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The value method which is used to obtain the periodic solution to nonlinear system is mentioned in this article. Different point reflection is defined in the nonlinear autonomous and nonautonomous system firstly and then that linear reflection obtained from the inserting value of nonlinear reflection is asymptotic to original nonlinear reflection. The stationary points obtained by linear reflection are regarded as the asymptotic solution of the stationary points of original system. If this asymptotic solution of the stationary points is not satisfactorily accurate it can be used as the initial point of the next reflection. In addition, a corresponding method of researching the stability of periodic solution is put forward in this article.  相似文献   
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This paper presents a new method for global analysis of nonlinear system. By means of transforming the nonlinear dynamic problems into point mapping forms which are single-valued and continuous, the state space can be regularly divided into a certain number of finitely small triangle elements on which the non-linear mapping can be approximately substituted by the linear mapping given by definition. Hence, the large range distributed problem of the mapping fixed points will be simplified as a process for solving a set of linear equations. Still further, the exact position of the fixed points can be found by the iterative technique. It is convenient to judge the stability of fixed points and the shrinkage zone in the state space by using the deformation matrix of linear mapping. In this paper, the attractive kernel for the stationary fixed points is defined, which makes great advantage for describing the attractive domains of the fixed points. The new method is more convenient and effective than the cell mapping methodl[1]. And an example for two-dimensional mapping is given.  相似文献   
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This paper presents a new method for global analysis of nonlinear system. By means of transforming the nonlinear dynamic problems into point mapping forms which are single-valued and continuous, the state space can be regularly divided into a certain number of finitely small triangle elements on which the non-linear mapping can be approximately substituted by the linear mapping given by definition. Hence, the large range distributed problem of the mapping fixed points will be simplified as a process for solving a set of linear equations. Still further, the exact position of the fixed points can be found by the iterative technique. It is convenient to judge the stability of fixed points and the shrinkage zone in the state space by using the deformation matrix of linear mapping. In this paper, the attractive kernel for the stationary fixed points is defined, which makes great advantage for describing the attractive domains of the fixed points. The new method is more convenient and effective than the cell  相似文献   
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本文提出一种求解非线性系统周期解的数值方法。首先对非线性自治系统和非自治系统给出不同的点映射定义。其次指出用线性映射逼近原非线性映射,而线性映射是由非线性映射插值获得的。继而求取线性映射的不动点,作为原系统不动点的近似解。如不满足精度则作为下次映射的初始点。本文还提出了研究周期解稳定性的相应方法。  相似文献   
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The value method which is used to obtain the periodic solution to nonlinear system ismentioned in this article.Different point reflection is defined in the nonlinear autonomousand nonautonomous system firstly and then that linear reflection obtained from theinserting value of nonlinear reflection is asymptotic to original nonlinear reflection.Thestationary points obtained by linear reflection are regarded as the asymptotic solution ofthe stationary points of original system.If this asymptotic solution of the stationary pointsis not satisfactorily accurate it can be used as the initial point of the next reflection.Inaddition,a corresponding method of researching the stability of periodic solution is putforward in this article.  相似文献   
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大型回转机组及基础的振动问题,在工程技术中已被注意。本文提出了相应的力学模型、程序,处理了多种材料阻尼,用复线性方程法求解动力响应。在数据处理上提出了压缩存贮和分档提取的技术,从而减少了存贮单元。可在各种小型计算机上进行计算。  相似文献   
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本文将非线性动力学问题转化为点映射形式,并以映射的单值连续为条件.将状态空间分割成有限小的单元,用定义在单元上的线性映射逼近原来的非线性映射.映射不动点的大范围分布问题化为线性方程组的求解,继而用迭代法求出不动点的准确位置.用线性映射的变形矩阵可方便地判断不动点的吸引核,从而为描划其吸引域带来了很大便利.本文提出的方法比胞映射法更为简便有效,文后举了例题.  相似文献   
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