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IRIDIUM-NEXT Star Tracker Thermal Design: lessons learned and learning curve in a small series production

机译:铱星 - 下一星形跟踪器热设计:在小型系列生产中经验教训和学习曲线

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IRIDIUM-NEXT is the second generation of a global satellite constellation, composed by 66 cross-linked LEO satellites covering the whole globe. The attitude determination for each satellite is assigned to one MHSTR (MultiHead Star Tracker) consisting of 3 Star Trackers (STR). The prime contractor is Thales Alenia Space and, in this context, Selex ES has the full responsibility of the Star Tracker procurement. The launch of the first satellite is expected in 2015. Given the thermal insulation requirements between the STRs and the S/C (with a conductance lower than 0.1 W/K), the STR design is strongly affected in both the thermal and the structural aspects. The thermal detailed design of the sensor has been focused on: - Characterization and development of the thermal paths in order to keep the sensor temperature lower than 15°C - Optimization of the coatings The thermal design has been numerically analyzed and verified through experimental tests to validate the model. The paper describes the development of both the thermal and geometrical detailed mathematical models, the execution of the thermal balance test (TBT) and the following correlation activity for the TMM. The prediction of the expected in-orbit performances are also reported. Reference is made to the optimization of the recurring testing activities, in light of the small series (250 units) production launched.
机译:Iridium-Next是第二代全球卫星星座,由覆盖整个地球仪的66个交联狮子座卫星组成。每个卫星的姿态确定被分配到由3星跟踪器(STR)组成的一个MHSTR(多头星跟踪器)。 Prime承包商是Alenia空间,并且在这方面,Selex es具有明星追踪者采购的全部责任。预计2015年推出第一个卫星。鉴于STRS和S / C之间的隔热要求(具有低于0.1W / k的电导),STR设计在热和结构方面都受到强烈影响。传感器的热详细设计已经集中在: - 要使传感器温度低于15°C的传感器温度 - 优化热设计,通过实验测试进行了数值分析和验证了涂层的传感器温度的表征和开发。验证模型。本文描述了热和几何详细数学模型的开发,执行热平衡测试(TBT)和TMM的以下相关活动。还报告了预期的轨道性能的预测。根据发射的小系列(250个单位)生产,参考定期测试活动的优化。

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