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首页> 外文期刊>Journal of ICT Research and Applications >FTR: Performance-Aware and Energy-Efficient Communication Protocol for Integrating Sensor Networks into the Internet
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FTR: Performance-Aware and Energy-Efficient Communication Protocol for Integrating Sensor Networks into the Internet

机译:FTR:用于将传感器网络集成到Internet的性能感知和节能通信协议

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摘要

Integrating sensor networks into the Internet brings many advantages. For example, users can monitor or control the state of the sensors remotely without visiting the field. Some researchers have proposed methods using a REST-based web service or HTTP to establish communication between sensors and server via the Internet. Unfortunately, as we know, HTTP is a best-effort service. In some cases this means that if the number of sensors increases the end-to-end Quality of Service will decrease. The end-to-end network delay increases, as well as the failure rate of data sending caused by HTTP timeouts. In this paper, we propose Finite Time Response (FTR) HTTP as a communication protocol suitable for integrating sensor networks into the Internet. We have defined a cross-layer approach that coordinates between the application layer and the physical layer to control not only performance but also energy efficiency. The HTTP request-response delay measured at the application layer is used as the decision factor at the physical layer to control the active and sleep periods. We also propose a forced-sleep period as a control mechanism to guarantee average performance for all nodes. The experimental results have shown that FTR has the ability to maintain better performance, indicated by a lower average response time and a lower average timeout experience. Optimization is still needed to gain better performance and better energy efficiency while also considering the average value of the update time.
机译:将传感器网络集成到Internet中会带来很多优势。例如,用户可以在不访问现场的情况下远程监视或控制传感器的状态。一些研究人员提出了使用基于REST的Web服务或HTTP来通过Internet在传感器和服务器之间建立通信的方法。不幸的是,众所周知,HTTP是一项尽力而为的服务。在某些情况下,这意味着如果传感器数量增加,则端到端服务质量将下降。端到端网络延迟以及HTTP超时导致的数据发送失败率增加。在本文中,我们提出了有限时间响应(FTR)HTTP作为适合将传感器网络集成到Internet的通信协议。我们定义了一种跨层方法,该方法可以在应用程序层和物理层之间进行协调,以不仅控制性能,而且还控制能源效率。在应用程序层测量的HTTP请求-响应延迟被用作物理层的决策因素,以控制活动和睡眠时间段。我们还提出强制睡眠时间作为控制机制,以保证所有节点的平均性能。实验结果表明,FTR能够保持更好的性能,这表现为更低的平均响应时间和更低的平均超时体验。仍需要进行优化以获得更好的性能和更好的能源效率,同时还要考虑更新时间的平均值。

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