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A Hardware-Friendly Hyperspectral Lossy Compressor for Next-Generation Space-Grade Field Programmable Gate Arrays

机译:用于下一代空间级现场可编程门阵列的硬件友好的高光谱损耗压缩机

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The increment in the data rate of the new-generation hyperspectral sensors is making more critical the necessity of lossy compression solutions able to achieve higher compression ratios (CRs). In this paper, a transform-based lossy compressor, namely lossy compression algorithm for hyperspectral image systems (HW-HyperLCA), is proposed as a modification of the original HyperLCA, specifically designed for being executed into space-grade field programmable gate array (FPGA) devices. The HW-HyperLCA compressor can be totally executed using integer arithmetic, using different levels of precision that can be adapted for achieving the best relation between compression performance and computational burden. The experiments carried out in this paper demonstrate that the HW-HyperLCA compressor is able to compress the hyperspectral images to less than 1 bit per pixel per band with low distortions (more than 40 dB of signal-to-noise ratio) while the performed complexity analysis demonstrates that it can be efficiently executed into space-grade FPGAs using very few computational resources and good results in terms of maximum clock frequency can be obtained.
机译:新一代高光谱传感器的数据速率的增量是能够实现更高压缩比(CRS)的有损压缩解决方案的必要性。本文凭借基于转换的有损压缩机,即超细图像系统(HW-Hyperlca)的损耗压缩算法,作为原始高速的修改,专门设计用于被执行到空间级现场可编程门阵列(FPGA ) 设备。 HW-Hyperlca压缩机可以使用整数算术完全执行,使用不同的精度等级,可以适用于实现压缩性能和计算负担之间的最佳关系。本文实施的实验表明,HW-Hyperlca压缩机能够将Hyperspectral图像压缩到每像素每像素的每像素小于1位,并且在执行的复杂度时分析表明,可以使用极少的计算资源有效地将其有效地执行到空间级FPGA中,并且可以获得最大时钟频率的良好结果。

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