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Verification of the C++-Operating System RODOS in Context of a Small-Satellite

机译:在小卫星环境中验证C ++操作系统RODOS

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Within the small satellite mission TechnoSat of Technische Universitaet Berlin, a verification strategy based on Dynamic Analysis has been applied to the C++-operating system RODOS using automated massive stimulation of the softwareunder- test. This approach is aiming at evaluating the robustness of the software and to derive feedback on the implemented messaging scheme of the on-board process chain. For fault detection and recording of message exchange the code is automatically instrumented with application-independent indicators which shall flag anomalies. Manual fault analysis is limited to the reported issues highlighting fault potential in contrast to usual reviews on the full code. The suggested reviews were extended to similar code, an approach which turned out as being effective. For the verification of the messaging scheme observed functional and performance properties were evaluated. The verification strategy targets the reduction of costs of verification and risks. Within this paper, the different verification steps are described and examples for reported issues are given.
机译:在柏林工业大学的小型卫星任务TechnoSat中,基于动态分析的验证策略已通过被测软件的自动大规模刺激应用于C ++操作系统RODOS。该方法旨在评估软件的健壮性,并获得有关车载过程链已实施消息传递方案的反馈。为了进行故障检测和消息交换记录,代码会自动安装与应用程序无关的指示器,这些指示器应标记异常。手动故障分析仅限于所报告的问题,与通常的完整代码审查不同,该问题突出了潜在的故障。建议的审查被扩展到类似的代码,这种方法被证明是有效的。为了验证消息传递方案,评估了功能和性能属性。验证策略旨在降低验证成本和风险。在本文中,描述了不同的验证步骤,并给出了报告问题的示例。

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