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A Novel Sensor System for Measuring Wheel Loads of Vehicles on Highways

机译:一种用于测量公路车辆车轮载荷的新型传感器系统

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摘要

With the development of the highway transportation and business trade, vehicle Weigh-In-Motion (WIM) technology has become a key technology for measuring traffic loads. In this paper a novel WIM system based on monitoring of pavement strain responses in rigid pavement was investigated. In this WIM system multiple low cost, light weight, small volume and high accuracy embedded concrete strain sensors were used as WIM sensors to measure rigid pavement strain responses. In order to verify the feasibility of the method, a system prototype based on multiple sensors was designed and deployed on a relatively busy freeway. Field calibration and tests were performed with known two-axle truck wheel loads and the measurement errors were calculated based on the static weights measured with a static weighbridge. This enables the weights of other vehicles to be calculated from the calibration constant. Calibration and test results for individual sensors or three-sensor fusions are both provided. Repeatability, sources of error, and weight accuracy are discussed. Successful results showed that the proposed method was feasible and proven to have a high accuracy. Furthermore, a sample mean approach using multiple fused individual sensors could provide better performance compared to individual sensors.
机译:随着公路运输和商业贸易的发展,车辆动态称重(WIM)技术已成为衡量交通负荷的关键技术。本文研究了一种基于监测刚性路面中路面应变响应的新型WIM系统。在该WIM系统中,多个低成本,轻便,小体积和高精度嵌入式混凝土应变传感器被用作WIM传感器,以测量刚性路面的应变响应。为了验证该方法的可行性,设计了基于多个传感器的系统原型,并将其部署在相对繁忙的高速公路上。使用已知的两轴转向架车轮载荷进行现场校准和测试,并根据使用静态地磅测得的静态重量计算测量误差。这使得可以根据校准常数计算其他车辆的重量。均提供了单个传感器或三传感器融合的校准和测试结果。讨论了重复性,误差来源和重量精度。成功的结果表明,该方法是可行的,并被证明具有较高的准确性。此外,与单个传感器相比,使用多个融合的单个传感器的样本均值方法可以提供更好的性能。

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