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首页> 外文期刊>Journal of supercomputing >Limited contiguous processor allocation mechanism in the mesh-connected multiprocessors using compaction
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Limited contiguous processor allocation mechanism in the mesh-connected multiprocessors using compaction

机译:使用压缩的网状连接多处理器中的有限连续处理器分配机制

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摘要

In this paper, several efficient migration and allocation strategies have been compared on the mesh-based multiprocessor systems. The traditional non-preemptive submesh allocation strategies consist of two row boundary (TRB) and two column boundary (TCB). The existing migration mechanisms are online dynamic compaction-four corner (ODC-FC), limited top-down compaction (LTDC), TCB, and the combination of TCB and ODC-FC algorithms. Indeed, the new allocation method is presented in this paper. This mechanism has the benefits of two efficient traditional allocation algorithms. It is the combination of the TCB and TRB allocation methods. Also, in this process the impact of four key metrics on online mapping is considered. The parameters are average task execution time (ATET), average task system utilization (ATSU), average task waiting time (ATWT), and average task response time (ATRT). Using TCB and TRB mechanism with the migration strategies is shown that the new algorithm has better ATET, ATRT, ATWT, and ATSU. It has, respectively, 23.5494, 97.1216, 39.1291, and 4.142% improvements in comparison with the previous mechanisms.
机译:在本文中,在基于网格的多处理器系统上比较了几种有效的迁移和分配策略。传统的非抢占式子网格分配策略由两个行边界(TRB)和两个列边界(TCB)组成。现有的迁移机制是在线动态压缩四角(ODC-FC),有限的自上而下压缩(LTDC),TCB,以及TCB和ODC-FC算法的组合。实际上,本文提出了新的分配方法。该机制具有两种有效的传统分配算法的优点。它是TCB和TRB分配方法的组合。同样,在此过程中,考虑了四个关键指标对在线地图的影响。这些参数是平均任务执行时间(ATET),平均任务系统利用率(ATSU),平均任务等待时间(ATWT)和平均任务响应时间(ATRT)。将TCB和TRB机制与迁移策略结合使用表明,新算法具有更好的ATET,ATRT,ATWT和ATSU。与以前的机制相比,它分别具有23.5494、97.1216、39.1291和4.142%的改进。

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