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Fast forced symbol method for distributed space-time turbo codes using complex orthogonal design

机译:复杂正交设计的分布式时空turbo码的快速强制符号方法

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The idea of Distributed Space-Time Codes (DSTCs) was proposed to achieve spatial and temporal diversity without having channel information at the relays in wireless networks. In that scheme, distributive relays cooperate with each other to generate a Space-Time Code (STC) at the receiver. However, DSTCs have poor error rate performances at low signal to noise ratios (SNRs) that may disqualify them from being used in next generation mobile communications systems. To overcome this issue, this paper proposes a novel scheme based on the joint use of DSTCs and turbo codes, which we call “Distributed Space-Time Turbo Codes (DST-TCs)”. We also propose a Fast Forced Symbol Method (FFSM) which significantly improves the coding gain of the proposed DST-TCs. The FFSM is based on repeated decoding operations and does not require any significant change in the design of encoder and decoder of DST-TC. The FFSM provides 0.9 dB of coding gain over simple DST-TC at frame error rate (FER) of 10−5.
机译:提出了分布式时空码(DSTC)的思想,以实现空间和时间分集,而无需在无线网络中的中继站获得信道信息。在该方案中,分布式中继相互协作以在接收器处生成空时码(STC)。但是,DSTC在低信噪比(SNR)下的差错率性能较差,这可能会使DSTC不能用于下一代移动通信系统。为了克服这个问题,本文提出了一种基于DSTC和Turbo码的联合使用的新颖方案,我们称之为“分布式时空Turbo码(DST-TC)”。我们还提出了一种快速强制符号方法(FFSM),该方法可以显着提高所提出的DST-TC的编码增益。 FFSM基于重复的解码操作,不需要对DST-TC的编码器和解码器的设计进行任何重大更改。 FFSM以10 -5 的帧错误率(FER)在简单DST-TC上提供0.9 dB的编码增益。

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