Metrological assessment of a robotic total station for use in post-earthquake emergency conditions

IF 0.8 Q4 INSTRUMENTS & INSTRUMENTATION Journal of Sensors and Sensor Systems Pub Date : 2023-06-15 DOI:10.5194/jsss-12-187-2023
G. D'Emilia, E. Natale
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Abstract

Abstract. The paper provides synthetic indications regarding the measuring performances of procedures for using a robotic total station (RTS) in emergency situations, such as the survey of the structural conditions of buildings and the assessment of the safety level for rescue operations after the occurrence of an earthquake. Particular attention is paid to operative aspects that could impact on the performance of the system in this situation; specifically considered is the effect of the layout of the measurement setup and of the number of monitoring points, depending on the geometry of the site and of the considered buildings, because the criticality of emergency conditions imposes geometrical solutions which are far from having optimal solutions. The analysis is carried out with reference to two different buildings, which have different characteristics from the point of view of height and distance from the instrument, and that implies different geometrical constraints for the instrument during the acquisition of the monitoring points. The methodology allows the evaluation of the repeatability, reproducibility, and detection limit of a RTS, in field conditions, referring to a 1-year observation period, with reference to different quantities, like positions of the monitoring points and the inclination of walls and façades. In particular, the analysis of the geometrical characteristics of reduced configurations of the monitoring points has highlighted interesting aspects in view of defining a simplified procedure, which is also suitable for speeding up the acquisition of reliable data in emergency conditions.
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用于震后紧急情况的机器人全站仪的计量评估
摘要本文对机器人全站仪(RTS)在紧急情况下的测量性能进行了综合说明,如建筑物结构状况调查和地震发生后救援行动安全等级评估。在这种情况下,特别注意可能影响系统性能的操作方面;具体考虑的是测量装置的布局和监测点的数量的影响,这取决于场地和所考虑的建筑物的几何形状,因为紧急情况的严重性迫使几何解决方案远远不是最佳解决方案。分析参考了两座不同的建筑物,从高度和距离仪器的角度来看,这两座建筑物具有不同的特征,这意味着仪器在获取监测点时受到不同的几何约束。该方法允许在野外条件下评估RTS的可重复性、再现性和检测限,参考1年观察期,参考不同的数量,如监测点的位置和墙壁和斜坡的倾斜度。特别是,对监测点简化配置的几何特征的分析突出了确定简化程序的有趣方面,简化程序也适用于在紧急情况下加速获取可靠数据。
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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来源期刊
Journal of Sensors and Sensor Systems
Journal of Sensors and Sensor Systems INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.30
自引率
10.00%
发文量
26
审稿时长
23 weeks
期刊介绍: Journal of Sensors and Sensor Systems (JSSS) is an international open-access journal dedicated to science, application, and advancement of sensors and sensors as part of measurement systems. The emphasis is on sensor principles and phenomena, measuring systems, sensor technologies, and applications. The goal of JSSS is to provide a platform for scientists and professionals in academia – as well as for developers, engineers, and users – to discuss new developments and advancements in sensors and sensor systems.
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