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Multi-target compressive laser ranging

机译:多目标压缩激光测距

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Compressive laser ranging (CLR) is a method that exploits the sparsity available in the range domain using compressive sensing methods to directly obtain range domain information. Conventional ranging methods are marred by requirements of high bandwidth analog detection which includes severe SNR fall off with bandwidth in analog-to-digital conversion (ADC). Compressive laser ranging solves this problem by obtaining sub-centimeter resolution while using low bandwidth detection. High rate digital pulse pattern generators and off the shelf photonic devices are used to modulate the transmitted and received light from a superluminescent diode. CLR detection is demonstrated using low bandwidth, high dynamic range detectors along with photon counting techniques. The use of an incoherent source eliminates speckle issues and enables simplified CLR methods to get multi-target range profiles with l-3cm resolution. Using compressive sensing methods CLR allows direct range measurements in the sub-Nyquist regime while reducing system resources, in particular the need for high bandwidth ADC.
机译:压缩激光测距(CLR)是一种利用压缩感测方法直接获得距离域信息的,利用距离域中可用的稀疏性的方法。常规测距方法受到高带宽模拟检测的要求的损害,其中包括在模数转换(ADC)中带宽会严重降低SNR。压缩激光测距通过使用低带宽检测获得亚厘米分辨率来解决此问题。高速数字脉冲码型发生器和现成的光子器件用于调制从超发光二极管发射和接收的光。使用低带宽,高动态范围检测器以及光子计数技术演示了CLR检测。非相干光源的使用消除了斑点问题,并使简化的CLR方法能够获得1-3 cm分辨率的多目标范围轮廓。使用压缩感测方法,CLR可以在亚奈奎斯特范围内进行直接范围的测量,同时减少系统资源,尤其是对高带宽ADC的需求。

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