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首页> 外文期刊>International journal of reconfigurable computing >Dynamic Task Distribution Model for On-Chip Reconfigurable High Speed Computing System
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Dynamic Task Distribution Model for On-Chip Reconfigurable High Speed Computing System

机译:片上可重构高速计算系统的动态任务分配模型

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摘要

Modern embedded systems are being modeled as Reconfigurable High Speed Computing System (RHSCS) where Reconfigurable Hardware, that is, Field Programmable Gate Array (FPGA), and softcore processors configured on FPGA act as computing elements. As system complexity increases, efficient task distribution methodologies are essential to obtain high performance. A dynamic task distribution methodology based on Minimum Laxity First (MLF) policy (DTD-MLF) distributes the tasks of an application dynamically onto RHSCS and utilizes available RHSCS resources effectively. The DTD-MLF methodology takes the advantage of runtime design parameters of an application represented as DAG and considers the attributes of tasks in DAG and computing resources to distribute the tasks of an application onto RHSCS. In this paper, we have described the DTD-MLF model and verified its effectiveness by distributing some of real life benchmark applications onto RHSCS configured on Virtex-5 FPGA device. Some benchmark applications are represented as DAG and are distributed to the resources of RHSCS based on DTD-MLF model. The performance of the MLF based dynamic task distribution methodology is compared with static task distribution methodology. The comparison shows that the dynamic task distribution model with MLF criteria outperforms the static task distribution techniques in terms of schedule length and effective utilization of available RHSCS resources.
机译:现代嵌入式系统被建模为可重配置高速计算系统(RHSCS),其中可重配置硬件(即现场可编程门阵列(FPGA))和在FPGA上配置的软核处理器充当计算元素。随着系统复杂性的增加,有效的任务分配方法对于获得高性能至关重要。基于最小优先级优先(MLF)策略(DTD-MLF)的动态任务分配方法,将应用程序的任务动态分配到RHCCS上,并有效利用可用的RHSCS资源。 DTD-MLF方法利用了以DAG表示的应用程序的运行时设计参数的优势,并考虑了DAG中任务的属性和计算资源,以将应用程序的任务分配到RHSCS上。在本文中,我们描述了DTD-MLF模型并通过将一些实际的基准测试应用程序分发到在Virtex-5 FPGA器件上配置的RHSCS上来验证了其有效性。一些基准应用程序表示为DAG,并基于DTD-MLF模型分发到RHCCS的资源。将基于MLF的动态任务分配方法与静态任务分配方法的性能进行了比较。比较表明,在计划长度和有效利用RHSCS资源方面,具有MLF标准的动态任务分配模型优于静态任务分配技术。

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