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A rate control algorithm for encoding multispectral images from remote sensing satellites

机译:一种编码遥感卫星多光谱图像的码率控制算法

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摘要

This letter presents a rate allocation algorithm that can be used when the Consultative Committee for Space Data Systems (CCSDS) lossy image compressor is applied to encode multispectral images. This algorithm is a numerical solution to the rate control problem when multiple information sources are compressed independently. Given the rate distortion curves and a total bit rate, the algorithm performs an efficient search to find the best rate distribution among the components that produces the lowest distortion. It is shown that the algorithm introduced here is asymptotically optimal. Furthermore, the relationship between performance and complexity can be easily controlled. The efficiency of the algorithm is tested when CCSDS compressor is used to encode the Karhunen and Loeve Transform components of multispectral images. The test is performed for a group of images from different multispectral sensors. The convergence speed and the rate distortion curve are evaluated. Numerical results are compared to the performance of the same compressor when it uses the rate control algorithm based on the Gaussian rate distortion function. It is shown that the proposed algorithm can produce improvements over 2 dB in the Peak Signal-to-Noise Ratio even with a reduced computational complexity.
机译:这封信提出了一种速率分配算法,当空间数据系统协商委员会(CCSDS)有损图像压缩器应用于多光谱图像编码时,可以使用该算法。当多个信息源被独立压缩时,该算法是速率控制问题的数值解决方案。给定速率失真曲线和总比特率,该算法会执行有效搜索,以在产生最低失真的组件之间找到最佳速率分布。结果表明,本文介绍的算法是渐近最优的。此外,性能和复杂性之间的关系可以轻松控制。当CCSDS压缩器用于编码多光谱图像的Karhunen和Loeve变换分量时,测试算法的效率。对来自不同多光谱传感器的一组图像执行测试。评估收敛速度和速率失真曲线。当使用基于高斯速率失真函数的速率控制算法时,将数值结果与同一台压缩机的性能进行比较。结果表明,所提出的算法即使在降低计算复杂度的情况下,仍可以在峰值信噪比方面提高2 dB以上。

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