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A systematic review of unmanned aerial vehicle application areas and technologies in the AEC domain

机译:对AEC领域的无人机应用领域和技术的系统评价

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The recent increase in the integration of unmanned aerial vehicles (UAVs) in civilian usage stems mainly from modern technological advancements and the devicesa€? abilities to accomplish civilian tasks in a quick, safe, and cost-efficient manner. One sector that witnessed tremendous UAV impact is the Architecture, Engineering, and Construction (AEC) industry. Among several AEC applications, UAV technology is currently being implemented for building and bridge inspection, progress monitoring, and urban planning. The following review aims at thoroughly classifying all AEC-related UAV applications within the past decade, extending the understanding of the current state of UAV implementation in the AEC domain, and outlining relevant research trends in this setting. The review follows a systematic literature assessment methodology in which peer-reviewed bibliographical databases were queried, based on specific search keywords, for AEC-related UAV applications. This study also discusses the technological components (flying styles, types of platforms, onboard sensors) to assist in better developing, integrating, and understanding the technology implemented in the AEC industry. Our search query yielded 228 articles, of which 86 met our inclusion criteria and were therefore analyzed. Seven categories of structural and infrastructure inspection, transportation, cultural heritage conservation, city and urban planning, progress monitoring, post-disaster, and construction safety were identified and fully analyzed in this study. The study revealed that UAV integration in the AEC domain might exhibit equal, if not, higher outcomes compared to conventional methods as to time, accuracy, safety, and costs. In terms of technology, the control styles reported were mostly autonomous and manual. Rotary wing vehicles were the predominant type of platforms in the literature. Of the rotary wing type, quadcopters were most commonly employed. Readily available, or a€?off-the-shelfa€? video recording cameras and thermal cameras were most frequently mounted on UAVs, followed by LiDAR and laser scanning devices. Other sensors included Radio Frequency Identification and Ultrasonic Beacon System. The outcome of this study would benefit both AEC researchers and professionals to recognize the potentials of UAVs and understand the requirements and challenges for their successful integration.
机译:最近,无人机在民用中的集成增加主要是由于现代技术的进步和设备的发展。具有快速,安全和经济高效的方式完成民用任务的能力。建筑,工程和建设(AEC)行业是见证无人机巨大影响的一个行业。在一些AEC应用程序中,UAV技术目前正在实施中,用于建筑和桥梁检查,进度监控和城市规划。以下评论旨在对过去十年中所有与AEC相关的无人机应用进行彻底分类,扩展对AEC领域中无人机实施的现状的了解,并概述这种情况下的相关研究趋势。审查遵循系统的文献评估方法,在该方法中,针对特定的搜索关键字,针对AEC相关的无人机应用查询经过同行评审的书目数据库。本研究还讨论了技术组成部分(飞行样式,平台类型,机载传感器),以帮助更好地开发,集成和理解AEC行业中实施的技术。我们的搜索查询产生了228篇文章,其中86篇符合我们的纳入标准,因此进行了分析。本研究确定并全面分析了七类结构和基础设施检查,运输,文化遗产保护,城市和城市规划,进度监控,灾后和建筑安全。研究表明,与传统方法相比,在时间,准确性,安全性和成本方面,无人机在AEC领域的集成可能会显示出相同甚至更高的结果。在技​​术方面,报告的控制方式主要是自主和手动的。旋翼飞行器是文献中主要的平台类型。在旋翼式飞机中,最常使用四旋翼飞机。随时可用,还是现成的?录像机和热像仪最常安装在无人机上,其次是激光雷达和激光扫描设备。其他传感器包括射频识别和超声波信标系统。这项研究的结果将使AEC研究人员和专业人员都受益于认识到无人机的潜力,并了解其成功集成的要求和挑战。

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