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Optical wavelet transforms using spatial light rebroadcasters

机译:使用空间光转播器的光学小波变换

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Abstract: The advantages of a wavelet transform over a short time Fourier transform are explained using 1-D synthetic data in a computer simulation. An optical set up is described in which an electronic analog sensor signal drives an acoustooptic cell that controls the intensity of an Argon laser. A mechanical scanner writes the information as a line onto a spatial light rebroadcaster (SLR) module containing an optical liquid crystal light valve. A lens system expands the line into a 2-D array. A wavelet transform filter is placed in the Fourier transform plane of a 4f correlator. An optical demonstration shows the formation of a wavelet transform and an inverse wavelet transform to reconstruct the original waveform.!12
机译:摘要:在计算机仿真中使用一维合成数据说明了小波变换在短时间内进行傅立叶变换的优势。描述了一种光学装置,其中电子模拟传感器信号驱动声光电池,该声光电池控制氩激光器的强度。机械扫描仪将信息以直线形式写入包含光学液晶光阀的空间光复播(SLR)模块。镜头系统将线扩展为二维阵列。小波变换滤波器放置在4f相关器的傅里叶变换平面中。光学演示显示了小波变换和逆小波变换的形成,以重建原始波形。!12

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