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Data Compression for Time-Stretch Imaging Based on Differential Detection and Run-Length Encoding

机译:基于差分检测和行程编码的时延成像数据压缩

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摘要

A high-fidelity data compression method based on differential detection and run-length encoding is proposed for a time-stretch imaging system, where a spatial image is mapped to the time domain and then read out by a balanced photodetector for image reconstruction. Differential detection is capable of distinguishing discrepancy of consecutive scans and eliminating identical signals. After the detection, run-length encoding merges consecutive identical data to a single data. In the experiment, a 77.76-MHz line-scan imaging system is demonstrated. The compression ratio of more than 3.8 is achieved. After the data decompression, the image of high fidelity can be reconstructed.
机译:提出了一种基于差分检测和行程编码的高保真数据压缩方法,用于时间拉伸成像系统,将空间图像映射到时域,然后由平衡光电探测器读出以进行图像重建。差分检测能够区分连续扫描的差异并消除相同的信号。检测到之后,行程编码将连续的相同数据合并为单个数据。在实验中,展示了一个77.76 MHz的线扫描成像系统。压缩比达到3.8以上。数据解压缩后,可以重建高保真图像。

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