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Fixed-quality/variable bit-rate on-board image compression for future CNES missions

机译:固定质量/可变比特率载于未来CNES任务的载板图像压缩

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The huge improvements in resolution and dynamic range of current [1][2] and future CNES remote sensing missions(from 5m/2.5m in Spot5 to 70cm in Pleiades) illustrate the increasing need of efficient on-board image compressors.Many techniques have been considered by CNES during the last years in order to go beyond usual compression ratios:new image transforms or post-transforms [3][4], exceptional processing [5], selective compression [6].However, even if significant improvements have been obtained, none of those techniques has ever contested an essentialdrawback in current on-board compression schemes: fixed-rate (or compression ratio).This classical assumption provides highly-predictable data volumes that simplify storage and transmission. But on theother hand, it demands to compress every image-segment (strip) of the scene within the same amount of data. Therefore,this fixed bit-rate is dimensioned on the worst case assessments to guarantee the quality requirements in all areas of theimage. This is obviously not the most economical way of achieving the required image quality for every single segment.Thus, CNES has started a study to re-use existing compressors [7] in a Fixed-Quality/Variable bit-rate mode. The mainidea is to compute a local complexity metric in order to assign the optimum bit-rate to comply with quality requirements.Consequently, complex areas are less compressed than simple ones, offering a better image quality for an equivalentglobal bit-rate.“Near-lossless bit-rate” of image segments has revealed as an efficient image complexity estimator. It links qualitycriteria and bit-rates through a single theoretical relationship. Compression parameters are thus automatically computedin accordance with the quality requirements. In addition, this complexity estimator could be implemented in a one-passcompression and truncation scheme.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在分辨率和当前[1] [2]和未来CNES遥感任务(从5米/ 2.5M,在调查中Spot5在昴70厘米)示出的高效车载图像compressors.Many技术越来越需要具有的动态范围的巨大的改进为了超越通常的压缩比在过去几年中已经考虑通过CNES:新的图像变换或后变换[3] [4],例外的处理[5],选择性压缩[6]。然而,即使改进显著有获得,没有这些技术曾经有争议在当前的板上的压缩方案的essentialdrawback:固定速率(或压缩比)。该古典假设提供了高度可预测的数据量,简化了存储和传输。但上theother另一方面,它要求对同样的数据量的范围内压缩所述场景的每个图像段(条)。因此,这个固定比特率的尺寸在最坏的情况下评估,以保证theimage所有领域的质量要求。这显然不是实现为每一个segment.Thus所需要的图像质量的最经济的方式,国家空间研究中心已开始一项研究,以重新利用现有的压缩机[7]在一个固定的质量/可变比特率模式。该mainidea是计算一个局部复杂度以分配最佳的比特率,以符合质量requirements.Consequently,复杂的领域较少压缩比单纯的人,提供一个equivalentglobal比特率更好的图像质量。“近图像片段的无损比特率”揭示了作为有效的图像复杂度估计。它通过一个单一的理论关系链接qualitycriteria和比特率。压缩参数从而自动computedin按照质量要求。此外,这种复杂性估计会在一passcompression和截断方案来实现。©图片,光学仪器工程师(2012)著作权协会(SPIE)。仅供个人使用的摘要下载。

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