DocumentCode :
473602
Title :
A hybrid approach of ultra-short term multinode load forecasting
Author :
Han, Li ; Han, Xueshan ; HUA, Jian ; GENG, Yan
Author_Institution :
Sch. of Electr. Eng., Shandong Univ., Jinan
fYear :
2007
fDate :
3-6 Dec. 2007
Firstpage :
1321
Lastpage :
1326
Abstract :
In the electric power system, grasping active and reactive load variation regularity of each node is a key for optimal dispatch, preventive control, security assessment, and transmission capacity evaluation, etc. This paper presents an approach of ultra-short forecasting for multi-node active and reactive load on the basis of former researches. It proposes a hierarchy and subarea idea to construct a framework of self- adapting dynamic model. With the top layer load forecasting implemented by recursive least square support vector machines (RLS-SVM) algorithm, discrete state-space equations are established to describe dynamic characteristics of multi-node load parameters (active load distribution factors and power factors), and then TS fuzzy control technique is introduced to realize feedback compensation. The application in an actual power system control center of Shandong province has been verified with satisfactory result.
Keywords :
feedback; fuzzy control; least squares approximations; load forecasting; power engineering computing; power system control; support vector machines; discrete state-space equations; electric power system; feedback compensation; fuzzy control technique; optimal dispatch; preventive control; reactive load variation; recursive least square support vector machines algorithm; security assessment; transmission capacity evaluation; ultrashort term multinode load forecasting; Control systems; Equations; Least squares methods; Load forecasting; Load management; Optimal control; Power system dynamics; Power system security; Reactive power; Support vector machines; fuzzy control; kalman filtering; load forecasting; multi-node; power systems; support vector machines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Conference, 2007. IPEC 2007. International
Conference_Location :
Singapore
Print_ISBN :
978-981-05-9423-7
Type :
conf
Filename :
4510231
Link To Document :
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