A Research Roadmap for Off-Site Construction: Automation and Robotics

Jeremy Bowmaster, J. Rankin
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引用次数: 9

Abstract

The development of a research roadmap was undertaken to further the activities of a joint industry-university-government initiative in off-site construction research in Canada. The roadmap identifies the general research areas of structural design, construction materials, building science, advanced manufacturing, logistics and transportation, automation and robotics, and digitized construction. The development of the roadmap included a broad literature review of peer reviewed academic journals, select conference proceedings, and industry publications. The review of recent research in these areas was analyzed from the perspectives of application area, technology area and innovation phase. The purpose of the analysis was to identify the current activities and opportunities for further research. For example, in the area of automation and robotics, the results showed the majority of construction automation research relates to the actual production phase, as opposed to planning or operations. In terms of innovation maturity, little research is being undertaken with respect to the implementation and adoption of automation technologies, and very little research in technology development or prototyping. In addition, applied research is being conducted at approximately half the rate of basic research. A more recent trend has been greater research interest in industrial production technologies, particularly in additive manufacturing. Very little research is being conducted with respect to non-robotic cyber-physical systems including, IoT connectivity, drone technologies, or construction focused actuator and manipulator technologies. This paper will discuss the broader results of the research roadmap with a focus on automation and robotics.
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非现场施工的研究路线图:自动化和机器人技术
制定了研究路线图,以进一步推动加拿大工业-大学-政府联合倡议的非现场建筑研究活动。该路线图确定了结构设计、建筑材料、建筑科学、先进制造、物流和运输、自动化和机器人以及数字化建筑的总体研究领域。路线图的制定包括对同行评议的学术期刊、精选会议记录和行业出版物进行广泛的文献综述。从应用领域、技术领域和创新阶段三个方面对这些领域的研究进展进行了综述。分析的目的是确定目前的活动和进一步研究的机会。例如,在自动化和机器人领域,结果表明,大多数建筑自动化研究涉及实际生产阶段,而不是计划或操作。在创新成熟度方面,关于自动化技术的实现和采用的研究很少,在技术开发或原型方面的研究也很少。此外,应用研究的进行速度大约是基础研究的一半。最近的一个趋势是对工业生产技术,特别是增材制造的研究兴趣越来越大。关于非机器人网络物理系统的研究很少,包括物联网连接、无人机技术或以施工为重点的执行器和操纵器技术。本文将讨论研究路线图的更广泛的结果,重点是自动化和机器人。
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