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Cooperation diversity scenarios for clipped OFDM with iterative destination node reception

机译:具有迭代目的节点接收的限幅OFDM的协作分集方案

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A realistic framework for cooperation diversity is presented for Orthogonal Frequency Division Multiplexing (OFDM) systems with clipping type of transmitter non-linearities. The destination node processes together the received information from the source node and a single, selection algorithm dependent relay one (if any of the candidate relays succeeds in decoding the original OFDM packet sent). The relayed packets are the same with the direct ones (repetition coding), so that simpler receiver processing applies. The destination node employs an optimized, iterative receiver structure based on Turbo processing, in which both the channels and the clipping distortion are (iteratively) estimated. The relaying nodes receive the source-node emanating packets in a standard, non-iterative fashion, due to delay constraints. Two methods of relay node selection are considered: a) Random Relay Selection (RRS), and b) Optimal Relay Selection (ORS). High gains are showed for the proposed approach, due to the synergy between clipping distortion, channel estimation and multiple transmission paths, based on node cooperation diversity. In addition, when the number of candidate relay nodes increases, it is shown that ORS performs significantly better than RRS.
机译:提出了一种具有削波类型的发射机非线性的正交频分复用(OFDM)系统的协作分集的现实框架。目的节点将从源节点和一个依赖于选择算法的中继站(如果任何候选中继站成功解码了发送的原始OFDM数据包成功)一起处理接收到的信息。中继的数据包与直接的数据包相同(重复编码),因此应用了更简单的接收器处理。目的节点采用基于Turbo处理的优化的迭代接收器结构,其中(迭代)估计信道和限幅失真。由于延迟约束,中继节点以标准的非迭代方式接收源节点发出的数据包。考虑了两种中继节点选择方法:a)随机中继选择(RRS),和b)最佳中继选择(ORS)。由于基于节点协作分集的限幅失真,信道估计和多个传输路径之间的协同作用,因此该方法显示出很高的收益。另外,当候选中继节点的数量增加时,表明ORS的性能明显优于RRS。

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