波长周期相位相移调制控制也能使混沌激光控制到三周期态和多周期态等。
Chaos is also controlled into periodic state and multi-periodic state by a method of a wavelength periodic modulation.
讨论了混沌被控制到单周期态时系统输出的振荡周期的变化规律与控制量的关系。
Relationship between vibration period of the system and control variables is discussed when chaos is controlled into single periodic state.
通过实时调控光的偏振方向,这两种混沌控制方法都能实时地、动态地、有效地控制激光混沌进入到稳定态和周期态上。
The methods can be real time dynamically effectively control chaotic lasing into stable states and periodic states by adjusting real time optical polarization Angle.
随着输入项的变化,混沌神经元状态有规律的在混沌态和周期态之间相互转化,利用这种特性可以控制混沌神经元的内部状态。
As the input item varying, chaotic neuron status transforms between chaos and periods, which should be used to control the interior status of chaotic neuron.
通过数值计算结果表明:有限字长混沌序列的周期态和过渡态都具有正的最大Lyapunov指数,且小数据量法对有限字长效应是鲁棒的。
The results show that both periodic and transitional chaotic sequences have positive maximum Lyapunov exponent, and the small data sets method is robust to the finite word length of the computer.
利用主方程的方法,研究了在一维三态周期跳跃模型下分子马达的定向运动。
The master equation approach to molecular motor's directed motion based on periodic one-dimensional three-state hopping model is studied.
结果表明:利用曝气时间实时控制,在每个周期内氨氧化菌(AOB)降解氨氮质量大于亚硝酸盐氧化菌(NOB)降解亚硝态氮质量;AOB的净增数量大于NOB净增数目。
Analysis shows that more nitrogen is oxidized by ammonia oxidizing bacteria(AOB) than by nitrite oxidizing bacteria(NOB) with more growth of the AOB than the NOB in each cycle when using this method.
结果表明:利用曝气时间实时控制,在每个周期内氨氧化菌(AOB)降解氨氮质量大于亚硝酸盐氧化菌(NOB)降解亚硝态氮质量; AOB的净增数量大于NOB净增数目。
Analysis shows that more nitrogen is oxidized by ammonia oxidizing bacteria(AOB) than by nitrite oxidizing bacteria(NOB) with more growth of the AOB than the NOB in each cycle when using this method.
第一部分介绍飞行器实测振动数据的平稳性、周期性和正态性检验的几种方法;
The first deals with several i methods used to test stationarity, periodicity and guassianity of the recorded data of aircraft vibration.
本发明公开了提供一种热态强度高、抗热震稳定性好、使用周期长的一种耐火浇注料的制备方法。
Disclosed is a method for preparing a casting material resistant to fire with high heat strength, outstanding resistance to heat vibration and long service period.
同时,为了进一步了解黑洞的物理过程,通过研究黑洞态以及其光变曲线的周期性变化一直以来是一种十分重要的方法。
Moreover, it is a very important method with study black hole states and the periodicity of the light curve to study their physical process.
用关联函数作为反馈,可使系统从混沌到定态或混沌态到周期振荡,甚至可以实现从混沌态到指定的定态输出。
The correlation functions can be used as feedback signal to control the systems from chaos to steady state, chaos to periodic oscillation, or even from chaos to preset output.
通过对单模激光混沌系统增加一个周期扰动,构造一种具有外部周期扰动的新动力学系统,基于数值法研究了系统的混沌态在周期扰动下的动力学行为。
Based on single mode laser system, a new dynamical system under external periodic perturbation modulation is constructed and investigated by using of the numerical analysis method.
密立根布居分析、周期性结构中态密度与能带结构,以及分子轨道的关系在文中被广泛应用。
Mulliken population analysis, the relations among the DOS, the band structure and molecule orbital were widely used in the dissertation.
发现这种结构的带隙来源于结构的周期性及所接分支所形成的共振态。
It was discovered that the photonic forbidden bands originates from both the periodicity of the system and the resonance states of the grafted branches.
当加光子相干态的平均光子数较大时,原子线性熵呈现崩塌与回复现象,其回复周期随加光子数的增加而增加,与原子的初态无关。
With the increasing of the mean photon number, the revival period increase. The atom collapses to a unique pure state regardless of the initial atomic conditions.
我们在周期外力作用下的布鲁塞尔振子中发现了从准周期行为到混沌态的过渡。
We have observed transitions from quasiperiodic regime to chaos in the periodically forced Brusselator.
本文从晶格模型出发,同时考虑周期场和电子-声子相互作用对激子能态的影响。
In this paper, the effect of the lattice potential and electron-phonon interaction on the energy states of excitons is studied by using lattice model.
数值模拟发现,选择不同的直流偏置,系统可以表现出单一的混沌态或周期三与混沌共存态的动力学行为。
Numerical simulations indicate that Chaotic state or period3 and chaos coexisting state exists when this system is driven by a proper external DC current.
数值模拟发现,选择不同的直流偏置,系统可以表现出单一的混沌态或周期三与混沌共存态的动力学行为。
Numerical simulations indicate that Chaotic state or period3 and chaos coexisting state exists when this system is driven by a proper external DC current.
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