DocumentCode
710245
Title
Joint Write-Once-Memory and Error-Control Codes
Author
Xudong Ma
Author_Institution
Pattern Technol. Lab. LLC, USA
fYear
2015
fDate
13-15 April 2015
Firstpage
506
Lastpage
512
Abstract
Write-Once-Memory (WOM) is a model for many modern non-volatile memories, such as flash memories. Recently, several capacity-achieving WOM coding schemes have been proposed based on polar coding. Due to the fact that practical computer memory systems always contain noises, a nature question to ask next is how may we generalize these coding schemes, such that they may also have the error-control capabilities. In this paper, we discuss a joint WOM and error-control coding scheme, which is a generalization of the capacity-achieving WOM codes based on source polarization in ma15. In this paper, we prove a sufficient and necessary condition for the noisy reading channel being less noisy than the test channel in data encoding in the polar WOM coding. Such a sufficient and necessary condition is usually satisfied in reality. As a consequence of the sufficient and necessary condition, the high entropy set related to the noisy channel is usually strictly contained in the high entropy set related to the test channel in data encoding. Therefore the low-complexity polar joint WOM and error-control codes are sufficient for most practical coding scenarios.
Keywords
error correction codes; flash memories; write-once storage; data encoding; entropy set; error-control coding scheme; generalization; hash memory; joint write-once-memory; low-complexity polar joint WOM codes; noisy reading channel; nonvolatile memory; practical computer memory system; Ash; Decoding; Encoding; Joints; Noise measurement; Probability distribution; Random variables; Block Markov Coding; Flash Memory; Information Theory; Polar Code; Write-Once-Memory;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Technology - New Generations (ITNG), 2015 12th International Conference on
Conference_Location
Las Vegas, NV
Print_ISBN
978-1-4799-8827-3
Type
conf
DOI
10.1109/ITNG.2015.148
Filename
7113524
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