122 lines
3.0 KiB
C++
122 lines
3.0 KiB
C++
/**
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* @file speedometer.cpp
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* @author Alexander Klein (alex@kleiax.de)
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* @brief Implementation of the class speedometer.h
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* @see speedometer.h
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* @version 0.1
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* @date 2021-12-13
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*
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* @copyright Copyright (c) 2021
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*
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*/
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#include "speedometer.h"
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Speedometer::Speedometer(uint8_t pin, double diameter, uint16_t steps) {
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this->diameter = diameter;
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this->steps = steps;
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this->pulseCounter = new Counter(pin);
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this->pulseCounter->setFilterValue(1000); // ignore pulses less than 1000 x 2.5ns
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this->pulseCounter->clear();
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this->pulseCounter->resume();
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Component::loopDelay = Speedometer::loopDelay;
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clearAvgBuf();
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}
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Speedometer::~Speedometer() {
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delete this->pulseCounter;
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}
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void Speedometer::run() {
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if (this->calibrationRunning)
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return;
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uint32_t time = millis();
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uint16_t elapsedTime = time - this->lastMillisCalc;
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this->lastMillisCalc = time;
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int16_t pulse = this->pulseCounter->getValue();
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this->pulseCounter->clear();
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this->pulseCounter->resume();
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double n = (double)pulse / this->steps; // Wheel revolutions in absolute time
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double u = n / ((double)elapsedTime / 1000); // Wheel revolutions per second
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double ms = u * (diameter * PI); // Speed in m/s
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switch (this->currentDirection) {
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case Direction::Forward :
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this->speed = ms;
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break;
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case Direction::Backward :
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this->speed = -ms;
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break;
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case Direction::None :
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this->speed = 0;
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break;
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}
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this->addValToBuf(static_cast<int16_t>(this->speed * Speedometer::conversionFactor));
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}
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void Speedometer::setDirection(Direction dir) {
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if (this->currentDirection == dir)
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return;
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this->currentDirection = dir;
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this->clearAvgBuf();
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}
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void Speedometer::setEncFilter(uint16_t val) {
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if (val > 1023)
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val = 1023;
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this->pulseCounter->setFilterValue(val);
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}
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double Speedometer::getAvgSpeed() const {
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int16_t avg = this->calcAverage();
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return (float)avg / Speedometer::conversionFactor;
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}
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void Speedometer::calibrationMeasurementStart() {
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std::cout << "Start" << std::endl;
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this->calibrationRunning = true;
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this->pulseCounter->clear();
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this->pulseCounter->resume();
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}
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uint16_t Speedometer::calibrationMeasurementStop() {
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std::cout << "Ende" << std::endl;
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this->calibrationRunning = false;
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uint16_t res = abs(this->pulseCounter->getValue());
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this->pulseCounter->clear();
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this->pulseCounter->resume();
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std::cout << "Result: " << res << std::endl;
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return res;
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}
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void Speedometer::clearAvgBuf() {
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for (uint8_t i = 0; i < bufSize; i++)
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this->buf[i] = 0;
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}
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void Speedometer::addValToBuf(int16_t val) {
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this->buf[this->bufPos] = val;
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this->bufPos++;
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if (bufPos == bufSize)
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bufPos = 0;
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}
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int16_t Speedometer::calcAverage() const {
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int16_t sum = 0;
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for (int i = 0; i < this->bufSize; i++)
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sum += this->buf[i];
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return sum / this->bufSize;
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}
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