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Multimode Radix-4 SISO Kernel Design for Turbo/LDPC Decoding

机译:Turbo / LDPC解码的多模Radix-4 SISO内核设计

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To increase the quality of wireless transmission, wireless communication systems employ advanced forward error correction codes such as turbo codes and low-density parity-check (LDPC) codes. To achieve smooth transition between turbo and LDPC decoding in different communication standards, we propose a VLSI design of a multimode radix-4 soft-input soft-output (SISO) kernel in this paper. The proposed radix-4 SISO kernel composed of three recursive processing elements alternatively employs a radix-4 forward–backward algorithm for LDPC decoding and a radix-4 single-binary/double-binary enhanced max-log-maximum probability algorithm for turbo decoding by efficiently sharing computational units. The proposed radix-4 SISO kernel achieves an area reduction of 21.8% when compared with the uncombined SISO kernels for alternatively decoding the turbo and LDPC codes. The proposed radix-4 SISO kernel is verified by implementing it in an application-specific integrated circuit of 0.45 core area by using a 90-nm CMOS process with a maximum area efficiency of 10.65 bits/. In addition, the throughput rates of the long-term evolution and worldwide interoperability for microwave access schemes for both LDPC and turbo decoding can be achieved using eight proposed radix-4 SISO kernels.
机译:为了提高无线传输的质量,无线通信系统采用高级前向纠错码,例如turbo码和低密度奇偶校验(LDPC)码。为了在不同的通信标准中实现Turbo和LDPC解码之间的平滑过渡,我们提出了一种多模式radix-4软输入软输出(SISO)内核的VLSI设计。提议的由4个递归处理元素组成的radix-4 SISO内核采用radix-4前向-后向算法进行LDPC解码,并采用radix-4单二进制/双二进制增强型max-log-maximum最大概率算法进行Turbo解码。有效地共享计算单位。与未组合的SISO内核相比,提出的radix-4 SISO内核实现了21.8%的面积缩减,以交替解码Turbo和LDPC码。所建议的radix-4 SISO内核通过使用90nm CMOS工艺在最大面积效率为10.65位/的0.45核心面积的专用集成电路中实现而得以验证。此外,使用八个建议的radix-4 SISO内核,可以实现LDPC和Turbo解码的微波访问方案的长期演进和全球互操作性的吞吐率。

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