JOURNAL ARTICLE

A Dynamically-Reconfigurable, Power-Efficient Turbo Decoder

Abstract

The development of turbo codes has allowed for near-Shannon limit information transfer in modern communication systems. Although turbo decoding is viewed as superior to alternate decoding techniques, the circuit complexity and power consumption of turbo decoder implementations can often be prohibitive for power-constrained systems. To address these issues, we have developed a reducedcomplexity turbo decoder specifically optimized for contemporary FPGA devices. Our key power-saving technique is the use of decoder run-time dynamic reconfiguration in response to variations in the channel conditions. If less favorable channel conditions are detected, a more powerful, less power-efficient decoder is swapped into the FPGA hardware to maintain a fixed bit error rate. More favorable channel conditions result in the opposite effect. Through experimentation on a Stratix-based NIOS Development Board we show that dynamic reconfiguration can result in a 52% power reduction versus a static decoder implementation. Comparisons with contemporary microprocessors illustrate a 100 × performance improvement. 1

Keywords:
Computer science Soft-decision decoder Decoding methods Stratix Field-programmable gate array Turbo code Turbo Turbo equalizer Control reconfiguration Noisy-channel coding theorem Power (physics) Channel (broadcasting) Key (lock) Embedded system Computer hardware Algorithm Concatenated error correction code Telecommunications Engineering Block code

Metrics

34
Cited By
4.13
FWCI (Field Weighted Citation Impact)
25
Refs
0.95
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Wireless Communication Techniques
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Error Correcting Code Techniques
Physical Sciences →  Computer Science →  Computer Networks and Communications
Coding theory and cryptography
Physical Sciences →  Computer Science →  Artificial Intelligence

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