DocumentCode
1614492
Title
Eliminating sub-synchronous oscillations with an induction machine damping unit (IMDU)
Author
Purushothaman, Sujit ; De Leon, Francisco
Author_Institution
Polytech. Inst., New York Univ., New York, NY, USA
fYear
2011
Firstpage
1
Lastpage
1
Abstract
Summary form only given. The IEEE First and Second Benchmark models for Sub-Synchronous Resonance (SSR) are used to analyze the damping properties of an induction machine damping unit (IMDU) coupled to the shaft of a turbo-generator set. This paper investigates the rating and location of the induction machine that, without the aid of any controllers, effectively damps subsynchronous resonance for all line series compensation levels. Eigenvalue analyses are performed on linearized models of the shaft system including the induction machine to find the optimum location. The best location of the IMDU, providing maximum damping, is next to the HP turbine at the end of the shaft. Time domain simulations are conducted to find the adequate rating of the induction machine. It is observed that a small size, high power (about 10% of the generator rating), low energy machine effectively damps SSR. The IMDU reduces peak torques in shaft sections during transients. In the paper, it is demonstrated that the addition of an IMDU at the end of the shaft would have prevented the SSR events of the Mohave Desert shafts.
Keywords
asynchronous machines; damping; eigenvalues and eigenfunctions; shafts; time-domain analysis; turbogenerators; HP turbine; IMDU; Mohave Desert shafts; eigenvalue analysis; induction machine damping unit; line series compensation levels; linearized models; shaft system; subsynchronous oscillation elimination; subsynchronous resonance; time domain simulations; turbo-generator set; Analytical models; Damping; Eigenvalues and eigenfunctions; Induction machines; Oscillators; Shafts; Turbines;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy Society General Meeting, 2011 IEEE
Conference_Location
San Diego, CA
ISSN
1944-9925
Print_ISBN
978-1-4577-1000-1
Electronic_ISBN
1944-9925
Type
conf
DOI
10.1109/PES.2011.6038953
Filename
6038953
Link To Document