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Performance prediction in radar image filtering and lossy compression. Part I: Filtering

机译:雷达图像滤波和有损压缩的性能预测。第一部分:过滤

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This paper analyzes possibilities and recently proposed methodology of performance prediction for denoising and lossy compression of radar images under assumption that they are corrupted by pure multiplicative noise. Methods based on discrete cosine transform in blocks are considered. Characteristics of the noise (speckle) are assumed a priori known or pre-estimated with high accuracy. They are taken into consideration in setting parameters of denoising techniques (thresholds, parameters of homomorphic transforms) and compression methods such as quantization step. It is shown that simple statistics of DCT coefficients in 8×8 pixel blocks can be used for prediction of improvement (reduction) of peak signal-to-noise ratio. Curves for prediction are obtained by regression into scatter-plots in off-line mode. Applicability of the proposed prediction approaches is confirmed by real-life examples.
机译:本文分析了雷达图像降噪和有损压缩的性能预测的可能性和最近提出的方法,假设它们被纯乘性噪声破坏。考虑了基于块中离散余弦变换的方法。噪声(散斑)的特性被假定为先验已知或高精度估计。在设置去噪技术的参数(阈值,同态变换的参数)和压缩方法(例如量化步骤)时要考虑它们。结果表明,可以将8×8像素块中DCT系数的简单统计信息用于预测峰值信噪比的改善(降低)。通过以离线模式回归为散点图可获得预测曲线。实际示例证实了所提出的预测方法的适用性。

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