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Distributed Space-Frequency Coding for Cooperative Diversity in Broadband Wireless Ad Hoc Networks

机译:宽带无线自组织网络中用于合作多样性的分布式空频编码

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摘要

A distributed space-frequency (SF) coded cooperative technique is proposed for broadband wireless ad-hoc networks, where both the channels from the source node to relay nodes and from the relay nodes to the destination node are characterized by frequency-selective fading. Using an SF coding at the source node and a circular shift at each relay node, we propose a scheme that can achieve both cooperative and multi-path diversity. The pairwise error probability is analyzed and the result demonstrates that a diversity gain of min(ML1, ML2) can be achieved, where M is the number of the relay nodes, and L1 and L2 are the number of taps of the multipath fading channels from the source node to the relay nodes and from the relay nodes to the destination node, respectively. Furthermore, the proposed distributed SF coding can achieve full-rate transmission for any number of relay nodes. In particular, it does not need IFFT/FFT processing or decoding at each relay node, thus providing a low-complexity design of the relay nodes in broadband wireless ad-hoc networks.
机译:提出了一种用于宽带无线自组织网络的分布式空频(SF)编码协作技术,其中从源节点到中继节点的信道以及从中继节点到目的节点的信道都具有频率选择性衰落的特征。使用源节点处的SF编码和每个中继节点处的循环移位,我们提出了一种既可以实现协作分集又可以实现多径分集的方案。分析了成对错误概率,结果表明可以实现分集增益min(ML1,ML2),其中M为中继节点数,L1和L2为来自多径衰落信道的抽头数。从源节点到中继节点,从中继节点到目的节点。此外,所提出的分布式SF编码可以实现任意数量的中继节点的全速率传输。特别地,它不需要在每个中继节点处进行IFFT / FFT处理或解码,从而在宽带无线自组织网络中提供了中继节点的低复杂度设计。

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