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Towards an Optimal Network Topology Modeling in Wireless Sensor Networks: A Hybrid Approach

机译:建立无线传感器网络中的最佳网络拓扑模型:一种混合方法

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As the demand for wireless sensor networks increases in both military and civilian sector, the need for a stable networking scheme has increased. Wireless sensor network, or WSN, must be robust networks capable of handling many adverse conditions. If these adverse conditions cannot be handled effectively they can result in data loss and under extreme conditions total network failure. Through the use of a hybrid network topology, WSN can be stable and reliable throughout the life of the node. The paper introduces the new proposed network topology in a WSN environment called leader-based dynamic enhanced butterfly (LDEB) network which is based on our previous work, enhanced butterfly network. The proposed network guarantees the maximum reaching steps of n+1 in the [2-2~n] nodes. And also, in order to demonstrate the nodes behaviors in the network, Petri net modeling and simulation are conducted and showed the soundness of the network.
机译:随着军事和民用领域对无线传感器网络的需求增加,对稳定网络方案的需求也增加了。无线传感器网络或WSN必须是能够处理许多不利条件的健壮网络。如果无法有效处理这些不利条件,则可能导致数据丢失,并在极端条件下导致整个网络故障。通过使用混合网络拓扑,WSN可以在节点的整个生命周期内保持稳定和可靠。本文介绍了一种在WSN环境中新提出的网络拓扑结构,称为基于领导者的动态增强蝶形(LDEB)网络,该结构基于我们之前的工作,即增强蝶形网络。所提出的网络保证了[2-2〜n]节点中n + 1的最大到达步长。并且,为了证明节点在网络中的行为,进行了Petri网建模和仿真,并显示了网络的安全性。

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