英语人>词典>汉英 : 极限环 的英文翻译,例句
极限环 的英文翻译、例句

极限环

词组短语
limit cycle
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In the fifth section, we obtain some sufficient conditions under which a class of a planar quintic system has at most two limit cycles by transforming it into Abel equation.

第五章讨论了一类可化为Abel方程的五次多项式系统的极限环的个数,得到此类平面五次多项式系统至多存在两个极限环的充分条件。

Recursion formulas for quantities at infinity in this system were presented.

同时,计算了一类三次系统的前6个赤道环量,得到了系统在赤道邻域的可积性条件及在赤道附近存在5个极限环的系数条件,给出了一个平面三次系统在赤道附近分支出5个极限环的计算实例,并在不构造Poincare环域的情况下,指出了极限环存在的位置。

The article discusses carefully the no-existence condition of limit cycle of a nonlinear kinetic model in isothermal branched-chain or autocatalysis chemical reaction in the CSTR.

详细讨论了CSTR反应器中简单的分枝链式自动催化反应的非线性动力学模型的极限环不存在的条件,给出了某些特殊情况下极限环存在的条

In this paper, the limit cycles in a nonlinear deterministic model in the continuous culture vessel with variable yield is studied.

用微分动力系统的定性理论研究了一个非线性连续微生物培养动力系统的极限环问题,探讨和估计了存在极限环的条件和极限环的周长。

The integrability conditions and coefficient conditions for the appearance of 5 and 6 limit cycles from the neighborhood of the equator are obtained. An example of cubic system with 6 limit cycles bifurcating from the equator is given for the first time.

同时计算出系统的前6个赤道环量,得到了系统在赤道邻域的可积性条件及在赤道附近分支出5个和6个极限环的系数条件,从而首次给出了一个平面三次系统在赤道附近分支出6个极限环的计算实例。

Firstly, the connection matrices are strongly connected Boolean matrix, it is shown that the maximum length of limit cycles for FBAM is the period index of the product of the connection matrices. Thus, the maximum limit cycle is reachable. Secondly, two strongly connected components are connected by walks, it is proved that the maximum length of limit cycles for FBAM is the max. of the period index of the two strongly connected components if they are prime, otherwise, it is the least common multiple of the two period index. Finally, n strongly connected component are connected in succession, the method for computing the maximum length is described. By different patterns are presented to the networks, diminishing the number of the strongly connected components until only two components.

第一,连接权矩阵为强连通布尔矩阵,此时模糊双向联想记忆网络的最大极限环长度为连接权矩阵乘积的周期指数,从而极限环具有可达性;第二,两个强连通分支有路径连接,此时如果两个强连通分支的周期指数互素,那么网络的最大极限环长度为其最大者,否则,网络的最大极限环长度就等于二者的最小公倍数;第三,n个相邻强连通分支有路径连接,给出了计算最大极限环长度的方法,通过激发模式的变化,逐渐减少强连通分支的个数,直到只有两个分支。

Based on chapter two, In chapter three, the method of multiple scales is introduced to the study of the multiple-dimensional nonlinear stochastic systems under random external excitation. Using method of multiple scales, we strictly deduce the equation of modulation of amplitude and phase. The effects of random excitations are analyzed; numerical simulations verify the results. Theoretical and numerical simulations show that when the intensity of the random excitation increases, the nontrivial steady state solution may be changed from a limit cycle to a diffused limit cycle.

在第二章基础上,第三章将多尺度法引入到相应的随机系统的研究中;严格推导了系统的约简方程,用矩方法求出稳态解应满足的方程,获得一些结果;并且数值模拟结果与理论推导的结果是一致的;并注意到,与其对应的确定性系统相比较,系统响应从周期解变为近似周期解,系统的相轨线从极限环变为扩大的近似极限环;随着激励带宽的增大,此扩大的近似极限环的宽度将增大。

We discussed the stability of the system balance, used the Poincare-Bendixson's annular region theorem to prove the existence, and used the Zhang Zhifen unicity theorem to prove the uniqueness of limit cycle, at the same time give meaning to the corresponding conclusions on the ecology.

讨论了系统平衡点的稳定性,用Bendixson环域定理证明极限环的存在性,借助张芷芬唯一性定理证明极限环的唯一性,同时对相应结论的生态学意义给予说明。

The existence and uniqueness of the limit cycle are proved by applying Poincare-Bendixson theorem and Zhang Zhifen's Uniqueness theorem.

运用Poincare-Bendixson环域定理,证明了极限环的存在性。这用张芷芬惟一性定理,注明了极限环的惟一性。

The following exciting results are revealed: 1 When considering the influence of some nonlinear elements such as hard-limit of exciters, the effects of some devices such as Power System Stabilizer and Static Var Compensator which can introduce positive damping in power system, the reasonability of system parameter values in simulation, the SNB surface and HB surface on the boundary of SSSR will turn close to each other and even coalesce together; 2 Under some conditions, coupling between slow exciters and shunt capacitors will bring negative damping in power system dynamics, which increases the possibility of oscillatory instability. So the power system with mass shunt compensators is easily subjected to the oscillatory instability. In recent years, chaotic phenomena of power system have been reported many times. Some simulation studies even found chaos existing inside the power system SSSR. In this dissertation, chaotic phenomena in power systems are thoroughly studied in order to make clear the relation of chaos and SSSR. The following results are derived: 1 Based on Li-Yorke Theorem and their definition on the chaos, the existence of chaos in power system is verified; 2 Three possible routes of causing chaos in power system are found and deeply investigated. They are route of cascading period doubling, route of directly initial energizing and route of torus bifurcation (or quasi-periodicity). The latter two routes are investigated for the first time in power system stability studies; 3 When the stability conditions of chaos are broken, it is found they can lead to voltage collapse, angle divergence, or voltage collapse with angle divergence simultaneously.

针对在电力系统小扰动稳定区域内可能存在混沌吸引域的有关报道,本文深入研究了电力系统混沌现象的出现途径和与系统失稳模式之间的关系:1利用Li-Yorke定理和Li-Yorke的混沌定义,从理论上证明了电力系统混沌现象的存在性;2发现了电力系统中导致混沌出现的三种可能途径:倍周期分岔导致混沌、初始能量直接激发混沌和经由环面分岔导致混沌,并对后两种新发现的途径进行了较为细致的研究;3发现了混沌极限环破裂导致电压崩溃、角度失稳以及电压崩溃和角度失稳同时出现的现象,其中混沌极限环破裂导致系统角度失稳和电压崩溃及角度失稳同时出现的现象均属首次报道;4证明由微分-代数方程描述的系统模型,其小扰动稳定域的边界只包含HB、SNB和SIB三种分岔界面,在SSSR的内部和边界上,均不可能存在会导致混沌的点,从而将混沌现象排除在小扰动稳定域的研究之外,简化了后者的研究工作。

更多网络解释与极限环相关的网络解释 [注:此内容来源于网络,仅供参考]

limit circle type:极限圆型

limit circle 极限圆 | limit circle type 极限圆型 | limit cycle 极限环

limit cycle:极限环

(4)非周期性 以前已知的定态运动主要有不动点(fixed point)和极限环(limit cycle),它们都是周期运动(不动点是周期1运动). 而浑沌运动首先是非周期的(non-periodic). 非周期运动也并不都是浑沌运动.

stable limit cycle:稳定极限环

稳定规划|stable programming | 稳定极限环|stable limit-cycle | 稳定矩阵|stable matrix

limit cycle oscillation:极限环颤振

直线振荡电机:linear oscillation motor | 极限环颤振:limit cycle oscillation | 有界平均振动函数空间:Bounded Mean Oscillation Function Space

limit cycle oscillation:极限环振荡

control | 限值循环控制 | limit cycle oscillation | 极限环振荡 | limit design | 极限设计

Limit cycle Flutter:极限环颤振

分布式微机网络:Flutter | 极限环颤振:Limit cycle Flutter | 旋转失速数值模拟:Numerical Simulation of Rotating Stall

limit distribution:极限分布

limit cycle 极限环 | limit distribution 极限分布 | limit element 极限元

Nonlinear System Dynamics:极限环

非线性动态模型:nonlinear dynamic model | 极限环:Nonlinear System Dynamics | 非线性系统:nonlinear system

Schubert:(舒伯特)

(15) 舒伯特(Schubert)计数演算的严格基础这个问题分为两部分. 前半部涉及代数曲线含有闭的分枝曲线的最大数目. 后半部分要求讨论的极限环的最大个数和相对位置,其中X、Y是x、y的n次多项式. 苏联的彼德罗夫斯基(Petrovski-)院士曾证时极限环的个数不超过3.

limit snap gauge:极限外径规

limit ring 锁环销锁止动环 | limit snap gauge 极限外径规 | limit speed 极限速率