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Verification of FDIR Algorithm for SNUSAT-1 on 3-Axis Motion Simulator

机译:三轴运动模拟器对SNUSAT-1的FDIR算法的验证

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In this paper, a Fault Detection, Isolation, and Recovery (FDIR) algorithm for SNUSAT-1 is verified. SNUSAT-1 is a standard 2U CubeSat of Seoul National University which has been developed with two operational requirements since 2012. The first one is a QB50 science mission, and the second one is to validate the FDIR algorithm developed by Seoul National University in the actual space environment. During the verification sequence, however, unexpected errors on the embedded computer can occur, and it would have a serious effect on the whole missions. Therefore, it is essential to verify the algorithm logic itself and identify problems on the integrated system before the launch. For this reason, a simulator with a low-friction spherical air bearing is proposed to confirm the performance of FDIR algorithm. On the simulator, redundant IMUs and reaction wheels are arranged geometrically same with the configuration of the real satellite to apply the FDIR algorithm which consists of sensor FDIR and actuator FDIR. Our final goal is to validate the FDIR for each component before the launch of satellite and the sensor FDIR based on the Parity Space Approach(PSA) is successfully verified. However, the validation of actuator FDIR is end in failure due to some technical problem and the works to solve this problem is on-going. The main contribution of the research is that the implementation of FDIR algorithm for the CubeSat is technically verified on the real embedded system.
机译:本文验证了SNUSAT-1的故障检测,隔离和恢复(FDIR)算法。 SNUSAT-1是首尔国立大学的标准2U立方体卫星,自2012年以来已开发,具有两个运行要求。第一个是QB50科学任务,第二个是在实际中验证首尔国立大学开发的FDIR算法。空间环境。但是,在验证序列期间,嵌入式计算机上可能会发生意外错误,这将对整个任务产生严重影响。因此,必须在启动之前验证算法逻辑本身并识别集成系统上的问题。为此,提出了一种具有低摩擦球面空气轴承的仿真器,以确认FDIR算法的性能。在模拟器上,冗余IMU和反作用轮的几何形状与真实卫星的配置相同,以应用由传感器FDIR和执行器FDIR组成的FDIR算法。我们的最终目标是在卫星发射成功之前验证每个组件的FDIR,并成功验证基于奇偶性空间方法(PSA)的传感器FDIR。然而,由于一些技术问题,致动器FDIR的验证以失败而告终,解决该问题的工作正在进行中。这项研究的主要贡献在于,在真实的嵌入式系统上对FDIR算法在CubeSat上的实现进行了技术验证。

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