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Hierarchical Situational Models and Linguistic Means for Their Realization

机译:他们实现的分层情境模型和语言手段

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Hierarchical model description language based on hierarchical situational model for design the control system for complex technical objects has been developed. Any complex technical objects (CTO) may be consider as a hierarchy of a large number of interconnected components, which operate in a complex environment. The examples of these CTO are mobile robots, air/spacecraft, and other complex moving systems. Hierarchical situational model (HSM) as hierarchy of transition graphs of special kind is considered. The transition graph states correspond to situations, and arcs - to situations transitions. Every transition is associated with a predicate of situation change. Some features of hierarchical situational model for modeling and design of CTO control systems and its properties are considered. Realization of control process according to the HSM is suggested as consequent changing of the situations and executing control action corresponding the situation. This interpretation process for realization control process of CTO algorithm is given in details. The hierarchical model description language for practical realization HSM is suggested. Syntax's constructions and semantic features of the language are discussed and an example of hierarchical model definition is considered.
机译:基于分层情境模型的设计描述语言的制定了用于设计复杂技术对象的控制系统。任何复杂的技术对象(CTO)都可以考虑作为大量互连组件的层次结构,该组件在复杂的环境中运行。这些CTO的示例是移动机器人,空气/航天器和其他复杂的移动系统。考虑了分层情境模型(HSM)作为特种过渡图的层次结构。转换图表状态对应于情况和弧 - 到情况过渡。每个转换都与情况变化的谓词相关联。考虑了CTO控制系统建模与设计的分层情境模型及其性能的一些特征。根据HSM实现控制过程的实现是随着情况的改变和执行控制动作的情况。细节给出了CTO算法实现控制过程的这种解释过程。提出了实际实现HSM的分层模型描述语言。讨论语言的语法的结构和语义特征,并考虑分层模型定义的示例。

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