Reference : Robust H∞ feedback control for uncertain stochastic delayed genetic regulatory networ...
Scientific journals : Article
Engineering, computing & technology : Multidisciplinary, general & others
http://hdl.handle.net/10993/21036
Robust H∞ feedback control for uncertain stochastic delayed genetic regulatory networks with additive and multiplicative noise
English
Pan, Wei mailto [University of Luxembourg > Luxembourg Centre for Systems Biomedicine (LCSB) > >]
Wang, Z. []
Gao, H. []
Li, Y. []
Du, M. []
2010
International Journal of Robust and Nonlinear Control
Wiley
20
18
2093-2107
Yes (verified by ORBilu)
1049-8923
1099-1239
[en] genetic regulatory networks (GRNs) ; robust H∞ feedback control ; noise attenuation ; time delay
[en] Noises are ubiquitous in genetic regulatory networks (GRNs). Gene regulation is inherently a stochastic process because of intrinsic and extrinsic noises that cause kinetic parameter variations and basal rate disturbance. Time delays are usually inevitable due to different biochemical reactions in such GRNs. In this paper, a delayed stochastic model with additive and multiplicative noises is utilized to describe stochastic GRNs. A feedback gene controller design scheme is proposed to guarantee that the GRN is mean-square asymptotically stable with noise attenuation, where the structure of the controllers can be specified according to engineering requirements. By applying control theory and mathematical tools, the analytical solution to the control design problem is given, which helps to provide some insight into synthetic biology and systems biology. The control scheme is employed in a three-gene network to illustrate the applicability and usefulness of the design.
http://hdl.handle.net/10993/21036

File(s) associated to this reference

Fulltext file(s):

FileCommentaryVersionSizeAccess
Limited access
Robust h∞ feedback control for uncertain stochastic delayed genetic regulatory networks with additive and multiplicative noise.pdfPublisher postprint227.07 kBRequest a copy

Bookmark and Share SFX Query

All documents in ORBilu are protected by a user license.