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Architecture of an Extensible Visual Programming Environment for Authoring Behaviour of Personal Service Robots

机译:用于个人服务机器人的创作行为的可扩展视觉编程环境的体系结构

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Programming tasks on personal service robots in multi-disciplinary teams is challenging. The goal of this research is to enable roboticists and non-programmer domain experts to co-develop robot service scenarios in real world environments using a visual programming environment called RoboStudio. The first key contribution of this paper is presenting the implementation architecture of RoboStudio. This is important as it serves as a case study for smaller teams with limited resources to expedite the process of building visual programming environments without the deep knowledge of frameworks and meta-modelling tools required for building complex visual environments. The second key contribution presents the model and design of components for parsing, generating, validating and visualising the RBDL. The third contribution elicits how we evaluated RoboStudio's design and functionality through code-generation of scripts for several service applications deployed in the real world on the University of Auckland's Healthbot. We also show RoboStudio's extensibility by building other visual languages on this platform.
机译:在多学科团队中的个人服务机器人上编程任务是具有挑战性的。本研究的目标是使机器人和非程序员域专家能够使用名为RoboStudio的视觉编程环境在现实世界环境中共同开发机器人服务场景。本文的第一个关键贡献呈现了robostudio的实施架构。这是重要的,因为它是针对资源有限的较小团队的案例研究,以加快建立视觉编程环境的过程,而无需建立复杂的视觉环境所需的框架和元建模工具的深刻知识。第二个关键贡献介绍了用于解析,生成,验证和可视化RBDL的组件的模型和设计。第三款贡献引发了我们如何通过代码生成何种服务应用程序在奥克兰大学的健康方上部署的几个服务应用程序进行脚掌的设计和功能。我们还通过在此平台上建立其他可视语言来显示RoboStudio的可扩展性。

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