首页> 外文期刊>Journal of Mechanics >THE CONSTELLATION DESIGN OF WEATHER OBSERVATION MISSION FOR GRAVITY-GRADIENT STABILIZED MICROSATELLITES
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THE CONSTELLATION DESIGN OF WEATHER OBSERVATION MISSION FOR GRAVITY-GRADIENT STABILIZED MICROSATELLITES

机译:重力梯度稳定微卫星的天气观测任务星座设计

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This paper focuses on the design of a weather observation constellation consisting of gravity-gradient stabilized satellites for acquiring weather images of Taiwan on an hourly basis. The CCD imaging system is made up of the imaging module, the image-processing module and the sequencing operation controller. The CCD imaging logic is designed to determine the optimal imaging opportunity according to the orbital data. In order to compare with the existing polar systems and the TUUSAT-1 mission, the Walker Constellation method is also employed to calculate the minimum number of satellites required in a constellation. The calculation results show that the 8/8/5 Walker Constellation can satisfactorily meet the coverage requirements. Compared with the design of constellations which are constituted of the existing polar weather satellites and the passive magnetic stabilized satellites respectively, the present constellation design employs a smaller number of satellites to meet the same coverage requirements.
机译:本文着重设计由重力梯度稳定卫星组成的气象观测星座图,以每小时获取一次台湾气象图像。 CCD成像系统由成像模块,图像处理模块和定序操作控制器组成。 CCD成像逻辑旨在根据轨道数据确定最佳成像机会。为了与现有的极地系统和TUUSAT-1任务进行比较,还采用了Walker Constellation方法来计算星座图中所需的最小卫星数。计算结果表明,8/8/5 Walker星座可以令人满意地满足覆盖要求。与分别由现有的极地气象卫星和无源磁稳定卫星组成的星座设计相比,本星座设计采用较少数量的卫星来满足相同的覆盖范围要求。

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