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Study on the fast optimal direction determination for missile-borne star sensor

机译:导弹星型传感器快速最优方向确定的研究

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To ensure the accuracy and effectiveness of missile-borne star sensor for attitude determination, its optical axis direction must be adjusted in real time to avoid the stray light effectively and obtain star image with high-quality. In this paper, a fast optimal direction determination method that can be applied online in engineering is studied. Take the range of missile maneuver into consider, the proposed method solves the optimal direction of optical axis which can make star sensor obtain the best star image for star identification within the visible sky that avoids stray light. In the optical axis optimization model established, for a star sensor with given specification, the optimization indexes include the stars number and their mean magnitude of a star image obtained at a given direction, the control cost to reach the optimal direction from current status. The constraints include invisible sky, stray light etc. For such a complex nonlinear optimization problem without analytical solutions, the combination of enumeration method and table look-up method is employed to obtain solution rapidly for engineering applications. The stray light model is validated by comparing the simulation results with Satellite Tool Kit (STK). Simulation results show that the optimal direction determined by the proposed method can significantly improve the star image's quality and the optimization speed is fast enough to meet the requirement of online applications.
机译:为了保证导弹星传感器确定姿态的准确性和有效性,必须实时调整其光轴方向,以有效避免杂散光并获得高质量的星像。本文研究了一种可在线在线应用于工程中的快速最优方向确定方法。考虑到导弹的机动范围,提出的方法解决了光轴的最佳方向,可以使恒星传感器获得最佳恒星图像,以在可见天空中识别恒星,避免杂散光。在建立的光轴优化模型中,对于具有给定规格的恒星传感器,最优化指标包括在给定方向上获得的恒星图像的星数及其平均大小,以及从当前状态达到最佳方向的控制成本。约束条件包括看不见的天空,杂散光等。对于这种没有解析解的复杂非线性优化问题,采用枚举法和查表法相结合的方法可以快速获得工程应用的解。通过将仿真结果与Satellite Tool Kit(STK)进行比较,可以验证杂散光模型。仿真结果表明,该方法确定的最优方向可以显着提高星图质量,并且优化速度足够快,可以满足在线应用的需求。

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