Approximate controllability of nonlocal stochastic integrodifferential system in Hilbert spaces

IF 2.1 3区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS
Mamadou Pathe LY , Ravikumar Kasinathan , Ramkumar Kasinathan , Dimplekumar Chalishajar , Mamadou Abdoul Diop
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引用次数: 0

Abstract

This project investigates the approximate controllability of a class of stochastic integrodifferential equations in Hilbert space with non-local beginning conditions. In a departure from the conventional concerns expressed in the literature, we will not consider compactness or the Lipschitz criteria concerning the nonlocal term. We use the fact that the resolvent operator is compact. We first prove the controllability of the nonlinear system using Schauder’s fixed point theorem, a method known for its robustness; as well, we also use Grimmer’s resolvent operator theory. Subsequently, we employ the reliable approximation methods and the powerful diagonal argument to determine the approximate controllability of the stochastic system. To conclude, we present an example that validates our theoretical statement.
Hilbert空间中非局部随机积分微分系统的近似可控性
研究了Hilbert空间中一类具有非局部起始条件的随机积分微分方程的近似可控性。与传统文献中表达的关注不同,我们将不考虑关于非局部项的紧致性或李普希茨标准。我们利用分解算子是紧的这一事实。我们首先利用Schauder不动点定理证明了非线性系统的可控性,该方法以其鲁棒性而闻名;同时,我们也使用了Grimmer的可解算子理论。随后,我们采用可靠的逼近方法和强大的对角参数来确定随机系统的近似可控性。最后,我们提出了一个例子来验证我们的理论陈述。
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来源期刊
Systems & Control Letters
Systems & Control Letters 工程技术-运筹学与管理科学
CiteScore
4.60
自引率
3.80%
发文量
144
审稿时长
6 months
期刊介绍: Founded in 1981 by two of the pre-eminent control theorists, Roger Brockett and Jan Willems, Systems & Control Letters is one of the leading journals in the field of control theory. The aim of the journal is to allow dissemination of relatively concise but highly original contributions whose high initial quality enables a relatively rapid review process. All aspects of the fields of systems and control are covered, especially mathematically-oriented and theoretical papers that have a clear relevance to engineering, physical and biological sciences, and even economics. Application-oriented papers with sophisticated and rigorous mathematical elements are also welcome.
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