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Energy 的代码
ofdm.m
clear all;
A = [1 1/exp(1) 1/exp(2)]; % power delay profile
N = 64; % number of symbols in a single OFDM symbol
GI = 16; % guard interval
Mt = 1; % number of Tx antennas
Mr = 1; % number of Rx a
mrf.cpp
#include "MRF.h"
#include
#include "mex.h"
MRF::~MRF() {
if (lambdaMat != 0) {
for (int i=0; i
ofdm.m
clear all;
A = [1 1/exp(1) 1/exp(2)]; % power delay profile
N = 64; % number of symbols in a single OFDM symbol
GI = 16; % guard interval
Mt = 1; % number of Tx antennas
Mr = 1; % number of Rx a
score.h
/* */
/* Copyright UCSF, 1997 */
/*
io_grid.c
/* */
/* Copyright UCSF, 1997 */
/*
ofdm.m
clear all;
A = [1 1/exp(1) 1/exp(2)]; % power delay profile
N = 64; % number of symbols in a single OFDM symbol
GI = 16; % guard interval
Mt = 1; % number of Tx antennas
Mr = 1; % number of Rx a
ofdm.asv
clear all;
A = [1 1/exp(1) 1/exp(2)]; % power delay profile
N = 64; % number of symbols in a single OFDM symbol
GI = 16; % guard interval
Mt = 1; % number of Tx antennas
Mr = 1; % number of Rx a
ofdm.m
clear all;
A = [1 1/exp(1) 1/exp(2)]; % power delay profile
N = 64; % number of symbols in a single OFDM symbol
GI = 16; % guard interval
Mt = 1; % number of Tx antennas
Mr = 1; % number of Rx a
vad.c
/*
ITU-T G.729 Annex C+ - Reference C code for floating point
implementation of G.729 Annex C+
(integration of Annexes B, D and E)
vad.c
/*
ITU-T G.729 Annex C+ - Reference C code for floating point
implementation of G.729 Annex C+
(integration of Annexes B, D and E)