会议专题

Research on Automotive Dynamic Weighing Method Based on Piezoelectric Sensor

  In order to effectively measure the dynamic axle load of vehicles in motion,the dynamic weighing method of vehicles based on piezoelectric sensor was studied.Firstly,the influencing factors of the measurement accuracy in the dynamic weighing process were analyzed systematically,and the impacts of road irregularities and dynamic weighing system vibration on measurement error were discussed.On the basis of the analysis,the arithmetic mean filter method was used in the software algorithm to filter out the periodic interference added in the sensor signal,the most suitable n value was selected to get the better filtering result by simulation comparison.Then,the dynamic axle load calculation model of high speed vehicles was studied deeply,based on the theoretical response curve of the sensor,the dynamic axle load calculation method based on frequency reconstruction was established according to actual measurement signals of sensors and the analysis from time domain and frequency domain,also the least square method was used to realize the identification of temperature correction coefficient.A large amount of data that covered the usual vehicle weighing range was collected by experiment.The results show that the dynamic weighing signal system identification error all controlled within 10%at the same temperature and 60%of the vehicle data error can be controlled within 7%.The temperature correction coefficient and the correction formula at different temperatures ranges are well adapted to ensure that the vehicle temperature error at different temperatures can also be controlled within 10%and 70%of the vehicle data error within 7%.Furthermore,the weighing results remain stable regardless of the speed of the vehicle which meets the requirements for high-speed dynamic weighing.

Road engineering Dynamic weighing Frequency reconstruction Piezoelectric-film sensor Parameter identification

Wei ZHANG Chun-li LI Xiao-feng DI Mi CHEN Sheng TAO

China Academy of Transportation Sciences,Beijing 100029,Chin

国际会议

2017第三届机械、电子和信息技术工程国际会议(ICMITE 2017)

成都

英文

1-8

2017-12-16(万方平台首次上网日期,不代表论文的发表时间)