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首页> 外文期刊>International Journal of Distributed Sensor Networks >Scalability Dynamic Multicast Labels Management Mechanism for Ubiquitous Data-Centric Sensor Networks
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Scalability Dynamic Multicast Labels Management Mechanism for Ubiquitous Data-Centric Sensor Networks

机译:无处不在的以数据为中心的传感器网络的可伸缩性动态组播标签管理机制

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摘要

The significant difference between traditional electric power system and smart grid is the cooperative control of power flows and information flows. With a large number of secondary equipments accessed into smart grid, the electric power communication network becomes one type of ubiquitous data-centric sensor networks. Real-time and reliable multicast services are required for power system’s stable operation.Multiple Protocols Label Switching(MPLS) with its traffic engineering capabilities has emerged as a powerful tool to provide QoS support in backbone transmission networks. But previous MPLS unicast and multicast protocols have common disadvantages, not scalable enough, especially for various intelligent electronic devices following distributed generators frequently accessed into smart grid. To overcome the problems of overfull labels consuming bandwidth and prolonging delay, this paper proposed a novel labels dispatching mechanism based onResource ReSerVation Protocol(RSVP) andmessage injecting and headward impellingtechnologies. Based on a set of accurate mathematical analyses and simulation experiments in a typical distributed power system scenario, the new mechanism could effectively reduce the total number of labels and overheads, save bandwidth, and shorten the multicast tree establishing time. The good scalability can adapt much better to ubiquitous and thick electrical advanced metering application.
机译:传统电力系统与智能电网之间的显着区别是对电力流和信息流的协同控制。随着大量辅助设备接入智能电网,电力通信网络成为一种以数据为中心的普遍存在的传感器网络。电力系统的稳定运行需要实时,可靠的多播服务。具有流量工程功能的多协议标签交换(MPLS)已成为在骨干传输网络中提供QoS支持的强大工具。但是以前的MPLS单播和多播协议具有共同的缺点,不足以进行扩展,尤其是对于经常访问智能电网的分布式发电机之后的各种智能电子设备。为解决标签占用带宽过大和时延过长的问题,提出了一种基于资源预留协议(RSVP),消息注入和前推技术的标签分配机制。通过在典型的分布式电源系统场景中进行一组精确的数学分析和仿真实验,该新机制可以有效减少标签和开销的总数,节省带宽并缩短多播树的建立时间。良好的可扩展性可以更好地适应无处不在的厚电高级计量应用。

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