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The Balanced Cross-Layer Design Routing Algorithm in Wireless Sensor Networks Using Fuzzy Logic

机译:无线传感器网络中基于模糊逻辑的均衡跨层设计路由算法

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摘要

Recently, the cross-layer design for the wireless sensor network communication protocol has become more and more important and popular. Considering the disadvantages of the traditional cross-layer routing algorithms, in this paper we propose a new fuzzy logic-based routing algorithm, named the Balanced Cross-layer Fuzzy Logic (BCFL) routing algorithm. In BCFL, we use the cross-layer parameters’ dispersion as the fuzzy logic inference system inputs. Moreover, we give each cross-layer parameter a dynamic weight according the value of the dispersion. For getting a balanced solution, the parameter whose dispersion is large will have small weight, and vice versa. In order to compare it with the traditional cross-layer routing algorithms, BCFL is evaluated through extensive simulations. The simulation results show that the new routing algorithm can handle the multiple constraints without increasing the complexity of the algorithm and can achieve the most balanced performance on selecting the next hop relay node. Moreover, the Balanced Cross-layer Fuzzy Logic routing algorithm can adapt to the dynamic changing of the network conditions and topology effectively.
机译:近来,用于无线传感器网络通信协议的跨层设计变得越来越重要和流行。考虑到传统跨层路由算法的弊端,本文提出了一种新的基于模糊逻辑的路由算法,称为平衡跨层模糊逻辑(BCFL)路由算法。在BCFL中,我们使用跨层参数的分散作为模糊逻辑推理系统的输入。此外,我们根据色散值为每个跨层参数赋予动态权重。为了获得平衡的解决方案,离散度大的参数将具有较小的权重,反之亦然。为了将其与传统的跨层路由算法进行比较,通过广泛的仿真对BCFL进行了评估。仿真结果表明,新的路由算法可以在不增加算法复杂度的情况下处理多种约束,并且在选择下一跳中继节点时可以达到最平衡的性能。此外,平衡跨层模糊逻辑路由算法可以有效地适应网络条件和拓扑的动态变化。

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