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CBA-EVT: A traffic-adaptive energy-efficient MAC protocol for wireless sensor networks

机译:CBA-EVT:用于无线传感器网络的流量自适应节能MAC协议

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For lifetime extension, energy-efficient medium-access control (MAC) protocols designed for battery-powered wireless sensor networks (WSNs) usually enable nodes to operate in low duty cycle. However, without offline change in system parameters, existing protocols either save energy at a cost of long latency or work well only for a narrow range of traffic load. To remedy these problems, this paper presents CBA-EVT, an energy-efficient MAC protocol that is self-organizing in the presence of different operating regimes. To be self-organizing, CBA-EVT leverages two techniques — cost benefit analysis and extreme-value theory. CBA-EVT uses the cost benefit analysis that considers both delay and energy consumption to determine the sleep schedule from a macroscopic view; while it exploits extreme value theory to adjust duty cycle at a microscopic aspect. Through simulation, we confirm that compared with existing energy-efficient MAC protocols designed for WSNs given a delay bound, CBA-EVT with a single set of system parameters achieves significant energy savings at a wide range of traffic load.
机译:为了延长生命周期,为电池供电的无线传感器网络(WSN)设计的节能型媒体访问控制(MAC)协议通常使节点能够以低占空比运行。但是,在不脱机更改系统参数的情况下,现有协议要么以较长的等待时间为代价节省能源,要么仅在狭窄的流量负载范围内有效。为了解决这些问题,本文提出了CBA-EVT,这是一种节能的MAC协议,在存在不同的工作方式时会自组织。为了自我组织,CBA-EVT利用两种技术-成本收益分析和极值理论。 CBA-EVT使用考虑了延迟和能耗的成本效益分析来从宏观角度确定睡眠时间表;而它利用极值理论从微观方面调整占空比。通过仿真,我们确认,与给定延迟限制的,为WSN设计的现有节能MAC协议相比,具有单一系统参数集的CBA-EVT在各种流量负载下均实现了显着的节能效果。

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