b15f/main.cpp

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#include <iostream>
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#include <cmath>
#include "drv/usart.h"
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#include "drv/b15f.h"
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#include "drv/plottyfile.h"
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void kennlinieErsterQuadrant()
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{
B15F& drv = B15F::getInstance();
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PlottyFile pf;
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uint16_t ba[1024];
uint16_t bb[1024];
const uint16_t sample_count = 100;
const uint16_t delta = 10;
const uint16_t u_gs_start = 440;
const uint16_t u_gs_delta = 20;
const uint16_t u_gs_end = 600;
pf.setUnitX("V");
pf.setUnitY("mA");
pf.setUnitPara("V");
pf.setDescX("U_{DS}");
pf.setDescY("I_D");
pf.setDescPara("U_{GS}");
pf.setRefX(5);
pf.setRefY(50);
pf.setParaFirstCurve(u_gs_start);
pf.setParaStepWidth(u_gs_delta);
uint8_t curve = 0;
for(uint16_t u_gs = u_gs_start; u_gs <= u_gs_end; u_gs += u_gs_delta)
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{
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drv.analogWrite1(u_gs);
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drv.analogSequence(0, &ba[0], 0, 1, &bb[0], 0, 0, delta, sample_count);
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drv.delay_ms(10);
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drv.discard();
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drv.delay_ms(10);
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for(uint16_t k = 0; k < sample_count+1; k++)
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{
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uint16_t i_d = ba[k] - bb[k];
uint16_t u_ds = bb[k];
pf.addDot(Dot(u_ds, i_d, curve));
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}
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curve++;
}
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// speichern und plotty starten
pf.writeToFile("test_plot");
pf.startPlotty("test_plot");
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}
void kennlinieZweiterQuadrant()
{
B15F& drv = B15F::getInstance();
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PlottyFile pf;
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uint16_t ba[1024];
uint16_t bb[1024];
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const uint16_t sample_count = 1000;
const uint16_t delta = 1;
const uint16_t u_gs_start = 300;
const uint16_t u_gs_delta = 25;
const uint16_t u_gs_end = 700;
pf.setQuadrant(2);
pf.setUnitX("V");
pf.setUnitY("mA");
pf.setUnitPara("V");
pf.setDescX("U_{GS}");
pf.setDescY("I_D");
pf.setDescPara("U_{DS}");
pf.setRefX(5);
pf.setRefY(50);
pf.setParaFirstCurve(u_gs_start);
pf.setParaStepWidth(u_gs_delta);
uint8_t curve = 0;
for(uint16_t u_gs = u_gs_start; u_gs <= u_gs_end; u_gs += u_gs_delta)
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{
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drv.analogWrite1(u_gs);
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drv.analogSequence(0, &ba[0], 0, 1, &bb[0], 0, 0, delta, sample_count);
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curve = 0;
for(uint16_t k = 0; k < sample_count + 1; k++)
{
if(ba[k] > bb[k] && bb[k] % 50 == 0 && bb[k] > 0)
{
uint16_t i_d = ba[k] - bb[k];
pf.addDot(Dot(u_gs, i_d, bb[k] / 50));
}
curve++;
}
std::cout << "u_gs: " << u_gs << std::endl;
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}
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// speichern und plotty starten
pf.writeToFile("test_plot");
pf.startPlotty("test_plot");
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}
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void beispielFunktionen()
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{
B15F& drv = B15F::getInstance();
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for(uint16_t i = 0; i < 256; i++)
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{
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drv.digitalWrite0(i);
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drv.delay_ms(100);
}
while(1)
{
for(double d = 0; d < M_PI*2; d += .1)
{
uint16_t v = (sin(d) * 511 + 511);
drv.analogWrite0(v);
}
}
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uint16_t schwelle_unten = 1023;
for(uint16_t i = 0; i < 1024; i++)
{
drv.analogWrite0(i);
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drv.delay_ms(1);
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if(drv.digitalRead0() & 0x01)
{
drv.discard();
uint16_t val = drv.analogRead(0);
if(val > 1023)
{
std::cout << "Fehler: " << val << std::endl;
continue;
}
if(val < schwelle_unten)
schwelle_unten = val;
}
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}
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std::cout << "OK" << std::endl;
uint16_t schwelle_oben = 0;
for(uint16_t i = 1023; i > 0; i--)
{
drv.analogWrite0(i);
if(!(drv.digitalRead0() & 0x01))
{
drv.discard();
uint16_t val = drv.analogRead(0);
if(val > 1023)
{
std::cout << "Fehler: " << val << std::endl;
continue;
}
if(val > schwelle_oben)
schwelle_oben = val;
}
}
std::cout << "Schwelle für low: " << schwelle_unten << std::endl;
std::cout << "Schwelle für high: " << schwelle_oben << std::endl;
std::cout << "Verbotene Zone: " << (schwelle_oben - schwelle_unten) << std::endl;
}
int main()
{
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beispielFunktionen();
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//USART usart;
//usart.openDevice("/dev/ttyUSB0");
//usart.writeByte(5);
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std::cout << "Schluss." << std::endl;
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}