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Performance optimization and parallelization of turbo decoding for software-defined radio

机译:软件无线电的turbo解码性能优化和并行化

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This paper describes the optimization, parallelization, and simulated performance of a software double-binary turbo decoder implementation supporting the WiMAX standard suitable for software-defined radio (SDR). Turbo codes offer excellent error-correcting performance, but present high computational requirements, hence a parallel approach is desirable when seeking to exploit the flexibility of SDR. The development of a flexible parallel maximum a postiori (MAP) decoding algorithm is detailed, with simulation speedup results demonstrating good parallel efficiency (above 80%). For the same number of threads, a linear-log-MAP decoder implementation using 4 iterations was shown to be have nearly twice the throughput with comparable BER performance of a max-log-MAP decoder implementation using 8 iterations. In addition to parallel execution, other performance enhancements in software and through customized instructions provide a combined per-thread speedup of up to 57%.
机译:本文描述了支持适用于软件无线电(SDR)的WiMAX标准的软件双二进制Turbo解码器实现的优化,并行化和仿真性能。 Turbo码提供了出色的纠错性能,但提出了很高的计算要求,因此在寻求利用SDR的灵活性时,需要一种并行方法。详细介绍了灵活的并行最大后验(MAP)解码算法的开发,仿真加速结果证明了良好的并行效率(超过80%)。对于相同数量的线程,使用4个迭代的线性对数MAP解码器实现方式显示出的吞吐率几乎是使用8个迭代的最大对数MAP解码器实现方式的BER性能的两倍。除了并行执行外,软件中的其他性能增强以及通过自定义指令提供的每线程组合速度最高可提高57%。

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