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A Highly Compatible Circular-Shifting Network for Partially Parallel QC-LDPC Decoder
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作者 Yanzhi Wang Zhenzhi Wu +2 位作者 Peipei Liu Ning Guan Hua Wang 《International Journal of Communications, Network and System Sciences》 2017年第5期24-34,共11页
The conventional methodology for designing QC-LDPC decoders is applied for fixed configurations used in wireless communication standards, and the supported largest expansion factor Z (the parallelism of the layered de... The conventional methodology for designing QC-LDPC decoders is applied for fixed configurations used in wireless communication standards, and the supported largest expansion factor Z (the parallelism of the layered decoding) is a fixed number. In this paper, we study the circular-shifting network for decoding LDPC codes with arbitrary Z factor, especially for decoding large Z (Z P) codes, where P is the decoder parallelism. By buffering the P-length slices from the memory, and assembling the shifted slices in a fixed routine, the P-parallelism shift network can process Z-parallelism circular-shifting tasks. The implementation results show that the proposed network for arbitrary sized data shifting consumes only one times of additional resource cost compared to the traditional solution for only maximum P sized data shifting, and achieves significant saving on area and routing complexity. 展开更多
关键词 PARTIALLY PARALLEL Layered Decoding circular-shifting NETWORK QC-LDPC Decoder Arbitrary Expansion Factor
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