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New Results on Global Exponential Stability of Genetic Regulatory Networks with Diffusion Effect and Time-Varying Hybrid Delays

机译:遗传监管网络与扩散效应的全局指数稳定性和时变杂交延误的新结果

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Taking into account the spatial diffusion effect, this paper deals with the stability problem of genetic regulatory networks with both time-varying discrete delays (DDs) and distributed delays (DTDs). By virtue of the theories of delayed partial differential equation and Lyapunov stability, new algebraic conditions are established to guarantee the global exponential stability of the genetic regulatory networks with spatial diffusion (SDGRNs) with time-varying hybrid delays. The obtained conditions are generalized and easily calculated based on the system parameters. Besides, some extended results are presented for SDGRNs without diffusion effect or DTDs. Finally, the effectiveness and feasibility of the theoretical results are illustrated by two numerical examples and the corresponding simulation results.
机译:考虑到空间扩散效果,本文涉及遗传调控网络与时变离散延迟(DDS)和分布式延迟(DTD)的稳定性问题。 由于延迟部分微分方程和Lyapunov稳定性,建立了新的代数条件,以保证具有空间扩散(SDGRN)的遗传调节网络的全球指数稳定性,具有时变的混合延迟。 所获得的条件是基于系统参数的概括和容易地计算的。 此外,没有扩散效果或DTD的SDGRNS呈现了一些扩展结果。 最后,通过两个数值例子和相应的模拟结果来说明理论结果的有效性和可行性。

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