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FORMALIZATION OF THE FUNCTIONAL ANALYSIS METHODOLOGY TO IMPROVE NPP IC SYSTEM DESIGN PROCESS

机译:改进NPP仪表控制系统设计过程的功能分析方法的形式化

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Functional analysis is a universal methodology, which is able to support NPP and l&C design process. The paper proposes an approach to combining the functional analysis process and I&C design process into a single I&C functional design process. Operation of a system is considered as a set of functions providing not only the achievement of goal, but also keeping material and energy balances. A notation for graphical representation of semantic network (hierarchy of functions) describing a system is suggested. This network includes four levels, namely functional goals, abstract functions level, process functions level, and equipment level. The elements of the hierarchy are connected by three kinds of relationships, namely: parent-child, main-support, and cause-consequence. Then the semantic network (hierarchy) of functions is converted into a functional network which looks as a directed graph. This graph is used for development of control algorithm and for building of instrumentation and control functions hierarchy. Farther analysis of process functions reveals a set of criteria indicating real-time status and effectiveness of functions. The criteria are used for allocation of instruments and actuators. The process of functional analysis and design is illustrated in application to a simple heat generation system.
机译:功能分析是一种通用方法,能够支持NPP和L&C设计过程。本文提出了一种将功能分析过程和I&C设计过程组合为单个I&C功能设计过程的方法。系统的运行被认为是一组功能,不仅可以实现目标,而且可以保持物质和能量的平衡。建议使用一种表示系统的语义网络(功能层次)的图形表示法。该网络包括四个级别,即功能目标,抽象功能级别,过程功能级别和设备级别。层次结构的元素通过三种关系连接,即:父子关系,主要支持关系和因果关系。然后,将功能的语义网络(层次结构)转换为看起来像有向图的功能网络。该图用于控制算法的开发以及仪表和控制功能层次的构建。对过程功能的进一步分析揭示了一组指示实时状态和功能有效性的标准。该标准用于分配仪器和执行器。功能分析和设计的过程在一个简单的发热系统中的应用进行了说明。

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