西南交通大学学报
西南交通大學學報
서남교통대학학보
JOURNAL OF SOUTHWEST JIAOTONG UNIVERSITY
2015年
3期
472-477
,共6页
高速列车%脉动压力%小波变换%小波阈值%功率谱
高速列車%脈動壓力%小波變換%小波閾值%功率譜
고속열차%맥동압력%소파변환%소파역치%공솔보
high-speed train%fluctuating pressure%wavelet transform%wavelet threshold%power spectrum
高速列车表面压力测试过程中,为了克服微型压阻式气压传感器测试的脉动压力信噪比低的缺点,有效提取出脉动压力,建立了传感器输出模型;利用相关系数法确定分解层数,根据3σ原则计算分层阈值,提出一种小波变换阈值去噪方法。用该方法对CRH(China railway high-speed)某型动车组静态测试信号进行去噪处理;并进行200 km/h动车组表面压力测试信号脉动压力的提取,建立了脉动压力功率谱模型。研究结果表明:该方法能有效提取出列车表面脉动压力,测点处脉动压力的幅值在±20 Pa范围内时刻波动,频率主要集中在0~200 Hz;建立的脉动压力功率谱模型为列车减振和降噪提供理论指导。
高速列車錶麵壓力測試過程中,為瞭剋服微型壓阻式氣壓傳感器測試的脈動壓力信譟比低的缺點,有效提取齣脈動壓力,建立瞭傳感器輸齣模型;利用相關繫數法確定分解層數,根據3σ原則計算分層閾值,提齣一種小波變換閾值去譟方法。用該方法對CRH(China railway high-speed)某型動車組靜態測試信號進行去譟處理;併進行200 km/h動車組錶麵壓力測試信號脈動壓力的提取,建立瞭脈動壓力功率譜模型。研究結果錶明:該方法能有效提取齣列車錶麵脈動壓力,測點處脈動壓力的幅值在±20 Pa範圍內時刻波動,頻率主要集中在0~200 Hz;建立的脈動壓力功率譜模型為列車減振和降譟提供理論指導。
고속열차표면압력측시과정중,위료극복미형압조식기압전감기측시적맥동압력신조비저적결점,유효제취출맥동압력,건립료전감기수출모형;이용상관계수법학정분해층수,근거3σ원칙계산분층역치,제출일충소파변환역치거조방법。용해방법대CRH(China railway high-speed)모형동차조정태측시신호진행거조처리;병진행200 km/h동차조표면압력측시신호맥동압력적제취,건립료맥동압력공솔보모형。연구결과표명:해방법능유효제취출열차표면맥동압력,측점처맥동압력적폭치재±20 Pa범위내시각파동,빈솔주요집중재0~200 Hz;건립적맥동압력공솔보모형위열차감진화강조제공이론지도。
It is always the case that micro-piezoresistive pressure sensors are affected by some interference signals during the process of measuring the high-speed trains' surface pressure,which makes signal to noise ratio (SNR)of the fluctuating pressure low. In order to extract the fluctuating pressure effectively,a sensor output model was established. An effective denoising method based on wavelet threshold was proposed,which determines the decomposition level by introducing a correlation coefficient and counts the stratification threshold according to 3σprinciple. This method was then used to denoise static test signals of a certain type of CRH EMUs (electric multiple units)and extract the fluctuating pressure from the surface pressure of the EMUs at 200 km/h,and on this basis to build a power spectrum model of fluctuation pressure. The results show that the proposed method can extract the fluctuating pressure effectively,and the pressure at measuring points fluctuates constantly in the amplitude range of ± 20 Pa and mainly in the frequency range of 0-200 Hz. The established power spectrum model of fluctuating pressure provides a theoretical guidance for the vibration damping and noise reduction of trains.