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FDIR Approach of a Modular Satellite Platform Architecture

机译:模块化卫星平台架构的FDIR方法

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In recent years, constellations of small satellites have been proposed for a wide variety of applications. Given the number of satellites in such constellations, there is a growing need for autonomy of the single satellite to reduce the required ground operations. Here, fault detection, isolation and recovery (FDIR) mechanisms are crucial to ensure maximum operation time with minimal interference from ground. Technische Universitat Berlin developed TUBiX20, a modular nanosatellite platform to support future missions of the university. The TUBiX20 platform implements a hierarchical FDIR concept corresponding with the breakdown of its architecture into four levels: components, devicesodes, subsystem, and system. Furthermore, the distinction between service layer and user layer enables extensive reuse and results in a clear code structure. The classification of faults regarding the FDIR level is based on which level recovery is performed, not where the fault occurs. This paper gives an overview of the TUBiX20 FDIR implementation on all levels. After introducing relevant aspects of the TUBiX20 platform architecture, the hierarchical FDIR concept is described. Here, the attitude control system as well as the electrical power system are used as examples to illustrate the subsystem level FDIR implementation. The paper concludes with a description of a test framework, which supports the entire development cycle, from testing single PCBs to on-orbit system diagnosis within the FDIR system.
机译:近年来,已经提出了用于各种应用的小型卫星星座。考虑到这种星座中的卫星数量,对单颗卫星自治以减少所需地面操作的需求日益增长。在这里,故障检测,隔离和恢复(FDIR)机制对于确保最长的运行时间和最小的地面干扰至关重要。柏林工业大学开发了TUBiX20,这是一个模块化的纳米卫星平台,用于支持该大学的未来任务。 TUBiX20平台实现了分层的FDIR概念,将其体系结构分解为四个级别:组件,设备/节点,子系统和系统。此外,服务层和用户层之间的区别允许广泛的重用,并导致清晰的代码结构。有关FDIR级别的故障分类基于执行哪个级别的恢复,而不是故障发生的位置。本文概述了TUBiX20 FDIR在所有级别上的实现。在介绍了TUBiX20平台体系结构的相关方面之后,将描述分层FDIR概念。在此,以姿态控制系统以及电力系统为例来说明子系统级FDIR的实现。本文以对测试框架的描述作为结束,该框架支持整个开发周期,从测试单个PCB到FDIR系统中的在轨系统诊断。

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