H∞ Sampled-Data Controller Design for Stochastic Genetic Regulatory Networks

Authors

Abstract:

Artificially regulating gene expression is an important step in developing new treatment for system-level disease such as cancer. In this paper, we propose a method to regulate gene expression based on sampled-data measurements of gene products concentrations. Inherent noisy behaviour of Gene regulatory networks are modeled with stochastic nonlinear differential equation. To synthesize feedback controller, we formulate sampling process as an impulsive system. By using a new Lyapunov function with discontinuities at sampling times, state feedback gain that guarantees exponential meansquare stability and H&infin performance is derived from LMIs. These LMIs also determine the maximum allowable time between sampling points. A numerical example and a practical application are presented to justify the applicability of the theoretical results

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

H&infin Controller Design for Static VAR Compensators in Industrial Networks

This paper deals with the design and evaluation of a robust controller for static VAR compensator (SVC) in remote industrial power systems to enhance the voltage profile for three-phase single cage induction motor (SCIM) loads. The controller design is based on H∞ theory to deal with uncertainties arising in industrial network modelling. &#10The performance of the H∞ controller has been evaluat...

full text

H&infin Controller Design for Static VAR Compensators in Industrial Networks

This paper deals with the design and evaluation of a robust controller for static VAR compensator (SVC) in remote industrial power systems to enhance the voltage profile for three-phase single cage induction motor (SCIM) loads. The controller design is based on H∞ theory to deal with uncertainties arising in industrial network modelling. The performance of the H∞ controller has been evaluated...

full text

On a Design Method of Sampled-data Delayed Feedback Controller

The design problem of a delayed feedback controller in the sampled-data setting is considered. Instead of the indirect method via the plant augmentation, we impose certain interpolation conditions on the free parameter of the stabilizing controller parametrization to embed the DFC structure into the controller directly. Since the underlying stabilization problem to be solved is independent of t...

full text

Design of Genetic Regulatory Networks

In this thesis, we present two approaches for designing genetic regulatory networks in the field of synthetic biology. The core problem is to capture topological properties and dynamical mechanisms in such a way that enables generation of large-scale and complex genetic regulatory networks. Synthetic biologists design and construct artificial biological systems to create novel biological functi...

full text

Design of PID Controller for Teleopration System with Genetic Algorithm

This paper presents a novel teleoperation controller for a nonlinear master–slave robotic system with constant time delay in communication channel. The proposed controller enables the teleoperation system to compensate human and environmental disturbances, while achieving master and slave position coordination in both free motion and contact situation. The current work basically extends the pas...

full text

Stability of stochastic genetic regulatory networks∗

This paper studies the stochastic stability of genetic regulatory networks with intrinsic and extrinsic noises. A delay dependent stability condition with disturbance attenuation is derived for the stochastic genetic networks with time-varying delays. The developed criteria can be tested efficiently by Matlab LMI Control Toolbox. A numerical example with simulations is given to illustrate the e...

full text

My Resources

Save resource for easier access later

Save to my library Already added to my library

{@ msg_add @}


Journal title

volume 11  issue 3

pages  204- 216

publication date 2015-09

By following a journal you will be notified via email when a new issue of this journal is published.

Keywords

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023