Volume 13, Issue 2 (9-2016)                   JSDP 2016, 13(2): 51-69 | Back to browse issues page

XML Persian Abstract Print


Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:

hamidi H. An Approach to protecting of data processing system in computing systems using convolutional code. JSDP 2016; 13 (2) :51-69
URL: http://jsdp.rcisp.ac.ir/article-1-349-en.html
k.n.t University
Abstract:   (5605 Views)

Abstract We present a framework for algorithm-based fault tolerance methods in the design of fault tolerant computing systems. The ABFT error detection technique relies on the comparison of parity values computed in two ways. The parallel processing of input parity values produce output parity values comparable with parity values regenerated from the original processed outputs. Number data processing errors are detected by comparing parity values associated with a convolution code. This article proposes a new computing paradigm to provide fault tolerance for numerical algorithms. The data processing system is protected through parity values defined by a high-rate real convolution code. Parity comparisons provide error detection, while output data correction is affected by a decoding method that includes both round-off error and computer-induced errors. To use ABFT methods efficiently, a systematic form is desirable. A class of burst-correcting convolution codes will be investigated. The purpose is to describe new protection techniques that are easily combined with data processing methods, leading to more effective fault tolerance.

Full-Text [PDF 2966 kb]   (2050 Downloads)    
Type of Study: Research | Subject: Paper
Received: 2015/03/28 | Accepted: 2016/01/15 | Published: 2016/09/18 | ePublished: 2016/09/18

Add your comments about this article : Your username or Email:
CAPTCHA

Send email to the article author


Rights and permissions
Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

© 2015 All Rights Reserved | Signal and Data Processing