On the Existence of Optimal Exact-Repair MDS Codes for Distributed Storage
arXiv:1004.4663
Abstract
The high repair cost of (n,k) Maximum Distance Separable (MDS) erasure codes has recently motivated a new class of codes, called Regenerating Codes, that optimally trade off storage cost for repair bandwidth. In this paper, we address bandwidth-optimal (n,k,d) Exact-Repair MDS codes, which allow for any failed node to be repaired exactly with access to arbitrary d survivor nodes, where k<=d<=n-1. We show the existence of Exact-Repair MDS codes that achieve minimum repair bandwidth (matching the cutset lower bound) for arbitrary admissible (n,k,d), i.e., k<n and k<=d<=n-1. Our approach is based on interference alignment techniques and uses vector linear codes which allow to split symbols into arbitrarily small subsymbols.
20 pages, 6 figures
Cited by in corpus (9)
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- On Codes for Optimal Rebuilding Access
- Distributed Storage Codes through Hadamard Designs
- Exact Scalar Minimum Storage Coordinated Regenerating Codes
- Storage codes -- coding rate and repair locality
- Explicit MDS Codes for Optimal Repair Bandwidth