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FPGA Design and Implementation of a Convolutional Encoder and a Viterbi Decoder Based on 802.11a for OFDM

机译:基于802.11a的OFDM卷积编码器和维特比解码器的FPGA设计与实现

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In this paper, a modified FPGA scheme for the convolutional encoder and Viterbi decoder based on the IEEE 802.11a standards of WLAN is presented in OFDM baseband processing systems. The proposed design supports a generic, robust and configurable Viterbi decoder with constraint length of 7, code rate of 1/2 and decoding depth of 36 symbols. The Viterbi decoder uses full-parallel structure to improve computational speed for the add-compare-select (ACS) modules, adopts optimal data storage mechanism to avoid overflow and employs three distributed RAM blocks to complete cyclic trace-back. It includes the core parts, for example, the state path measure computation, the preservation and transfer of the survivor path and trace-back decoding, etc. Compared to the general Viterbi decoder, this design can effectively decrease the 10% of chip logic elements, reduce 5% of power consumption, and increase the encoder and decoder working performance in the hardware implementation. Lastly, relevant simulation results using Verilog HDL language are verified based on a Xinlinx Virtex-II FPGA by ISE 7.1i. It is shown that the Viterbi decoder is capable of decoding (2, 1, 7) convolutional codes accurately with a throughput of 80 Mbps.
机译:本文在OFDM基带处理系统中,提出了一种基于WLAN的IEEE 802.11a标准的卷积编码器和Viterbi解码器的改进FPGA方案。提出的设计支持约束长度为7,编码率为1/2和解码深度为36个符号的通用,鲁棒和可配置的Viterbi解码器。 Viterbi解码器采用全并行结构来提高加比较选择(ACS)模块的计算速度,采用最佳的数据存储机制来避免溢出,并使用三个分布式RAM块来完成循环回溯。它包括核心部分,例如状态路径度量计算,幸存路径的保存和传输以及回溯解码等。与常规的Viterbi解码器相比,此设计可有效减少芯片逻辑元件的10% ,降低了5%的功耗,并在硬件实现中提高了编码器和解码器的工作性能。最后,通过ISE 7.1i在Xinlinx Virtex-II FPGA的基础上验证了使用Verilog HDL语言的相关仿真结果。结果表明,维特比解码器能够以80 Mbps的吞吐量准确地解码(2、1、7)卷积码。

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