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Heterogeneous Computation Assignments in Coded Elastic Computing

机译:编码弹性计算中的异构计算分配

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We study the optimal design of a heterogeneous coded elastic computing (CEC) network where machines have varying relative computation speeds. CEC introduced by Yang et al. is a framework which mitigates the impact of elastic events, where machines join and leave the network. A set of data is distributed among storage constrained machines using a Maximum Distance Separable (MDS) code such that any subset of machines of a specific size can perform the desired computations. This design eliminates the need to re-distribute the data after each elastic event. In this work, we develop a process for an arbitrary heterogeneous computing network to minimize the overall computation time by defining an optimal computation load, or number of computations assigned to each machine. We then present an algorithm to define a specific computation assignment among the machines that makes use of the MDS code and meets the optimal computation load.
机译:我们研究了机器具有不同相对计算速度的异构编码弹性计算(CEC)网络的最佳设计。 CEC由Yang等人介绍。是一种框架,可减轻弹性事件的影响,在那里加入和离开网络。使用最大距离可分离(MDS)代码,使得一组数据分布在存储约束机之间,使得特定大小的任何机器子集可以执行所需的计算。此设计消除了在每个弹性事件后重新分配数据的需要。在这项工作中,我们开发了任意异构计算网络的过程,以通过定义最佳计算负载或分配给每台计算机的计算数来最小化整体计算时间。然后,我们呈现一种算法来定义利用MDS代码并满足最佳计算负载的机器之间的特定计算分配。

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