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基于微波感知的挠性结构动态响应监测
引用本文:熊玉勇,李松旭,彭志科.基于微波感知的挠性结构动态响应监测[J].振动与冲击,2020,39(15):277-282.
作者姓名:熊玉勇  李松旭  彭志科
作者单位:上海交通大学机械系统与振动国家重点实验室,上海200240
摘    要:以大跨度桥梁、高架道路为代表的挠性结构在服役过程中的健康监测备受关注和重视,结构动态响应的测量是实现结构健康监测的重要途径。基于微波感知的新型非接触式振动测量(简称"微波测振")技术与方法,开展挠性结构动态特性监测的应用研究。阐述了微波测振系统的组成及基于单频连续波和调频连续波微波雷达的振动测量基本理论与方法。针对工程实际中挠性结构动态响应监测需求与特点,提出微波测振系统的工作模式选择与参数设置准则。基于搭建的微波测振系统开展了轻轨高架箱梁结构在列车运行激励下的振动响应监测实验研究,分析了不同工况下结构的动态响应特性。结果显示,微波测振技术与方法能够准确测量挠性结构的形变与动态响应,为军民领域挠性结构的健康监测提供了一种新的非接触式振动测量技术与方法。

关 键 词:振动测量    微波感知    挠性结构    动态响应  

Dynamic response monitoring of flexible structures based on microwave sensing
XIONG Yuyong,LI Songxu,PENG Zhike.Dynamic response monitoring of flexible structures based on microwave sensing[J].Journal of Vibration and Shock,2020,39(15):277-282.
Authors:XIONG Yuyong  LI Songxu  PENG Zhike
Affiliation:State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai 200240, China
Abstract:The health monitoring of flexible structures represented by long-span bridges and elevated roads in the service process has received much attention. The structural dynamic testing is one of the important ways for structural health monitoring. In this paper, the application of dynamic monitoring of flexible structures is investigated by using the new non-contact vibration measurement technology based on microwave sensing. Firstly, the composition of microwave vibration measurement systems, the basic theory and method of vibration measurement based on single-frequency continuous wave (CW) and frequency-modulated continuous wave (FMCW) microwave radars are illustrated. Then, according to the requirement and characteristic of dynamic testing of flexible structures for practical applications, the mode selection and optimal parameter setting criteria of microwave vibration measurement systems are proposed and established. Finally, based on the built microwave vibration measurement system, the dynamic testing experiments of the elevated road structure under the excitation of subway trains are carried out and the dynamic characteristics of the structure under different load conditions are analyzed. The results indicate that the vibration measurement technology based on microwave sensing can effectively monitor the deflection and vibration response of flexible structures, which provides a new vibration measurement technology and method for the health monitoring of flexible structures.
Keywords:vibration measurement                                                      microwave sensing                                                      flexible structures                                                      dynamic response
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