A decentralized lifetime maximization algorithm for distributed applications in Wireless Sensor Networks

Virginia Pilloni, M. Franceschelli, L. Atzori, A. Giua
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引用次数: 13

Abstract

We consider the scenario of a Wireless Sensor Networks (WSN) where the nodes are equipped with a programmable middleware that allows for quickly deploying different applications running on top of it so as to follow the changing ambient needs. We then address the problem of finding the optimal deployment of the target applications in terms of network lifetime. We approach the problem considering every possible decomposition of an application's sensing and computing operations into tasks to be assigned to each infrastructure component. The contribution of energy consumption due to the energy cost of each task is then considered into local cost functions in each node, allowing us to evaluate the viability of the deployment solution. The proposed algorithm is based on an iterative and asynchronous local optimization of the task allocations between neighboring nodes that increases the network lifetime. Simulation results show that our framework leads to considerable energy saving with respect to both sink-oriented and cluster-oriented deployment approaches, particularly for networks with high node densities and non-uniform energy consumption or initial battery charge.
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无线传感器网络中分布式应用的分散寿命最大化算法
我们考虑无线传感器网络(WSN)的场景,其中节点配备了可编程中间件,允许快速部署运行在其上的不同应用程序,以遵循不断变化的环境需求。然后,我们将解决在网络生命周期方面找到目标应用程序的最佳部署的问题。我们考虑到将应用程序的感知和计算操作分解为分配给每个基础设施组件的任务,从而解决了这个问题。然后,每个任务的能源成本导致的能源消耗贡献被考虑到每个节点的本地成本函数中,从而允许我们评估部署解决方案的可行性。该算法基于对相邻节点间任务分配的迭代和异步局部优化,从而增加了网络的生存期。仿真结果表明,我们的框架在面向sink和面向cluster的部署方法方面都可以节省大量的能源,特别是对于具有高节点密度和不均匀能量消耗或初始电池充电的网络。
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