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A Multi-path Energy Hole Avoidance Routing Algorithm for WSN Based on GA

机译:基于遗传算法的无线传感器网络多径回避空洞路由算法

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The multi-path routing strategy can delicately balance the energy consumption of wireless sensor networks to avoid the energy hole problem and prolong the lifetime of networks. In order to delicately plan a number of next-hop routing paths of each node, this paper proposes a multi-path energy hole avoidance routing algorithm that exploits the genetic algorithm (GA) to select numbers of next-hop nodes and distribute appropriate proportions of data to be transmitted. To obtain the global optimal solution, the algorithm redefines the code, operations and rules of searching optimal solution for the genetic algorithm. The algorithm can not only be applicable to flat networks, but also it would be applicable to hierarchical networks if improved in some sort. A significant advantage of the algorithm is that it can provide global optimal routing approach for energy balance without assuming the topology structure of network. Compared with the single-path routing algorithms, the multi-path routing algorithm in this paper increases 3.2% in the performance of optimization. Finally, this paper confirms the accuracy of the algorithm through theoretical analysis and proves the effectiveness by a number of simulated experiments.
机译:多路径路由策略可以微妙地平衡无线传感器网络的能耗,从而避免出现能量孔问题并延长网络寿命。为了精细地规划每个节点的下一跳路由路径,本文提出了一种多路径能量空洞规避路由算法,该算法利用遗传算法选择下一跳节点的数量并分配适当的比例。要传输的数据。为了获得全局最优解,该算法重新定义了寻找遗传算法最优解的代码,操作和规则。该算法不仅可以应用于平面网络,而且如果进行某种改进,也可以应用于分层网络。该算法的显着优势在于,它可以在不假设网络拓扑结构的情况下为能量平衡提供全局最优路由方法。与单路径路由算法相比,本文的多路径路由算法的优化性能提高了3.2%。最后,本文通过理论分析验证了算法的准确性,并通过大量的仿真实验证明了算法的有效性。

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