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Energy 的代码
chow_algo.m
% Chow's Algorithm
% ----------------
% This is based on the paper by Chow et al titled
%
% A Practical Discrete Multitone Transceiver Loading Algorithm
% for Data Transmission over Spectrally Shaped
chow_algo.m
% Chow's Algorithm
% ----------------
% This is based on the paper by Chow et al titled
%
% A Practical Discrete Multitone Transceiver Loading Algorithm
% for Data Transmission over Spectrally Shaped
boltzman.h
//====================================================================
#ifndef __BOLTZMAN_H
#define __BOLTZMAN_H
#include "ovector.h"
#include "misc.h"
#include "particle.h"
#include "stdio.h"
#i
prolate.c
/*--------------------------- MegaWave2 module -----------------------------*/
/* mwcommand
name = {prolate};
author = {"Lionel Moisan"};
version = {"1.1"};
function = {"Create a prolate kernel"}
sleep exit execs
wlan_interrupts_process ();
// Updates energy on final transition out of BACKOFF State
if (WAKE_UP_TRANSIT)
{
// energy calculation check
#ifndef OPD_NO_DEBUG
if ((op_sim_time() > wsn_
sllep exit execs
wlan_interrupts_process ();
// Updates energy on final transition out of BACKOFF State
if (WAKE_UP_TRANSIT) // WAKE_UP_TRANSIT is Sleep = 0
{
// energy calculation check
#ifndef OPD_NO_D
sleep exit execs
wlan_interrupts_process ();
// Updates energy on final transition out of BACKOFF State
if (WAKE_UP_TRANSIT) // WAKE_UP_TRANSIT is Sleep = 0
{
// energy calculation check
#ifndef OPD_NO_D
nwscript.txt
/L11"NWScript" Line Comment = // Block Comment On = /* Block Comment Off = */ Escape Char = \ String Chars = " File Extensions = NSS
/Function String = "(^([a-z_0-9]+(*)^)"
/Function String 1 = "^([
energymodel.tex
\chapter{Energy Model in ns}
\label{chap:enerymodel}
Energy Model, as implemented in \ns, is a node attribute. The
energy model represents level of energy in a mobile host. The energy
model in a node
energymodel.tex
\chapter{Energy Model in ns}
\label{chap:enerymodel}
Energy Model, as implemented in \ns, is a node attribute. The
energy model represents level of energy in a mobile host. The energy
model in a node