requirements can be met by special sensor concepts such as additional magnetometer sensors and special navigation algorithms. This paper presents an alternative sensor concept and navigation algorithm for gun-launched munitions. Navigation systems of gun-launched shells have to comprise g-hardened sensors and need to be initialized some time after launch. Using special algorithms based on Kalman Filters a sufficient and fast attitude initialization is possible. Additional stabilization of attitude can be achieved by incorporating magnetometer sensors in the navigation solution. The sensor concepts and algorithms are explained and results achieved in simulation, Hardware in the Loop and flight tests are presented.
机译:纯惯性导航和卫星辅助惯性导航已成为许多军事应用的标准。该标准或传感器,接收器,算法及其实现可用于多种系统,例如船舶,飞机和导弹。但是,由于以下限制,枪支弹药有特殊要求:在发射前不可能进行初始化和对准。发射震动变化传感器,导致重大的未知错误;滚动速度可能超出陀螺仪的范围。由此产生的系统要求可以通过特殊的传感器概念来满足,例如附加的磁力计传感器和特殊的导航算法。本文提出了枪支弹药的替代传感器概念和导航算法。炮弹发射的导航系统必须包含经过g硬化处理的传感器,并且需要在发射后的一段时间内进行初始化。使用基于卡尔曼滤波器的特殊算法,可以进行足够快速的姿态初始化。通过将磁力计传感器集成到导航解决方案中,可以进一步提高姿态稳定性。解释了传感器的概念和算法,并在仿真,回路中的硬件和飞行测试中给出了结果。

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