首页> 外文会议>IEEE Conference on Technologies for Sustainability >Data calibration of the actual versus the theoretical micro electro mechanical systems (MEMS) based accelerometer reading through remote monitoring of Padre Jacinto Zamora Flyover
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Data calibration of the actual versus the theoretical micro electro mechanical systems (MEMS) based accelerometer reading through remote monitoring of Padre Jacinto Zamora Flyover

机译:通过远程监控Padre Jacinto Zamora天桥,对基于实际的微机电系统(MEMS)和理论的基于加速度计的数据进行数据校准

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This paper shows the application of Structural Health Monitoring, SHM into bridges. Bridges are structures built to provide passage over a physical obstruction such as rivers, chasms or roads. The Philippines has a total of 8,166 national bridges as published on the 2015 atlas of the Department of Public Works and Highways (DPWH) and only 2,924 or 35.81% of these bridges are in good condition. As a result, PHP 30.464 billion of the 2016 budget of DPWH is allocated on roads and/or bridges maintenance alone. Intensive spending is owed to the present practice of outdated manual inspection and assessment, and poor structural health monitoring of Philippine infrastructures. As the School of Civil, Environmental, & Geological Engineering of Mapua Institute of Technology (MIT) continuous its well driven passion in research based projects, a partnership with the Department of Science and Technology (DOST) and the DPWH launched the application of Structural Health Monitoring, (SHM) in Padre Jacinto Zamora Flyover. The flyover is located along Nagtahan Boulevard in Sta. Mesa, Manila that connects Brgy. 411 and Brgy. 635. It gives service to vehicles going from Lacson Avenue to Mabini Bridge passing over Legarda Flyover. The flyover is chosen among the many located bridges in Metro Manila as the focus of the pilot testing due to its site accessibility, and complete structural built plans and specifications necessary for SHM as provided by the Bureau of Design, BOD department of DPWH. This paper focuses on providing a method to calibrate theoretical readings from STAAD Vi8 Pro and sync the data to actual MEMS accelerometer readings. It is observed that while the design standards used in constructing the flyover was reflected on the model, actual readings of MEMS accelerometer display a large difference compared to the theoretical data ran and taken from STAAD Vi8 Pro. In achieving true seismic response of the modeled bridge or hence syncing the theoretical data to the actual sensor reading also called as the independent variable of this paper, analysis using single degree of freedom (SDOF) of the flyover under free vibration without damping using STAAD Vi8 Pro is done. The earthquake excitation and bridge responses is subjected to earthquake ground motion in the form of ground acceleration or Peak Ground Acceleration, PGA. Translational acceleration load is used to simulate the ground motion of the time history analysis acceleration record in STAAD Vi8 Pro. Though sensors measure three axes simultatniously, SDAF will be used in the analysis since this paper focuses in the up and down movement of the bridge being inspected. Lastly, environmental factors such as wind and rainfall were all viewed as external elements. With this, upon calibration, these factors were corrected not to affect the readings of the sensors used in the study.
机译:本文显示了结构健康监测,SHM进入桥梁的应用。桥梁是建筑的结构,提供通过诸如河流,雪橇或道路等物理障碍物的段落。菲律宾共有8,166名国家桥梁,如公共工程和高速公路(DPWH)的2015年阿特拉斯公布,只有2,924或35.81 \%这些桥梁状况良好。因此,2016年DPWH预算的PHP 304.64亿分别在道路和/或桥梁维护上分配。强化支出欠本实践的过时的手动检查和评估,菲律宾基础设施的差的结构健康监测。作为Mapua技术研究所的民用,环境和地质工程学院(麻省理工学院)在基于研究的项目中持续良好的激情,与科学和技术部(DOST)的伙伴关系和DPWH推出了结构健康的应用监测,(SHM)在PACRE Jacinto Zamora Flidover。跨越沿着纳格塔山大道的STA。连接Brgy的Mesa,Manila。 411和bry。 635.它为从Lacson Avenue到Mabini Bridge的车辆提供服务,通过Legarda天桥。在Metro Manila的许多位于Manila的许多桥梁中选择了跨桥,作为飞行员测试,由于其现场可访问性,并且SHM所需的结构建造计划和规范,由DPWH的设计局,SHM提供的SHM提供。本文侧重于提供一种方法来校准STAAD VI8 Pro的理论读数并将数据与实际MEMS加速度计读数同步。观察到,虽然在构建跨桥的设计标准上反映在模型上,但与理论数据相比,MEMS加速度计的实际读数显示出很大的差异,并从StaAD VI8 Pro拍摄。在实现建模桥的真正地震响应或因此将理论数据同步到实际传感器读数也称为本文的独立变量,在自由振动下使用单一自由度(SDOF)的自由度(SDOF),无需使用StaAD VI8阻尼亲完成了。地震激励和桥梁响应以地面加速度或峰接地加速,PGA的形式进行地震地面运动。平移加速度负载用于模拟StaAD VI8 Pro中的时间历史分析加速记录的地面运动。虽然传感器同时测量三个轴,但SDAF将用于分析,因为本文重点介绍正在检查桥梁的上下运动。最后,风雨和降雨等环境因素都被视为外部元素。通过这一点,在校准时,纠正这些因素不影响研究中使用的传感器的读数。

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