DocumentCode
1469335
Title
Co-ordinated economic and advance dispatch procedures
Author
Demartini, G. ; Granelli, G.P. ; Marannino, P. ; Montagna, M. ; Ricci, M.
Author_Institution
Centro Ricerca di Autom., ENEL SpA, Cologno Monzese, Italy
Volume
11
Issue
4
fYear
1996
fDate
11/1/1996 12:00:00 AM
Firstpage
1785
Lastpage
1791
Abstract
The paper deals with the problem of improving co-ordination between the online economic dispatch (ED) function and the very short-term advance dispatch (AD). Both procedures are formulated as optimal dispatching problems, but while a static model is used for the ED function, a dynamic model is employed in AD. The need to account for ramp-rate limits of thermal power generation even in the ED phase is satisfied by adding suitable penalty terms to the objective function of the classical ED problem. These penalties are proportional to the Lagrange multipliers associated with ramp-rate limits that are active at the AD solution. An efficient updating procedure is used to correct the penalization by taking the load forecast errors into account. The proposed co-ordination procedure can provide the snapshot ED with the long range perspective of AD without resorting to heuristic approaches. The procedure is validated by extensive testing carried out both on a small CIGRE test case and on a medium-large scale network representative of the Italian EHV system. Moreover, test results show that the CPU time requirements of the modified ED procedure are still suited to online applications
Keywords
economics; load dispatching; load forecasting; power system analysis computing; power system planning; thermal power stations; CPU time requirements; EHV power system; Italy; Lagrange multipliers; co-ordination procedure; computer simulation; load forecast errors; objective function; online economic dispatch; optimal dispatching problems; penalty terms; ramp-rate limits; thermal power generation; updating procedure; very short-term advance dispatch; Dispatching; Economic forecasting; Error correction; Fuel economy; Lagrangian functions; Load forecasting; Power generation; Power generation economics; Power system dynamics; System testing;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/59.544643
Filename
544643
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