家庭服务机器人的软件架构再造:一个案例研究

Moonzoo Kim, Jaejoon Lee, K. Kang, Youngjin Hong, S. Bang
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引用次数: 20

摘要

随着机器人技术、计算机科学和其他相关领域的发展,家庭服务机器人受到学术界和工业界的广泛关注。家庭服务机器人对社区提出了有趣的技术挑战,因为它们具有广泛的潜在应用,例如家庭安全,病人护理,清洁等,并且随着市场的形成,机器人在每个应用领域提供的服务正在被定义,因此,它们不断变化。如果没有架构方面的考虑来解决这些挑战,机器人制造商通常会专注于开发技术组件(例如,视觉识别器、语音处理器和执行器),然后试图通过集成这些组件来开发服务机器人。在为新应用程序开发原型时,或者在向现有机器人添加、修改或删除服务时,经常会出现意想不到的、不希望出现的、通常是危险的副作用,这些副作用被称为功能交互问题。这种机器人的重新设计会对交付时间和开发成本产生严重影响。在本文中,我们介绍了我们对三星先进技术研究所开发的家庭服务机器人原型进行再工程的经验。首先,我们设计了一个模块化和分层的软件体系结构,使组件之间的交互可见。通过交互的可见性,我们可以清楚地为每个组件分配功能职责。然后,我们使用反应性语言Esterel重新设计现有代码以符合新的体系结构。因此,我们可以检测和解决功能交互问题,并减轻添加或更新组件的困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Re-engineering software architecture of home service robots: a case study
With the advances of robotics, computer science, and other related areas, home service robots attract much attention from both academia and industry. Home service robots present interesting technical challenges to the community in that they have a wide range of potential applications, such as home security, patient caring, cleaning, etc., and that the services provided by the robots in each application area are being defined as markets are formed and, therefore, they change constantly. Without architectural considerations to address these challenges, robot manufacturers often focus on developing technical components (e.g., vision recognizer, speech processor, and actuator) and then attempt to develop service robots by integrating these components. When prototypes are developed for a new application, or when services are added, modified, or removed from existing robots, unexpected, undesirable, and often dangerous side-effects, which are known as feature interaction problem, happen frequently. Reengineering of such robots can make a serious impact in delivery time and development cost. In this paper, we present our experience of re-engineering a prototype of a home service robot developed by Samsung Advanced Institute of Technology. First, we designed a modular and hierarchical software architecture that makes interaction among the components visible. With the visibility of interactions, we could assign functional responsibilities to each component clearly. Then, we re-engineered existing codes to conform to the new architecture using a reactive language Esterel. As a result, we could detect and solve feature interaction problems and alleviate the difficulty of adding or updating components.
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