Files
Bachelorarbeit-Rover/lib/Navigation/navigation.cpp
T
2022-12-13 16:26:28 +01:00

246 lines
7.7 KiB
C++

/**
* @file navigation.cpp
* @author Alexander Klein (alex@kleiax.de)
* @brief Contains the implementation of the class Navigation
* @version 0.1
* @date 2022-01-31
*
* @copyright Copyright (c) 2022
*
*/
#include "navigation.h"
bool Navigation::outputStatusPrintPVTdata = false;
Navigation::Navigation(Route* route) {
this->gps = new SFE_UBLOX_GNSS();
if (this->gps->begin() == false) {
std::cout << "u-blox GNSS not detected at default I2C address. Please check wiring. Freezing." << std::endl;
while (1);
}
this->init(route);
}
Navigation::Navigation(SPIClass* spiPort, uint8_t csPin, Route* route) {
this->gps = new SFE_UBLOX_GNSS();
if (this->gps->begin(*spiPort, csPin, 4000000) == false) {
std::cout << "u-blox GNSS not detected on SPI bus. Please check wiring. Freezing." << std::endl;
while (1);
}
this->init(route);
}
void Navigation::init(Route* route) {
uint8_t versionHigh = this->gps->getProtocolVersionHigh();
uint8_t versionLow = this->gps->getProtocolVersionLow();
std::cout << "u-blox protocol version: " << unsigned(versionHigh) << "." << unsigned(versionLow) << std::endl;
// std::cout << "Set GNSS Module to factory settings... ";
// this->gps->factoryReset();
// delay(5000);
// std::cout << "Complete" << std::endl;
this->gps->setSPIOutput(COM_TYPE_UBX);
this->gps->setUSBOutput(COM_TYPE_UBX | COM_TYPE_NMEA);
this->gps->setAutoPVTcallbackPtr(&(Navigation::printPVTdata));
// Navigation::setOutputStatusPrintPVTdata(true);
this->gps->setNavigationFrequency(1);
this->gps->setAutoPVT(true);
if (route)
this->route = route;
else
this->route = new Route();
}
Navigation::~Navigation() {
delete this->gps;
if (this->isNtripInit)
delete this->ntripClient;
if (this->route)
delete this->route;
}
void Navigation::initNtrip(String host, uint16_t port, String mountPoint, String user, String password) {
this->ntripClient = new NTRIPClient(this->gps, host.c_str(), port, mountPoint.c_str(), user.c_str(), password.c_str());
this->ntripClient->gpsConfiguration();
this->ntripClient->loop();
this->ntripClient->setActivated(false);
this->isNtripInit = true;
}
void Navigation::loop() {
static uint32_t lastTime = 0;
this->gps->checkCallbacks();
if (this->gps->getPVT() && this->gps->getGnssFixOk()) {
this->updateCurrentLocation();
std::cout << "duration between: " << millis() - lastTime << std::endl;
lastTime = millis();
} else if (millis() - lastTime > 20000 && !this->gps->getGnssFixOk()) {
std::cout << "No Data from ZED arrived since a long time. Navigation::loop" << std::endl;
this->gps->flushPVT();
this->gps->softwareResetGNSSOnly();
lastTime = millis();
//std::cout
// << "checkUblox: " << this->gps->checkUblox() << " -|- "
// << "getGnssFixOk: " << this->gps->getGnssFixOk() << " -|- "
// << "getHWstatus: " << this->gps->getHWstatus() << " -|- "
// << "isConnected: " << this->gps->isConnected() << " -|- "
// << std::endl;
}
if (this->isNtripInit)
this->ntripClient->loop();
if (millis() - this->lastMillis < this->timeToWait)
return;
}
void Navigation::newRoute() {
if (this->route)
delete this->route;
this->route = new Route();
}
bool Navigation::startNavigation() {
Point newTargetPoint = this->route->startRoute();
this->navigationStarted = this->setTargetPoint(newTargetPoint);
if (this->navigationStarted)
this->navigationFinished = false;
return this->navigationStarted;
}
CourseCorrection Navigation::getCourseCorrection() {
CourseCorrection courseCorrection = {0, 0};
this->updateCurrentLocation();
double targetCourse = this->currentPosition.courseTo(this->targetPoint);
double distance = this->currentPosition.distanceTo(this->targetPoint);
if (targetCourse < 0 || distance < 0 || this->navigationFinished)
return courseCorrection;
// Check if I need a new Point
if (distance < MIN_DISTANCE_BETWEEN_POINTS) {
bool goOn = this->nextPoint();
if (!goOn) {
this->navigationFinished = true;
this->navigationStarted = false;
return courseCorrection; // End of navigation
}
}
//FIXME: next line
double currentCourse = 0;
//double currentCourse = this->gps->course.deg();
int16_t correction = currentCourse - targetCourse;
if (correction > 180)
correction -= 360;
else if (correction < -180)
correction += 360;
courseCorrection.correction = correction;
courseCorrection.distance = distance;
return courseCorrection;
}
bool Navigation::addCurrentPosToRoute() {
// FIXME: Should I use updateCurrentLocation here? think overall
this->updateCurrentLocation();
if (!this->currentPosition.isValid()) { return false; }
// First Point
if (this->route->getRouteInfo().totalPoints == 0) {
this->route->addPointToRoute(this->currentPosition);
this->lastPoint = this->currentPosition;
return true;
}
// Ever Point after the first
if (MIN_DISTANCE_BETWEEN_POINTS <= this->currentPosition.distanceTo(this->lastPoint)) {
this->route->addPointToRoute(this->currentPosition);
this->lastPoint = this->currentPosition;
return true;
}
return false;
}
void Navigation::updateCurrentLocation() {
//TODO: check if the position is possible the true location
if (this->gps) {
this->currentPosition.lat = this->gps->getLatitude();
this->currentPosition.lon = this->gps->getLongitude();
}
}
bool Navigation::nextPoint() {
if (!this->navigationStarted)
return false;
Point newTargetPoint = this->route->getNextPoint();
return this->setTargetPoint(newTargetPoint);
}
bool Navigation::setTargetPoint(Point target) {
if (target.isValid()) {
this->targetPoint = target;
return true;
}
return false;
}
void Navigation::printPVTdata(UBX_NAV_PVT_data_t *ubxDataStruct) {
if (!Navigation::outputStatusPrintPVTdata)
return;
double latitude = (double) ubxDataStruct->lat / 10000000.0;
double longitude = (double) ubxDataStruct->lon / 10000000.0;
double altitude = (double) ubxDataStruct->hMSL / 1000.0;
uint8_t fixType = ubxDataStruct->fixType;
char fixTypeString[32];
if (fixType == 0)
strcpy(fixTypeString, "None");
else if (fixType == 1)
strcpy(fixTypeString, "Dead Reckoning");
else if (fixType == 2)
strcpy(fixTypeString, "2D");
else if (fixType == 3)
strcpy(fixTypeString, "3D");
else if (fixType == 3)
strcpy(fixTypeString, "GNSS + Dead Reckoning");
else if (fixType == 5)
strcpy(fixTypeString, "Time Only");
else
strcpy(fixTypeString, "UNKNOWN");
uint8_t carrSoln = ubxDataStruct->flags.bits.carrSoln;
char carrSolnString[16];
if (carrSoln == 0)
strcpy(carrSolnString, "None");
else if (carrSoln == 1)
strcpy(carrSolnString, "Floating");
else if (carrSoln == 2)
strcpy(carrSolnString, "Fixed");
else
strcpy(carrSolnString, "UNKNOWN");
uint32_t hAcc = ubxDataStruct->hAcc;
std::cout << "Lat: " << latitude
<< " Lng: " << longitude
<< " Alt: " << altitude << std::endl;
std::cout << "Fix: " << fixTypeString
<< " Carrier Solution: " << carrSolnString
<< " Horizontal Accuracy Estimate: " << hAcc << " mm" << std::endl;
}
void Navigation::setOutputStatusPrintPVTdata(bool status) {
Navigation::outputStatusPrintPVTdata = status;
}