SEEOF:智能节能目标函数:适应RPL目标函数,为电池供电的智能电表提供IPv6网状拓扑解决方案

Nikesh Man Shakya, M. Mani, N. Crespi
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引用次数: 21

摘要

在本研究中,设计了一种新的智能能效目标函数(SEEOF),用于开发基于物联网的智能计量应用的IPv6网状拓扑。物联网协议提供横向可扩展性,互操作性和多服务环境,而不是传统智能计量网络解决方案的孤立,专有和基于服务的环境。智能电表不仅限于电表;它包括煤气和/或水表。换句话说,它包含了电池供电的设备,这些设备具有有限的计算功能和能源资源,以及由主线供电的全功能设备。终端的电池消耗是一个主要挑战,应该在物联网智能计量解决方案中解决。在各种降低能耗的技术中,路由是影响网络性能和生命周期的关键因素。IETF在其ROLL工作组中考虑将RPL作为低功耗和有损网络(LLN)中物联网应用的路由协议。SEEOF基于RPL,旨在有效利用能源并延长网络寿命。它同时考虑了链路质量和节点能量。我们在ContikiOS中实现了SEEOF,并将使用SEEOF的RPL能耗与现有目标函数进行了比较。仿真结果表明,该目标函数可使网络寿命提高27%。更重要的是,结果表明SEEOF在电池供电的设备之间更均匀地平衡了能量消耗,使它们存活的时间更长。
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SEEOF: Smart energy efficient objective function: Adapting RPL objective function to enable an IPv6 meshed topology solution for battery operated smart meters
In this research, a new Smart Energy Efficient Objective Function (SEEOF) is designed to develop an IPv6 meshed topology for IoT based smart metering applications. IoT protocols offer horizontal scalability, interoperability and multi-service environment versus isolated, proprietary and service based environment of traditional smart metering network solutions. Smart metering is not limited to electricity meters; it comprises gas and/or water meters. In other words, it encompasses battery powered devices with limited computing functionalities and energy resources along with full functional devices powered by main line. The battery consumption of end-points is a major challenge and should be addressed in IoT smart-metering solutions. Among the various techniques to reduce the energy consumption, routing is a key element affecting the network performance and lifetime. IETF in its ROLL working group has considered RPL as the routing protocol for IoT applications in low power and lossy networks (LLN). SEEOF, based on RPL, is designed to use energy efficiently and extend network lifetime. It takes into account both the link quality and node energy. We have implemented SEEOF in ContikiOS and compared the energy consumption in RPL using SEEOF with existing objective function. Simulation results show that up to 27% improvement is attained in the network life time when using the proposed objective function. More importantly, the results show that SEEOF balances the energy consumption more uniformly among the battery powered devices keeping them alive for longer duration.
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