您的位置: 专家智库 > >

国家自然科学基金(10747005)

作品数:9 被引量:43H指数:5
相关作者:马军靳伍银易鸣李延龙苏文涛更多>>
相关机构:兰州理工大学华中师范大学更多>>
发文基金:国家自然科学基金教育部科学技术研究重点项目更多>>
相关领域:理学自动化与计算机技术电子电信自然科学总论更多>>

文献类型

  • 9篇期刊文章
  • 1篇会议论文

领域

  • 8篇理学
  • 1篇电子电信
  • 1篇自动化与计算...
  • 1篇自然科学总论

主题

  • 4篇螺旋波
  • 3篇噪声
  • 2篇自适应同步
  • 2篇混沌
  • 2篇SPIRAL
  • 2篇参数识别
  • 1篇信道
  • 1篇信道噪声
  • 1篇神经元
  • 1篇神经元网络
  • 1篇时变系统
  • 1篇湍流
  • 1篇网络
  • 1篇稳定性
  • 1篇细胞
  • 1篇细胞学
  • 1篇小世界
  • 1篇小世界网络
  • 1篇李雅普诺夫
  • 1篇李雅普诺夫函...

机构

  • 5篇兰州理工大学
  • 2篇华中师范大学
  • 1篇西安理工大学
  • 1篇西安交通大学

作者

  • 3篇马军
  • 2篇靳伍银
  • 1篇唐军
  • 1篇王春妮
  • 1篇李延龙
  • 1篇高加振
  • 1篇易鸣
  • 1篇徐健学
  • 1篇苏文涛
  • 1篇贾亚
  • 1篇吴莹
  • 1篇张爱华

传媒

  • 3篇Chines...
  • 2篇物理学报
  • 1篇Scienc...
  • 1篇中国科学(G...
  • 1篇复杂系统与复...
  • 1篇Scienc...

年份

  • 1篇2011
  • 3篇2010
  • 3篇2009
  • 3篇2008
9 条 记 录,以下是 1-10
排序方式:
Hindmarsh-Rose混沌神经元自适应同步和参数识别的优化研究被引量:8
2010年
以Hindmarsh-Rose混沌神经元模型为例,讨论了基于自适应同步识别混沌系统多个参数方法的优化问题.在构造的李亚普诺夫函数中引入可调节的增益系数来控制系统同步和参数观测器的暂态过程长短.在应用单个控制器和5个参数观测器来同步和识别Hindmarsh-Rose混沌神经元中5个未知参数时发现最小参数的识别结果出现了振荡而其他参数都能准确识别现象,分析其原因可能在于要识别的目标参数的巨大差异性.通过增加控制器的个数(选择两个控制器)可以克服这个困难.研究发现增益系数太小不能实现完全同步和参数的准确识别,当增益系数太大则延长了识别参数的暂态过程.在恰当的增益系数下可以在比较短的暂态过程下准确识别系统参数.进一步讨论了系统参数发生阶跃变化时系统参数的识别问题,数值计算结果验证了该方法的可靠性和有效性.
马军苏文涛高加振
关键词:参数识别自适应同步
二维格子神经元网络中螺旋波的鲁棒性和破裂被引量:1
2009年
研究了二维格子神经元网络中螺旋波的鲁棒性和破裂问题.小世界网络连接被分解为局部规则连接和一定概率的长程连接,实际的生物神经元网络的长程连接概率可能是变化的.因此,用局部规则连接和可变的长程连接概率则更能恰当地研究网络对实际生物系统螺旋波的演化,可变的长程连接概率对螺旋波的影响简化为乘性噪声效应.首先选择恰当的初始值和参数值并在无流边界条件下在神经元网络内诱导出稳定旋转的螺旋波,再考虑网络对螺旋波演化的影响.研究发现当乘性噪声强度小于一定阈值时螺旋波保持很好的鲁棒性,进一步增加乘性噪声强度则发现螺旋波破裂.定义了一类统计同步因子,并通过观察同步因子曲线上临界点参数(如噪声强度和刺激电流强度等)对应的所有格点神经元膜点位来研究螺旋波的相变问题.首先研究了Hindm arsh-Rose耦合神经元网络中螺旋波的鲁棒性和破裂,为验证结论与模型无关则进一步研究了在通道噪声下Hodgkin-Huxley神经元网络螺旋波的破裂和鲁棒性问题,发现在通道噪声下乘性噪声更容易引起螺旋波的破裂.
马军唐军张爱华贾亚
关键词:螺旋波乘性噪声鲁棒性
Robustness and breakup of the spiral wave in a two-dimensional lattice network of neurons被引量:6
2010年
The robustness and breakup of spiral wave in a two-dimensional lattice networks of neurons are investigated. The effect of small- world type connection is often simplified with local regular connection and the long-range connection with certain probability. The network effect on the development of spiral wave can be better described by local regular connection and changeable long-range connection probability than fixed long-range connection probability because the long-range probability could be changeable in realistic biological system. The effect from the changeable probability for long-range connection is simplified by multiplicative noise. At first, a stable rotating spiral wave is developed by using appropriate initial values, parameters and no-flux boundary conditions, and then the effect of networks is investigated. Extensive numerical studies show that spiral wave keeps its alive and robust when the intensity of multiplicative noise is below a certain threshold, otherwise, the breakup of spiral wave occurs. A statistical factor of synchronization in two-dimensional array is defined to study the phase transition of spiral wave by checking the membrane potentials of all neurons corresponding to the critical parameters(the intensity of noise or forcing current)in the curve for factor of synchronization. The Hindmarsh-Rose model is investigated, the Hodgkin-Huxley neuron model in the presence of the channel noise is also studied to check the model independence of our conclusions. And it is found that breakup of spiral wave is easier to be induced by the multiplicative noise in presence of channel noise.
MA Jun 1,2, TANG Jun 2 , ZHANG AiHua 3 & JIA Ya 2 1 Department of Physics, Lanzhou University of Technology, Lanzhou 730050, China
关键词:SPIRALSYNCHRONIZATIONBREAKUPMULTIPLICATIVEROBUSTNESS
Synchronization and parameter identification of one class of realistic chaotic circuit被引量:2
2009年
In this paper,the synchronization and the parameter identification of the chaotic Pikovsky-Rabinovich(PR) circuits are investigated.The linear error of the second corresponding variables is used to change the driven chaotic PR circuit,and the complete synchronization of the two identical chaotic PR circuits is realized with feedback intensity k increasing to a certain threshold.The Lyapunov exponents of the chaotic PR circuits are calculated by using different feedback intensities and our results are confirmed.The case where the two chaotic PR circuits are not identical is also investigated.A general positive Lyapunov function V,which consists of all the errors of the corresponding variables and parameters and changeable gain coefficient,is constructed by using the Lyapunov stability theory to study the parameter identification and complete synchronization of two non-identical chaotic circuits.The controllers and the parameter observers could be obtained analytically only by simplifying the criterion dV/dt < 0(differential coefficient of Lyapunov function V with respect to time is negative).It is confirmed that the two non-identical chaotic PR circuits could still reach complete synchronization and all the unknown parameters in the drive system are estimated exactly within a short transient period.
王春妮马军褚润通李世荣
关键词:混沌电路LYAPUNOV稳定性理论LYAPUNOV指数LYAPUNOV函数李雅普诺夫函数
Numerical study of IP_3-induced Ca^(2+) spiral pattern evolution
2008年
The effect of change in concentration of messenger molecule inositol 1,4,5-trisphosphate (IP 3 ) on intracellular Ca 2+ spiral pattern evolution is studied numerically. The results indicate that when the IP 3 concentration decreases from 0.27 μM, a physiologically reasonable value, to different values, the spiral centre drifts to the edge of the medium and disappears for a small enough IP 3 concentration. The instability of spiral pattern can be understood in terms of excitability-change controlled by the IP 3 concentration. On the other hand, when the IP 3 concentration increases from 0.27 μM, a homogeneous area with a high Ca 2+ concentration emerges and competes with the spiral pattern. A high enough IP 3 concentration can lead the homogeneous area to occupy the whole medium. The instability of spiral pattern is ascribed to the change in stability of a stationary state with a high Ca 2+ concentration.
唐军马军易鸣贾亚
关键词:螺旋波细胞学
时变反应扩散系统中螺旋波和湍流的控制被引量:15
2008年
研究了一类参数时变的反应扩散系统中螺旋波和湍流对外电场的响应问题.在数值模拟中,以一类改进的Fitzhugh-Nagumo模型为研究对象(在恰当参数值下可分别描述激发介质和振荡介质),考虑随机和不确定因素(如内外噪声、气压、温度梯度分布和介质形变等)所引起的系统参数涨落对斑图演化的影响,在模拟中选取的参数涨落范围确保系统可以观测到稳定旋转的螺旋波、漫游的螺旋波和湍流,经历一定的暂态过程后,对介质施加极化电场,研究螺旋波和湍流在外电场中的演化.数值计算结果表明:在系统参数发生涨落和外电场强度比较小情况下,主要观测到螺旋波的破裂;而在系统参数发生涨落和外电场强度比较大时,螺旋波先发生破裂,最终在外电场作用下,系统达到稳定均匀态.基于系统快变量的瞬时状态闪图来描述参数涨落和外电场作用下斑图的演化问题,并进行了对应的理论分析.
马军靳伍银易鸣李延龙
关键词:螺旋波湍流时变系统
基于自适应同步的超混沌Chen系统的参数识别被引量:1
2010年
为了研究超混沌Chen系统的完全同步及未知参数的识别及优化问题,利用两个线性控制器实现参数匹配的两个超混沌Chen系统的完全同步,研究了参数未知的超混沌Chen系统的参数辨识及优化问题,基于Lyapunov稳定性理论,解析地获得同步控制器和参数观测器表达式,其中的控制器个数低于系统维数。研究结果表明:当两个超混沌系统达到完全同步后,驱动系统的5个未知参数被准确识别。该方法在驱动系统的参数发生跃变的情况下也是有效的。
王春妮
关键词:自适应同步参数识别
噪声诱导两个非耦合神经元系统同步振荡的表现形式
本文利用有正弦刺激的H-H神经元模型和HR模型揭示了两个非耦合神经元在噪声诱导下同步行为的几种表现形式:周期运动、混沌运动噪声下转变为同步的确定性混沌运动;混沌运动噪声下转变为同步的随机运动。
吴莹徐健学靳伍银洪灵马军江俊
关键词:神经元噪声
文献传递
Stabilization of spiral wave and turbulence in the excitable media using parameter perturbation scheme被引量:5
2008年
This paper proposes a scheme of parameter perturbation to suppress the stable rotating spiral wave, meandering spiral wave and turbulence in the excitable media, which is described by the modified Fitzhugh–Nagumo (MFHN) model. The controllable parameter in the MFHN model is perturbed with a weak pulse and the pulse period is decided by the rotating period of the spiral wave approximatively. It is confirmed that the spiral wave and spiral turbulence can be suppressed greatly. Drift and instability of spiral wave can be observed in the numerical simulation tests before the whole media become homogeneous finally.
马军王春妮靳伍银李延龙蒲忠胜
关键词:流体力学
Channel noise-induced phase transition of spiral wave in networks of Hodgkin-Huxley neurons被引量:11
2011年
The phase transition of spiral waves in networks of Hodgkin-Huxley neurons induced by channel noise is investigated in detail.All neurons in the networks are coupled with small-world connections,and the results are compared with the case for regular networks,in which all neurons are completely coupled with nearest-neighbor connections.A statistical variable is defined to study the collective behavior and phase transition of the spiral wave due to the channel noise and topology of the network.The effect of small-world connection networks is described by local regular networks and long-range connection with certain probability p.The numerical results confirm that (1) a stable rotating spiral wave can be developed and maintain robust with low p,where the breakup of the spiral wave and turbulence result from increasing the probability p to a certain threshold;(2) appropriate intensity of the optimized channel noise can develop a spiral wave among turbulent states in small-world connection networks of H-H neurons;and (3) regular connection networks are more robust to channel noise than small-world connection networks.A spiral wave in a small-world network encounters instability more easily as the membrane temperature is increased to a certain high threshold.
MA JunWU YingYING HePingJIA Ya
关键词:信道噪声螺旋波赫胥黎小世界网络
共1页<1>
聚类工具0