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Energy 的代码
wireless-phy.cc
/* -*- Mode:C++; c-basic-offset:8; tab-width:8; indent-tabs-mode:t -*-
*
* Copyright (c) 1996 Regents of the University of California.
* All rights reserved.
*
* Redistribution and use in source
leach_test
#!/bin/bash
# This file runs a generic LEACH protocol simulation.
#This is the algorithm that we are going to run.
alg=leach
#dirname, filename =
# The directory and filename that we want our ou
energything.java
//package src;
import java.util.Random;
public class EnergyThing {
int energy;
int time;
int speed;
int energy_X,energy_Y;
public boolean alive;
Random r = new Random();
pu
getpdat2.c
/*
This material contains proprietary software of Entropic Processing, Inc.
Any reproduction, distribution, or publication without the the prior
written permission of Entropic Processing, Inc
surface_fluxes.c
#include
#include
#include
#include
static char vcid[] = "$Id: surface_fluxes.c,v 4.2.2.2 2004/05/10 18:44:10 tbohn Exp $";
void surface_fluxes(char
input-springs2
/*
* =========================================================================
* Force-displacement calculation for mass-spring system having springs
* with bi-linear force-displacement charac
scale.m
function gain = scale(md,symb_energy)
%SCALE Constellation expansion factor.
% GAIN = SCALE(MD,SYMB_ENERGY) simply computes an expansion
% constellation factor which corresponds to set the modula
property5.m
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
% property5 - Program for showing Parseval relation
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
x = [1 2 3 4 4 3 2 1];
energy_time = sum(ab
mssnr.m
%MSSNR Maximum shortening signal-to-noise ratio TEQ design.
% [W, D, Dv] = MSSNR(H, Nb, Nw, Dmin, Dmax) returns the optimal
% time domain equalizer, and delay. Optimal in the sense of
% maximizing t
mssnr.m
%MSSNR Maximum shortening signal-to-noise ratio TEQ design.
% [W, D, Dv] = MSSNR(H, Nb, Nw, Dmin, Dmax) returns the optimal
% time domain equalizer, and delay. Optimal in the sense of
% maximizing t