EDBT 2026 Demo / reviewers in the wild / expert
Brendan Towell
dblp:306/1537
· DBLP profile ↗
3ranked-venue papers
0as first author
3since 2021 · last 2024
—ORCID · none
Domains — the database's venue-derived domains; a paper can count in several
Computer networks · 2 · 2 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 since 2021
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
1 paper |
Coding theory · 100% |
Topics — the 3 heaviest of 3, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Coding theory › error-correcting codes
convolutional codes |
0.8 | 1 | 2024 | CRC-Aided High-Rate Convolutional Codes With Short Blocklengths for List Decoding · IEEE Trans. Commun. 2024 |
Coding theory › error-correcting codes › decoding › decoding algorithms › tree search decoding
serial list viterbi decoding |
0.8 | 1 | 2024 | CRC-Aided High-Rate Convolutional Codes With Short Blocklengths for List Decoding · IEEE Trans. Commun. 2024 |
Coding theory › error-correcting codes › convolutional codes › convolutional code decoding
viterbi decoding |
0.8 | 1 | 2024 | CRC-Aided High-Rate Convolutional Codes With Short Blocklengths for List Decoding · IEEE Trans. Commun. 2024 |
Methods — techniques the papers use, named apart from their topics
wrap-around viterbi algorithm · 0.8dual trellis · 0.8
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | Linearity-Enhanced Serial List Decoding of Linearly Expurgated Tail-Biting Convolutional CodesabstractWith a sufficiently large list size, the serial list Viterbi algorithm (S-LVA) provides maximum likelihood (ML) decoding of a concatenated convolutional code (CC) and an expurgating linear function (ELF), which is similar in function to a cyclic redundancy check (CRC), but doesn't enforce that the code be cyclic. However, S-LVA with a large list size requires considerable complexity. This paper exploits linearity to reduce decoding complexity for tail-biting CCs (TBCCs) concatenated with ELFs. Wenhui Sui, Brendan Towell, Zihan Qu, Eugene Min, Richard D. Wesel |
ISIT | 2 |
| 2024 | CRC-Aided High-Rate Convolutional Codes With Short Blocklengths for List DecodingabstractRecently, rate-$1/n$zero-terminated (ZT) and tail-biting (TB) convolutional codes (CCs) with cyclic redundancy check (CRC)-aided list decoding have been shown to closely approach the random-coding union (RCU) bound for short blocklengths. This paper designs CRC polynomials for rate-$(n-1)/n$ZT and TB CCs with short blocklengths. This paper considers both standard rate-$(n-1)/n$CC polynomials and rate-$(n-1)/n$designs resulting from puncturing a rate-$1/2$code. The CRC polynomials are chosen to maximize the minimum distance$d_{\min }$and minimize the number of nearest neighbors$A_{d_{\min }}$. For the standard rate-$(n-1)/n$codes, utilization of the dual trellis proposed by Yamada et al. lowers the complexity of CRC-aided serial list Viterbi decoding (SLVD). CRC-aided SLVD of the TBCCs closely approaches the RCU bound at a blocklength of 128. This paper compares the FER performance (gap to the RCU bound) and complexity of the CRC-aided standard and punctured ZTCCs and TBCCs. This paper also explores the complexity-performance trade-off for three TBCC decoders: a single-trellis approach, a multi-trellis approach, and a modified single-trellis approach with pre-processing using the wrap around Viterbi algorithm. Wenhui Sui, Brendan Towell, Ava Asmani, Hengjie Yang, Holden Grissett, Richard D. Wesel |
IEEE Trans. Commun. | 2 |
| 2022 | High-Rate Convolutional Codes with CRC-Aided List Decoding for Short BlocklengthsabstractRecently, rate-1/ω zero-terminated and tail-biting convolutional codes (ZTCCs and TBCCs) with cyclic-redundancy-check (CRC)-aided list decoding have been shown to closely approach the random-coding union (RCU) bound for short blocklengths. This paper designs CRC polynomials for rate-(ω – 1)/ω CCs with short blocklengths, considering both the ZT and TB cases. The CRC design seeks to optimize the frame error rate (FER) performance of the code resulting from the concatenation of the CRC code and the CC. Utilization of the dual trellis proposed by Yamada et al. lowers the complexity of CRC-aided serial list Viterbi decoding (SLVD) of ZTCCs and TBCCs. CRC-aided SLVD of the TBCCs closely approaches the RCU bound at blocklength of 128. Wenhui Sui, Hengjie Yang, Brendan Towell, Ava Asmani, Richard D. Wesel |
ICC | 3 |