Author SHA1 Message Date
kleiax 479a3d171e added description and video to readme 2024-10-04 22:59:18 +00:00
kleiax a5bfbc3df9 added readme 2024-10-04 22:56:44 +00:00
kleiax 4251eda946 added pictures 2024-10-05 00:27:51 +02:00
kleiax 27a0a2ca7b fix ntrip client and integration 2024-08-17 10:44:42 +02:00
30 changed files with 96 additions and 43 deletions
+7
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@@ -1,5 +1,6 @@
{
"files.insertFinalNewline": true,
"editor.wordWrap": "on",
"cSpell.ignoreWords": [
"ledc",
"write"
@@ -132,6 +133,7 @@
"Doxygen",
"Dutycycle",
"gast",
"gnss",
"GNSS",
"GPGGA",
"HSPI",
@@ -140,9 +142,12 @@
"kleiax",
"Lebennig",
"microcontroller",
"Mqtt",
"MQTT",
"NMEA",
"NMEAGPGGA",
"ntrip",
"Ntrip",
"NTRIP",
"pcnt",
"pidl",
@@ -150,6 +155,8 @@
"Punica",
"RHEDE",
"Rtcm",
"sapos",
"SAPOS",
"Schalke",
"Soln",
"Systeminformation",
+5
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@@ -0,0 +1,5 @@
# Autonomer Rover
Testfahrt auf Youtube: https://youtu.be/GigIyo-vghE?si=jhProl1DQFUrcz7w
# Beschreibung
Vollständige Softwarelösung und Hardwareerweiterungen für einen Rover mit Skid-Antrieb. Das System wurde in C++ geschrieben und es wurden erweiterte Konzepte der Objektorientierung wie Polymorphie eingesetzt. Die Datenhaltung wurde erfolgreich von der Logik getrennt, hierfür wurde unter anderem eine API mit Express.js implementiert. Hardwareseitig wurde PWM für die Motorsteuerung, IC2 für verschiedene Sensoren und SPI für das GNSS-Modul eingesetzt. Zusätzlich wurden Encoder an den Motoren verbaut, um diese präzise zu steuern. Überdies wurde eine RTK-Referenzstation geplant und umgesetzt, dafür wurde die Antenne, ein weiteres GNSS-Modul und ein Embedded-Server installiert und konfiguriert. Durch das Zusammenspiel dieser Systeme kann der Rover Routen im niedrigen einstelligen Zentimeterbereich aufzeichnen und abfahren.
+1 -1
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@@ -44,7 +44,7 @@ PROJECT_NUMBER =
# for a project that appears at the top of each page and should give viewer a
# quick idea about the purpose of the project. Keep the description short.
PROJECT_BRIEF = "A small verhicle which should be drive a route with GPS"
PROJECT_BRIEF = "A small verhicle which should be drive a route with GNNS and RTK"
# With the PROJECT_LOGO tag one can specify a logo or an icon that is included
# in the documentation. The maximum height of the logo should not exceed 55
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+19 -2
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@@ -14,7 +14,9 @@
#include <stdint.h>
#define HOTSPOT
#define ZUHAUSE
#define SAPOS_NI
// #define RTK2GO
#ifdef HOTSPOT
namespace NetworkConfig
@@ -61,7 +63,7 @@ namespace NetworkConfig
{
const char ssid[] = "Tuedelkram";
const char password[] = "3!Kaesehoch";
const char ip[] = "192.168.178.11";
const char ip[] = "192.168.178.13";
const char subnet[] = "255.255.255.0";
const char gateway[] = "192.168.178.1";
const char dns[] = "8.8.8.8";
@@ -77,6 +79,7 @@ namespace MqttConfig
const char password[] = "p?{$_~5%hBM7wrcFkr55KWr#";
}
#ifdef RTK2GO
namespace NtripConfig
{
const char host[] = "rtk2go.com";
@@ -86,4 +89,18 @@ namespace NtripConfig
// const char mountPoint[] = "Rtkramerntrip";
const char user[] = "alklein1@gmx.de";
const char password[] = "none";
const bool sendOwnPosition = false;
}
#endif // RTK2GO
#ifdef SAPOS_NI
namespace NtripConfig
{
const char host[] = "sapos-ni-ntrip.de";
const uint16_t port = 2101;
const char mountPoint[] = "VRS_3_4G_NI";
const char user[] = "ni_FHDo01";
const char password[] = "ALdx-1-3e49";
const bool sendOwnPosition = true;
}
#endif // RTK2GO
+17 -21
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@@ -47,6 +47,7 @@ void NTRIPClient::run()
{
std::cout << "Failed!" << std::endl;
this->state = NTRIPClientStates::waiting;
this->lastReconnectTime = millis();
this->activated = false;
}
break;
@@ -97,7 +98,7 @@ void NTRIPClient::gnssConfiguration()
// Set the differential mode - ambiguities are fixed whenever possible
this->gnss->setDGNSSConfiguration(SFE_UBLOX_DGNSS_MODE_FIXED);
this->gnss->setMainTalkerID(SFE_UBLOX_MAIN_TALKER_ID_GP);
this->gnss->enableNMEAMessage(UBX_NMEA_GGA, COM_PORT_SPI, 10);
this->gnss->enableNMEAMessage(UBX_NMEA_GGA, COM_PORT_SPI);
}
bool NTRIPClient::setActivated(bool state)
@@ -153,11 +154,7 @@ bool NTRIPClient::beginClient()
{
snprintf(static_cast<char *>(serverRequest),
this->bufferSize,
static_cast<const char *>("GET /%s HTTP/1.0\r\n\
Host: %s:%u\r\n\
User-Agent: NTRIP KleiaxNtripClient/0.1\r\n\
Accept: */*\r\n\
Connection: close\r\n"),
static_cast<const char *>("GET /%s HTTP/1.0\r\nHost: %s:%u\r\nUser-Agent: NTRIP KleiaxNtripClient/0.1\r\nAccept: */*\r\nConnection: close\r\n"),
this->mountPoint,
this->host,
this->port);
@@ -166,12 +163,7 @@ bool NTRIPClient::beginClient()
{
snprintf(static_cast<char *>(serverRequest),
this->bufferSize,
static_cast<const char *>("GET /%s HTTP/1.1\r\n\
Host: %s:%u\r\n\
Ntrip-Version: Ntrip/2.0\r\n\
User-Agent: NTRIP KleiaxNtripClient/0.1\r\n\
Accept: */*\r\n\
Connection: close\r\n"),
static_cast<const char *>("GET /%s HTTP/1.1\r\nHost: %s:%u\r\nNtrip-Version: Ntrip/2.0\r\nUser-Agent: NTRIP KleiaxNtripClient/0.1\r\nAccept: */*\r\nConnection: close\r\n"),
this->mountPoint,
this->host,
this->port);
@@ -180,6 +172,7 @@ bool NTRIPClient::beginClient()
// Add own Position if activated
if (this->transmitLocation && !this->useNtripRev1)
{
std::cout << "NTRIPClient::beginClient - Add own position to server request." << std::endl;
auto *data = new NMEA_GGA_data_t;
const uint8_t res = this->gnss->getLatestNMEAGPGGA(data);
if (res > 0) // valid data
@@ -187,10 +180,14 @@ bool NTRIPClient::beginClient()
char positionUpdate[this->bufferSizePushGPGGA];
snprintf(static_cast<char *>(positionUpdate),
this->bufferSizePushGPGGA,
static_cast<const char *>("Ntrip-GGA: %s\r\n"),
static_cast<const char *>("Ntrip-GGA: %s"),
data->nmea);
strncat(static_cast<char *>(serverRequest), static_cast<const char *>(positionUpdate), this->bufferSize);
}
else
{
std::cout << "NTRIPClient::beginClient - No valid data to send position to caster." << std::endl;
}
delete data;
this->lastGPGGAPushTime = millis();
@@ -367,7 +364,7 @@ void NTRIPClient::checkAutoReconnect()
void NTRIPClient::pushGPGGA()
{
if (!this->transmitLocation && !this->activated)
if ((!this->transmitLocation || !this->activated) || !this->ntripClient->connected())
{
return;
}
@@ -378,23 +375,22 @@ void NTRIPClient::pushGPGGA()
}
this->lastGPGGAPushTime = millis();
if (!this->ntripClient->connected())
{
std::cout << "Failed to pushing GGA to server: " << std::endl;
}
auto *data = new NMEA_GGA_data_t;
const uint8_t res = this->gnss->getLatestNMEAGPGGA(data);
if (res == 2) // 2 means fresh data
if (res > 0) // 2 means fresh data
{
char positionUpdate[this->bufferSizePushGPGGA];
snprintf(static_cast<char *>(positionUpdate),
this->bufferSizePushGPGGA,
static_cast<const char *>("%s\r\n"),
static_cast<const char *>("%s"),
data->nmea);
this->ntripClient->write(positionUpdate, strlen(positionUpdate));
std::cout << "Position update: " << positionUpdate << std::endl;
}
else
{
std::cout << "NTRIPClient::pushGPGGA - No valid data to send position to caster." << std::endl;
}
delete data;
}
+1 -1
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@@ -130,7 +130,7 @@ private:
const uint16_t timeOut = 10000;
const uint16_t bufferSize = 512;
const uint16_t bufferSizePushGPGGA = 128;
const uint16_t pushGPGGATime = 10000;
const uint16_t pushGPGGATime = 5000;
static constexpr uint8_t loopDelay = 20;
};
+3 -2
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@@ -25,11 +25,12 @@ SensorData::~SensorData()
delete this->ntripClient;
}
void SensorData::enableNtrip(String host, uint16_t port, String mountPoint, String user, String password)
void SensorData::enableNtrip(String host, uint16_t port, String mountPoint, String user, String password, bool sendOwnPosition)
{
this->ntripClient = new NTRIPClient(this->gnss, host.c_str(), port, mountPoint.c_str(), user.c_str(), password.c_str());
this->ntripClient->gnssConfiguration();
this->ntripClient->loop();
this->ntripClient->setTransmitLocation(sendOwnPosition);
this->ntripClient->setActivated(false);
this->isNtripInit = true;
this->addChildComponent(this->ntripClient);
@@ -264,7 +265,7 @@ void SensorData::initGnss()
std::cout << "u-blox protocol version: " << static_cast<int>(versionHigh) << "." << static_cast<int>(versionLow) << std::endl;
this->gnss->setSPIOutput(COM_TYPE_UBX);
this->gnss->enableNMEAMessage(UBX_NMEA_GGA, COM_PORT_SPI, 10);
this->gnss->enableNMEAMessage(UBX_NMEA_GGA, COM_PORT_SPI);
this->gnss->setUSBOutput(COM_TYPE_UBX | COM_TYPE_NMEA);
this->gnss->setAutoPVTcallbackPtr(&(SensorData::savePVTdata));
// SensorData::setOutputStatusPrintPVTdata(true);
+1 -1
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@@ -38,7 +38,7 @@ public:
SensorData();
~SensorData();
void enableNtrip(String host, uint16_t port, String mountPoint, String user, String password);
void enableNtrip(String host, uint16_t port, String mountPoint, String user, String password, bool sendOwnPosition = false);
/**
* @brief Enable the gnss module over spi
@@ -150,3 +150,28 @@ void MenuSensorData::printPage() const
this->print(lineOne, lineTwo);
}
void MenuSensorData::runCommand()
{
switch (this->getCurrentPage())
{
case 5:
{
NTRIPClient* client = this->sensorData->getNtripClient();
NTRIPClientStates state = client->getClientState();
if (state == NTRIPClientStates::pushingData)
{
client->deactivate();
}
else if (state == NTRIPClientStates::waiting)
{
client->activate();
}
}
break;
default:
break;
}
}
@@ -30,6 +30,7 @@ public:
private:
void printPage() const override;
void runCommand() override;
SensorData *sensorData;
};
+2 -1
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@@ -129,7 +129,8 @@ void setup()
NtripConfig::port,
static_cast<const char *>(NtripConfig::mountPoint),
static_cast<const char *>(NtripConfig::user),
static_cast<const char *>(NtripConfig::password));
static_cast<const char *>(NtripConfig::password),
NtripConfig::sendOwnPosition);
sensorData->enableGyroscope();
driveManager = new DriveManager(&moveController, sensorData, controlPad->getControlPadDataPtr());