Y. Iwadare

dblp:134/3852 · DBLP profile ↗
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3ranked-venue papers
3as first author
0since 2021 · last 1975
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Theory of computation · 3 · 3 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Theoretical computer science
3 papers
Coding theory · 100%
Computer architecture, parallel and distributed computing, and storage systems
1 paper
Storage systems · 100%

Topics — the 5 heaviest of 6, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Coding theory › error-correcting codes
burst error correction
0.031975
Random-error correcting capability of the Iwadare codes and the Berlekamp-Preparata-Massey codes (Corresp.) · IEEE Trans. Inf. Theory 1975
A class of high-speed decodable burst-correcting codes (Corresp.) · IEEE Trans. Inf. Theory 1972
On type-B1 burst-error-correcting convolutional codes · IEEE Trans. Inf. Theory 1968
Coding theory
channel coding
0.031975
Random-error correcting capability of the Iwadare codes and the Berlekamp-Preparata-Massey codes (Corresp.) · IEEE Trans. Inf. Theory 1975
A class of high-speed decodable burst-correcting codes (Corresp.) · IEEE Trans. Inf. Theory 1972
On type-B1 burst-error-correcting convolutional codes · IEEE Trans. Inf. Theory 1968
Coding theory › error-correcting codes
convolutional codes
0.021975
Random-error correcting capability of the Iwadare codes and the Berlekamp-Preparata-Massey codes (Corresp.) · IEEE Trans. Inf. Theory 1975
On type-B1 burst-error-correcting convolutional codes · IEEE Trans. Inf. Theory 1968
Coding theory › error-correcting codes
block codes
0.011972
A class of high-speed decodable burst-correcting codes (Corresp.) · IEEE Trans. Inf. Theory 1972
Coding theory
fast-decodable code
0.011972
A class of high-speed decodable burst-correcting codes (Corresp.) · IEEE Trans. Inf. Theory 1972

Methods — techniques the papers use, named apart from their topics

convolutional-to-block code conversion · 0.0error-correcting capability analysis · 0.0shift register implementation · 0.0guard space analysis · 0.0
YearPublicationVenuePosition
1975 Random-error correcting capability of the Iwadare codes and the Berlekamp-Preparata-Massey codes (Corresp.)
abstract
The double-error-correcting capabilities of the Iwadare and of the Berlekamp--Preparata-Massey burst-correcting codes are analyzed.
Y. Iwadare
IEEE Trans. Inf. Theory1
1972 A class of high-speed decodable burst-correcting codes (Corresp.)
abstract
A class of high-speed decodable burst-correcting codes is presented. This class of codes is obtained by modifying burst-correcting convolutional codes into block codes and does not require any cyclic shifts in the decoding process. With the appropriate choices of parameters, the codes can approximate minimum-redundancy codes. The high-speed decodability is expected to make these codes suitable for application to computer systems.
Y. Iwadare
IEEE Trans. Inf. Theory1
1968 On type-B1 burst-error-correcting convolutional codes
abstract
Two new classes of type-B1 burst-error-correcting convolutional codes are introduced. One of them requires a shorter length of guard space and a smaller number of shift register stages than optimum type-B2 codes used for type-B1 burst correction. Another class of codes improves the required number of shift register stages considerably when the correctable burst length is very large. In addition, these codes require a very short length of additional guard space to restore the decoder to correct operation after a decoding failure. Both classes of codes are derived in a straightforward manner and their implementations are also very simple. Thus, we can avoid type-B2 code procedures to correct type-B1 bursts. The codes derived here result in the more efficient and simply implemented type-B1 burst-correcting convolutional codes.
Y. Iwadare
IEEE Trans. Inf. Theory1