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A policy-based resource brokering environment for computational grids.

机译:用于计算网格的基于策略的资源代理环境。

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With the advances in networking infrastructure in general, and the Internet in particular, we can build grid environments that allow users to utilize a diverse set of distributed and heterogeneous resources. Since the focus of such environments is the efficient usage of the underlying resources, a critical component is the resource brokering environment that mediates the discovery, access and usage of these resources. With the consumer's constraints, provider's rules, distributed heterogeneous resources and the large number of scheduling choices, the resource brokering environment needs to decide where to place the user's jobs and when to start their execution in a way that yields the best performance for the user and the best utilization for the resource provider.; As brokering and scheduling are very complicated tasks, most current resource brokering environments are either specific to a particular grid environment or have limited features. This makes them unsuitable for large applications with heterogeneous requirements. In addition, most of these resource brokering environments lack flexibility. Policies at the resource-, application-, and system-levels cannot be specified and enforced to provide commitment to the guaranteed level of allocation that can help in attracting grid users and contribute to establishing credibility for existing grid environments.; In this thesis, we propose and prototype a flexible and extensible Policy-based Resource Brokering Environment (PROBE) that can be utilized by various grid systems. In designing PROBE, we follow a policy-based approach that provides PROBE with the intelligence to not only match the user's request with the right set of resources, but also to assure the guaranteed level of the allocation. PROBE looks at the task allocation as a Service Level Agreement (SLA) that needs to be enforced between the resource provider and the resource consumer. The policy-based framework is useful in a typical grid environment where resources, most of the time, are not dedicated. In implementing PROBE, we have utilized a layered architecture and façade design patterns. These along with the well-defined API, make the framework independent of any architecture and allow for the incorporation of different types of scheduling algorithms, applications and platform adaptors as the underlying environment requires. We have utilized XML as a base for all the specification needs. This provides a flexible mechanism to specify the heterogeneous resources and user's requests along with their allocation constraints. We have developed XML-based specifications by which high-level internal structures of resources, jobs and policies can be specified. This provides interoperability in which a grid system can utilize PROBE to discover and use resources controlled by other grid systems.; We have implemented a prototype of PROBE to demonstrate its feasibility. We also describe a testbed environment and the evaluation experiments that we have conducted to demonstrate the usefulness and effectiveness of our approach.
机译:总体而言,随着网络基础架构(尤其是Internet)的发展,我们可以构建网格环境,允许用户利用各种分布式和异构资源。由于此类环境的重点是底层资源的有效使用,因此关键组件是介导这些资源的发现,访问和使用的资源代理环境。考虑到消费者的约束,提供者的规则,分布的异构资源以及大量的调度选择,资源代理环境需要确定放置用户作业的位置以及何时开始执行作业,从而为用户和用户带来最佳性能。资源提供者的最佳利用率;由于代理和调度是非常复杂的任务,因此大多数当前资源代理环境要么特定于特定的网格环境,要么具有有限的功能。这使其不适用于具有异构需求的大型应用程序。另外,大多数这些资源代理环境缺乏灵活性。无法在资源,应用程序和系统级别上指定和执行策略,以对保证的分配级别做出承诺,这有助于吸引网格用户并有助于建立现有网格环境的信誉。在本文中,我们提出并原型化了一个可扩展的基于策略的资源代理环境 PROBE ),该系统可用于各种网格系统。在设计PROBE时,我们遵循一种基于策略的方法,该方法为PROBE提供了智能,不仅使用户的请求与正确的资源集相匹配,而且确保了分配水平的保证。 PROBE将任务分配视为服务级别协议(SLA),需要在资源提供者和资源使用者之间强制执行。基于策略的框架在典型的网格环境中非常有用,在大多数情况下,资源都不专用。在实施PROBE时,我们利用了分层的体系结构和立面设计模式。这些加上定义良好的API,使框架独立于任何体系结构,并允许根据基础环境的要求合并不同类型的调度算法,应用程序和平台适配器。我们已经将XML作为满足所有规范需求的基础。这提供了灵活的机制来指定异构资源和用户请求及其分配约束。我们已经开发了基于XML的规范,通过该规范可以指定资源,作业和策略的高级内部结构。这提供了互操作性,网格系统可以利用该互操作性来探测和使用其他网格系统控制的资源。我们已经实现了PROBE的原型以证明其可行性。我们还描述了一个测试平台环境以及我们进行的评估实验,以证明我们的方法的有效性和有效性。

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