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Estimating vehicle speed with embedded inertial sensors

机译:使用嵌入式惯性传感器估算车速

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Pavements were instrumented with inertial sensors, and the possibility of estimating the speed of a passing vehicle was investigated numerically and experimentally from the measurements of two embedded accelerometers. The sensors were spaced apart in the travel direction, and subsequently the speed was directly related to the time delay between the received signals. No assumption was made regarding the vehicle and pavement properties. Model accelerations were presented, studied, and contrasted against field measurements; the latter were shown to be dominated by random vibration sources. Two calculation techniques were offered and applied to handle the noisy data. The first was based on time-centroids, and the second was based on cross-correlation with kernel presmoothing. The overall concept is deemed promising not only for inferring speeds but also for extracting additional traffic characteristics such as axle spacing and relative axle load distributions.
机译:路面装有惯性传感器,并从两个嵌入式加速度计的测量结果中,通过数值和实验研究了估算过往车辆速度的可能性。传感器在行进方向上间隔开,随后速度直接与接收信号之间的时间延迟相关。没有对车辆和路面性能做出任何假设。提出,研究模型加速度并将其与现场测量结果进行对比;后者显示出受随机振动源的支配。提供了两种计算技术并将其应用于处理噪声数据。第一个基于时间质心,第二个基于与内核预平滑的互相关。整个概念不仅在推断速度方面,而且在提取其他交通特性(例如轴距和相对轴荷分布)方面都很有希望。

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