Interaction design patterns for coherent and re-usable shape specifications of human-robot collaboration

T. Mioch, W. Ledegang, R. Paulissen, Mark Antonius Neerincx, J. Diggelen
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引用次数: 12

Abstract

Sharing and re-using design knowledge is a challenge for the diverse multi-disciplinary research and development teams that work on complex and highly automated systems. For this purpose, a situated Cognitive Engineering (sCE) methodology was proposed that specifies and assesses the functional user requirements with their design rationale in a coherent and concise way. This paper presents this approach for the development of human-robot collaboration, focusing on a recently added component: the application of interaction design patterns to capture and share design knowledge on the shape of the human-robot interaction (i.e., the communication level). The sCE case study in the urban search and rescue domain provided the specification and assessment of functions and shape of a team-awareness display. Twenty fire fighters participated as operator of a ground or aerial robot, in several realistic earth quake scenarios to assess the functions and shapes of this display in different settings. It showed that the functions (i.e., the task level requirements and rationale) were valid, while the shape (communication level) was (yet) sub-optimal. Based on this evaluation result, a design improvement on the communication level has been proposed without the need to adjust the task-level design solution.
人机协作的一致和可重用形状规范的交互设计模式
对于从事复杂和高度自动化系统的各种多学科研究和开发团队来说,共享和重用设计知识是一项挑战。为此,提出了一种情境认知工程(sCE)方法,以连贯和简洁的方式指定和评估功能用户需求及其设计原理。本文介绍了这种开发人机协作的方法,重点关注最近增加的组件:交互设计模式的应用,以获取和共享人机交互形状(即通信级别)的设计知识。城市搜索和救援领域的sCE案例研究提供了团队意识展示功能和形状的规范和评估。20名消防员作为地面或空中机器人的操作员参与了几个真实的地震场景,以评估不同设置下该显示器的功能和形状。它表明功能(即,任务级需求和基本原理)是有效的,而形状(通信级)(尚未)是次优的。在此评估结果的基础上,在不调整任务级设计方案的情况下,提出了通信级设计改进方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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