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Comparative Study of Simplified MAP Algorithms and an Implementation of Non-Parallel-Radix-2 Turbo Decoder

机译:简化MAP算法的比较研究与非并行基2 Turbo解码器的实现

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This paper presents hardware and bit-error-rate (BER) performance analysis of simplified maximum-a-posteriori (MAP) algorithms based on piece-wise-linear-approximations and Maclaurin-series-expansion for the turbo codes. From this comparative study, a simplified MAP algorithm with optimal BER performance is selected and an architecture suitable for high speed application is suggested for the design of soft-input-soft-output (SISO) unit. Subsequently, a quantitative model is proposed for estimating the amount of memory required by SISO unit in terms of sliding window size, data width of internal metrics and total number of systematic and parity bits. Thereafter, a non-parallelradix-2 architecture of turbo decoder which incorporates SISO unit and quadratic-permutation-polynomial inter-leaver is presented. Application-specific-integrated-circuit (ASIC) implementation of this turbo decoder is carried out in 130 nm complementary-metal-oxide-semiconductor (CMOS) technology node and its power consumption, design area and operating clock frequency are reported. Finally, a comparison with similar contributions in the literature has shown that the implemented turbo decoder achieves energy efficiency of 0.28 nJ/b/iteraions. Similarly, it has achieved a highest throughput of 28 Mbps among radix-2 and radix-4 non-parallel turbo decoders.
机译:本文介绍了基于分段线性逼近和Maclaurin级数展开的Turbo码的简化后极大(MAP)算法的硬件和误码率(BER)性能分析。从这项比较研究中,选择了一种具有最佳BER性能的简化MAP算法,并为软输入软输出(SISO)单元的设计提出了一种适用于高速应用的架构。随后,提出了一个定量模型,用于根据滑动窗口大小,内部度量的数据宽度以及系统位和奇偶校验位的总数来估计SISO单元所需的内存量。此后,提出了结合了SISO单元和二次置换多项式交织器的turbo解码器的非并行基2架构。该Turbo解码器的专用集成电路(ASIC)实现是在130 nm互补金属氧化物半导体(CMOS)技术节点中进行的,并报告了其功耗,设计面积和工作时钟频率。最后,与文献中相似贡献的比较表明,所实现的turbo解码器实现了0.28 nJ / b / iteraions的能量效率。同样,它在radix-2和radix-4非并行Turbo解码器中实现了28 Mbps的最高吞吐量。

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