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Study of energy and performance of space-time decoding systems in concatenation with turbo decoding

机译:与turbo解码相结合的时空解码系统的能量和性能研究

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Recent studies have shown that using space-time code is an effective approach to increase the data rate over wireless channels. Space-time turbo (ST-Turbo) codes formed by concatenating space-time codes with turbo codes, take advantage of both the high diversity order of space-time systems and the randomness of the turbo codes. In this paper, we compare two ST-Turbo codes, i.e., simple space-time turbo codes (SiSTT) and turbo trellis-coded modulation space-time block codes (TTCM-STBCs), and their approximate versions with respect to performance and energy consumption for both general-purpose processor and synthesized implementations. The approximations are aimed at reducing the computational complexity and include reduction in the number of paths, number of iterations, and datapath computations. Analysis of the simulation results show that SiSTT-based versions should be used for higher SNR applications where low energy consumption is the primary design objective, and TTCM-STBC-based versions should be used where performance is the primary design objective. Finally, four ST-Turbo algorithms (i.e., baseline SiSTT and its energy-efficient approximate version and the baseline TTCM-STBC and its energy-efficient approximate version) have been synthesized in 0.18-/spl mu/m CMOS technology and the implementations compared with respect to area, power, and latency.
机译:最近的研究表明,使用时空码是提高无线信道上数据速率的有效方法。通过将时空码与turbo码连接而形成的时空turbo(ST-Turbo)码既利用了时空系统的高分集级,又利用了turbo码的随机性。在本文中,我们比较了两种ST-Turbo码,即简单时空Turbo码(SiSTT)和Turbo网格编码调制时空分组码(TTCM-STBC),以及它们在性能和能量方面的近似版本通用处理器和综合实现的消耗。近似旨在减少计算复杂性,包括减少路径数量,迭代数量和数据路径计算。对仿真结果的分析表明,应将基于SiSTT的版本用于以低能耗为主要设计目标的较高SNR应用,而应将基于TTCM-STBC的版本以以性能为主要设计目标。最后,在0.18- / spl mu / m CMOS技术中合成了四种ST-Turbo算法(即基线SiSTT及其能效近似版本以及基线TTCM-STBC及其能效近似版本),并对实现方式进行了比较关于面积,功耗和延迟。

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