2020
DOI: 10.3390/app10041368
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Engineering Challenges Ahead for Robot Teamwork in Dynamic Environments

Abstract: The increasing number of robots around us creates a demand for connecting these robots in order to achieve goal-driven teamwork in heterogeneous multi-robot systems. In this paper, we focus on robot teamwork specifically in dynamic environments. While the conceptual modeling of multi-agent teamwork was studied extensively during the last two decades and commercial multi-agent applications were built based on the theoretical foundations, the steadily increasing use of autonomous robots in many application domai… Show more

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Cited by 18 publications
(11 citation statements)
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“…As for the multi-robot systems, there are several open problems linked to middleware support for robot collaboration that requires more investigation [67]. A really adaptable middleware tool stash would be required that empowers the creator of a cooperation application to arrange the middleware by selecting the particular set of components that matches best the application prerequisites.…”
Section: Open Problem In Autonomous Mobile Robot Systemsmentioning
confidence: 99%
“…As for the multi-robot systems, there are several open problems linked to middleware support for robot collaboration that requires more investigation [67]. A really adaptable middleware tool stash would be required that empowers the creator of a cooperation application to arrange the middleware by selecting the particular set of components that matches best the application prerequisites.…”
Section: Open Problem In Autonomous Mobile Robot Systemsmentioning
confidence: 99%
“…Robot cooperation often helps deal with these issues through sharing information and coordinating actions. Kurt Geihs [1] reviews the state-of-the-art on teamwork in the context of multi-robot systems and dynamic environments. His paper identifies and analyzes multiple engineering challenges: dynamic coalitions, platform harmonization and configuration, knowledge base, methodology and tools, edge and cloud integration, and human in the loop and other sociotechnical concerns, among other concepts.…”
Section: Challengesmentioning
confidence: 99%
“…With the expansion of space exploration missions, the accuracy and efficiency requirements of the assembly task are increasing to improve the functionality and performance of the spacecraft, so the current method is obviously unable to satisfy these requirements [3]. In recent years, it has become an inevitable trend to utilize robots instead of skilled workers to complete precise and complex operations in industrial automation [4,5]. Robotic assembly systems are now widely used in 3C [7,8], automotive [9,10], and aircraft [11,12] assembly lines due to their dexterity, stability, high efficiency and high accuracy [6].…”
Section: Introductionmentioning
confidence: 99%