代码搜索:Num

找到约 10,000 项符合「Num」的源代码

代码结果 10,000
www.eeworm.com/read/388074/8637499

h amr_config.h

#define MAX_NUM_METERS 100 // maximum of meters in the system
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m tfrview.m

function tfrview(tfr,sig,t,method,param,p1,p2,p3,p4,p5); %TFRVIEW Visualization of time-frequency representations. % TFRVIEW(TFR,SIG,T,METHOD,PARAM,P1,P2,P3,P4,P5) % allows to visualize
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m sgrpdlay.m

function [gd,fnorm]=sgrpdlay(x,fnorm); %SGRPDLAY Group delay estimation of a signal. % [GD,FNORM]=SGRPDLAY(X,FNORM) estimates the group delay of % signal X at the normalized frequency(ies) FNORM. % %
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cpp lru.cpp

#include #include #define M 4 //表示页数 #define N 6 //表示N个页面序列 #define Myprintf printf("|---+---+---+---+---+---+---+---+---+---+---+---+---+---+---+---+---+---+---+---|\n") typede
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m p7_1.m

% Program P7_1 % Design of a Butterworth Bandstop Digital Filter Ws = [0.4 0.6]; Wp = [0.2 0.8]; Rp = 0.4; Rs = 50; % Estimate the Filter Order [N1, Wn1] = buttord(Wp, Ws, Rp, Rs); % Design the
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m p6_2.m

% Program P6_2 % Parallel Form Realizations of an IIR Transfer num = input('Numerator coefficient vector = '); den = input('Denominator coefficient vector = '); [r1,p1,k1] = residuez(num,den);
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m noisepwr2.m

function nvar = noisepwr2(num,den) % Computes the approximate output noise variance due % to input quantization of a digital filter % by summing the square of the impulse response samples % % num
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m noisepwr1.m

function nvar = noisepwr1(num,den) % Computes the output noise variance due % to input quantization of a digital filter % based on a partial-fraction approach % % num and den are the numerator an
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m p2_5.m

% Program P2_5 % Compute the impulse response y clf; N = 40; num = [2.2403 2.4908 2.2403]; den = [1 -0.4 0.75]; y = impz(num,den,N); % Plot the impulse response stem(y); xlabel('Time index n'
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m p8_4.m

% Program P8_4 num = remez(9, [0 0.3 0.5 1],[1 1 0 0]); disp('Filter coefficients are ');disp(num); impres = filter(num,1 ,[1 zeros(1,9)]); disp('Actual filter coeffs are '); disp(impres);