{"title":"基于5G环境的无线传感器异构Zigbee CLB-AODV组播路由","authors":"S. Singaravelan","doi":"10.37082/IJIRMPS.2021.V09I03.025","DOIUrl":null,"url":null,"abstract":"A communication load balanced dynamic topology management algorithm (CLB-AODV) is proposed to extend the wireless sensor network (WSN) lifetime via managing the participation in communication process among all nodes in the network. The idea is that, each time there is a failure in the network topology; the topology is adjusted only on-demand by choosing the best path according to paths weights between source and destination nodes. The path weight reflects the nodes participation in communication process through the lifetime of the nodes. Our algorithm is based on the routing protocol AODV instead of using a separate protocol for dynamic topology control in order to reduce the routing load among nodes. Simulation results show that CLB-AODV can prolong the lifetime of the network, increase the number of alive nodes and reduce the average routing load when compared with some of the most powerful recent algorithms the integration of Wireless Sensor Networks (WSN), new generation networks or 5G, TCP / IP (IPv6) protocols with the Internet of Things (IoT) that aims to exchange information, applying security, QoS (Quality of Service) and configuration, these three aspects are the problems in the construction of a network in which confidentiality, integrity, availability, authentication, reconfiguration of topology, improvement, high quality of service, addressing, infrastructure, Network and node construction, for M2M (Machine to Machine) communication or end to end. Because 5G cellular networks, in particular, are attractive technologies to provide Internet connectivity to equipment (UE). Moreover, an additional routing information collecting method is developed to further improve the routing performance.","PeriodicalId":246139,"journal":{"name":"International Journal of Innovative Research in Engineering & Multidisciplinary Physical Sciences","volume":"19 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"5G Environment based CLB-AODV Multicast Routing for the Zigbee on Wireless Sensor Heterogeneous\",\"authors\":\"S. Singaravelan\",\"doi\":\"10.37082/IJIRMPS.2021.V09I03.025\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"A communication load balanced dynamic topology management algorithm (CLB-AODV) is proposed to extend the wireless sensor network (WSN) lifetime via managing the participation in communication process among all nodes in the network. The idea is that, each time there is a failure in the network topology; the topology is adjusted only on-demand by choosing the best path according to paths weights between source and destination nodes. The path weight reflects the nodes participation in communication process through the lifetime of the nodes. Our algorithm is based on the routing protocol AODV instead of using a separate protocol for dynamic topology control in order to reduce the routing load among nodes. Simulation results show that CLB-AODV can prolong the lifetime of the network, increase the number of alive nodes and reduce the average routing load when compared with some of the most powerful recent algorithms the integration of Wireless Sensor Networks (WSN), new generation networks or 5G, TCP / IP (IPv6) protocols with the Internet of Things (IoT) that aims to exchange information, applying security, QoS (Quality of Service) and configuration, these three aspects are the problems in the construction of a network in which confidentiality, integrity, availability, authentication, reconfiguration of topology, improvement, high quality of service, addressing, infrastructure, Network and node construction, for M2M (Machine to Machine) communication or end to end. Because 5G cellular networks, in particular, are attractive technologies to provide Internet connectivity to equipment (UE). 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引用次数: 0
摘要
为了延长无线传感器网络(WSN)的生存期,提出了一种通信负载均衡动态拓扑管理算法(CLB-AODV)。这个想法是,每次网络拓扑出现故障;根据源节点和目的节点之间的路径权重选择最优路径,按需调整拓扑结构。路径权值通过节点生命周期反映节点在通信过程中的参与程度。该算法基于路由协议AODV,而不是使用单独的协议进行动态拓扑控制,以减少节点间的路由负载。仿真结果表明,与最近一些最强大的算法(无线传感器网络(WSN)、新一代网络或5G、TCP / IP (IPv6)协议与旨在交换信息、应用安全性、QoS(服务质量)和配置的物联网(IoT)的集成)相比,CLB-AODV可以延长网络的生命周期、增加活节点数量并减少平均路由负载。这三个方面是网络建设中的问题,其中保密性、完整性、可用性、认证、拓扑重构、改进、高质量服务、寻址、基础设施、网络和节点建设,用于M2M (Machine to Machine)通信或端到端。因为5G蜂窝网络是提供设备互联网连接(UE)的有吸引力的技术。为了进一步提高路由性能,提出了一种附加的路由信息收集方法。
5G Environment based CLB-AODV Multicast Routing for the Zigbee on Wireless Sensor Heterogeneous
A communication load balanced dynamic topology management algorithm (CLB-AODV) is proposed to extend the wireless sensor network (WSN) lifetime via managing the participation in communication process among all nodes in the network. The idea is that, each time there is a failure in the network topology; the topology is adjusted only on-demand by choosing the best path according to paths weights between source and destination nodes. The path weight reflects the nodes participation in communication process through the lifetime of the nodes. Our algorithm is based on the routing protocol AODV instead of using a separate protocol for dynamic topology control in order to reduce the routing load among nodes. Simulation results show that CLB-AODV can prolong the lifetime of the network, increase the number of alive nodes and reduce the average routing load when compared with some of the most powerful recent algorithms the integration of Wireless Sensor Networks (WSN), new generation networks or 5G, TCP / IP (IPv6) protocols with the Internet of Things (IoT) that aims to exchange information, applying security, QoS (Quality of Service) and configuration, these three aspects are the problems in the construction of a network in which confidentiality, integrity, availability, authentication, reconfiguration of topology, improvement, high quality of service, addressing, infrastructure, Network and node construction, for M2M (Machine to Machine) communication or end to end. Because 5G cellular networks, in particular, are attractive technologies to provide Internet connectivity to equipment (UE). Moreover, an additional routing information collecting method is developed to further improve the routing performance.