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Comparison of INS based Angular Rate Matching Methods for Measuring Dynamic Deformation

机译:基于INS的角速率匹配测量动态变形方法的比较。

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Modern day large sized ships,both for commercial or military use,have flexible structures and require establishing a unified attitude standard on entire ship. The shipboard angular alignment errors between two locations would comprise of static errors and dynamic errors.Whereas different vessels would have different dynamic deformation in response to the motion on the waves,but it can be effectively represented by second order Markov process.By use ofinertial measurement matching of inertial navigation systems,comparing estimates of angular rate,relative orientation of the two locations can be deduced. Two different methods for estimation of ship deformation;one the iterative algorithm and second using linear optimal Kalman Filter,both based on the angular rate matching are compared on the basis of results under same simulation conditions.Some conclusions are drawn for the possible use of the methods in different situations.
机译:用于商业或军事用途的现代大型船舶具有灵活的结构并且要求在整艘船上建立统一的姿态标准。舰船在两个位置之间的角度对准误差将包括静态误差和动态误差,而不同的船只将根据波浪的运动而具有不同的动态变形,但可以通过二阶马尔可夫过程有效地表示出来。推导惯性导航系统,比较角速度的估计值,可以推导出两个位置的相对方位。在相同模拟条件下,基于结果,比较了两种基于角速率匹配的估计船舶变形的方法:一种是迭代算法,另一种是使用线性最优卡尔曼滤波器。第二种方法得出了一些可能的结论。在不同情况下的方法。

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