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Object structures for real-time systems and simulators

机译:实时系统和模拟器的对象结构

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摘要

The market for real-time applications has grown considerably in years, and in response engineering methods have also improved. Today's techniques, while adequate for building moderately complex embedded applications, are inadequate for building the large, highly reliable, very complex real-time applications that are increasingly in demand. To build such large systems, engineering teams need a more uniform, integrated approach than is available today. Ideally, the development approach would make uniform the representations of both application environments and control systems as they proceed through various system engineering phases. The ideal representation (or modeling) scheme should be effective not only for abstracting system designs but also for representing the application environment. It should also be capable of manipulating logical values and temporal characteristics at varying degrees of accuracy. This ideal modeling scheme is not likely to be realized through conventional object models. Although they are natural building blocks for modular systems, conventional object models lack concrete mechanisms to represent the temporal behavior of complex, dynamic systems. This article describes a real-time object structure that can flexibly yet accurately specify the temporal behavior of modeled subjects. This approach supports strong requirements-design traceability, the feasibility of thorough and cost-effective validation, and ease of maintenance.
机译:多年以来,实时应用程序市场已经有了相当大的增长,并且响应工程方法也得到了改善。当今的技术虽然足以构建中等复杂的嵌入式应用程序,但不足以构建日益增长的大型,高度可靠,非常复杂的实时应用程序。为了构建如此大的系统,工程团队需要比今天更统一,集成的方法。理想情况下,开发方法将使应用程序环境和控制系统的表示形式在各个系统工程阶段进行统一处理。理想的表示(或建模)方案不仅应对抽象系统设计有效,而且对表示应用程序环境也应有效。它还应该能够以不同的准确度来操纵逻辑值和时间特性。通过常规的对象模型不太可能实现这种理想的建模方案。尽管它们是模块化系统的自然组成部分,但是常规对象模型缺少用于表示复杂,动态系统的时间行为的具体机制。本文介绍了一种实时对象结构,它可以灵活而准确地指定建模对象的时间行为。这种方法支持强大的需求设计可追溯性,全面且经济高效的验证可行性以及易于维护。

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