DocumentCode
955443
Title
New technique for adaptive-frequency load shedding suitable for industry with private generation
Author
Elkateb, M.M. ; Dias, M.F.
Author_Institution
Sch. of Electron. & Electr. Eng., Bath Univ., UK
Volume
140
Issue
5
fYear
1993
fDate
9/1/1993 12:00:00 AM
Firstpage
411
Lastpage
420
Abstract
A new principle for adaptive load shedding schemes is investigated. The method requires the instant collection of data that can be utilised in analytical formulae for the frequency and its rate of change. The correctness of the method requires some sensitivity analyses towards the effectiveness of the parameters of every element of the industrial power system. Dynamic loads are represented with a new combined d-factor to account for both frequency and voltage changes. The turbine speed regulator and the generator automatic voltage regulator with a full-phase coordinate model is analysed and compared with the performance of the transient energy function and its analytical formulae. The new adaptive technique, which utilises the principle of adaptive timing setting triggered by rate of change of frequency (ROCOF) relaying and, with an estimate of the lowest frequency at df/dt=0, is compared with a modern scheme utilising ROCOF and two linear-type relays. The proposed adaptive method reduces the amount of load shed, and is inherently accurate
Keywords
electric generators; industrial plants; load shedding; power system control; sensitivity analysis; turbines; velocity control; voltage control; voltage regulators; adaptive-frequency load shedding; combined d-factor; dynamic loads; frequency changes; full-phase coordinate model; generator automatic voltage regulator; industrial power system; instant data collection; linear-type relays; private generation; rate of change of frequency relaying; sensitivity analyses; transient energy function; turbine speed regulator; voltage changes;
fLanguage
English
Journal_Title
Generation, Transmission and Distribution, IEE Proceedings C
Publisher
iet
ISSN
0143-7046
Type
jour
Filename
237909
Link To Document