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Forward Error Correction Based On Algebraic-Geometric Theory. 2014 ed.
・ISBN 978-3-319-08292-9 paper EUR 49.99
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| 著者・編者 | A. Alzubi, Jafar / A. Alzubi, Omar / M. Chen, Thomas, |
|---|---|
| シリーズ | (SpringerBriefs in Electrical and Computer Engineering) |
| 出版社 | (Springer International Publishing AG, SZ) |
| 出版年月 | 2014 |
| ページ数 | 70 pp. |
| 言語 | ENG |
| ニュース番号 | <A05-9715> |
解説
This book covers the design, construction, and implementation of algebraic-geometric codes from Hermitian curves. Matlab simulations of algebraic-geometric codes and Reed-Solomon codes compare their bit error rate using different modulation schemes over additive white Gaussian noise channel model. Simulation results of Algebraic-geometric codes bit error rate performance using quadrature amplitude modulation (16QAM and 64QAM) are presented for the first time and shown to outperform Reed-Solomon codes at various code rates and channel models. The book proposes algebraic-geometric block turbo codes. It also presents simulation results that show an improved bit error rate performance at the cost of high system complexity due to using algebraic-geometric codes and Chase-Pyndiah's algorithm simultaneously. The book proposes algebraic-geometric irregular block turbo codes (AG-IBTC) to reduce system complexity. Simulation results for AG-IBTCs are presented for the first time.