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Handling Resource Failure Towards Load Balancing in Computational Grid Environment

机译:处理资源故障对计算网格环境中的负载平衡

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A computational grid environment consists of several loosely coupled heterogeneous resources though a network. The resources may geographically reside in any part of the planet and its interaction with other components in the grid is independent of its location. The grid generally follows a Client-Broker-Resource System, in which the broker acts as an intermediary between the clients and the resources. The broker relays a client's request to the relevant available resource retrieves the response and relays the response back to the client. One of the major concerns in computational grid environment arises when there is a failure of any resource belonging to any grid site and that particular resource was already assigned a job by the resource broker then the situation becomes worse. The objective of this paper is to propose an approach to tackle this type of problematic situation in grid. This paper also emphasizes on a central control unit, known as resource broker, which is responsible for all the communications between the client/s and resource/s. This paper also proposes an approach for the optimum use of the available resources in the grid, so that the load across the grid is balanced. The major objective of this paper is to handle resource failure scenario in already proposed NDFS algorithm and to present the experimental results of enhanced NDFS algorithm implemented using UNICORE.
机译:计算网格环境包括多个松散耦合的异构资源,虽然是网络。资源可以在地球的任何部分地理位地居住,并且其与网格中其他组件的交互无关。该网格通常遵循客户端 - 代理资源系统,其中经纪人充当客户端和资源之间的中介。代理中继客户端对相关的可用资源的请求检索响应并将响应返回给客户端。计算网格环境中的主要问题之一是由于属于任何网格站点的任何资源并且已经将该特定资源分配了资源代理的工作,那么情况变得更糟。本文的目的是提出一种解决网格中这种有问题情况的方法。本文还强调了中央控制单元,称为资源代理,其负责客户端和资源之间的所有通信。本文还提出了一种方法,以便最佳地利用网格中的可用资源,从而平衡网格上的负载。本文的主要目的是处理已经提出的NDFS算法中的资源故障情景,并呈现了使用Inicore实现的增强型NDFS算法的实验结果。

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