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EQAR: Effective QoS-Aware Relay Node Placement Algorithm for Connecting Disjoint Wireless Sensor Subnetworks

机译:EQAR:用于连接不相交的无线传感器子网的有效QoS感知中继节点放置算法

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In some applications of wireless sensor networks (WSNs), it may be necessary to link a number of disjoint segments in order to form a federated system. The segments can be simply distinct WSNs that operate autonomously or partitions of a single WSN that has suffered significant damage. Linking these segments may be subject to different intersegment quality of service (QoS) requirements. This paper presents an effective approach for federating these segments by populating the least number of relay nodes (RNs) such that the connectivity and QoS requirements are satisfied. Finding the optimal number and position of RNs is NP-hard and heuristics are thus pursued. The deployment area is modeled as a grid with equal-sized cells. A cost is assigned to each cell based on the residual capabilities of relays populated in it. The optimization problem is then mapped to finding the cell-based least-cost paths that collectively meet the QoS requirements. The performance of our approach is validated through extensive simulation experiments. We further demonstrate the beneficial aspects of the resulting topology with respect to degree of connectivity and fault resilience.
机译:在无线传感器网络(WSN)的某些应用中,可能有必要链接许多不相交的段以形成联合系统。这些段可以是可以自主运行的截然不同的WSN,也可以是遭受严重破坏的单个WSN的分区。链接这些段可能会受到不同的段间服务质量(QoS)的要求。本文提出了一种有效的方法,通过填充最少数量的中继节点(RN)来满足连接性和QoS要求,从而联合这些段。寻找RN的最佳数量和位置是NP难的,因此追求启发式。部署区域被建模为具有大小相等的单元的网格。根据填充在其中的继电器的剩余能力,为每个单元分配一个成本。然后,将优化问题映射到找到共同满足QoS要求的基于单元的最小成本路径。我们的方法的性能通过大量的仿真实验得到了验证。我们进一步展示了所得拓扑相对于连接程度和故障恢复能力的有益方面。

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