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首页> 外文期刊>Frontiers in Built Environment >Collaboratively Adaptive Vibration Sensing System for High-fidelity Monitoring of Structural Responses Induced by Pedestrians
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Collaboratively Adaptive Vibration Sensing System for High-fidelity Monitoring of Structural Responses Induced by Pedestrians

机译:用于行人引起的结构响应的高保真监测的协作自适应振动传感系统

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This paper presents a collaboratively adaptive vibration monitoring system that captures high fidelity structural vibration signals induced by pedestrians. These signals can be used for various human activity monitoring by inferring information about the impact sources, such as pedestrian footsteps, door open closing, dragging objects. Such applications often require high fidelity (high resolution and low distortion) signals. Traditionally, expensive high resolution and high dynamic range sensors are adopted to ensure sufficient resolution. However, for sensing systems that use low-cost sensing devices, the resolution and dynamic range are often limited; hence this type of sensing methods is not well explored ubiquitously. We propose a low-cost sensing system that utilizes 1) a heuristic model of the investigating excitations and 2) shared information through networked devices to adapt hardware configurations and obtain high fidelity structural vibration signals. To further explain the system, we use indoor pedestrian footstep sensing through ambient structural vibration as an example to demonstrate the system performance. We evaluate the application with three metrics that measure the signal quality from different aspects: the sufficient resolution rate to present signal resolution improvement without clipping, the clipping rate to measure the distortion of the footstep signal, and the signal magnitude to quantify the detailed resolution of the detected footstep signal. In experiments conducted in a school building, our system demonstrated up to 2X increase in the sufficient resolution rate and 2X less error rate when used to locate the pedestrians as they walk along the hallway, compared to a fixed sensing setting.
机译:本文提出了一种协作自适应振动监测系统,可捕获行人引起的高保真结构振动信号。通过推断有关冲击源的信息,例如行人的脚步声,开门关门,拖动物体,这些信号可用于各种人类活动监控。此类应用通常需要高保真度(高分辨率和低失真)信号。传统上,采用昂贵的高分辨率和高动态范围传感器来确保足够的分辨率。但是,对于使用低成本传感设备的传感系统,分辨率和动态范围通常受到限制;因此,这种传感方法尚未得到广泛的研究。我们提出了一种低成本的传感系统,该系统利用1)研究激发的启发式模型和2)通过联网的设备共享信息来适应硬件配置并获得高保真结构振动信号。为了进一步说明该系统,我们以室内步行者的脚步声感应通过周围结构的振动为例来演示系统性能。我们从三个方面评估应用的质量,这些指标从各个方面衡量信号质量:足够的分辨率可在没有削波的情况下提高信号分辨率,削波率可测量足迹信号的失真,信号幅度可量化信号的详细分辨率检测到的足迹信号。在校舍进行的实验中,与固定的感应设置相比,当用于定位行人在走廊上行走时,我们的系统证明其足够高的分辨率提高了2倍,错误率降低了2倍。

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