桥梁设计外文翻译--WIM系统中以光纤为基础的动态压力传感装置
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1、 附件 外文翻译 Optic fiber-based dynamic pressure sensor for WIM system Shenfang Yuana, , , Fahard Ansarib, Xiaohui Liua and Yang Zhaob aThe Aeronautical Key Laboratory for Smart Materials and Structures, Nanjing University of Aeronautics and Astronautics, 29 YuDao Street, Nanjing 210016, China bDepartmen
2、t of Civil and Materials Engineering, University of Illinois at Chicago, Illinois, IL 60607, USA Received 16 August 2004; accepted 10 November 2004. Available online 15 December 2004. Abstract An optic fiber-based dynamic pressure sensor is described here to measure weight-in-motion of vehicles. In
3、the research reported herein, a Michelson interferometer with specially designed hardware and software were developed and experimentally subjected to dynamic compressive loads of different magnitudes, and loading rates. Experiments showed that both output fringe number and fringe period could be use
4、d to indicate the dynamic load. A calibration technique has been put forward to calibrate the sensor. Both the dynamic weight and static weight of the vehicle passed can be obtained. The findings that resulted from these studies developed an understanding for the behavior of interferometer sensor un
5、der dynamic compressive states of stress and are fundamental to the application of fiber optic sensors for the monitoring of truck vehicle weights while in motion. Keywords: Optic fiber sensor; Dynamic pressure; Weight-in-motion; Hardware and software Article Outline 1. Introduction 2. The sensor de
6、sign 2.1. Sensor setup 2.2. Sensor principle 3. Experimental procedures and results 3.1. Experimental setup 3.2. Experimental data 3.3. Repeatability of the sensor 3.4. Calibration of the sensor 3.4.1. Calibration of the static weight 3.4.2. Calibration of the dynamic weight 4. Conclusion References
7、 Vitae 1. Introduction The need to weigh vehicles in motion, applied especially to traffic control, has grown substantially in the past decades. Several techniques for weighting vehicles in-motion are now used including piezoelectric cables, capacitive mats, hydraulic and bending-plate load cells 1.
8、 Hydraulic and bending-plate load cells offer high accuracy (15%) and dynamic range, yet suffer from high installation costs and size constraints. The piezoelectric and capacitive mat techniques are substantially lower in cost, yet are less accurate (515%) and do not function properly at speeds lowe
9、r than 20 km/h 2 and 3. To offer the required accuracy at reduced installation and maintenance costs, optic fiber-based WIM sensors are now being developed to improve, complement or even replace the ones currently in use. Based on the effect of polarization coupling between two orthogonally polarize
10、d eigenmodes of polarization-maintaining fiber, Ansari et al. report on using highly birefringence polarization-maintaining (HiBi) fiber for dynamic measurement of pressure with practical ramifications to the determination of weigh-in-motion of trucks 3. Navarrete and Bernabeu report a multiple fibe
11、r-optic interferometer consisting of a Mach-Zehnder interferometer configuration with one of its arms replaced by another Mach-Zehnder interferometer 4. Cosentino and Grossman developed a dynamic sensor using the microbend theory to test weight-in-motion 5. The present work describes the development
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- 桥梁 设计 外文 翻译 wim 系统 光纤 基础 动态 压力 传感 装置
