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Non-cooperative Block-faded Orthogonal Multiple Access with Source Correlation: Performance Limits and Practical Schemes

机译:具有源相关性的非合作块衰落的正交多次访问:性能限制和实用方案

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In this paper, we study the performance of non-cooperative wireless multiple access systems with noisy separated channels, where correlated sources communicate to an access point (AP) in the presence of block-faded links. This is meaningful for pervasive wireless scenarios, e.g., wireless sensor networks, where information may be exchanged between a multitude of nodes. Our goal is to explore the potential benefits which can be obtained when source correlation is exploited at the AP, comparing the performance with that obtained by using distributed source coding (DSC) at the nodes. We consider both the average bit error probability and the outage probability as performance indicators, and we derive a theoretical approach to evaluate their limits. Our results show that the improvement brought by the exploitation of the correlation at the AP is more evident when the correlation becomes sufficiently high. Moreover, some simulation results are presented for two classes of channels codes: serially concatenated convolutional codes (SCCCs) and low-density parity-check (LDPC) codes. Our results show that SCCCs can exploit better the correlation in scenarios with high values of the correlation coefficient (e.g., 0.999).
机译:在本文中,我们研究了具有嘈杂的分离信道的非协同无线多次访问系统的性能,其中相关源在存在块逐渐消退的链路时与接入点(AP)进行通信。这对于普遍的无线场景,例如无线传感器网络,这是有意义的,其中可以在多个节点之间交换信息。我们的目标是探讨在AP在AP中利用源相关性的潜在好处,可以使用通过在节点处使用分布式源编码(DSC)获得的性能。我们考虑平均误码概率和停电概率作为绩效指标,我们推导了一种评估其限制的理论方法。我们的研究结果表明,当相关性变得足够高时,通过AP的相关性带来的改进更明显。此外,一些仿真结果呈现出两类信道代码:串联连接的卷积码(SCCC)和低密度奇偶校验(LDPC)代码。我们的结果表明,SCCC可以利用具有高值相关系数的情况下的情景中的相关性(例如,0.999)。

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