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Huynh Ngoc Bao

dblp:120/9501 · DBLP profile ↗
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1ranked-venue papers
0as first author
0since 2021 · last 2012
—ORCID · none

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

Systems, architecture and hardware · 1

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%
Computer architecture, parallel and distributed computing, and storage systems
1 paper
Hardware accelerators and domain-specific architectures · 77% Emerging computing paradigms · 23%

Topics — the 4 heaviest of 4, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Hardware accelerators and domain-specific architectures › video coding accelerator
decoder accelerator
0.112012
A Parallel IRRWBF LDPC Decoder Based on Stream-Based Processor · IEEE Trans. Parallel Distributed Syst. 2012
Coding theory › error-correcting codes › decoding › iterative decoding › iterative hard-decision decoding
bit-flipping decoding
0.112012
A Parallel IRRWBF LDPC Decoder Based on Stream-Based Processor · IEEE Trans. Parallel Distributed Syst. 2012
Coding theory › error-correcting codes
LDPC codes
0.112012
A Parallel IRRWBF LDPC Decoder Based on Stream-Based Processor · IEEE Trans. Parallel Distributed Syst. 2012
Emerging computing paradigms › quantum computer architecture
real-time decoding
0.012012
A Parallel IRRWBF LDPC Decoder Based on Stream-Based Processor · IEEE Trans. Parallel Distributed Syst. 2012

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

iterative selective updating · 0.3SIMD acceleration · 0.3
YearPublicationVenuePosition
2012 A Parallel IRRWBF LDPC Decoder Based on Stream-Based Processor
abstract
Low-density parity check (LDPC) codes have gained much attention due to their use of various belief-propagation (BP) decoding algorithms to impart excellent error-correcting capability. The BP decoders are quite simple; however, their computation-intensive and repetitive process prohibits their use in energy-sensitive applications such as sensor networks. Bit flipping-based decoding algorithms, especially implementation-efficient, reliability ratio-based, weighted bit-flipping (IRRWBF) decoding; have shown an excellent tradeoff between error-correction performance and implementation cost. In this paper, we show that with IRRWBF, iterative re-computation can be replaced by iterative selective updating. When compared with the original algorithm, simulation results show that, decoding speed can be increased by 200 to 600 percent , as the number of decoding iterations is increased from 5 to 1,000. The decoding steps are broken down into various stages such that the update operations are mostly of the single-instruction, multiple-data (SIMD) type. In this paper, we show that by using Intel Wireless MMX 2 accelerating technology in the proposed algorithm, the speed increased by 500 to 1,500 percent. The results of implementing the proposed scheme using an Intel/Marvell PXA320 (806 MHz) CPU are presented. The proposed scheme can be used effectively in real-time LDPC codes for energy-sensitive mobile devices.
Honey Durga Tiwari, Huynh Ngoc Bao, Yong-Beom Cho
IEEE Trans. Parallel Distributed Syst.2