代码搜索:Spectrum

找到约 5,196 项符合「Spectrum」的源代码

代码结果 5,196
www.eeworm.com/read/283135/9040911

m d3hilbert.m

echo on; % --- D3HILBERT loads files and plots their 3-D Hilbert spectrum. --- % % % Non MATLAB Library routines used are: % NSPAB, FSPECIAL and MSPC. % % Required data files 'ci1'-'ci16'.
www.eeworm.com/read/372550/9503979

m lpcls2ar.m

function ar=lpcls2ar(ls) %LPCLS2AR convert line spectrum pair frequencies to ar polynomial AR=(LS) % input vector elements should be in the range 0 to 0.5 % Copyright (C) Mike Brookes 1997
www.eeworm.com/read/175701/9535916

c intelflash.c

/* * Copyright (C) 2001, Spectrum Digital, Inc. All Rights Reserved. */ #include "5509.h" #include "util.h" #include "data.h" #define FLASH_NORMALBLOCKS 31 #define FLASH_NORMA
www.eeworm.com/read/365161/9876600

m lpcls2ar.m

function ar=lpcls2ar(ls) %LPCLS2AR convert line spectrum pair frequencies to ar polynomial AR=(LS) % input vector elements should be in the range 0 to 0.5 % Copyright (C) Mike Brookes 1997
www.eeworm.com/read/168118/9937157

m fxtran.m

function [phs,fphs,amp,famp,rwind] = fxtran(seis,x,t,tmin,tmax, pctaper,pctrand,fmax,ialign,xmin,xmax) %FXTRAN computes the f-x spectrum, returns "complex phase" and amplitude spectra. % % [phs,fph
www.eeworm.com/read/360651/10082931

m lpcls2ar.m

function ar=lpcls2ar(ls) %LPCLS2AR convert line spectrum pair frequencies to ar polynomial AR=(LS) % input vector elements should be in the range 0 to 0.5 % Copyright (C) Mike Brookes 1997
www.eeworm.com/read/360651/10082982

m lpcls2ar.m

function ar=lpcls2ar(ls) %LPCLS2AR convert line spectrum pair frequencies to ar polynomial AR=(LS) % input vector elements should be in the range 0 to 0.5 % Copyright (C) Mike Brookes 1997
www.eeworm.com/read/358270/10193243

m l1psd.m

% L1PSD Script to plot the theoretical power spectrum of the GPS L1 signal % Set the reference level ref = -130; %Set the thermal noise level noise = -111; f = 1500:0.01:1650; CA = sinc((1
www.eeworm.com/read/357616/10205032

m fxtran.m

function [phs,fphs,amp,famp,rwind] = fxtran(seis,x,t,tmin,tmax, pctaper,pctrand,fmax,ialign,xmin,xmax) %FXTRAN computes the f-x spectrum, returns "complex phase" and amplitude spectra. % % [phs,fph
www.eeworm.com/read/278180/10560459

m hhspectrum_nonormolized.m

function [A,f,tt] = hhspectrum_nonormolized(imf,t,l,aff) % [A,f,tt] = HHSPECTRUM(imf,t,l,aff) computes the Hilbert-Huang spectrum % % inputs: % - imf : matrix with one IMF per row % - t : time i