Details
ISBN/EAN: 978-3-659-59373-4
Einband: kartoniertes Buch
Weitere Details
Auflage:
1. Auflage 2014
1. Auflage 2014
Erschienen am:
16.10.2014
16.10.2014
Sprache:
English
English
Umfang:
160 S.
160 S.
Format (T/L/B):
1.1 x 22 x 15 cm
1.1 x 22 x 15 cm
Hersteller:
BoD - Books on Demand
info@bod.de
In de Tarpen 42
DE 22848 Norderstedt
BoD - Books on Demand
info@bod.de
In de Tarpen 42
DE 22848 Norderstedt
Weitere Details
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Optimal Capacity Planning of Distributed Generators
An Unbalanced Multi-phase Optimal Power Flow based Approach for MV/LV Distribution Networks
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Beschreibung
In this book, a method based on a sensitivity analysis and quadratic curve-fitting technique for power loss reduction in a low-voltage distribution area is proposed. For determining the optimum generation capacity of multiple DG units, a new methodology based on an unbalanced multi-phase optimal power flow (UM-OPF) is also presented. During the formulation of the UM-OPF, an optimisation algorithm is developed in Matlab and the unbalanced multi-phase power flow is solved using the Electric Power Research Institutes (EPRI) software OpenDSS. To ensure a global minimum loss profile, adaptive weight particle swarm optimisation (AW-PSO) algorithm is used which shows better convergence profile compared with basic PSO algorithm. Validation of the proposed methodologies is also conducted using an exhaustive search algorithm. The results obtained from the proposed methods show that significant loss reduction is possible using multiple optimum sized DG units. To determine the optimum DG capacity, with varying generation and load, a cost minimisation planning methodology is also proposed. During the planning process, different DG technologies are considered.
Über Adnan Anwar, Hemanshu Roy Pota
Adnan Anwar received his Master by Research degree from the UNSW Australia. He joined the University of Asia Pacific (UAP) as a lecturer in 2009. Currently, he is working as a postgraduate researcher in UNSW Australia. He has also worked with National ICT Australia (NICTA).