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用于轨检信号提取的线性相位IIR移变滤波器
引用本文:郑树彬,林建辉,林国斌. 用于轨检信号提取的线性相位IIR移变滤波器[J]. 西南交通大学学报, 2007, 42(2): 211-216
作者姓名:郑树彬  林建辉  林国斌
作者单位:1. 西南交通大学牵引动力国家重点实验室,四川成都,610031
2. 国家磁浮交通工程技术研究中心,上海,201204
基金项目:国家863磁浮专项基金(2005AA505010-511)
摘    要:提出一种基于谱变换的IIR移变滤波器的设计方法,并利用分块翻转技术实现滤波器的线性相位特性.在满足提取100M范围内的长波不平顺成分的设计参数条件下,仿真计算IIR滤波器的频响误差.仿真结果利明:当翻转块长度为1600时,IIR线性相位滤波器能满足线性相位特性和幅频特性要求,比传统轨检FIR滤涸器节省了95.5%的乘法运算和98.0%的加法运算,前者与后者所需的缓存量之比为9614/2135.利用实测信蚓计算验证了线性相位IIR移变滤波的正确性和有效性.

关 键 词:轨道检测 移变滤波器 无限冲激响应滤波器 线性相位 分块翻转技术 长波不平顺
文章编号:0258-2724(2007)02-0211-06
修稿时间:2006-08-12

Variable Linear Phase IIR Filter for Extraction of Track Inspection Signals
ZHENG Shubin,LIN Jianhui,LIN Guobin. Variable Linear Phase IIR Filter for Extraction of Track Inspection Signals[J]. Journal of Southwest Jiaotong University, 2007, 42(2): 211-216
Authors:ZHENG Shubin  LIN Jianhui  LIN Guobin
Affiliation:1. National Traction Power Lab., Southwest Jiaotong University, Chengdu 610031, China; 2. National Research Center for Maglev Transportation Technology, Shanghai 201204, China
Abstract:A design method for variable IIR (infinite impulse response) filter based on spectral transformation was presented, and time reversed section technique was utilized to achieve its linear phase characteristic. The filter was designed to conform with the specification of extracting irregularity with wavelengths within 100 m. Simulation was conducted to check the frequency response errors of the linear phase IIR filter. Simulation result shows that the filter meets the design requirements for amplitude response and linear phase characteristic when the length of reversal section is 1 600. The linear phase IIR filter requires 95.5% less multiplications and 98.0% less additions than the conventional FIR fdter, and the ratio of buffer sizes for them is 9 614/2 135. Accuracy and validity of the variable linear phase IIR filter were verified by filtering actual track inspection signals.
Keywords:track inspection    variable filter   IIR filter   linear phase    time reversed section technique   long wave irregularity
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