基于智能电网概念的城市供电和照明系统模式控制

P. Hovorov, Anastasia Kindinava, V. Hovorov, Omer Abdelrhim
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引用次数: 2

摘要

这项工作致力于提高城市供电和照明系统作为一个复杂的生物技术系统的效率。网络的技术复杂性高,分支性强,加上大量的元素以一种难以预测的模式运行,使得对这种网络模式的管理成为一项相当困难的任务,这需要大量关于电网及其元素的参数和模式的信息,以及大量校正元素的使用。然而,由于缺乏科学基础和对城市电网整体模式的自动化控制,这一问题的解决变得非常复杂,考虑到城市电网的特点、参数在空间上的分布、时间上的过程以及网络制度对居民社会经济条件的影响,在这些条件下,这一问题几乎无法解决。考虑到上述情况,作者已经开发了城市电网模式自动化控制的科学基础,基于使用根据分层原则建立的分布式多级控制系统,结合在相开关系统的基础上使用负载节点的校正多功能装置。它们与智能电网概念的结合使用,开启了自动改变负载节点电压和电流的模块、相移和谐波组成的可能性,通过降低网络中的电压和功率损耗,确保城市电网作为一个整体的最佳功能。
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Control of Modes of Power Supply and Lighting Systems of Cities Based on the Concept of Smart-Grid
The work is devoted to increasing the efficiency of power supply and lighting systems of cities as a complex biotechnical system. The high level of technical complexity of networks, strong branching, combined with a large number of elements operating in a little predictable mode, make the management of the modes of such networks a rather difficult task, which requires a large amount of information regarding the parameters and modes of electrical networks and their elements, as well as the use of a large number of corrective elements. However, the lack of scientific foundations and automated control of the modes of urban electrical networks as a whole significantly complicates the solution of this problem, and taking into account the characteristics of urban electrical networks, the distribution of parameters in space, and processes in time and the influence of network regimes on the socio-economic conditions of residents, under these conditions, make it almost unsolvable. Considering the above, the authors have developed the scientific foundations for the automated control of modes of urban electrical networks, based on the use of distributed multi-level control systems built according to a hierarchical principle, in combination with the use of corrective multifunctional devices in load nodes, built on the basis of phase-switching systems. Their use in combination with the use of the Smart-Grid concept opens up the possibility of automatically changing the module, phase shift and harmonic composition of voltages and currents in load nodes, ensuring the optimal functioning of urban electrical networks as a whole, by reducing voltage and power losses in networks.
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