Mathematical Dynamic Model for Long-Term Distribution System Planning

The presented model gives optimal values of all distribution system design parameters for a consumption area without existing network, in which uniform load density increases with time. The model belongs to a class of nonlinear mixed integer programming tasks, subject to nonlinear constraints. Trans...

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Veröffentlicht in:IEEE transactions on power systems Jg. 1; H. 1; S. 34 - 40
1. Verfasser: Mikic, Obrad M.
Format: Journal Article Tagungsbericht
Sprache:Englisch
Veröffentlicht: New York, NY IEEE 01.02.1986
Institute of Electrical and Electronics Engineers
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ISSN:0885-8950
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Zusammenfassung:The presented model gives optimal values of all distribution system design parameters for a consumption area without existing network, in which uniform load density increases with time. The model belongs to a class of nonlinear mixed integer programming tasks, subject to nonlinear constraints. Transformation of dynamic problem into nondynamic form is performed using a defined planning strategy. Objective function of the model is the present value of system investment, maintenance and energy loss costs within a planning period. The constraints, among others (thermal, integer), are the permitted voltage drops in lines. The solution algorithm is described and results of model application for a rural area are given.
Bibliographie:SourceType-Scholarly Journals-2
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ObjectType-Conference Paper-1
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SourceType-Conference Papers & Proceedings-1
ObjectType-Article-3
ISSN:0885-8950
DOI:10.1109/TPWRS.1986.4334841