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Bifurcation control of Rayleigh-Benard convection

Publication ,  Journal Article
Chen, D; Wang, HO; Howle, LE
Published in: IEEE Conference on Control Applications - Proceedings
December 1, 1999

Bifurcation control deals with the modification of the bifurcation characteristics of a parameterized nonlinear system by a judiciously designed control input. In this paper, we investigate the problem of active control of Rayleigh-Benard convection (RBC) via a bifurcation control approach. Active control of Rayleigh-Benard convection is a problem of importance to both theoretical research and industrial applications. Several forms of bifurcation control laws are designed based on the mathematical analysis of the governing partial differential equations for RBC. Simulations as well as experimental studies have been carried out to validate the control designs. A composite bifurcation control law combining a linear control law and a cubic control law is found to be most effective and flexible for this problem.

Duke Scholars

Published In

IEEE Conference on Control Applications - Proceedings

Publication Date

December 1, 1999

Volume

1

Start / End Page

377 / 382
 

Citation

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Chen, D., Wang, H. O., & Howle, L. E. (1999). Bifurcation control of Rayleigh-Benard convection. IEEE Conference on Control Applications - Proceedings, 1, 377–382.
Chen, D., H. O. Wang, and L. E. Howle. “Bifurcation control of Rayleigh-Benard convection.” IEEE Conference on Control Applications - Proceedings 1 (December 1, 1999): 377–82.
Chen D, Wang HO, Howle LE. Bifurcation control of Rayleigh-Benard convection. IEEE Conference on Control Applications - Proceedings. 1999 Dec 1;1:377–82.
Chen, D., et al. “Bifurcation control of Rayleigh-Benard convection.” IEEE Conference on Control Applications - Proceedings, vol. 1, Dec. 1999, pp. 377–82.
Chen D, Wang HO, Howle LE. Bifurcation control of Rayleigh-Benard convection. IEEE Conference on Control Applications - Proceedings. 1999 Dec 1;1:377–382.

Published In

IEEE Conference on Control Applications - Proceedings

Publication Date

December 1, 1999

Volume

1

Start / End Page

377 / 382