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Dynamic Resource Management in Energy Constrained Heterogeneous Computing Systems Using Voltage Scaling

机译:使用电压缩放的能源受限异构计算系统中的动态资源管理

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An ad hoc grid is a wireless heterogeneous computing environment without a fixed infrastructure. This study considers wireless devices that have different capabilities, have limited battery capacity, support dynamic voltage scaling, and are expected to be used for eight hours at a time and then recharged. To maximize the performance of the system, it is essential to assign resources to tasks (match) and order the execution of tasks on each resource (schedule) in a manner that exploits the heterogeneity of the resources and tasks while considering the energy constraints of the devices. In the single-hop ad hoc grid heterogeneous environment considered in this study, tasks arrive unpredictably, are independent (i.e., no precedent constraints for tasks), and have priorities and deadlines. The problem is to map (match and schedule) tasks onto devices such that the number of highest priority tasks completed by their deadlines during eight hours is maximized while efficiently utilizing the overall system energy. A model for dynamically mapping tasks onto wireless devices is introduced. Seven dynamic mapping heuristics for this environment are designed and compared to each other and to a mathematical bound.
机译:自组织网格是没有固定基础结构的无线异构计算环境。这项研究考虑的无线设备具有不同的功能,电池容量有限,支持动态电压缩放,并且预计一次使用8小时,然后再充电。为了最大程度地发挥系统的性能,至关重要的是将资源分配给任务(匹配),并以一种利用资源和任务的异质性,同时考虑资源的能源约束的方式,命令在每个资源上执行任务(计划)。设备。在本研究中考虑的单跳特设网格异构环境中,任务以不可预测的方式到达,独立(即任务没有先例约束)且具有优先级和期限。问题在于将任务映射(匹配并安排)到设备上,以使在八个小时内截止日期完成的最高优先级任务的数量最大化,同时有效利用整个系统的能量。介绍了一种用于将任务动态映射到无线设备的模型。设计了针对该环境的七个动态映射试探法,并将其相互比较并与数学界限进行了比较。

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