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Advanced data compression promises the next big leap in network performance

机译:先进的数据压缩有望实现网络性能的下一个飞跃

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Abstract: Three recently introduced technologies: a new Autosophy information theory; fast Content Addressable Memories; and Packet Switching protocols, are combined in data compression chipsets to improve network throughput with real-time lossless text and image compression. Compared with the cost of putting new cables into the ground or launching new satellites, data compression chipsets offer a much less expensive alternative for improving the bandwidth of broadband communication networks. Data compression is based on a new Autosophy information theory in which, in contrast to Shannon's theory, communication is determined only by the data content. In addition to high lossless data compression, this also provides virtually unbreakable 'codebook' encryption and easier communication via packet switching networks. The Autosophy theories provide eight known classes of self-learning Omni Dimensional Networks. Only the serial network is explained here for use in compressed text and video communications. A new Content Addressable Read Only Memory (CAROM) may increase data compression speed to more than 20 Million symbols per second, fast enough for virtually any network speed. !19
机译:摘要:最近引进的三种技术:一种新的Autosophy信息论;快速的内容可寻址内存;数据压缩芯片组中结合了“分组交换协议”和“分组交换协议”,通过实时无损文本和图像压缩提高了网络吞吐量。与将新电缆铺设到地面或发射新卫星的成本相比,数据压缩芯片组为改善宽带通信网络的带宽提供了便宜得多的替代方案。数据压缩基于新的Autosophy信息理论,与Shannon的理论相反,通信仅由数据内容决定。除了高度无损的数据压缩之外,这还提供了几乎不间断的“密码本”加密,并通过数据包交换网络进行了更轻松的通信。 Autosophy理论提供了八类已知的自学习Omni Dimensional Networks。在此仅说明用于压缩文本和视频通信的串行网络。新的内容可寻址只读存储器(CAROM)可以将数据压缩速度提高到每秒超过2000万个符号,对于几乎任何网络速度而言都足够快。 !19

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