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Fuzzy Logic-Based Geographic Routing Protocol for Dynamic Wireless Sensor Networks

机译:动态无线传感器网络中基于模糊逻辑的地理路由协议

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The geographic routing protocol only requires the location information of local nodes for routing decisions, and is considered very efficient in multi-hop wireless sensor networks. However, in dynamic wireless sensor networks, it increases the routing overhead while obtaining the location information of destination nodes by using a location server algorithm. In addition, the routing void problem and location inaccuracy problem also occur in geographic routing. To solve these problems, a novel fuzzy logic-based geographic routing protocol (FLGR) is proposed. The selection criteria and parameters for the assessment of the next forwarding node are also proposed. In FLGR protocol, the next forward node can be selected based on the fuzzy location region of the destination node. Finally, the feasibility of the FLGR forwarding mode is verified and the performance of FLGR protocol is analyzed via simulation. Simulation results show that the proposed FLGR forwarding mode can effectively avoid the routing void problem. Compared with existing protocols, the FLGR protocol has lower routing overhead, and a higher packet delivery rate in a sparse network.
机译:地理路由协议仅需要本地节点的位置信息即可进行路由决策,并且在多跳无线传感器网络中被认为非常有效。但是,在动态无线传感器网络中,使用位置服务器算法获取目标节点的位置信息时,会增加路由开销。另外,在地理路由中也会出现路由无效问题和位置不准确问题。为了解决这些问题,提出了一种新颖的基于模糊逻辑的地理路由协议(FLGR)。还提出了用于评估下一个转发节点的选择标准和参数。在FLGR协议中,可以基于目标节点的模糊位置区域选择下一个前向节点。最后,验证了FLGR转发模式的可行性,并通过仿真分析了FLGR协议的性能。仿真结果表明,所提出的FLGR转发方式可以有效避免路由无效的问题。与现有协议相比,FLGR协议在稀疏网络中具有较低的路由开销和较高的分组传递速率。

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