Heuristic-Path and Observer based Low-Energy Scheduling Algorithms for Body Area Network Systems

Yanhong Liu, B. Veeravalli
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引用次数: 3

Abstract

In this paper, we propose novel low-energy static and dynamic scheduling algorithms for the heterogeneous Body Area Network (BAN) systems, where task graphs have deadlines (timing constraints) and precedence relationships to satisfy. Our proposed algorithms, with low computational complexities, use the novel "path information track-and-update" scheme to distribute slack over tasks such that the overall energy consumption is minimized, and an observer mechanism to guarantee the application constraints. Our dynamic scheduling algorithm utilizes the results from the static scheduling algorithm and attempts to aggressively reduce the energy consumption. Simulations for the task graph for a typical BAN application show that our scheduling algorithms achieve better energy savings with less than 5% of the computational time, compared with the recent heterogenous multiprocessor scheduling algorithms.
基于启发式路径和观测器的体域网络系统低能量调度算法
在本文中,我们提出了新的低能量的静态和动态调度算法异构体区域网络(BAN)系统,其中任务图有时限(时间约束)和优先关系需要满足。我们提出的算法采用新颖的“路径信息跟踪和更新”方案来分配任务间的松弛,从而使总体能耗最小化,并采用观测器机制来保证应用约束,计算复杂度低。我们的动态调度算法利用静态调度算法的结果,并试图积极降低能耗。针对一个典型BAN应用的任务图仿真表明,与目前的异构多处理器调度算法相比,我们的调度算法在不到5%的计算时间内实现了更好的节能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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