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A Novel Rate Control Algorithm for Onboard Predictive Coding of Multispectral and Hyperspectral Images

机译:一种用于多光谱和高光谱图像机载预测编码的新型速率控制算法

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摘要

Predictive coding is attractive for compression onboard of spacecrafts thanks to its low computational complexity, modest memory requirements and the ability to accurately control quality on a pixel-by-pixel basis. Traditionally, predictive compression focused on the lossless and near-lossless modes of operation where the maximum error can be bounded but the rate of the compressed image is variable. Rate control is considered a challenging problem for predictive encoders due to the dependencies between quantization and prediction in the feedback loop, and the lack of a signal representation that packs the signal's energy into few coefficients. In this paper, we show that it is possible to design a rate control scheme intended for onboard implementation. In particular, we propose a general framework to select quantizers in each spatial and spectral region of an image so as to achieve the desired target rate while minimizing distortion. The rate control algorithm allows to achieve lossy, near-lossless compression, and any inbetween type of compression, e.g., lossy compression with a nearlossless constraint. While this framework is independent of the specific predictor used, in order to show its performance, in this paper we tailor it to the predictor adopted by the CCSDS-123 lossless compression standard, obtaining an extension that allows to perform lossless, near-lossless and lossy compression in a single package. We show that the rate controller has excellent performance in terms of accuracy in the output rate, rate-distortion characteristics and is extremely competitive with respect to state-of-the-art transform coding
机译:预测编码因其较低的计算复杂度,适度的存储要求以及能够逐个像素精确地控制质量的能力而对航天器的压缩具有吸引力。传统上,预测压缩专注于无损和近无损操作模式,其中最大误差可以限制,但是压缩图像的速率是可变的。由于反馈环路中量化和预测之间的依赖性,以及缺乏将信号能量打包成几个系数的信号表示,速率控制被认为是预测编码器面临的挑战性问题。在本文中,我们表明可以设计用于机载实施的速率控制方案。特别是,我们提出了一个通用框架来选择图像的每个空间和光谱区域中的量化器,以便在使失真最小化的同时实现所需的目标速率。速率控制算法允许实现有损,近无损压缩以及任何中间类型的压缩,例如具有近无损约束的有损压缩。尽管此框架独立于所使用的特定预测器,但为了展示其性能,在本文中,我们将其定制为CCSDS-123无损压缩标准所采用的预测器,从而获得了可以执行无损,近无损和无损压缩的扩展。单个包装中的有损压缩。我们表明,速率控制器在输出速率的精度,速率失真特性方面具有出色的性能,并且相对于最新的变换编码而言具有极强的竞争力

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