We present a novel method, that we call EVENODD, for tolerating up to two disk failures in RAID architectures. EVENODD employs the addition of only two redundant disks and consists of simple exclusive-OR computations. This redundant storage is optimal, in the sense that two failed disks cannot be retrieved with less than two redundant disks. A major advantage of EVENODD is that it only requires parity hardware, which is typically present in standard RAID-5 controllers. Hence, EVENODD can be implemented on standard RAID-5 controllers without any hardware changes. The most commonly used scheme that employes optimal redundant storage (i.e., two extra disks) is based on Reed-Solomon (RS) error-correcting codes. This scheme requires computation ...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We present DATUM, a novel method for tolerating multi-ple disk failures in disk arrays. DATUM is the...
Abstruct- We present a novel method, that we call EVENODD, for tolerating up to two disk failures in...
We present a novel method, that we call EVENODD, for tolerating up to two disk failures in RAID arch...
An error correcting code is a technique of adding extra information to a message such that it can be...
We present ˆB a novel data layout method for tolerating multiple disk failures within disk arrays. I...
EVENODD: An optimal scheme for tolerating double disk failures in RAID architecture
Existing parity RAID is a redundancy code capable of correcting any single self-ide tifying failure....
EVENODD: an efficient scheme for tolerating double disk failures in RAID architecture
Inexpensive, reliable hard disk storage is increasingly required in both businesses and the home. As...
In recent years commercial Redundant Arrays of Inexpensive Disks systems have gained considerable ap...
AbstractReliability is a major concern in the design of large disk arrays. In this paper, we examine...
In recent years commercial Redundant Arrays of Inexpensive Disks (RAID) systems have become increasi...
Abstract—Disk failure rates vary so widely among different makes and models that designing storage s...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We present DATUM, a novel method for tolerating multi-ple disk failures in disk arrays. DATUM is the...
Abstruct- We present a novel method, that we call EVENODD, for tolerating up to two disk failures in...
We present a novel method, that we call EVENODD, for tolerating up to two disk failures in RAID arch...
An error correcting code is a technique of adding extra information to a message such that it can be...
We present ˆB a novel data layout method for tolerating multiple disk failures within disk arrays. I...
EVENODD: An optimal scheme for tolerating double disk failures in RAID architecture
Existing parity RAID is a redundancy code capable of correcting any single self-ide tifying failure....
EVENODD: an efficient scheme for tolerating double disk failures in RAID architecture
Inexpensive, reliable hard disk storage is increasingly required in both businesses and the home. As...
In recent years commercial Redundant Arrays of Inexpensive Disks systems have gained considerable ap...
AbstractReliability is a major concern in the design of large disk arrays. In this paper, we examine...
In recent years commercial Redundant Arrays of Inexpensive Disks (RAID) systems have become increasi...
Abstract—Disk failure rates vary so widely among different makes and models that designing storage s...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We study secure RAID, i.e., low-complexity schemes to store information in a distributed manner that...
We present DATUM, a novel method for tolerating multi-ple disk failures in disk arrays. DATUM is the...