| Literature DB >> 26379804 |
Abdulaziz Alofi1, Fengli Ren2, Abdullah Al-Mazrooei3, Ahmed Elaiw1, Jinde Cao4.
Abstract
In this paper, a new synchronization problem for the collective dynamics among genetic oscillators with unbounded time-varying delay is investigated. The dynamical system under consideration consists of an array of linearly coupled identical genetic oscillators with each oscillators having unbounded time-delays. A new concept called power-rate synchronization, which is different from both the asymptotical synchronization and the exponential synchronization, is put forward to facilitate handling the unbounded time-varying delays. By using a combination of the Lyapunov functional method, matrix inequality techniques and properties of Kronecker product, we derive several sufficient conditions that ensure the coupled genetic oscillators to be power-rate synchronized. The criteria obtained in this paper are in the form of matrix inequalities. Illustrative example is presented to show the effectiveness of the obtained results.Keywords: Genetic oscillators; Matrix inequality; Power-rate synchronization; Unbounded time-varying delay
Year: 2015 PMID: 26379804 PMCID: PMC4568002 DOI: 10.1007/s11571-015-9344-2
Source DB: PubMed Journal: Cogn Neurodyn ISSN: 1871-4080 Impact factor: 5.082