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A Cross-Layer Optimization Approach for Lower Layers of the Protocol Stack in Sensor Networks

机译:传感器网络协议栈下层的跨层优化方法

摘要

A cross-layer optimization approach for the physical and medium access control layers of wireless sensor networks is introduced in this article. This approach includes a Markov chain model, simulations, and analytical derivations that are applied to the analysis of sensor networks using impulse radio ultra-wideband signals with noncoherent energy detection. This type of communication system has low-power transmission requirements and noise like signal characteristics with low interference to other wireless systems. The energy efficiency of different Reed-Solomon code rates and uncoded case are studied in a star topology network, where slotted Aloha, as defined in the IEEE 802.15.4a standard, is used as the medium access protocol. Analytical and simulation results clearly show the potential energy gains that can be achieved with the proposed optimization approach that can be also used in the evaluation and optimization of other combinations of physical and medium access control protocols.
机译:本文介绍了一种针对无线传感器网络的物理和介质访问控制层的跨层优化方法。此方法包括马尔可夫链模型,仿真和分析推导,这些推导可用于使用具有非相干能量检测功能的脉冲无线电超宽带信号对传感器网络进行分析。这种类型的通信系统具有低功率传输要求和类似信号的噪声特性,并且对其他无线系统的干扰也很小。在星型拓扑网络中研究了不同Reed-Solomon码率和未编码情况下的能效,其中将IEEE 802.15.4a标准中定义的带时隙Aloha用作媒体访问协议。分析和仿真结果清楚地表明,使用建议的优化方法可以实现潜在的能量增益,该方法也可以用于物理和介质访问控制协议的其他组合的评估和优化。

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