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首页> 外文期刊>IEEE transactions on wireless communications >Decentralized Distributed Space??Time Trellis Coding
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Decentralized Distributed Space??Time Trellis Coding

机译:分散的分布式空间时间网格编码

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In this paper, we introduce a new class of distributed space-time trellis codes (DSTTCs) for wireless networks with a large set of decode-and-forward relay nodes N. We consider the general case where each relay node is equipped with NT antennas and the destination node is equipped with NR antennas. It is assumed that at any given time only a small, a priori unknown subset of nodes S isin N is active and neither the relay nodes nor the destination node know which relay nodes are active. In the proposed scheme, each node is assigned a signature matrix and the signal transmitted by an active node is the product of the signature matrix and a space-time trellis code (STTC) matrix originally designed for Nc co-located antennas. It is shown that existing full-rank STTCs designed for Nc ges 2 co-located antennas are a favorable choice for the code matrix. Two practical designs for good deterministic signature matrix sets are provided and compared with random signature matrices. If the signature matrices are properly optimized, the proposed DSTTCs achieve a diversity order of d = m{ NcNR, NTNSNR } if NS nodes are active. Simulation results confirm that DSTTCs yield significant performance gains over distributed space-time block codes and distributed space-time filtering. Furthermore, equipping relay nodes with a second antenna can be highly beneficial especially if only few nodes can be active at any given time.
机译:在本文中,我们介绍了一种新型的用于具有大量解码转发中继节点N的无线网络的分布式时空网格码(DSTTC)。我们考虑了每个中继节点都配备NT天线的一般情况目标节点配备了NR天线。假定在任何给定时间,只有一个小的,先验未知的节点S in N是活动的,并且中继节点和目的节点都不知道哪些中继节点是活动的。在提出的方案中,为每个节点分配了一个签名矩阵,并且活动节点发送的信号是签名矩阵和最初为Nc个并置天线设计的空时网格码(STTC)矩阵的乘积。结果表明,为Nc ges 2共置天线设计的现有全等级STTC是代码矩阵的理想选择。提供了两个用于确定性好的签名矩阵集的实用设计,并将它们与随机签名矩阵进行比较。如果签名矩阵被适当地优化,则如果NS节点是活动的,则所提出的DSTTC实现分集阶数为d = m {NcNR,NTNSNR}。仿真结果证实,与分布式时空分组码和分布式时空滤波相比,DSTTC具有显着的性能提升。此外,为中继节点配备第二天线可能是非常有益的,尤其是在任何给定时间只有很少几个节点处于活动状态时。

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