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Integrating resilience engineering and UAS technology into construction safety planning and control

机译:将弹性工程和UAS技术整合到建筑安全计划和控制中

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Purpose The purpose of this paper is to present an exploratory study in order to understand the contributions of the resilience engineering (RE) concept and the use of unmanned aerial systems (UASs) technology to support the safety planning and control (SPC) process. Design/methodology/approach A case study on a construction project was conducted and involved the following steps: diagnosis of the SPC process; development of a safety monitoring protocol using UASs; and field tests to monitor safety performance using UASs and data analysis. Findings In terms of its theoretical contribution, this work presents a conceptual framework explaining how the RE and the UASs can contribute to the SPC process. Also, this paper provides, as a practical contribution, a protocol for safety monitoring with UASs integrated into the safety routine, highlighting the tasks that can be checked and unsafe conditions and safety/production conflicts identified through monitoring. Practical implications - This study can be used to support and stimulate the construction managers who wish to adopt the RE concepts and UAS technology to improve safety management. Social implications - An efficient SPC process can improve the work conditions at construction sites, contributing with the reduction of accidents rates. Originality/value The paper highlights the need to adopt new approaches, as RE concepts and UAS technology to support the SPC process, in order to improve safety conditions at construction sites.
机译:目的本文的目的是提出一项探索性研究,以了解弹性工程学(RE)概念的贡献以及使用无人机系统(UASs)技术支持安全计划和控制(SPC)过程。设计/方法/方法进行了一个建筑项目的案例研究,涉及以下步骤:SPC过程的诊断; SPC过程的诊断。使用UAS开发安全监控协议;现场测试,以使用UAS和数据分析监控安全绩效。研究结果就其理论贡献而言,这项工作提出了一个概念框架,解释了RE和UAS如何为SPC流程做出贡献。此外,本文还提供了作为实际贡献的,将UAS集成到安全例程中的安全监视协议,重点介绍了可以检查的任务以及通过监视识别不安全状况和安全/生产冲突。实际意义-该研究可用于支持和激发希望采用RE概念和UAS技术来改善安全管理的施工经理。社会影响-高效的SPC流程可以改善建筑工地的工作条件,有助于降低事故发生率。原创性/价值本文强调需要采用新方法,例如RE概念和UAS技术来支持SPC过程,以改善建筑工地的安全条件。

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