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首页> 外文期刊>Acta astronautica >Discussions on attitude determination and control system for microano/pico-satellites considering survivability based on Hodoyoshi-3 and 4 experiences
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Discussions on attitude determination and control system for microano/pico-satellites considering survivability based on Hodoyoshi-3 and 4 experiences

机译:基于Hodoyoshi-3和4种经验的考虑生存性的微型/纳米/微型卫星姿态确定与控制系统的探讨。

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摘要

The recent advancement of microano/pico-satellites technologies encourages many universities to develop three axis stabilized satellites. As three axis stabilization is high level technology requiring the proper functioning of various sensors, actuators and control software, many early satellites failed in their initial operation phase because of shortage of solar power generation or inability to realize the initial step of missions because of unexpected attitude control system performance. These results come from failure to design the satellite attitude determination and control system (ADCS) appropriately and not considering "satellite survivability." ADCS should be designed such that even if some sensors or actuators cannot work as expected, the satellite can survive and carry out some of its missions, even if not full. This paper discusses how to realize ADCS while taking satellite survivability into account, based on our experiences of design and in-orbit operations of Hodoyoshi-3 and 4 satellites launched in 2014, which suffered from various component anomalies but could complete their missions.
机译:微型/纳米/微卫星技术的最新发展鼓励许多大学开发三轴稳定卫星。由于三轴稳定是一项高级技术,需要各种传感器,执行器和控制软件的正常运行,因此许多早期卫星在初始运行阶段因太阳能发电不足或由于姿态异常而无法执行任务的初始步骤而失败。控制系统性能。这些结果是由于未能正确设计卫星姿态确定和控制系统(ADCS)而没有考虑“卫星生存能力”。 ADCS的设计应确保即使某些传感器或执行器无法按预期工作,卫星也可以幸免于难并执行其某些任务,即使未满载也是如此。本文基于我们在2014年发射的Hodoyoshi-3和4颗卫星的设计和在轨操作经验,讨论了如何在实现卫星生存能力的同时实现ADCS,这些卫星遭受了各种组件异常,但可以完成其任务。

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