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An integrated knowledge-based disk system design aid.

机译:基于知识的集成磁盘系统设计辅助工具。

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摘要

Over the last decade, improvement in processor performance has outpaced the performance improvement in the disk subsystem. Therefore, the performance of many computers is paced by the performance of the disk system. Disk systems have been developed as an autonomous subsystem that meets the required performance by using architectural alternatives such as the multipath, disk buffer and disk interleaving. Traditionally, disk I/O systems have been designed by adhoc manual methods with little help from computer aids that do not permit the design and evaluation of more than a few design alternatives.;This dissertation presents a systematic design method and the development of a design aid that should improve the heuristics for disk I/O system design. The design aid is an integrated environment for menu-driven interactive design supported with a design taxonomy, performance analysis, and design guide using a frame-based common knowledge base of disk I/O system information. The aid formulates the design taxonomy into menus through which the design progresses. Performance analysis is accomplished by a library of analytic and discrete event simulation models implemented in Lisp with list structure and object-oriented operations. Each candidate design is guided by an expert system that gives advice to the designer for design modification that will improve the performance. To support the systematic approach taken in this research, performance models and design heuristics for the various architectural alternatives have been developed that have not previously been described.
机译:在过去的十年中,处理器性能的提高已经超过了磁盘子系统的性能提高。因此,许多计算机的性能取决于磁盘系统的性能。磁盘系统已开发为自主子系统,可通过使用体系结构替代方案(例如多路径,磁盘缓冲区和磁盘交错)来满足所需的性能。传统上,磁盘I / O系统是通过即席手动方法设计的,几乎没有计算机辅助工具的帮助,这些工具不允许设计和评估多个设计方案。本论文提出了一种系统的设计方法和设计的发展。有助于改善磁盘I / O系统设计启发式的工具。设计辅助工具是用于菜单驱动的交互式设计的集成环境,并使用磁盘I / O系统信息的基于框架的公共知识库来支持设计分类,性能分析和设计指南。辅助工具将设计分类标准制定为菜单,通过菜单可以进行设计。性能分析是通过在Lisp中使用列表结构和面向对象的操作实现的解析和离散事件仿真模型库完成的。每个候选设计均由专家系统指导,该专家系统会向设计人员提供建议以进行设计修改,以提高性能。为了支持本研究中采用的系统方法,已经开发了各种架构替代方案的性能模型和设计启发法,这些以前没有进行过描述。

著录项

  • 作者

    Cho, Kyungsan.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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