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Scate: A Scalable Time and Energy Aware Actor Task Allocation Algorithm in Wireless Sensor and Actor Networks

机译:Scate:无线传感器和Actor网络中的一种可伸缩的时间和能量感知Actor任务分配算法

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摘要

In many applications of wireless sensor actor networks (WSANs) that often run in harsh environments, the reduction of completion times of tasks is highly desired. We present a new time-aware, energy-aware, and starvation-free algorithm called Scate for assigning tasks to actors while satisfying the scalability and distribution requirements of WSANs with semi-automated architecture. The proposed algorithm allows concurrent executions of any mix of small and large tasks and yet prevents probable starvation of tasks. To achieve this, it estimates the completion times of tasks on each available actor and then takes the remaining energies and the current workloads of these actors into account during task assignment to actors. The results of our experiments with a prototyped implementation of Scate show longer network lifetime, shorter makespan of resulting schedules, and more balanced loads on actors compared to when one of the three well-known task-scheduling algorithms, namely, the max-min, min-inin, and opportunistic load balancing algorithms, is used.
机译:在经常在恶劣环境中运行的无线传感器参与者网络(WSAN)的许多应用中,非常需要减少任务的完成时间。我们提出了一种名为Scate的新的时间感知,能源感知和无饥饿算法,用于将角色分配给参与者,同时满足半自动体系结构WSAN的可伸缩性和分发要求。所提出的算法允许并发执行小型和大型任务的任何混合,并且防止任务可能饿死。为此,它估算每个可用角色上任务的完成时间,然后在将任务分配给角色时考虑这些角色的剩余能量和当前工作量。与三种著名的任务调度算法之一(最大-最小,最大,最小)相比,我们使用Scate原型实现的实验结果表明,网络寿命更长,生成的日程表的生成时间更短,参与者的负载更加均衡。使用最小输入和机会负载均衡算法。

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