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A SYSTEMATIC DESIGN METHOD FOR HIGH QUALITY PROCESS-CONTROL SYSTEMS DEVELOPMENT

机译:高质量过程控制系统开发的系统设计方法

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摘要

Basically, the development of a software system contains specification, design, and implementation. Various specification mechanisms and design methods have been proposed to facilitate the implementation of software systems. However, high system quality cannot be easily assured because of some limitations of these current design methods as well as semantic gaps between the specification mechanisms and the design methods. In particular, manual effort is needed to transform the specification of a system into a design framework for the system. Considering these problems, in this paper, we propose a new system design method. This design method is systematic because by using it, the design framework of a system can be automatically created from the specification of the system. Also, the resulting design framework can support high quality assurance for the system. This design framework is a composition of several individual components, each of which can be completely independently developed and hardened. Further, the system properties (reliability, safety, liveness, etc.) can be mathematically inferred from the properties of the individual components. These components are referred to as IDEAL (Independently Developable End-user Assessable Logical) components and the design method is mainly targeted for continuous process-control systems. The paper develops the approach and illustrates it for a vehicle control system.
机译:基本上,软件系统的开发包含规范,设计和实现。已经提出了各种规范机制和设计方法以促进软件系统的实现。但是,由于这些当前设计方法的某些局限性以及规范机制和设计方法之间的语义鸿沟,无法轻松确保较高的系统质量。特别地,需要人工来将系统的规范转换为系统的设计框架。考虑到这些问题,本文提出了一种新的系统设计方法。该设计方法是系统的,因为通过使用它,可以根据系统的规范自动创建系统的设计框架。而且,最终的设计框架可以支持系统的高质量保证。该设计框架由几个单独的组件组成,每个组件可以完全独立地开发和硬化。此外,可以从各个组件的属性数学上推断出系统属性(可靠性,安全性,活动性等)。这些组件被称为IDEAL(可独立开发的最终用户可评估逻辑)组件,并且该设计方法主要针对连续过程控制系统。本文开发了该方法,并在车辆控制系统中进行了说明。

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