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Asymptotical Stability of Probabilistic Boolean Networks With State Delays

机译:具有州延迟的概率布尔网络的渐近稳定性

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This paper devotes to establishing a bridge between asymptotical stability of a probabilistic Boolean network (PBN) and a solution to its induced equations, which are induced from the PBN's transition matrix. By utilizing the semitensor product technique routinely, the dynamics of a PBN with coincident state delays can be equivalently converted into that of a higher dimensional PBN without delays. Subsequently, several novel stability criteria are derived from the standpoint of equations' solution. The most significant finding is that a PBN is globally asymptotically stable at a predesignated one-point distribution if and only if a vector, obtained by adding 1 at the bottom of this distribution, is the unique nonnegative solution to PBN's induced equations. Moreover, the influence of coincident state delays on PBN's asymptotical stability is explicitly analyzed without consideration of the convergence rate. Consequently, such bounded state delays are verified to have no impact on PBN's stability, albeit delays are time-varying. Based on this worthwhile observation, the time computational complexity of the aforementioned approach can be reduced by removing delays directly. Furthermore, this universal procedure is summarized to reduce the time complexity of some previous results in the literature to a certain extent. Two examples are employed to demonstrate the feasibility and effectiveness of the obtained theoretical results.
机译:本文致力于建立概率布尔网络(PBN)的渐近稳定性与其诱导方程的解决方案之间的桥梁,其从PBN的转换矩阵诱导。通过常规利用半传传递产品技术,可以在没有延迟的情况下等效地将PBN的动态等效地转换为高维PBN的动态。随后,若干新的稳定标准源自等式溶液的观点来源。最重要的发现是,如果仅当通过在该分布底部添加1获得的向量,则PBN在预测的单点分发中,PBN是全局渐近的稳定性,是PBN的诱导方程的唯一非负解。此外,明确地分析了在不考虑收敛速率的情况下明确分析了重合状态延迟对PBN的渐近稳定性的影响。因此,验证了这种有界状态延迟以对PBN的稳定性没有影响,虽然延迟是时变的。基于这种有价值的观察,通过直接去除延迟,可以减少上述方法的时间计算复杂性。此外,总结了这种普遍程序,以减少文献中一些先前结果的时间复杂性在一定程度上。采用两个实例来证明所获得的理论结果的可行性和有效性。

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