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Software architectures for robotic systems: A systematic mapping study

机译:机器人系统的软件体系结构:系统映射研究

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Context: Several research efforts have been targeted to support architecture centric development and evolution of software for robotic systems for the last two decades. Objective: We aimed to systematically identify and classify the existing solutions, research progress and directions that influence architecture-driven modeling, development and evolution of robotic software. Research Method: We have used Systematic Mapping Study (SMS) method for identifying and analyzing 56 peer-reviewed papers. Our review has (ⅰ) taxonomically classified the existing research and (ⅱ) systematically mapped the solutions, frameworks, notations and evaluation methods to highlight the role of software architecture in robotic systems. Results and Conclusions: We have identified eight themes that support architectural solutions to enable (ⅰ) operations, (ⅱ) evolution and (ⅲ) development specific activities of robotic software. The research in this area has progressed from object-oriented to component-based and now to service-driven robotics representing different architectural models that emerged overtime. An emerging solution is cloud robotics that exploits the foundations of service-driven architectures to support an interconnected web of robots. The results of this SMS facilitate knowledge transfer - benefiting researchers and practitioners - focused on exploiting software architecture to model, develop and evolve robotic systems.
机译:背景信息:在过去的二十年中,已经进行了一些研究工作,以支持以架构为中心的机器人系统软件的开发和演进。目标:我们旨在系统地识别和分类现有解决方案,研究进展和方向,这些解决方案会影响架构驱动的机器人软件的建模,开发和演进。研究方法:我们使用系统映射研究(SMS)方法来识别和分析56篇经同行评审的论文。我们的评论(ⅰ)对现有研究进行了分类,并(ⅱ)系统地绘制了解决方案,框架,符号和评估方法,以突出软件体系结构在机器人系统中的作用。结果与结论:我们确定了支持架构解决方案的八个主题,以实现机器人软件的(ⅰ)操作,(ⅱ)演化和(ⅲ)开发特定活动。该领域的研究已经从面向对象发展到基于组件,现在已经发展到服务驱动的机器人技术,这些机器人代表了随着时间的推移而出现的不同架构模型。云机器人技术是一种新兴的解决方案,它利用服务驱动架构的基础来支持相互连接的机器人网络。该SMS的结果促进了知识转移,使研究人员和从业人员受益,他们专注于利用软件体系结构来建模,开发和发展机器人系统。

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