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开发用于路面动载荷识别的新型压电传感系统。

Development of a Novel Piezoelectric Sensing System for Pavement Dynamic Load Identification.

机构信息

National Center for Material Service Safety, University of Science and Technology Beijing, Beijing 100083, China.

Joint USTB-Virginia Tech Lab on Multifunctional Materials, USTB, Beijing 100083, China.

出版信息

Sensors (Basel). 2019 Oct 28;19(21):4668. doi: 10.3390/s19214668.

Abstract

In order to control the adverse effect of vehicles overloading infrastructure and traffic safety, weight-in-motion (WIM)-related research has drawn growing attention. To address the high cost of current piezoelectric sensors in installation and maintenance, a study on developing a low-cost piezoceramic sensing system is presented in this paper. The proposed system features distributed monitoring and integrated packaging, for calculating vehicle's dynamic load and its wheel position. Results from the laboratory tests show that the total output of the sensing system increases linearly with the increase of the peak load when the loading amplitude is 5-25 kN (equivalent to the half-axis load of 20-100 kN); when the loading frequency is between 15 Hz and 19 Hz (equivalent to a speed of 17.8-23.2 km/h), the total output of the system fluctuates around a value of 1.305 V. Combined with finite-element simulation, the system can locate load lateral position with a resolution of 120 mm. Due to the protection packaging, the peak load transferred to the sensing units is approximately 4.36% of the applied peak load. The study indicates the proposed system can provide a promising low-cost, reliable and practical alternative for current WIM systems.

摘要

为了控制车辆超载对基础设施和交通安全的不利影响,与动态称重(WIM)相关的研究受到了越来越多的关注。为了解决当前压电传感器在安装和维护方面成本高的问题,本文提出了一种开发低成本压电陶瓷传感系统的研究。所提出的系统具有分布式监测和集成封装功能,用于计算车辆的动态载荷及其车轮位置。实验室测试结果表明,当加载幅度为 5-25 kN(相当于半轴负载 20-100 kN 的一半)时,传感系统的总输出随峰值负载的增加呈线性增加;当加载频率在 15 Hz 和 19 Hz 之间(相当于 17.8-23.2 km/h 的速度)时,系统的总输出在 1.305 V 左右波动。结合有限元模拟,系统可以以 120mm 的分辨率定位负载横向位置。由于有保护包装,传递到传感单元的峰值负载约为施加的峰值负载的 4.36%。研究表明,所提出的系统可为当前的 WIM 系统提供一种有前途的低成本、可靠且实用的替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b8/6864819/8f735bdab195/sensors-19-04668-g001.jpg

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