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Analysis and simulation on error propagation in inertial horizontal coordinate system of space tracking ship

机译:航天舰惯性水平坐标系误差传播的分析与仿真

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Data errors of shipborne radar in inertial horizontal coordinate system are influenced by several aspects, such as measuring errors of equipment, ship-swaying and hull deformation(collectively called ship attitude). In this paper, based on the process of tracking ship's data managing, error propagation model of ship attitude errors and equipment's measuring errors from telemetering coordinate system to inertial horizontal coordinate system is built up. Numerical simulation results indicate that ship's position errors can not be ignored, and the influence between distance measure and angle measure is not very strong. The relationship between azimuth error and elevation error are rather complicated, and the influence of elevation error on azimuth error is stronger than that of azimuth error on elevation error.
机译:惯性水平坐标系中舰载雷达的数据误差受设备测量误差,船舶摇晃和船体变形(统称船舶姿态)等几个方面的影响。本文在跟踪船舶数据管理过程中,建立了从遥测坐标系到惯性水平坐标系的船舶姿态误差和设备测量误差的误差传播模型。数值模拟结果表明,船舶位置误差不可忽视,距离测量和角度测量之间的影响不是很大。方位角误差与仰角误差之间的关系相当复杂,仰角误差对仰角误差的影响要强于方位角误差对仰角误差的影响。

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