Optimal Locally Repairable and Secure Codes for Distributed Storage Systems
arXiv:1210.6954 · doi:10.1109/TIT.2013.2288784
Abstract
This paper aims to go beyond resilience into the study of security and local-repairability for distributed storage systems (DSS). Security and local-repairability are both important as features of an efficient storage system, and this paper aims to understand the trade-offs between resilience, security, and local-repairability in these systems. In particular, this paper first investigates security in the presence of colluding eavesdroppers, where eavesdroppers are assumed to work together in decoding stored information. Second, the paper focuses on coding schemes that enable optimal local repairs. It further brings these two concepts together, to develop locally repairable coding schemes for DSS that are secure against eavesdroppers. The main results of this paper include: a. An improved bound on the secrecy capacity for minimum storage regenerating codes, b. secure coding schemes that achieve the bound for some special cases, c. a new bound on minimum distance for locally repairable codes, d. code construction for locally repairable codes that attain the minimum distance bound, and e. repair-bandwidth-efficient locally repairable codes with and without security constraints.
Submitted to IEEE Transactions on Information Theory
References in corpus (2)
Cited by in corpus (18)
- Speeding Up Distributed Machine Learning Using Codes
- Repair Locality with Multiple Erasure Tolerance
- Cooperative Local Repair in Distributed Storage
- Constructions and Properties of Linear Locally Repairable Codes
- Towards Optimal Secure Distributed Storage Systems with Exact Repair
- Equivalence and Characterizations of Linear Rank-Metric Codes Based on Invariants
- Locally Repairable Codes with Unequal Local Erasure Correction
- Repair Duality with Locally Repairable and Locally Regenerating Codes
- Locally Repairable Convolutional Codes with Sliding Window Repair
- Alphabet-Dependent Bounds for Linear Locally Repairable Codes Based on Residual Codes
- Security Concerns in Minimum Storage Cooperative Regenerating Codes
- PMDS Array Codes With Small Sub-packetization, Small Repair Bandwidth/Rebuilding Access
- New MRD codes from linear cutting blocking sets
- When and By How Much Can Helper Node Selection Improve Regenerating Codes?
- A Connection Between Locally Repairable Codes and Exact Regenerating Codes
- Roos bound for skew cyclic codes in Hamming and rank metric
- Efficient distribution and improved security for reliable cloud storage system
- Multilevel Diversity Coding with Secure Regeneration: Separate Coding Achieves the MBR Point