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An Inter-Data Encoding Technique that Exploits Synchronized Data for Network Applications

机译:一种利用网络应用程序的同步数据的数据间编码技术

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摘要

In a variety of network applications, there exists a significant amount of shared data between two end hosts. Examples include data synchronization services that replicate data from one node to another. Given that shared data may have a high correlation with new data to transmit, we question how such shared data can be best utilized to improve the efficiency of data transmission. To answer this, we develop an inter-data encoding technique, SyncCoding, that effectively replaces bit sequences of the data to be transmitted with the pointers to their matching bit sequences in the shared data so called references. By doing so, SyncCoding can reduce data traffic, speed up data transmission, and save energy consumption for transmission. Our evaluations of SyncCoding implemented in Linux show that it outperforms existing popular encoding techniques, Brotli, LZMA, Deflate, and Deduplication. The gains of SyncCoding over those techniques in the perspective of data size after compression in a cloud storage scenario are about 12.5, 20.8, 30.1, and 66.1 percent, and are about 78.4, 80.3, 84.3, and 94.3 percent in a web browsing scenario, respectively.
机译:在各种网络应用程序中,两个结束主机之间存在大量共享数据。示例包括数据同步服务,其将数据从一个节点复制到另一个节点。鉴于该共享数据可以与传输的新数据具有高相关性,我们质疑这些共享数据如何最好地利用以提高数据传输的效率。为了回答这一点,我们开发了一种数据间编码技术,Synccoding,其有效地替换要在所谓的参考的共享数据中与指针发送到其匹配的位序列的数据的位序列。通过这样做,Synccoding可以减少数据流量,加速数据传输,并节省能耗进行传输。我们对Linux中实现的Synccoding的评估表明,它优于现有的流行编码技术,Brotli,LZMA,放气和重复数据删除。在云存储场景中压缩后,在数据大小的角度下对这些技术的同步的增益约为12.5,20.8,30.1和66.1%,并且在Web浏览场景中约为78.4,80.3,84.3和94.3%,分别。

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