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Mobility mechanism included mobile routing method in a Wireless Mesh Network environment

机译:无线网状网络环境中的移动机制包括移动路由方法

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Wireless Mesh Networks dynamically forms a network and each node connects and maintains a mesh network. The Mesh network is a hybrid WMNs, combined by two network mobilities which is the MANETs based Backbone WMNs and the non-MANET based Client WMNs. This research recommends a routing method that provides interoperability and effectiveness in the BWMNs and CWMNs combined HWMNs network. This method used the same routing protocol as the BWMNs and CWMNs network to solve the MDM problem of the node that occurs in the mobility of a wireless environment. Also by using proxy ARP to solve the vibration conditions that occur when connecting to BWMNs and CWMNs network, the node mobility supporting problem in the heterogeneous network was solved. It solved the two major problems in the previous Wireless Mesh Networks. By using the limited routing method, the mobility was supported by effectively intensifying the heterogeneous Wireless Mesh Networks. At the same time, as the surrounding Node number increased, the movements of the packet transmission rate from the gateway stabilized compared with the previous OLSR method.
机译:无线网状网络动态地形成网络,每个节点连接并维护一个网状网络。 Mesh网络是一个混合WMN,由两个网络移动设备组合而成,这两个移动设备是基于MANET的骨干WMN和基于非MANET的客户端WMN。本研究推荐一种路由方法,该方法可在BWMN和CWMN组合的HWMN网络中提供互操作性和有效性。此方法使用与BWMN和CWMNs网络相同的路由协议来解决在无线环境的移动性中发生的节点的MDM问题。另外,通过使用代理ARP来解决连接到BWMN和CWMN网络时出现的振动情况,解决了异构网络中的节点移动性支持问题。它解决了以前的无线网状网络中的两个主要问题。通过使用有限的路由方法,通过有效地增强异构无线网状网络来支持移动性。同时,随着周围节点数量的增加,与以前的OLSR方法相比,来自网关的数据包传输速率的移动趋于稳定。

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