Microwave-Photonic Sensory Tire Control System Based on FBG

R. Gubaidullin, T. Agliullin, O. Morozov, A. Z. Sahabutdinov, V. Ivanov
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引用次数: 13

Abstract

The article discusses a possibility of using fiber-optic sensors based on addressed fiber Bragg structures (AFBS) to assess tire dynamics in real operating conditions.The presented study is motivated by the fact that vehicle dynamics control systems require reliable and cost-efficient sensors for measuring forces acting in the tire contact patch. In this regard, a description of the new technology of multi-sensor measurements for continuous monitoring of tire state is presented. The experimental sensor prototypes use AFBSs with two identical ultra-narrow-band reflection spectra (2λ-FBG). Information from the sensors is implemented as input parameters of algorithms, which allow to estimate key tire-related characteristics, such as pressure in the contact patch, instantaneous angular velocity and effective wheel radius. One of advantages of this technology as compared to analogous devices is the use of an optical photodetector as an interrogator that greatly simplifies the system.
基于光纤光栅的微波-光子传感轮胎控制系统
本文讨论了使用基于寻址光纤布拉格结构(AFBS)的光纤传感器在实际操作条件下评估轮胎动力学的可能性。车辆动力学控制系统需要可靠且经济高效的传感器来测量作用在轮胎接触片上的力,这一事实促使了本研究的开展。在此基础上,提出了一种多传感器连续监测轮胎状态的新技术。实验传感器原型使用两个相同的超窄带反射光谱(2λ-FBG)的AFBSs。来自传感器的信息作为算法的输入参数实现,从而可以估计关键的轮胎相关特性,如接触片中的压力、瞬时角速度和有效车轮半径。与类似装置相比,该技术的优点之一是使用光学光电探测器作为询问器,大大简化了系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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