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Partial Parallel Encoding and Algorithmic Construction of Non-Binary Structured IRA Codes
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作者 Wojciech Sulek Marcin Kucharczyk 《China Communications》 SCIE CSCD 2016年第8期103-116,共14页
The non-binary(NB) Irregular Repeat Accumulate(IRA) codes, as a subclass of NB LDPC codes, potentially have an excellent error-correcting performance. They are also known to provide linear complexity of encoding, but ... The non-binary(NB) Irregular Repeat Accumulate(IRA) codes, as a subclass of NB LDPC codes, potentially have an excellent error-correcting performance. They are also known to provide linear complexity of encoding, but the basic encoding method with the serial rate-1 accumulator significantly limits the encoder throughput. Then the objective of the research presented in this paper is to develop an encoding method pro- viding significantly increased throughput of an NB-IRA encoder altogether with a flexible code construction methods for the structured(S-NB-IRA) codes eligible for the proposed encoding method. For this purpose, we reformulate the classic encoding algorithm to fit into the partial parallel encoder architecture. We propose the S-NB-IRA encoder block diagram and show that its estimated throughput is proportional to the submatrix size of the parity check matrix, which guarantees a wide complexity- throughput tradeoff. Then, in order to facilitate the S-NB-IRA coding systems design, we present a computer search algorithm for the construction of good S-NB-IRA codes. The algorithm aims at optimizing the code graph topology along with selecting an appropriate non-binary elements in the parity check matrix. Numerical results show that the constructed S-NB-IRA codes significantly outperform the binary IRA and S-IRA codes, while their performance is similar to the best unstructured NB-LDPC codes. 展开更多
关键词 channel coding LDPC codes non-binary LDPC ira codes LDPC encoding LDPC encoder design
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译码转发中继系统基于校验分裂的IRA码设计
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作者 孙小钧 姜明 +1 位作者 赵春明 吴晓富 《通信学报》 EI CSCD 北大核心 2010年第2期130-135,共6页
在译码转发中继系统中,非规则重复累积(IRA)码的设计本质是设计码率兼容IRA码。由于通过校验分裂得到的码字的不同部分经历不同的信噪比,因此给出了基于校验分裂的修正的高斯近似的密度进化算法来分析IRA码的门限并且用差分进化算法对... 在译码转发中继系统中,非规则重复累积(IRA)码的设计本质是设计码率兼容IRA码。由于通过校验分裂得到的码字的不同部分经历不同的信噪比,因此给出了基于校验分裂的修正的高斯近似的密度进化算法来分析IRA码的门限并且用差分进化算法对其优化。实验仿真证明与传统的密度进化算法得到的IRA码相比,当误帧率是10?3时,优化得到的码字大约有0.5dB的增益。 展开更多
关键词 ira码设计 中继 译码转发 校验分裂 密度进化 差分进化
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