DocumentCode :
1143333
Title :
Oscillation Damping With Optimal Pole-Shift Approach in Application to a Hydro Plant Connected as SMIB System
Author :
Kishor, Nand
Author_Institution :
Dept. of Electr. Eng., Motilal Nehru Nat. Inst. of Technol., Allahabad, India
Volume :
3
Issue :
3
fYear :
2009
Firstpage :
317
Lastpage :
330
Abstract :
This paper presents an application of control theory to damp out load angle and speed oscillations through the excitation and governor subsystems in a hydro power plant connected as single machine infinite bus (SMIB) system. The control technique used is based on optimal pole shift (PS) theory, unlike linear quadratic regulation (LQR) method, which requires solving an algebraic Riccati equation. The adopted approach offers satisfactory damping on speed and load angle oscillations. The proposed control scheme is demonstrated on light, normal and heavy load operating conditions. It is observed that with the proposed technique, the control design is robust over a wide range of operating conditions. Also in this paper, a comprehensive assessment of the effects of optimal control approach when applied with state-estimation techniques; linear Kalman filter (KF) and first-order divided difference filter (FDDF) has been addressed.
Keywords :
Kalman filters; Riccati equations; damping; hydroelectric power stations; linear quadratic control; oscillations; poles and zeros; power generation control; state estimation; algebraic Riccati equation; control design; control technique; first-order divided difference filter; hydro power plant; linear Kalman filter; linear quadratic regulation method; load angle oscillations; optimal pole-shift approach; oscillation damping; single machine infinite bus system; speed oscillations; state estimation techniques; Damping; estimation; optimal; pole-shift;
fLanguage :
English
Journal_Title :
Systems Journal, IEEE
Publisher :
ieee
ISSN :
1932-8184
Type :
jour
DOI :
10.1109/JSYST.2009.2022577
Filename :
5170008
Link To Document :
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