机器人软件设计竞赛中嵌入式软件的质量评价

H. Washizaki, Kobayashi Yasuhide, Watanabe Hiroyuki, Eiji Nakajima, Y. Hagiwara, Kenji Hiranabe, Kazuya Fukuda
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引用次数: 4

摘要

2005年在东京举行了一场名为“嵌入式技术(ET)软件设计机器人大赛”的机器人设计比赛,该比赛涉及设计自动控制直线机器人的软件。该竞赛旨在为嵌入式软件开发领域的年轻日本开发人员提供一个实际的教育机会。本文从软件质量评价的角度给出了比赛的结果。我们创建了一个评估软件质量的框架,它集成了设计模型质量和最终系统性能,并且我们使用这个框架进行了分析。分析结果表明,设计模型的结构复杂性的定量测量与大赛评委对设计的定性评价有很强的关系。另一方面,评委评价的设计模型质量与最终系统性能之间没有很强的相关性。对于嵌入式软件开发,根据设计和分析模型,在早期阶段评估和验证可靠性和性能是特别重要的。根据结果,我们考虑提交的模型、使用的评估方法和竞赛规范方面可能的补救措施。为了充分衡量模型的几个质量特征,包括性能,有必要改进开发机器人软件的方法(例如,通过应用模型驱动的开发),并重新检查模型
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Quality evaluation of embedded software in robot software design contest
A robot design contest, called the “Embedded Technology (ET) Software Design Robot Contest,” which involves designing software to automatically control a line-trace robot, was held in Tokyo, in 2005. The contest was intended to provide a practical opportunity to educate young Japanese developers in the field of embedded software development. In this paper, we give the results of the contest from the viewpoint of software quality evaluation. We created a framework for evaluating software quality, which integrated the design model quality and the final system performance, and we conducted an analysis using this framework. As a result of the analysis, the quantitative measurement of the structural complexity of the design model was found to have a strong relationship to the qualitative evaluation of the design by the contest judges. On the other hand, no strong correlation between the design model quality evaluated by the judges and the final system performance was found. For embedded software development, it is particularly important to estimate and verify reliability and performance in the early stages, according to the design and analysis models. Based on the results, we consider possible remedies with respect to the models submitted, the evaluation methods used, and the contest specifications. To adequately measure several quality characteristics, including performance, in terms of a model, it is necessary to improve the approach to developing robot software (for example, by applying model-driven development) and to reexamine the
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