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Delay-dependent stability of linear multistep methods for differential systems with distributed delays 被引量:2

Delay-dependent stability of linear multistep methods for differential systems with distributed delays
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摘要 This paper deals with the stability of linear multistep methods for multidimensional differential systems with distributed delays. The delay-dependent stability of linear multistep methods with compound quadrature rules is studied. Several new sufficient criteria of delay-dependent stability are obtained by means of the argument principle. An algorithm is provided to check delay-dependent stability. An example that illustrates the effectiveness of the derived theoretical results is given. This paper deals with the stability of linear multistep methods for multidimensional differential systems with distributed delays. The delay-dependent stability of linear multistep methods with compound quadrature rules is studied. Several new sufficient criteria of delay-dependent stability are obtained by means of the argument principle. An algorithm is provided to check delay-dependent stability. An example that illustrates the effectiveness of the derived theoretical results is given.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2018年第12期1837-1844,共8页 应用数学和力学(英文版)
基金 Project supported by the National Natural Science Foundation of China(No.11471217)
关键词 differential system with distributed delays delay-dependent stability linear multistep method argument principle differential system with distributed delays delay-dependent stability linear multistep method argument principle
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