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A Lightweight Contextual Arithmetic Coder for On-Board Remote Sensing Data Compression

机译:用于机载遥感数据压缩的轻量级上下文算术编码器

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The Consultative Committee for Space Data Systems (CCSDS) has issued several data compression standards devised to reduce the amount of data transmitted from satellites to ground stations. This paper introduces a contextual arithmetic encoder for on-board data compression. The proposed arithmetic encoder checks the causal adjacent neighbors, at most, to form the context and uses only bitwise operations to estimate the related probabilities. As a result, the encoder consumes few computational resources, making it suitable for on-board operation. Our coding approach is based on the prediction and mapping stages of CCSDS-123 lossless compression standard, an optional quantizer stage to yield lossless or near-lossless compression and our proposed arithmetic encoder. For both lossless and near-lossless compression, the achieved coding performance is superior to that of CCSDS-123, M-CALIC, and JPEG-LS. Taking into account only the entropy encoders, fixed-length codeword is slightly better than MQ and interleaved entropy coding.
机译:空间数据系统协商委员会(CCSDS)发布了数个数据压缩标准,旨在减少从卫星传输到地面站的数据量。本文介绍了一种用于机载数据压缩的上下文算术编码器。所提出的算术编码器最多检查因果相邻邻居以形成上下文,并且仅使用按位运算来估计相关概率。结果,编码器消耗很少的计算资源,使其适合车载操作。我们的编码方法基于CCSDS-123无损压缩标准的预测和映射阶段,可产生无损或近无损压缩的可选量化器阶段以及我们提出的算术编码器。对于无损和近无损压缩,所获得的编码性能均优于CCSDS-123,M-CALIC和JPEG-LS。仅考虑熵编码器,固定长度码字比MQ和交错熵编码稍好。

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