分布式实时对象保证服务时间分析

Kwang-Rok Kim
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引用次数: 7

摘要

随着对实时分布式系统需求的增加,对用于开发此类应用系统的编程工具的需求变得越来越迫切。长期以来,研究界一直认为这是一个重要的技术挑战,但在应对这一挑战方面却没有取得多大进展,这就是保证实时分布式系统的响应时间。要有效地应对这一挑战,必须解决两个基本问题:(1)建立分布式实时程序结构和系统基础结构,即操作系统(OS)结构和通信基础结构,以便系统地分析应用系统的最坏情况时间行为;(2)建立一种工具,可以自动分析最坏情况下的时间行为,同时只给设计师留下最少的工作。问题领域(1)长期以来一直被认为是一个研究领域,但直到最近几年才开始出现可用技术基础的框架。换句话说,长期以来一直缺乏完全通用且易于分析的分布式实时程序结构,也缺乏有用的操作系统时序模型。然而,在骨架的基础上出现了,预计未来将朝着建立完整的技术基础迅速发展。因此,在处理问题(1)的最新进展的基础上,对问题(2)发起新的更大规模攻击的时机似乎已经成熟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of guaranteed service times of distributed real-time objects
As the demands for real time distributed systems increase, the need for programming tools useful in development of such application systems is becoming increasingly acute. An issue that the research community has long recognized as an important technological challenge but has not shown much progress in meeting the challenge is to guarantee response times of real time distributed systems. Two basic problems must be solved to effectively meet this challenge: (1) to establish the distributed real time program structure and the system infrastructure structure, i.e., the structure of the operating system (OS) and the communication infrastructure, that enable systematic analysis of the worst case time behavior of the application systems; and (2) to establish a tool which performs automated analysis of the worst case time behavior while leaving only minimal work to the designers. The problem area (1) has been recognized as a research area for a long time, but only in recent years has the skeleton of a usable technical foundation started emerging. In other words, there has long been a lack of fully general and yet easily analyzable distributed real time program structures and also a lack of useful OS timing models. However, on the basis of the skeleton emerged, rapid progress is expected in the future toward establishment of a full technical foundation. Therefore, the time seems ripe for launching new larger scale attacks on problem (2) on the basis of those recent developments in handling problem (1).
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