2019
DOI: 10.1051/e3sconf/20198402005
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Mathematical model of a part of an opened extra-high voltage electrical grid

Abstract: In the paper, based on interdisciplinary approaches to modeling, a mathematical model of a part of an opened extra-high voltage electrical grid, which key elements are two long power transmission lines with distributed constants is presented. Within this framework the analysis of transient processes in power transmission lines in a single-line arrangement is carried out. The results of transient processes are displayed by means of figures; they are under ongoing research.

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Cited by 7 publications
(9 citation statements)
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“…Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32]. A general interdisciplinary theory modifies the Hamilton-Ostrogradsky principle by expanding the Lagrangian with two components: Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32].…”
Section: Mathematical Model Of An Electromechanical Systemmentioning
confidence: 99%
See 3 more Smart Citations
“…Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32]. A general interdisciplinary theory modifies the Hamilton-Ostrogradsky principle by expanding the Lagrangian with two components: Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32].…”
Section: Mathematical Model Of An Electromechanical Systemmentioning
confidence: 99%
“…Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32]. A general interdisciplinary theory modifies the Hamilton-Ostrogradsky principle by expanding the Lagrangian with two components: Mathematical models of the drive system elements will be presented on the basis of Figures 1 and 2 and of [9,10,21,[28][29][30][31][32]. A general interdisciplinary theory modifies the Hamilton-Ostrogradsky principle by expanding the Lagrangian with two components: energy of internal and external dissipation and energy of external non-potential forces is applied to mathematical modelling of the drive system's electric elements.…”
Section: Mathematical Model Of An Electromechanical Systemmentioning
confidence: 99%
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“…Математическая модель участка энергосистемы рассмотрена в [Lis et al, 2019]. Для описания процессов в энергосети использовалось телеграфное уравнение с учетом диссипативных слагаемых.…”
Section: Introductionunclassified