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A Dynamic Precision Evaluation Method for the Star Sensor in the Stellar-Inertial Navigation System

机译:恒星惯性导航系统中恒星传感器的动态精度评估方法

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摘要

Integrating the advantages of INS (inertial navigation system) and the star sensor, the stellar-inertial navigation system has been used for a wide variety of applications. The star sensor is a high-precision attitude measurement instrument; therefore, determining how to validate its accuracy is critical in guaranteeing its practical precision. The dynamic precision evaluation of the star sensor is more difficult than a static precision evaluation because of dynamic reference values and other impacts. This paper proposes a dynamic precision verification method of star sensor with the aid of inertial navigation device to realize real-time attitude accuracy measurement. Based on the gold-standard reference generated by the star simulator, the altitude and azimuth angle errors of the star sensor are calculated for evaluation criteria. With the goal of diminishing the impacts of factors such as the sensors’ drift and devices, the innovative aspect of this method is to employ static accuracy for comparison. If the dynamic results are as good as the static results, which have accuracy comparable to the single star sensor’s precision, the practical precision of the star sensor is sufficiently high to meet the requirements of the system specification. The experiments demonstrate the feasibility and effectiveness of the proposed method.
机译:结合了惯性导航系统(INS)和恒星传感器的优势,恒星惯性导航系统已被广泛用于各种应用中。星形传感器是一种高精度的姿态测量仪器;因此,确定如何验证其准确性对于保证其实际精度至关重要。由于动态参考值和其他影响,星形传感器的动态精度评估比静态精度评估更加困难。提出一种借助惯性导航装置的恒星传感器动态精度验证方法,以实现实时姿态精度测量。根据恒星模拟器生成的黄金标准参考,计算恒星传感器的高度和方位角误差作为评估标准。为了减少传感器漂移和设备等因素的影响,该方法的创新之处在于采用静态精度进行比较。如果动态结果与静态结果一样好,并且其精度可与单个星型传感器的精度相媲美,那么星型传感器的实际精度就足够高,可以满足系统规格的要求。实验证明了该方法的可行性和有效性。

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