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A novel caching mechanism for Internet of Things (IoT) sensing service with energy harvesting

机译:具有能量收集功能的新型物联网(IoT)感应服务缓存机制

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Caching has shown the success in performance improvement for many wireless communications and networking systems. In this paper, we introduce a caching mechanism for the energy harvesting based Internet of Things (IoT) sensing service. In the service, a sensor harvests energy from an environment. The energy is stored in the battery, and the sensor uses it for sensing and transmitting the reading to the user. A sensing cache can be implemented at a wireless gateway of the sensor to avoid activating the sensor too frequently, hence reducing its energy consumption. We develop an analytical model to investigate the benefit of the proposed caching mechanism. We also introduce the threshold adaptation algorithm that allows the sensing cache dynamically to adjust the parameter of caching to maximize the combined hit rate of the sensing service from multiple sensors. The performance evaluation clearly shows the tradeoff between energy consumption and caching.
机译:高速缓存已显示出许多无线通信和网络系统在性能改进方面的成功。在本文中,我们介绍了一种用于基于能量收集的物联网(IoT)感知服务的缓存机制。在服务中,传感器从环境中收集能量。能量存储在电池中,传感器将其用于感测并将读数传输给用户。可以在传感器的无线网关处实现感测高速缓存,以避免太频繁地激活传感器,从而减少其能量消耗。我们开发了一个分析模型来研究建议的缓存机制的好处。我们还引入了阈值自适应算法,该算法允许传感缓存动态调整缓存参数,以最大化来自多个传感器的传感服务的组合命中率。性能评估清楚地表明了能耗和缓存之间的折衷。

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