Title :
Optimal power flow as a tool for fault level-constrained network capacity analysis
Author :
Vovos, Panagis N. ; Harrison, Gareth P. ; Wallace, A. Robin ; Bialek, Janusz W.
Author_Institution :
Sch. of Eng. & Electron., Univ. of Edinburgh, UK
fDate :
5/1/2005 12:00:00 AM
Abstract :
The aim of this paper is to present a new method for the allocation of new generation capacity, which takes into account fault level constraints imposed by protection equipment such as switchgear. It simulates new generation capacities and connections to other networks using generators with quadratic cost functions. The coefficients of the cost functions express allocation preferences over connection points. The relation between capacity and subtransient reactance of generators is used during the estimation of fault currents. An iterative process allocates new capacity using optimal power flow mechanisms and readjusts capacity to bring fault currents within the specifications of switchgear. The method was tested on a 12-bus LV meshed network with three connection points for new capacity and one connection to an HV network. It resulted in significantly higher new generation capacity than existing first-come-first-served policies.
Keywords :
fault currents; iterative methods; load flow; optimisation; power generation planning; switchgear; fault currents; fault level-constrained network capacity analysis; generator transient reactance; iterative process; load flow analysis; optimal power flow; optimization methods; power generation planning; protection equipment; switchgear; twelve-bus LV meshed network; Capacity planning; Cost function; Fault currents; Investments; Load flow; Power generation; Protection; Switchgear; Testing; Transformers; Fault currents; load flow analysis; optimization methods; power generation planning;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2005.846070