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Temperature 的代码
tzpolicy.c
/****************************************************************************
*
* Module Name: tzpolicy.c -
* $Revision: 30 $
*
*****************************************************************
deterministic_boltzmann.m
function [test_targets, updates] = Deterministic_Boltzmann(train_patterns, train_targets, test_patterns, params);
% Classify using the deterministic Boltzmann algorithm
% Inputs:
% train_pattern
postprocessor.m
% plot temperature and flux
function postprocess(d);
include_flags
% plot the temperature field
if strcmpi(plot_temp,'yes')==1;
d1 = d(ID);
figure(2);
for e=1:nel
XX = [x(
main.c
#include "ioADE7169F16.h"
#pragma vector=0x03
__interrupt void INT0_ISR(void)
{
}
#pragma vector=0x0b
__interrupt void TIMER0_ISR(void)
{
}
#pragma vector=0x13
__interrupt void INT1_IS
led_io.h
// 1. connection reset
// 2. measure humidity [ticks](12 bit) and temperature [ticks](14 bit)
// 3. calculate humidity [%RH] and temperature
// 4. calculate dew point
// 5. print temperature, humid
manifest.mf
Main-Class: Temperature
fet140_i2c_01.c
//******************************************************************************
// MSP-FET430P140 Demo - I2C, Master Intf. to TMP100, Set P1.0 if Temp > 28C
//
// Description: I2C interface to T
hfbulktc.m
function A=hfbulktc(ur,zr,Ta,zt,rh,zq,Pa,Ts,sal,dlw,dsw,nsw)
% HFBULKTC: computes sensible and latent heat fluxes and other variables.
% A=HFBULKTC(ur,zr,Ta,zt,rh,zq,Pa,Ts,sal,dlw,dsw,nsw) compute
fet140_i2c_01.c
//******************************************************************************
// MSP-FET430P140 Demo - I2C, Master Intf. to TMP100, Set P1.0 if Temp > 28C
//
// Description: I2C interface to T