无线传感器网络中使用跨层设计的吞吐量最大化

Anahid Attarkashani, W. Hamouda
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引用次数: 4

摘要

提出了一种具有等空间相关信道的协同网络中基于跨层的传感器节点选择方案。等相关模型可以用作最坏情况基准,也可以通过假设所有通道的相关系数相等来作为粗略近似值。通过考虑物理和链路层特性,选择一个或多个传感器节点,以最大限度地提高链路层吞吐量。根据信道特性,在较差链路上使用一个传感器节点,在高质量链路上使用多个中继/传感器,可以获得最佳性能。将所提方案的性能与基于容量的方案进行了比较,在相关信道和不相关信道上都取得了相当大的性能改进。研究了该方案的译码转发(DF)和放大转发(AF)中继,以及基于正交频分复用(OFDM)系统中的中继选择和子载波分配。在所有情况下,跨层技术都显示出相对于物理层优化技术的显著改进。
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Throughput maximization using cross-layer design in wireless sensor networks
In this paper, a cross-layer-based sensor node selection scheme in a cooperative network with equally spatially correlated channels is proposed. The equally correlated model can be used as a worst-case benchmark or as a rough approximation by assuming equal correlation coefficients for all channels. By considering the physical and link layer characteristics, one or multiple sensor nodes are selected to maximize the link layer throughput. Based on the channel characteristics, the best performance is achieved by using one cooperative sensor node in poor links and multiple relays/sensors in high quality links. The performance of the proposed scheme is compared with the capacity-based scheme and considerable improvement in performance is achieved in both correlated and uncorrelated channels. The proposed scheme is examined for both decode-and-forward (DF) and amplify-and-forward (AF) relaying, and also for relay selection and subcarrier allocation in an orthogonal-frequency-division multiplexing (OFDM)-based systems. In all cases, the cross-layer technique is shown to offer significant improvement relative to physical-layer optimization techniques.
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