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Three-Phase Transformer Dynamic Regimes Modelling as Targeted Approach in Industrial Ecology

机译:三相变压器动态状态建模作为工业生态学的目标方法

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摘要

A sustainable industrial metabolism, integrating technical patterns into ecological systems should be doubtless related to humans further challenges. By modeling the power electrical transformers in dynamic regimes according to an industrial ecosystem pattern, one could provide a holistic view of the interactions and symbiosis interrelationships among human activities, technical systems operation and ecological processes. The laws of the Universe should be used in assessing the viability of the human technical applications according to the ecosystems models. Physically, dynamic regimes of electric transformers are characterized by the variation in time of "electromagnetic status". Mathematically, the processes dynamics of electric transformers are described by differential equations which, in most cases, are nonlinear. Based on the mathematical model equations, in this paper will be presented the structural diagrams method, as a modeling method of three-phase electric transformers in dynamic regimes. Among others, the benefit derived from the easily conversion of structural diagrams in Matlab-Simulink implementations. By modeling the electrical transformer dynamic regimes according to an industrial ecosystem pattern, one could attempt to minimize the environmental impacts and optimize the efficiency of energy use within the power transformer operation.
机译:毫无疑问,可持续的工业新陈代谢,将技术模式整合到生态系统中应该与人类的进一步挑战有关。通过根据工业生态系统模式在动态状态下对电力变压器进行建模,可以提供人类活动,技术系统运行和生态过程之间的相互作用和共生相互关系的整体视图。根据生态系统模型,应使用宇宙定律评估人类技术应用的可行性。在物理上,变压器的动态状态的特征在于“电磁状态”的时间变化。在数学上,变压器的过程动力学由微分方程描述,在大多数情况下,它们是非线性的。在数学模型方程的基础上,本文将介绍结构图方法,作为三相变压器在动态状态下的建模方法。在其他方面,其好处来自于在Matlab-Simulink实现中轻松转换结构图。通过根据一种工业生态系统模式对电力变压器的动态状态进行建模,人们可以尝试将对环境的影响降至最低,并在电力变压器的运行中优化能源的利用效率。

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