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Differential distributed quasi-orthogonal space-time-frequency coding

机译:差分分布准正交时空编码

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We propose differential distributed quasi-orthogonal space-time-frequency coding (DQSTFC) to cater for broadband cooperative networks operating in scenarios where channel state information (CSI) acquisition is impractical. Our differential DQSTFC scheme combines the concept of differential modulation, space-time-frequency (STF) mapping and quasi-orthogonal coding in cooperative networks. From this, we develop a scheme that exploits the achievable diversity gain in the spatial, temporal and frequency dimensions, and guarantees full code rate in non-coherent broadband cooperative networks. Different from existing STF schemes where full code rate is only achievable for cooperative networks with two relay nodes, and unlike other STF schemes that assume coherent signal recovery, our differential DQSTFC scheme is able to guarantee full code rate for cooperative networks with more than two relay nodes while guaranteeing non-coherent signal recovery. We first introduce our STF mapping scheme, we then show how the quasi-orthogonal codewords are constructed from a special choice of signal sets such that full code-rate signals are obtained. Then we present the full differential encoding and decoding setup for cooperative networks with four relay nodes. Unlike other works where the quasi-static channel assumption is adopted for long symbol periods, we show that performance degradation can be reduced when the quasi-static channel assumption is adopted only across adjacent symbols. Simulation results show that our scheme is robust against time-selective and frequency-selective fading compared to other related schemes.
机译:我们提出差分分布式准正交时空编码(DQSTFC),以适应在信道状态信息(CSI)采集不可行的情况下运行的宽带合作网络。我们的差分DQSTFC方案在合作网络中结合了差分调制,时空频率(STF)映射和准正交编码的概念。据此,我们开发了一种方案,该方案在空间,时间和频率维度上利用可实现的分集增益,并保证非相干宽带合作网络中的全码率。与现有的STF方案不同,在现有的STF方案中,只有两个中继节点的协作网络才能实现全码率,并且不同于其他假定相干信号恢复的STF方案,我们的差分DQSTFC方案能够为两个以上中继的协作网络保证全码率。同时保证非相干信号恢复。我们首先介绍我们的STF映射方案,然后说明如何通过特殊选择的信号集来构造准正交码字,从而获得完整的码率信号。然后,我们介绍了具有四个中继节点的协作网络的完整差分编码和解码设置。与其他针对长符号周期采用准静态信道假设的工作不同,我们表明,仅对相邻符号采用准静态信道假设时,可以降低性能下降。仿真结果表明,与其他相关方案相比,我们的方案对时间选择性和频率选择性衰落具有鲁棒性。

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