Flow disturbance is the main cause which leads to the instability occurred in aero-engines, and it is an infinite-dimensional quantity that is impossible for a direct online measurement in reality. The unstable flow not only results in a drastic pressure reduction but also can damage to engine's components during the compressor operations. In this paper, we construct a local state observer which can deliver the full information of the flow disturbance by only sensing on an arbitrarily small area at the duct entrance in terms of averaging the flow disturbance, which provides a practical approach for real applications. The proposed observer makes possible in applications by using a feedback control to stabilize the system. The convergent gain is obtained through the approach of operator spectrum theory. Numerical simulations are provided to illustrate the effectiveness of the proposed observer by showing typical types of flow situations for aero-engine compressors.
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September 2014
Research-Article
Observer Design for Axial Flow Compressor
Xuejun Gao,
Xuejun Gao
Faculty of Applied Mathematics,
e-mail: gaoxxj@163.com
Guangdong University of Technology
,Guangzhou 510006
, China
e-mail: gaoxxj@163.com
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Tingwen Huang,
Tingwen Huang
Department of Mathematics,
e-mail: tingwen.huang@qatar.tamu.edu
Texas A&M University at Qatar
,Doha 23874
, Qatar
e-mail: tingwen.huang@qatar.tamu.edu
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Yu Huang,
Yu Huang
Department of Mathematics,
e-mail: stshyu@mail.sysu.edu.cn
Zhongshan (Sun Yat-Sen) University
,Guangzhou 510275
, China
e-mail: stshyu@mail.sysu.edu.cn
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Jun Liu,
Jun Liu
Department of Mathematics,
e-mail: junliu2010@siu.edu
Southern Illinois University
,Carbondale, IL 62901
e-mail: junliu2010@siu.edu
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MingQing Xiao
MingQing Xiao
1
1Corresponding author.
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Xuejun Gao
Faculty of Applied Mathematics,
e-mail: gaoxxj@163.com
Guangdong University of Technology
,Guangzhou 510006
, China
e-mail: gaoxxj@163.com
Tingwen Huang
Department of Mathematics,
e-mail: tingwen.huang@qatar.tamu.edu
Texas A&M University at Qatar
,Doha 23874
, Qatar
e-mail: tingwen.huang@qatar.tamu.edu
Yu Huang
Department of Mathematics,
e-mail: stshyu@mail.sysu.edu.cn
Zhongshan (Sun Yat-Sen) University
,Guangzhou 510275
, China
e-mail: stshyu@mail.sysu.edu.cn
Jun Liu
Department of Mathematics,
e-mail: junliu2010@siu.edu
Southern Illinois University
,Carbondale, IL 62901
e-mail: junliu2010@siu.edu
MingQing Xiao
1Corresponding author.
Contributed by the Dynamic Systems Division of ASME for publication in the JOURNAL OF DYNAMIC SYSTEMS, MEASUREMENT, AND CONTROL. Manuscript received November 4, 2012; final manuscript received April 23, 2014; published online July 9, 2014. Assoc. Editor: Nariman Sepehri.
J. Dyn. Sys., Meas., Control. Sep 2014, 136(5): 051017 (12 pages)
Published Online: July 9, 2014
Article history
Received:
November 4, 2012
Revision Received:
April 23, 2014
Citation
Gao, X., Huang, T., Huang, Y., Liu, J., and Xiao, M. (July 9, 2014). "Observer Design for Axial Flow Compressor." ASME. J. Dyn. Sys., Meas., Control. September 2014; 136(5): 051017. https://doi.org/10.1115/1.4027525
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