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pn_catch_83_test.v
`timescale 1ns / 1ps
////////////////////////////////////////////////////////////////////////////////
// Company:
// Engineer:
//
// Create Date: 08:27:24 12/29/07
// Design Name:
// Mo
ofdm_optimal_tx.m
binary = InputPort1.Sequence;
RF_signal = InputPort2.Sampled.Signal;
RF_length = length(RF_signal);
binleng=length(binary);
%plot(RF_length,binleng);
%time_signal = InputPort2.Sampled.Time;
Bitr
xil_rgb2ycrcb_init_mdl.m
function [input_image, input_image_r, input_image_g, input_image_b, matlab_y, matlab_cr, matlab_cb] = Xil_RGB2YCrCb_init_mdl()
%input_image = imread('paradise.ppm','ppm');
%input_image = imread('p
status_line.c
/* This file was contributed by Suzanne Skinner and is copyrighted
under the GNU General Public License. (C) 2002 Suzanne Skinner.
The code contained in this file is free software; you can
r
xil_rgb2ycrcb_init_mdl.m
function [input_image, input_image_r, input_image_g, input_image_b, matlab_y, matlab_cr, matlab_cb] = Xil_RGB2YCrCb_init_mdl()
%input_image = imread('paradise.ppm','ppm');
%input_image = imread('p
miden_ch.&&&
%
% setting up screen
%
% Retain compatability with costback
main=w1;
clf;
figure(main);
set(main,'Name','1st order plant identification');
pic_ax = axes('Position',[0.37 0.45 0.55 0
miden_ch.m
%
% setting up screen
%
% Retain compatability with costback
main=w1;
clf;
figure(main);
set(main,'Name','1st order plant identification');
pic_ax = axes('Position',[0.37 0.45 0.55 0
miden_ch.&&&
%
% setting up screen
%
% Retain compatability with costback
main=w1;
clf;
figure(main);
set(main,'Name','1st order plant identification');
pic_ax = axes('Position',[0.37 0.45 0.55 0
miden_ch.m
%
% setting up screen
%
% Retain compatability with costback
main=w1;
clf;
figure(main);
set(main,'Name','1st order plant identification');
pic_ax = axes('Position',[0.37 0.45 0.55 0
miden_ch.&&&
%
% setting up screen
%
% Retain compatability with costback
main=w1;
clf;
figure(main);
set(main,'Name','1st order plant identification');
pic_ax = axes('Position',[0.37 0.45 0.55 0