显式代码统一减少分布式存储中的修复带宽

Nihar B. Shah, K. V. Rashmi, P. V. Kumar, K. Ramchandran
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引用次数: 5

摘要

考虑一个分布式存储设置,其中大小为B的文件将存储在n个存储节点上。数据收集器应该能够通过下载存储在任意k个节点中的符号来重建整个数据。当一个节点发生故障时,通过从一些现有节点下载数据,将其替换为一个新节点。下载的量称为修复带宽。实现这种系统的一种方法是在每个节点中存储(n, k)个MDS代码的一个片段,这种情况下修复带宽为b。由于故障节点的修复消耗网络带宽,因此减少修复带宽的代码非常有意义。最近该领域的大部分工作都集中在减少以非编码形式存储数据的k个节点的修复带宽上,而其余节点的修复带宽的减少只是边际的。在本文中,我们提出了一种显式代码,将所有节点的修复带宽减少到大约B/2。据我们所知,这是第一个在系统参数的所有可行值下减少所有节点的修复带宽的显式代码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Explicit codes uniformly reducing repair bandwidth in distributed storage
A distributed storage setting is considered where a file of size B is to be stored across n storage nodes. A data collector should be able to reconstruct the entire data by downloading the symbols stored in any k nodes. When a node fails, it is replaced by a new node by downloading data from some of the existing nodes. The amount of download is termed as repair bandwidth. One way to implement such a system is to store one fragment of an (n, k) MDS code in each node, in which case the repair bandwidth is B. Since repair of a failed node consumes network bandwidth, codes reducing repair bandwidth are of great interest. Most of the recent work in this area focuses on reducing the repair bandwidth of a set of k nodes which store the data in uncoded form, while the reduction in the repair bandwidth of the remaining nodes is only marginal. In this paper, we present an explicit code which reduces the repair bandwidth for all the nodes to approximately B/2. To the best of our knowledge, this is the first explicit code which reduces the repair bandwidth of all the nodes for all feasible values of the system parameters.
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