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Energy 的代码
armsym.c
/* armsym.c -- Main instruction emulation: SA11x Instruction Emulator.
Copyright (C) 2001 Princeton University
This program is free software; you can redistribute it and/or modify
diagnose_recipe.sof
# Sof v1.0 #
# Process #
input = "SAMPLED_DATA";
output = "ENERGY";
recipe = {name = "Energy";
mode = "LOG";
};
# Process #
output = E&MFCC;
input = ENERGY + MFCC;
# Process #
input_buffer = SAMPL
refl_05.cc
// file: $isip/class/algo/Reflection/refl_05.cc
// version: $Id: refl_05.cc,v 1.21 2002/02/28 03:21:55 zheng Exp $
//
// isip include files
//
#include "Reflection.h"
// method: apply
//
// argument
aareadme.text
# file AAREADME.text for frontend parameter files
# Jun 24, 2002
---------------------------------------------------------------------------
isip112_[1]: d
-rw-rw-r-- 1 gao isip 89 Ju
params0.sof
@ Sof v1.0 @
# This is the parameters file for the production system
@ FrontEnd 0 @
name = "AudioFrontEnd";
audio = {
byte_order = BIG_ENDIAN;
num_channels = 1;
};
frame_duration = 0.01;
target
energyunit.java
package ranab.unit;
/**
* Energy unit converter class.
*
* @author Rana Bhattacharyya
*/
public
class EnergyUnit extends BaseUnit {
priv
sample.res
---------------------------------------------------------------
| Benchmark for Conjugate Gradient iteration in |
| SU(2) lattice gauge theory with Kogut-S
scholtzvalue.m
function w=scholtzValue(t, A, Tc, tau)
% function w=scholtzValue(t, A, Tc, tau)
%
% input: A(=sqrt(Pulse Energy)), Tc(Time shift): [s]
% tau(Impulse Width) [s]
% ouput: t(time) :[s], w(
manchestervalue.m
function w=manchesterValue(t, A,Tc, tau)
% function w=manchesterValue(t, A, Tc, tau)
%
% input: A(=sqrt(Pulse Energy)), Tc(Time shift): [s]
% tau(Impulse Width) [s]
% ouput: t(time) :[s
sinevalue.m
function w=sineValue(t, A,Tc, tau)
% function w=sineValue(t, A, Tc, tau)
%
% input: A(=sqrt(Pulse Energy)), Tc(Time shift): [s]
% tau(Impulse Width) [s]
% ouput: t(time) :[s], w(wave fo