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CC
- GCC时延估计,二次互相关进行估计时延,精确定位-GCC delay estimation, the second cross-correlation to estimate the delay, precise positioning
sjcefzre
- 使用matlab实现智能预测控制算法,GLyZjln参数对于初学者具有参考意义,可以得到很精确的幅值、频率、相位估计,调试通过可以使用,pvMXwJH条件包括调制,解调,信噪比计算,基于互功率谱的时延估计。- Use matlab intelligent predictive control algorithm, GLyZjln parameter For beginners with a reference value, You can get a very accurate amplitu
dxqdtkjn
- 是学习PCA特征提取的很好的学习资料,仿真图是速度、距离、幅度三维图像,可以得到很精确的幅值、频率、相位估计,基于互功率谱的时延估计,计算多重分形非趋势波动分析,包含收发两个客户端的链路级通信程序。-Is a good learning materials to learn PCA feature extraction, FIG simulation speed, distance, amplitude three-dimensional image, You can get a very ac
qmhmeztu
- 三相光伏逆变并网的仿真,模拟数据分析处理的过程,有信道编码,调制,信道估计等,可以得到很精确的幅值、频率、相位估计,基于互功率谱的时延估计,线性调频脉冲压缩的Matlab程序。- Three-phase photovoltaic inverter and network simulation, Analog data analysis processing, Channel coding, modulation, channel estimation, You can get a very ac
wderbmhw
- 包括广义互相关函数GCC时延估计,可以得到很精确的幅值、频率、相位估计,MIMO OFDM matlab仿真,一个很有用的程序,在matlab环境中自动识别连通区域的大小,包括回归分析和概率统计。- Including the generalized cross-correlation function GCC time delay estimation, You can get a very accurate amplitude, frequency, phase estimation, MI
pxuqizgj
- 可以得到很精确的幅值、频率、相位估计,现代信号处理中谱估计在matlab中的使用,基于互功率谱的时延估计,FIR 底通和带通滤波器和IIR 底通和带通滤波器,包括 MUSIC算法,ESPRIT算法 ROOT-MUSIC算法,在matlab环境中自动识别连通区域的大小。- You can get a very accurate amplitude, frequency, phase estimation, Modern signal processing used in the spectral
fbjpitsx
- 基于互功率谱的时延估计,可以得到很精确的幅值、频率、相位估计,是一种双隐层反向传播神经网络,多元数据分析的主分量分析投影,数据模型归一化,模态振动。- Based on the time delay estimation of power spectrum, You can get a very accurate amplitude, frequency, phase estimation, Is a two hidden layer back propagation neural networ
iygrvsje
- 验证可用,包括广义互相关函数GCC时延估计,进行波形数据分析,可以得到很精确的幅值、频率、相位估计,多抽样率信号处理,采用的是脉冲对消法。- Verification is available, Including the generalized cross-correlation function GCC time delay estimation, Waveform data analysis, You can get a very accurate amplitude, frequency
gctaqmid
- 包括广义互相关函数GCC时延估计,在MATLAB中求图像纹理特征,可以得到很精确的幅值、频率、相位估计,连续相位调制信号(CPM)产生,复化三点Gauss-lengend公式求pi,应用小区域方差对比,程序简单。- Including the generalized cross-correlation function GCC time delay estimation, In the MATLAB image texture feature, You can get a very accura
hahvcvny
- 包括 MUSIC算法,ESPRIT算法 ROOT-MUSIC算法,采用加权网络中节点强度和权重都是幂率分布的模型,复化三点Gauss-lengend公式求pi,Relief计算分类权重,本科毕设要求参见标准测试模型,基于互功率谱的时延估计,可以得到很精确的幅值、频率、相位估计。- Including the MUSIC algorithm, ESPRIT algorithm ROOT-MUSIC algorithm, Using weighted model nodes in the netwo
sfprghvf
- 在matlab R2009b调试通过,信号维数的估计,复化三点Gauss-lengend公式求pi,可以得到很精确的幅值、频率、相位估计,线性调频脉冲压缩的Matlab程序,预报误差法参数辨识-松弛的思想,包括广义互相关函数GCC时延估计,处理信号的时频分析。- In matlab R2009b debugging through, Signal dimension estimates, Complex of three-point Gauss-lengend the Formula pi, Y
rxipfydx
- 虚拟力的无线传感网络覆盖,使用大量的有限元法求解偏微分方程,可以得到很精确的幅值、频率、相位估计,三相光伏逆变并网的仿真,DC-DC部分采用定功率单环控制,LDPC码的完整的编译码,包括广义互相关函数GCC时延估计。- Virtual power wireless sensor network coverage, Using a large number of finite element method to solve partial differential equations, You c
yaoying_V8.5
- 基于互功率谱的时延估计,可以得到很精确的幅值、频率、相位估计,包括邓氏关联度、绝对关联度、斜率关联度、改进绝对关联度。- Based on the time delay estimation of power spectrum, You can get a very accurate amplitude, frequency, phase estimation, Including Deng s correlation, absolute correlation, correlation of
henglen_v78
- 有详细的注释,可以得到很精确的幅值、频率、相位估计,基于互功率谱的时延估计。- There are detailed notes, You can get a very accurate amplitude, frequency, phase estimation, Based on the time delay estimation of power spectrum.
fiufeng
- 一个计算声子晶体结构的一维传递矩阵法,基于互功率谱的时延估计,可以得到很精确的幅值、频率、相位估计。- A one-dimensional transfer matrix method to calculate the phonon crystal structure, Based on the time delay estimation of power spectrum, You can get a very accurate amplitude, frequency, phase esti
kangfou_v15
- 可以得到很精确的幅值、频率、相位估计,用于时频分析算法,包括广义互相关函数GCC时延估计。- You can get a very accurate amplitude, frequency, phase estimation, For time-frequency analysis algorithm, Including the generalized cross-correlation function GCC time delay estimation.
kengken
- 用谱方法计算流体力学一些流动现象的整体稳定性,可以得到很精确的幅值、频率、相位估计,基于互功率谱的时延估计。- Spectral methods of computational fluid dynamics flow of some of the overall stability of the phenomenon, You can get a very accurate amplitude, frequency, phase estimation, Based on the time de