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Global Grid Paradigm--'A Collaborative Approach to People, Resources and Services Using Distributed Technologies in the Asia-Pacific Region'

机译:全球网格范式-“使用亚太地区分布式技术的人员,资源和服务的协作方法”

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Distributed systems constitute a core area of study in the science of computing. These systems evolved from the stand-alone computers of the 1970s and 1980s to the complex networks today involving the interaction of large numbers of components namely Computer terminals, Client/Server based network computing, and other high end resources. Over the past decade or so distributed computing has come up in a big way. This is partly due to the rising cost of high-end machines and the need of lower-end users for large scale computing. Their evolution has opened up the development of a wide range of high performing applications. It has changed the user驴s perspective of computing forever. The user now has the option of utilizing the collective capabilities of the resources by globally moving information from remote systems towards localized usage. Grid or Cluster computing has been a key technological breakthrough, although in its infancy has enabled people to virtually utilize "infinite" storage capacity and computing power by collaborating and consuming remote resources and services. However, building such systems for generic user needs involves subjecting the system to numerous complexities or system specific parameters. The paper highlights existing systems in the Asia Pacific region and talks about the major breakthroughs and limitations of existing distributed systems prevalent in the Asia Pacific.
机译:分布式系统构成了计算机科学领域的核心研究领域。这些系统从1970年代和1980年代的独立计算机发展到如今的复杂网络,其中涉及大量组件(即计算机终端,基于客户端/服务器的网络计算以及其他高端资源)的交互。在过去的十年左右的时间里,分布式计算已经有了很大的发展。部分原因是高端机器成本的上涨以及低端用户对大规模计算的需求。它们的发展开启了各种高性能应用程序的开发。它永远改变了用户驴计算的观点。用户现在可以选择通过将信息从远程系统全局迁移到本地使用来利用资源的集体能力。网格或集群计算是一项关键的技术突破,尽管在初期还使人们能够通过协作和使用远程资源和服务来虚拟利用“无限”的存储容量和计算能力。但是,为满足一般用户需求而构建这样的系统涉及使系统经受众多复杂性或系统特定参数的困扰。本文重点介绍了亚太地区的现有系统,并讨论了亚太地区现有的分布式系统的主要突破和局限性。

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