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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Correcting INS Drift in Terrain Surface Measurements
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Correcting INS Drift in Terrain Surface Measurements

机译:校正地形表面测量中的INS漂移

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摘要

Modern terrain measurement systems use an inertial navigation system (INS) to measure and remove vehicle movement from laser measurements of the terrain surface. Instrumental and environmental biases inherent in the INS produce noise and drift errors in these measurements. The evolution and implications of terrain surface measurement techniques and existing methods for correcting INS drift are reviewed as a framework for a new compensation method for INS drift in terrain surface measurements. Each measurement is considered a combination of the true surface and the error surface, defined on a Hilbert vector space, in which the error is decomposed into drift (global error) and noise (local error). The global and local subspaces are constructed such that the drift is modeled as a random walk process and the noise is a zero-mean process. This theoretical development is coupled with careful experimental design to identify the drift component of error and discriminate it from true terrain surface features, thereby correcting the INS drift. It is shown through an example that this new compensation method dramatically reduces the variation in the measured surfaces to within the resolution of the measurement system itself.
机译:现代地形测量系统使用惯性导航系统(INS)来测量和从地形表面的激光测量中删除车辆的运动。 INS固有的仪器和环境偏差会在这些测量中产生噪声和漂移误差。综述了地形表面测量技术和现有的INS漂移校正方法的发展和意义,将其作为地形表面测量中INS漂移新补偿方法的框架。每次测量均被视为在希尔伯特向量空间上定义的真实表面和误差表面的组合,其中误差被分解为漂移(整体误差)和噪声(局部误差)。构造全局子空间和局部子空间,以便将漂移建模为随机游走过程,而噪声为零均值过程。这种理论上的发展与精心的实验设计相结合,以识别误差的漂移成分并将其与真实的地形表面特征区分开,从而校正INS漂移。通过示例显示,这种新的补偿方法可以将测量表面的变化显着减小到测量系统本身的分辨率之内。

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