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91.
92.
信息在神经系统中以脉冲点序列的形式传输和处理,神经系统如何通过脉冲点序列对所表达的信息进行编码,一直是一个谜.人们曾普遍认为,神经可能通过发放率(单位时间发放脉冲出现的次数)对信息编码,也有人猜测,神经可通过脉冲点序列的时序编码.由于神经发放的随机性,这就使得任何编码机制都面临着被表达信息的确定性与表达该信息的信号的随机性的矛盾.通过神经非线性随机动力学模型,文章作者发现,神经点序列的发放率对点序列的时序信息传输的影响,揭示了神经点序列时序信息在神经非线性传输中的随机共振特征.由此预期,并进一步通过听觉心理物理实验观察到,在一定条件下噪声对听觉的增强作用.从而通过非线性物理揭示了听觉时序编码机制的存在以及在时序编码中随机性噪声的积极作用. 相似文献
93.
The nonlinear Schrödinger equation which governs the dynamics of two-dimensional spatial solitons in Kerr media with periodically varying diffraction and nonlinearity has been analyzed in this paper using variational approach and numerical studies. Analytical expressions for soliton parameters have been derived using variational analysis. Variational equations and partial differential equation have been simulated numerically. Analytical and numerical studies have shown that nonlinearity management and diffraction management stabilize the pulse against decay or collapse providing undisturbed propagation even for larger energies of the incident beam. 相似文献
94.
In this paper, 10 Gbps optical soliton transmission link using in-line semiconductor optical amplifiers (SOAs) for already installed standard single mode fibers (SMF) at 1.3 μm wavelength has been reported. The pattern effect and the impact of chirp on pulse propagation after amplification have been investigated. The observations are based on modeling and simulation optical soliton transmission link. Optical soliton pulse transmission over distances of the order of several hundreds of kilometers has been shown with and without initial chirp. 相似文献
95.
Y. Zheng S. L. Simon G. B. McKenna 《Journal of Polymer Science.Polymer Physics》2002,40(18):2027-2036
Amorphous polymers below their glass‐transition temperature are inherently not at equilibrium. As a result, their structures continuously relax in an attempt to reach the equilibrium state. The current models of structural recovery can quantitatively describe the process. One of the parameters needed for the models is the nonlinearity parameter x. It has been proposed that x can be obtained from experimental data with the so‐called peak‐shift method. In this work, we use the Tool–Narayanaswamy–Moynihan model to identify the factors that determine the accuracy of the peak‐shift method and to quantify the errors in the value of x obtained from the peak‐shift method. In addition, we determine the influence of the error in x on the evaluation of the nonexponential model parameter β. Finally, the peak‐shift method is compared with the traditional curve‐fitting method for model parameter determination. © 2002 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 40: 2027–2036, 2002 相似文献
96.
97.
信息网络的传输宽带化和业务多样化需求给交换结构的可扩展性及性能提出了更高的要求.基于MSM(Memory-Space-Memory)输入输出排队交换结构进行研究,通过对交换网络内部拥塞调度机制进行深入分析,在保障调度公平性的基础上,提出一种严格匹配输出调度过程的SM-RR(Strict Matching algorithm based onRound-Robin)算法.与现有典型算法相比,该算法无需加速比即可获得较高的性能. 相似文献
98.
99.
Lower bounds for blow-up time in a nonlinear parabolic problem 总被引:1,自引:0,他引:1
L.E. Payne 《Journal of Mathematical Analysis and Applications》2009,354(1):394-1014
For a parabolic problem with a gradient nonlinearity which was introduced by Chipot and Weissler [M. Chipot, F.B. Weissler, Some blow up results for a nonlinear parabolic problem with a gradient term, SIAM J. Math. Anal. 20 (1989) 886-907] (see also [B. Kawohl, L.A. Peletier, Observations on blow up and dead cores for nonlinear parabolic equations, Math. Z. 202 (1989) 207-217]), the question of blow-up is investigated. Specifically, if the solution blows up, a lower bound for the time of blow-up is derived 相似文献
100.
The inversion of strong scatterer embedded in the half-space is an important problem in engineering and a very difficult nonlinear
problem in mathematics, for which the Born iterative method is of no effect. In this paper the moment method is used in the
discretization procedure. A numerical approach is presented by employing the regularization technique and DBI (distorted Born
iterative) method. The simulation results show that the approach presented is efficient.
Project supported by the Research Fund for the Doctoral Program of Higher Education (RFDP: 98048705). 相似文献