组织对象的资源建模方法

N. Plotnikov
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引用次数: 0

摘要

本文提出了资源方法论和软计算的发展是本体设计的新方向。选择航空运输组织的对象作为应用领域:公司、社会团体、个人。现有的对资源的认识与消费观念有关。问题是,资源的类别没有确定,也没有人道主义研究,主要是在逻辑、哲学和语言学方面。已知的资源分类和类型是众多的、多样的,并且相互之间不可简化。对“资源”范畴提出了新的理解和逻辑阐述。资源方法提供了自己的基础和来源。理论基础由以下内容构成:原则、假设、语言、条款、条件和程序。该内容允许您生成键定义的输出。资源设计(建模)是基于资源模型的概念。资源建模可以定义为将对象属性参数从指定的定义区域显示到指示值区域。提出的资源建模一致性假设假设,自然语言工具:在关系中用于描述对象的单词、概念、名称、词汇、语法、句法,可以转换为适合后续计算和自动化管理的正式模型。关系显示在语句的伪物理逻辑中,这允许我们将数字分配给非数字性质的可观察对象。系统的类似物被用来发展设计和建模的原则、条件和程序。资源设计的基础是形式化的资源模型,在此基础上形成要素:轮廓复合体、资源元组。因此,资源法允许我们通过将评估程序转移到强度量尺度的领域来为弱非度量尺度的对象属性分配数字,从而建立了应用定性和定量研究与开发方法的新组合。以航空运输综合体为例,给出了本学科领域中实物资源设计与建模的实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods of Resource Modeling of Organizational Objects
The development of resource methodology and soft computing in this paper is presented as a new direction of ontological design. The objects of air transport organizations are chosen as the applied area: a company, a social group, an individual. The existing understanding of re-sources is related to the concepts of consumption. The problem is that the category of re-sources is not identified and does not have a humanitarian study, primarily in logic, philosophy, and philology. The known classifications and types of resources are numerous, diverse, and mutually irreducible. A new understanding and logical elaboration of the "resource" category is proposed. The resource methodology offers its own bases and sources. The theoretical foundations are formed in the following content: principles, hypotheses, language, terms, conditions, and procedures. This content allows you to generate output of key definitions. Re-source design (modeling) is based on the concept of a resource model. Resource modeling can be defined as displaying object property parameters from a specified definition area to the area of indicator values. The proposed hypotheses of resource modeling consistency postulate that natural language tools: words, concepts, names, vocabulary, grammar, syntax, used in relations to describe objects, can be transformed into formal models that are suitable for subsequent calculations and automated management. Relations are displayed in the pseudo-physical logic of statements, which allows us to assign numbers to observable objects of non-numeric nature. Analogs of systemology are used to develop principles, conditions, and procedures for design and modeling. The basis of resource design is a formal resource model, on the basis of which elements are formed: complexes of contours, tuples of resources. Thus, the resource method al-lows us to assign numbers to the properties of objects in weak non-metric scales by shifting the assessment procedures to the area of strong metric scales, which establishes new combinations of applying qualitative and quantitative methods of research and development. A sample of practical resource design and modeling of objects in the subject area is presented on the example of the air transport complex.
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