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Randomized Hydrodynamic Load Balancing Approach

机译:随机流体动力负载平衡方法

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Load balancing is performed to achieve the optimal use of the existing computational resources as much as possible whereby none of the resources remains idle while some other resources are being utilized. Balanced load distribution can be achieved by the immigration of the load from the source nodes which have surplus workload to the comparatively lightly loaded destination nodes. Applying load balancing during run time is called dynamic load balancing (DLB). DLB can be realized both in a direct or iterative manner according to the execution node selection. In iterative methods, the final destination node is determined through several iteration steps, while in direct methods it is selected in one step. This paper presents the randomized hydrodynamic load balancing (RHLB) method which is a hybrid method that takes advantage of both direct and iterative methods. Using random load migration as a direct method, RHLB approach intends to solve the problems derived from the exceptional instantaneous load rises, and diffuse the surplus workload to relatively free resources. Besides, using hydrodynamic approach as an iterative method, RHLB aims to consume minimum possible system resources to balance the common workload distributions. The results of the experiments designate that, RHLB outruns other iterative based methods in terms of both balance quality and the total time of the load balancing process.
机译:执行负载平衡以尽可能地实现现有计算资源的最佳用途,从而没有任何资源仍然闲置,而其他资源正在使用。平衡负载分布可以通过从源节点移植负载来实现,该源节点将剩余工作量与相对较轻加载的目的地节点。在运行期间应用负载平衡被称为动态负载平衡(DLB)。可以根据执行节点选择以直接或迭代方式实现DLB。在迭代方法中,通过多个迭代步骤确定最终目的地节点,而在一步中以直接方法选择它。本文提出了一种随机流体动力负载平衡(RHLB)方法,其是一种利用直接和迭代方法的混合方法。使用随机负载迁移作为直接方法,rhlb方法打算解决源自瞬时负载升高的问题,并将剩余工作量扩散到相对自由资源。此外,使用流体动力学方法作为迭代方法,RHLB旨在消耗最低可能的系统资源来平衡共同的工作负载分布。实验结果指定,在平衡质量和负载平衡过程的总时间方面,rhlb超越了其他基于迭代的方法。

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