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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Efficient Embedded Soft Nodes Identification Using Block Coding in Relay Systems with High Order Modulations
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Efficient Embedded Soft Nodes Identification Using Block Coding in Relay Systems with High Order Modulations

机译:高阶调制中的中继系统中的块编码的高效嵌入式软节点标识

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Embedded signaling is an efficient method to blindly estimate different parameters in wireless communication systems. In this paper, we propose a new nodes identification method based on embedded signaling for wireless relay systems. Data packets, modulated with high order modulations, are transmitted by a source node and forwarded by a relay node to a destination node. In the proposed identification scheme, source and relay nodes incorporate precoding sequences, based on codewords generated from block codes, into the data sequence. A novel soft treatment based on the computation of log-likelihood ratios is performed at the destination node to identify source and relay nodes involved in packets transmissions. This soft treatment avoids noise amplification encountered in previous works. Two types of identification schemes are proposed: the hierarchical scheme and the non-hierarchical scheme. The hierarchical scheme allows the destination to recover hierarchically the identities of transmitting source and relay nodes of received packets in two shots. The non-hierarchical scheme allows the destination to efficiently recover in one shot the identities of transmitting nodes. We study the complexities of both identification schemes and compare their performance in terms of identification error rate. Since the knowledge of the channel is necessary in the identification process, we propose a blind estimation technique allowing the destination to estimate the channel. Simulations results show that our proposed methods significantly outperform previous identification methods based on embedded signaling and hard decoding. Indeed, gains of approximately 1.5 dB and 2 dB are obtained at high signal to noise ratio when the non-hierarchical scheme is used respectively for 8 Phase Shift Keying and 16PSK modulations. Simulations show also that the non-hierarchical scheme always outperforms the hierarchical scheme.
机译:嵌入式信令是盲目估计无线通信系统中不同参数的有效方法。在本文中,我们提出了一种基于嵌入式信令的无线中继系统的新节点识别方法。用高阶调制调制的数据分组由源节点发送并由中继节点转发到目的节点。在所提出的识别方案中,源和继电器节点基于从块代码生成的码字,进入数据序列中的预编码序列。基于对数似然比计算的新型软处理在目的地点上执行以识别分组传输中涉及的源和中继节点。这种柔软的处理避免了以前的作品中遇到的噪声放大。提出了两种类型的识别方案:分层方案和非分级方案。分层方案允许目的地在两个拍摄中恢复分层校正接收分组的发送源和中继节点的标识。非分级方案允许目的地在一次拍摄发送节点的身份中有效恢复。我们研究了识别方案的复杂性,并在识别错误​​率方面进行比较它们的性能。由于在识别过程中需要对信道的知识是必要的,我们提出了一种盲估计技术,允许目的地估计信道。仿真结果表明,我们提出的方法显着优于基于嵌入式信令和硬解码的先前识别方法。实际上,当分别用于8相移键控和16PSK调制时,在高信号方案时,在高信号到噪声比下获得大约1.5dB和2 dB的增益。 Simulations还示出了非分级方案始终优于分层方案。

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