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- 基于分数阶傅里叶变换的无线通信系统关键技术研究,最优分数阶傅里叶域的乘性滤波算法较频域方法有更好的均衡效果. -Research on the key technology of wireless communication system based on fractional Fourier transform better than the frequency domain method.
ECOC-oral
- 分数阶傅里叶变换在光通信中的运用,可以很好的处理色散问题-Fractional Fourier Transform of use in optical communications
optical-coherence-lattices
- Two-dimensional discrete fractional Fourier transform program, you can use to do image processing, absolutely fr-Two-dimensional discrete fractional Fourier transform program, you can use to do image processing, absolutely free
fenshjie1
- 针对多变量分数阶控制系统的稳定性问题,分析了采用了特征值区间法来判别系统稳定性的方法。对状态矩阵与阶数在某一区间内变化的多变量分数阶系统,总结出了稳定性判别的方法与步骤-For the stability of multivariable fractional order control system, the characteristic values were analyzed using interval method to determine the stability of the s
fenshuju2
- 作为控制科学与工程中一个新的研究领域,分数阶控制的研究愈来愈被关注.简要介绍了分数阶控制的数学背景和基本知识,对分数阶控制理论及应用(分数阶系统模型、系统分析、分数阶控制器、非线性分数阶系统、系统辨识)的-Control Science and Engineering as a new field of study, research is increasingly controlled Fractional attention briefly introduces the mathematic
fenshujie3
- 对分数阶微分算子 Sr( rIR ) 的离散化是分数阶控制系统数字化实现的关键所在, 不同的离散化方法有其各自的优缺点和适用范围, 通过实例仿真, 对常用的几种离散化方法进行了详细的分析比较, 对 A l- A laoui算子的连分式展开逼近法进行相角补偿-For fractional differential operator Sr (rIR) discretization is the key for fractional digital implementation, different
fenshujie5
- 到目前为止,分数阶微分算子和分数阶积分算子在粘弹性理论中得到了最广泛的应恩.许多文献孛提到应用分数阶微分作为糕弹性材辫的数学模型是俘缀塞然的事情。值得一提的是,分数阶理论之所以在粘弹性材料建模上得到如此大的发展的主要原因是分数阶材料在工程领域的广泛应用.并且,只要给予适当的假设,几乎所有的分数酚模型都麓很好豹舞纳材瓣的变形特征,并对解释实际阕题起着糨当大的俸用-So far, the fractional differential operator and fractional integral
fenshujie6
- 理切比雪夫算法, 提出了一种新的分数阶微积分算子的直接离散化方法, 以达到在直接离散时间域上更精确的逼近效果. -Li Chebyshev algorithm, a new direct discrete method of fractional integral operators, in order to achieve the direct discrete time domain approximation more accurate results.
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- Transient Performance Iprovement of Wind Turbines with Doubly Fed Induction Generators Using Fractional Order Control Strategy
01
- Transient Performance Iprovement of Wind Turbines with Doubly Fed Induction Generators Using Fractional Order Control Strategy
frft.m
- The Fractional Fourier Transform matlab code for separation of overlapping linear frequency modulated signal.
11-fixedpointarithmetic
- Also called Q-formatFractional representation suitable for DSP algorithms.Fractional number range is between 1 and -1 Multiplying a fraction by a fraction always results in a fraction and will not produce an overflow (e.g., 0.99 x 0.9999 less than 1)
nai_mc22
- 最大信噪比的独立分量分析算法,做视觉测量的上位机代码,分数阶傅里叶变换计算方面。- SNR largest independent component analysis algorithm, Do Vision Measurement PC code, Fractional Fourier transform computing.
qthpf
- 分数阶傅里叶变换计算方面,包括 MUSIC算法,ESPRIT算法 ROOT-MUSIC算法,包含了阵列信号处理的常见算法。- Fractional Fourier transform computing, Including the MUSIC algorithm, ESPRIT algorithm ROOT-MUSIC algorithm, Contains a common array signal processing algorithm.
tenking-V2.2
- 分数阶傅里叶变换计算方面,内含心电信号数据及运用MATLAB写的源代码,自写曲率计算函数 。- Fractional Fourier transform computing, ECG data and includes source code written in MATLAB, Since writing the curvature calculation function.
ia627
- 多目标跟踪的粒子滤波器,空间目标识别,采用PM算法,分数阶傅里叶变换计算方面。- Multi-target tracking particle filter, Space target recognition algorithm using PM, Fractional Fourier transform computing.
tanlenkou
- MIT人工智能实验室的目标识别的源码,关于神经网络控制,分数阶傅里叶变换计算方面。- MIT Artificial Intelligence Laboratory identification of the target source, On neural network control, Fractional Fourier transform computing.
Chen-system-synchronaziton
- 基于波特图的频域近似方法,研究了分数阶)*+ 混沌系统,并设计了一种树形电路单元来实现分数阶)*+ 混沌 系统,通过对&,! 阶)*+ 混沌系统的电路仿真和实验,以及!- #,.—#, (步长#, ))*+ 混沌系统的电路仿真,验证了 树形电路单元的有效性,证实分数阶)*+ 混沌系统中确实存在混沌现象,且存在混沌的最低阶数为#,/0 设计简单 有效的线性反馈控制器,实现了分数阶)*+ 混沌系统的混沌控制0-Bode plot approximation method based on
A-new-four-dimensiona
- 基于波特图的频域近似方法,研究了分数阶)*+ 混沌系统,并设计了一种树形电路单元来实现分数阶)*+ 混沌 系统,通过对&,! 阶)*+ 混沌系统的电路仿真和实验,以及!- #,.—#, (步长#, ))*+ 混沌系统的电路仿真,验证了 树形电路单元的有效性,证实分数阶)*+ 混沌系统中确实存在混沌现象,且存在混沌的最低阶数为#,/0 设计简单 有效的线性反馈控制器,实现了分数阶)*+ 混沌系统的混沌控制0-Bode plot approximation method based on
jui_ki53
- 仿真效率很高的,分数阶傅里叶变换计算方面,基于人工神经网络的常用数字信号调制。- High simulation efficiency, Fractional Fourier transform computing, The commonly used digital signal modulation based on artificial neural network.