Abstract

The article describes the concept of the methodology of intellectual labor automation, a formal description of the conceptual model (CM) at the object level, and also a description of the analytical processing of CM. The conceptual model is the basis for the design of the system. The conceptual model of an applied task reflects the semantics (the system of knowledge) of the subject field in the form of static and dynamic structures and their linkage. The elements of the static structure are subject categories defined by classes: cycle, process, task, component, object, feature, value. The dynamic structure reflects the system of subject dependences which describes the process of performing a subject task. The main stage of conceptual model analytical processing is the restructuring of the dynamic component. The method and technique of descriptions restructuring of subject dependences system at the level of features are developed. The method allows to provide reduction of time and spatial expenses on performance of process of the decision of the applied task in the computing environment at early stages of information-active systems design

Highlights

  • At automation of subject tasks, it is necessary to execute modeling of task decision process and a system design automated, information, information-active, intellectual, etc

  • The methodology of intellectual labor automation [12] developed at the Moscow State University of Technology "STANKIN" offers an industrial method of automated systems creation and determines a necessary and sufficient set of model representations

  • The set includes the following descriptions: a) a subject task performance process - initial model representation [2, 3]; b) a knowledge system structure about subject field – conceptual model representation; c) an automated system project consisted of two model representations: infological and datalogical - invariant to the program and technical environment and implementers and one oriented to them

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Summary

Introduction

At automation of subject tasks, it is necessary to execute modeling of task decision process and a system design automated, information, information-active, intellectual, etc. Levels define classes of subject categories - cycle, process, task, component, object, feature, value. They are formed in accordance with 7 semantic levels: cycle, process, task, component, object, feature, value. Under the scheme of subject categories for subject dependencies we will understand the multitude of elementary schemes defined by: - general (one) contextual subject category; - non-repetitive structural subject categories This is represented in the form h 2 ı ııı = hi2iiiiiiiiiii, ... The relations describing interrelations of the basic static and dynamic components of applied task model of object level can be represented in the following form: RK2P−1(n) ⊂ A(n) × A(n) ... The relations describing interrelations of the basic static and dynamic components of applied task model of object level can be represented in the following form: RK2P−1(n) ⊂ A(n) × A(n) ... × A(n) × W (n), (18)

Analytical processing of the conceptual model
Conclusion
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