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Direction-sensitive smart monitoring of structures using heterogeneous smartphone sensor data and coordinate system transformation

机译:使用异构智能手机传感器数据和坐标系转换结构的方向敏感智能监控

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Mobile, heterogeneous, and smart sensor networks produce pervasive structural health monitoring (SHM) information. With various embedded sensors, smartphones have emerged to innovate SHM by empowering citizens to serve as sensors. By default, smartphones meet the fundamental smart sensor criteria, thanks to the built-in processor, memory, wireless communication units and mobile operating system. SHM using smartphones, however, faces technical challenges due to citizen-induced uncertainties, undesired sensor-structure integration, and lack of control over the sensing platform. Previously, the authors presented successful applications of smartphone accelerometers for structural vibration measurement and proposed a monitoring framework under citizen-induced spatiotemporal uncertainties. This study aims at extending the capabilities of smartphone-based SHM with a special focus on the lack of control over the sensor (i.e., the phone) positioning by citizens resulting in unknown sensor orientations. Using smartphone gyroscope, accelerometer, and magnetometer; instantaneous sensor orientation can be obtained with respect to gravitational and magnetic north directions. Using these sensor data, mobile operating system frameworks return processed features such as attitude and heading that can be used to correct misaligned sensor signals. For this purpose, a coordinate transformation procedure is proposed and illustrated on a two-story laboratory structural model and real-scale bridges with various sensor positioning examples. The proposed method corrects the sensor signals by tracking their orientations and improves measurement accuracy. Moreover, knowing structure's coordinate system a priori, even the data from arbitrarily positioned sensors can automatically be transformed to the structural coordinates. In addition, this paper also touches some secondary mobile and heterogeneous data issues including imperfect sampling and geolocation services. The coordinate system transf
机译:移动,异构和智能传感器网络产生普及的结构健康监测(SHM)信息。凭借各种嵌入式传感器,智能手机已经通过授权公民赋予传感器来创新SHM。默认情况下,由于内置处理器,内存,无线通信单元和移动操作系统,智能手机符合基本智能传感器标准。然而,SHM使用智能手机面临技术挑战,由于公民诱导的不确定性,不期望的传感器结构集成以及对传感平台的控制缺乏控制。此前,作者提出了智能手机加速度计的成功应用,用于结构振动测量,并提出了公民诱导的时空不确定性的监测框架。本研究旨在扩展基于智能手机的SHM能力,特别关注传感器(即手机)通过公民定位的控制缺乏控制,导致传感器方向未知。使用智能手机陀螺,加速度计和磁力计;可以相对于重力和磁性北方方向获得瞬时传感器方向。使用这些传感器数据,移动操作系统框架返回处理的特性,例如可用于纠正未对齐的传感器信号的姿态和标题。为此目的,提出了一种在两层实验室结构模型和具有各种传感器定位示例的实验室结构模型和真正鳞片桥的坐标变换过程。该方法通过跟踪定向并提高测量精度来校正传感器信号。此外,了解结构的坐标系先验,即使是来自任意定位的传感器的数据也可以自动转换为结构坐标。此外,本文还触及了一些二级移动和异构数据问题,包括不完美的采样和地理位置服务。坐标系RORSF

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