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A new class of exact-repair regenerating codes is constructed by stitching together shorter erasure correction codes, where the stitching pattern can be viewed as block designs. The proposed codes have the help-by-transfer property where the helper nodes simply transfer part of the stored data directly, without performing any computation. This embedded error correction structure makes the decoding...
In distributed storage systems, a data file is encoded and distributed to storage nodes, such that the data file can be recovered from some subsets of the nodes. Upon the failure of a storage node, we want to repair it efficiently by contacting and downloading some encoded bits from a small number of surviving nodes. Using projective-geometric self-repairing codes (PSRC), proposed by Oggier and Datta,...
We consider the design of regenerating codes for distributed storage systems that enjoy the property of local, exact and uncoded repair, i.e., (a) upon failure, a node can be regenerated by simply downloading packets from the surviving nodes and (b) the number of surviving nodes contacted is strictly smaller than the number of nodes that need to be contacted for reconstructing the stored file. Our...
Distributed storage systems (DSS) play an important role in data storage applications, since they provide high reliability for huge data storage requirement. As node failures are frequent in a large distributed storage system, the performance of repairing node failure causes many researchers' interests. In this paper, we propose a distributed storage code to minimize the coding complexity during the...
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