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Integer Codes Correcting Single Errors and Detecting Burst Errors Within a Byte
(Institute of Electrical and Electronics Engineers (IEEE), 2020)
Correcting single and detecting adjacent errors has become important in memory systems using high density DRAM chips. The reason is that, in these systems, the strike of a single energetic particle can upset one or more ...
Integer Codes Correcting Double Errors and Triple-Adjacent Errors Within a Byte
(Institute of Electrical and Electronics Engineers (IEEE), 2020)
This article presents a class of integer codes that are suitable for use in optical computer networks in which the data are transmitted serially. The presented codes are constructed with the help of a computer and have ...
Integer codes correcting single asymmetric errors
(Springer Science and Business Media LLC, 2021)
This paper presents a class of integer codes capable of correcting single asymmetric errors. The presented codes are defined over the ring of integers modulo 2b– 1 and are constructed with the help of a computer. The results ...
Integer codes correcting burst asymmetric within a byte and double asymmetric errors
(Springer, 2020)
This paper presents a class of integer codes capable of correcting l-bit burst asymmetric errors within a b-bit byte (1 ≤ l < b) and double asymmetric errors within a codeword. The presented codes are constructed with the ...
Integer Codes Correcting Single Errors and Random Asymmetric Errors within a Byte
(Springer Science and Business Media LLC, 2020)
In optical networks without optical amplifiers (ONWOAs) photons may fade or fail to be detected, but new photons cannot be generated. Hence, under normal conditions, only 1→0 errors can occur. However, in some situations, ...