可持续发展任务中系统对象模型构建的信息熵空间概念

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
T. Kozulia
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引用次数: 0

摘要

上下文。解决可持续发展问题中跨学科研究深化的任务解决方案,在系统建模的基础上寻找真实的社会-生态-经济对象,并引入这些对象的状态和功能的信息熵空间,以确定不确定条件下的管理决策。目标。将被研究的社会-生态-经济对象现状建模为基于系统学模型的“研究系统-环境”的合作关系,通过发现对象功能表征的信息熵空间内的内外部因素相互作用来确定对象研究的目标条件。方法。本文从可持续发展需求匹配的角度,给出了基于该方法的复杂社会-生态-经济对象状态估计及其在随机环境条件下发展的逻辑-实验研究结果。该方法是利用复杂系统对象目标状态质量生态函数建立研究对象熵模型和算法的系统基础。质量泛函是通过对技术(经济)系统、社会系统和自然系统的监测数据统计分析得出的“对象系统-环境”状态熵函数的相互关系及其相互作用过程。结果。首次提出了利用系统学基础的复杂联合对研究对象结构进行识别,同时提出了对任意对象系统的元素描述和状态与过程的熵描述的信息熵理论知识的识别。引入相对一致泛函对研究对象的平衡状态进行最终评价。它允许在嵌套系统结构的基础上估计系统和过程不稳定点的存在。协同正反馈预测对决策具有重要意义。结论。确定了系统和过程状态熵估计的复杂方法。系统模型“对象-环境”是确定研究对象可持续发展条件的基础,因为使用了发现的自发和自然的协同反馈。复杂系统研究的通用研究基础是由于过程协同作用和基于系统建模和输入信息熵估计的复杂使用的“对象-环境”连接而进行的状态和功能估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE CONCEPT OF INFORMATION-ENTROPY SPACE FOR SYSTEM OBJECTS MODELS BUILDING USED IN SUSTAINABLE DEVELOPMENT TASKS
Context. Solving tasks of interdisciplinary research deepening during sustainable development problems solutions search for real social-ecological-economical objects based on systemological modelling and introducing information-entropy space of such objects state and functionality determining for making managerial decisions in uncertainty conditions. Objective. Modelling current situation of researched social-ecological-economical object as the cooperative connection «studied system-environment» based on systemological model, which determines object study goal conditions due to discovery of internal and external factors interaction inside information-entropy space of object functioning representation. Method. The paper presents the logical-experimental research results of complex social-ecological-economical objects state estimation, their development in stochastic environment conditions from the point of view of sustainable development requirements match based on proposed approach. This approach is the systemological basis of studied object entropy model creation and algorithmization by ecological functional of quality of the complex system objects goal state. The quality functional is the interrelation of «object systems-environment» state entropy functions and their interaction processes, which are gotten through monitoring data statistical analyses of objects that belong to technogenic (economical), social and natural systems. Results. The usage of systemology basis complex union for studied object structure identification is suggested for the first time, along with identification of theoretical knowledge for informational entropy for any object system element description and entropic description of states and process. The relative accordance functional is introduced for final evaluation of the studied object equilibrium. It allows to estimate the presence of system and processes unstable points on the basis of nested system structure. It is important for decision making with synergistically positive feedbacks prediction. Conclusions. The systems and process states entropic estimation complex approach is determined. The systemological model «object-environment» is the basis for determining conditions of studied object sustainable development due to usage of found spontaneous and natural synergistically feedbacks. The universal research base for complex systems study was received for their state and functionality estimation due to process synergy and «object-environment» connections that are based on complex usage of systemological modelling and input information entropy estimation. 
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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