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Stochastic Robust Simulation and Stability Properties of Chemical Reaction Networks

机译:化学反应网络的随机稳健仿真与稳定性

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摘要

In this paper, a novel algorithm to perform robust stochastic simulations of chemical reaction networks is proposed. Such a procedure relies on the definition of a stochastic difference inclusion, whose trajectories match those of the chemical reaction network. By taking advantage of the correspondence between chemical reaction networks and stochastic difference inclusions, mathematical tools available for the latter discrete-time systems are used to characterize stability properties of chemical reaction networks. Namely, Lyapunov conditions are given to guarantee asymptotic stability in probability, global strong recurrence, and global weak reachability of a given set for the reaction network. Practical examples of the application of the given algorithm and of the Lyapunov approach are reported.
机译:本文提出了一种开展化学反应网络的强大随机模拟的新型算法。这种方法依赖于随机差异包含的定义,其轨迹与化学反应网络的轨迹相匹配。通过利用化学反应网络和随机差异差异之间的对应关系,可用于后者离散时间系统的数学工具用于表征化学反应网络的稳定性特性。即,Lyapunov条件是为了保证对反应网络给定集合的概率,全球强度复发和全球弱到达性的渐近稳定性。报道了给定算法和Lyapunov方法的应用的实际例子。

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