首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >A Hardware Implemented Autocorrelation Technique for Estimating Power Spectral Density for Processing Signals from a Doppler Wind Lidar System
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A Hardware Implemented Autocorrelation Technique for Estimating Power Spectral Density for Processing Signals from a Doppler Wind Lidar System

机译:硬件实现的自相关技术用于估计处理多普勒风激光雷达系统信号的功率谱密度

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摘要

A signal processing technique utilizing autocorrelation of backscattered signals was designed and implemented in a 1.5 µm all-fiber wind sensing Coherent Doppler Lidar (CDL) system to preprocess atmospheric signals. The signal processing algorithm’s design and implementation are presented. The system employs a 20 kHz pulse repetition frequency (PRF) transmitter and samples the return signals at 400 MHz. The logic design of the autocorrelation algorithm was developed and programmed into a field programmable gate array (FPGA) located on a data acquisition board. The design generates and accumulates real time correlograms representing average autocorrelations of the Doppler shifted echo from a series of adjustable range gates. Accumulated correlograms are streamed to a host computer for subsequent processing to yield a line of sight wind velocity. Wind velocity estimates can be obtained under nominal aerosol loading and nominal atmospheric turbulence conditions for ranges up to 3 km.
机译:在1.5 µm全光纤风敏相干多普勒激光雷达(CDL)系统中设计并实现了一种利用反向散射信号自相关的信号处理技术,以预处理大气信号。介绍了信号处理算法的设计和实现。该系统采用20 kHz脉冲重复频率(PRF)发射机,并以400 MHz采样返回信号。开发了自相关算法的逻辑设计,并将其编程到位于数据采集板上的现场可编程门阵列(FPGA)中。该设计生成并累积实时相关图,这些实时相关图表示来自一系列可调范围门的多普勒频移回波的平均自相关。累积的相关图流式传输到主机,以进行后续处理以产生视线风速。在标称气溶胶负荷和标称大气湍流条件下,风速估计值可以达到3 km。

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