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Lifetime maximization by partitioning approach in wireless sensor networks

机译:通过无线传感器网络中的分区方法实现生命周期最大化

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Lifetime is a key parameter in the design of routing protocols in energy-constrained wireless sensor networks (WSNs). Conventional single-path routing schemes may not be optimal in maximizing network lifetime. In this paper, we present a new routing algorithm based on the optimal number of hops to partition the path from the source to the sink. The algorithm is based on energy consumption constrained routing method. The mathematical model uses mixed-integer programming (MIP), based on the Lagrangian relaxation (LR) method, to define critical parameters that control the adaptive hop-by-hop switching. LINGO is used to investigate the performance trade-offs between energy efficiency and quality of service (QoS). Simulation results revealed that our algorithm significantly improves the lifetime by 46.91, 73.00, and 80.00 % as compared to the well-known node density control, upper-bound, and WSN optimization of network lifetime algorithms, respectively.
机译:寿命是能量受限的无线传感器网络(WSN)中路由协议设计中的关键参数。常规的单路径路由选择方案在最大化网络寿命方面可能不是最佳的。在本文中,我们提出了一种基于最佳跳数的新路由算法,以划分从源到宿的路径。该算法基于能耗受限的路由方法。该数学模型基于拉格朗日松弛(LR)方法使用混合整数编程(MIP)来定义控制自适应逐跳切换的关键参数。 LINGO用于研究能源效率和服务质量(QoS)之间的性能折衷。仿真结果表明,与众所周知的网络寿命算法的节点密度控制,上限和WSN优化相比,我们的算法的寿命显着提高了46.91、73.00和80.00%。

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