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Cascade self-tuning control architecture for QoS-aware MAC in WSN

机译:WSN中支持QoS的MAC的级联自调整控制架构

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Wireless sensor network (WSN) has proposed requirements more than just data collection and transmission. Different types of traffics call for different quality of service (QoS) demands. However, for the nature of uncertainty of wireless link and unpredictability of traffic transmission, it is very hard to distribute resources to different traffics precisely ahead of time. Based on the cascade self-tuning control, this study proposes the cascade self-tuning architecture for FD-MAC (CSFD-MAC) architecture. Taking the advantage of feedback theory, CSFD-MAC decouples contention window (CW) adaption and active time (AT) adaption into two separated cascading control loops. CW controller aims for the absolute node-to-node delay to a fixed value and AT controller guarantees the relative delay ratio. The software simulations illustrate the validity of controller design and the hardware experiments demonstrate the ability of CSFD-MAC in the absolute delay control as well as the proportional delay differentiation. More important, CSFD-MAC which takes AT as a controlled variable, not only has a much more superior performance in the metrics of delay and throughput compared with other QoS-aware MAC, but also has the advantage of efficient power management.
机译:无线传感器网络(WSN)提出的要求不仅仅是数据收集和传输。不同类型的流量要求不同的服务质量(QoS)要求。然而,由于无线链路的不确定性和业务量传输的不可预测性,很难精确地提前将资源分配给不同的业务量。基于级联自整定控制,本研究提出了用于FD-MAC(CSFD-MAC)体系结构的级联自整定体系结构。利用反馈理论的优势,CSFD-MAC将竞争窗口(CW)适应和活动时间(AT)适应解耦为两个分离的级联控制回路。 CW控制器的目标是将绝对节点到节点的延迟设为固定值,而AT控制器则保证相对延迟比。软件仿真说明了控制器设计的有效性,硬件实验证明了CSFD-MAC在绝对延迟控制以及比例延迟微分中的能力。更重要的是,以AT为控制变量的CSFD-MAC,不仅在延迟和吞吐量方面具有比其他QoS感知的MAC更好的性能,而且具有高效的电源管理的优势。

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