this change adds support for a second Victron MPPT charge controller using a second serial connection. * Add device configuration for a second victron mppt * Update VedirectView for second victron mppt * Update MqttHandleVedirect for second victron mppt * Update MqttHandleVedirectHass for second victron mppt * Handle nonexisting victron controllers with optionals * Add bool-function to Battery and inherited classes, if uart port 2 is being used * Introduced a serial port manager. In order to prevent the battery and the Victron MPPT to use the same hw serial ports, this class keeps track of the used ports and their owners.
177 lines
4.9 KiB
C++
177 lines
4.9 KiB
C++
#include <Arduino.h>
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#include "VeDirectMpptController.h"
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void VeDirectMpptController::init(int8_t rx, int8_t tx, Print* msgOut, bool verboseLogging, uint16_t hwSerialPort)
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{
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VeDirectFrameHandler::init(rx, tx, msgOut, verboseLogging, hwSerialPort);
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_spData = std::make_shared<veMpptStruct>();
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if (_verboseLogging) { _msgOut->println("Finished init MPPTController"); }
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}
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bool VeDirectMpptController::isDataValid() const {
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return VeDirectFrameHandler::isDataValid(*_spData);
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}
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void VeDirectMpptController::textRxEvent(char* name, char* value)
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{
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if (VeDirectFrameHandler::textRxEvent("MPPT", name, value, _tmpFrame)) {
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return;
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}
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if (strcmp(name, "LOAD") == 0) {
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if (strcmp(value, "ON") == 0)
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_tmpFrame.LOAD = true;
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else
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_tmpFrame.LOAD = false;
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}
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else if (strcmp(name, "CS") == 0) {
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_tmpFrame.CS = atoi(value);
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}
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else if (strcmp(name, "ERR") == 0) {
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_tmpFrame.ERR = atoi(value);
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}
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else if (strcmp(name, "OR") == 0) {
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_tmpFrame.OR = strtol(value, nullptr, 0);
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}
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else if (strcmp(name, "MPPT") == 0) {
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_tmpFrame.MPPT = atoi(value);
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}
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else if (strcmp(name, "HSDS") == 0) {
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_tmpFrame.HSDS = atoi(value);
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}
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else if (strcmp(name, "VPV") == 0) {
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_tmpFrame.VPV = round(atof(value) / 10.0) / 100.0;
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}
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else if (strcmp(name, "PPV") == 0) {
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_tmpFrame.PPV = atoi(value);
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}
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else if (strcmp(name, "H19") == 0) {
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_tmpFrame.H19 = atof(value) / 100.0;
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}
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else if (strcmp(name, "H20") == 0) {
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_tmpFrame.H20 = atof(value) / 100.0;
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}
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else if (strcmp(name, "H21") == 0) {
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_tmpFrame.H21 = atoi(value);
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}
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else if (strcmp(name, "H22") == 0) {
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_tmpFrame.H22 = atof(value) / 100.0;
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}
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else if (strcmp(name, "H23") == 0) {
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_tmpFrame.H23 = atoi(value);
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}
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}
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/*
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* frameValidEvent
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* This function is called at the end of the received frame.
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*/
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void VeDirectMpptController::frameValidEvent() {
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_tmpFrame.P = _tmpFrame.V * _tmpFrame.I;
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_tmpFrame.IPV = 0;
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if (_tmpFrame.VPV > 0) {
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_tmpFrame.IPV = _tmpFrame.PPV / _tmpFrame.VPV;
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}
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_tmpFrame.E = 0;
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if ( _tmpFrame.PPV > 0) {
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_efficiency.addNumber(static_cast<double>(_tmpFrame.P * 100) / _tmpFrame.PPV);
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_tmpFrame.E = _efficiency.getAverage();
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}
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_spData = std::make_shared<veMpptStruct>(_tmpFrame);
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_tmpFrame = {};
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_lastUpdate = millis();
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}
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/*
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* getCsAsString
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* This function returns the state of operations (CS) as readable text.
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*/
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frozen::string const& VeDirectMpptController::veMpptStruct::getCsAsString() const
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{
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static constexpr frozen::map<uint8_t, frozen::string, 9> values = {
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{ 0, "OFF" },
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{ 2, "Fault" },
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{ 3, "Bulk" },
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{ 4, "Absorbtion" },
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{ 5, "Float" },
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{ 7, "Equalize (manual)" },
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{ 245, "Starting-up" },
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{ 247, "Auto equalize / Recondition" },
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{ 252, "External Control" }
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};
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return getAsString(values, CS);
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}
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/*
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* getMpptAsString
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* This function returns the state of MPPT (MPPT) as readable text.
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*/
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frozen::string const& VeDirectMpptController::veMpptStruct::getMpptAsString() const
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{
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static constexpr frozen::map<uint8_t, frozen::string, 3> values = {
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{ 0, "OFF" },
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{ 1, "Voltage or current limited" },
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{ 2, "MPP Tracker active" }
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};
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return getAsString(values, MPPT);
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}
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/*
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* getErrAsString
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* This function returns error state (ERR) as readable text.
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*/
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frozen::string const& VeDirectMpptController::veMpptStruct::getErrAsString() const
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{
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static constexpr frozen::map<uint8_t, frozen::string, 20> values = {
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{ 0, "No error" },
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{ 2, "Battery voltage too high" },
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{ 17, "Charger temperature too high" },
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{ 18, "Charger over current" },
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{ 19, "Charger current reversed" },
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{ 20, "Bulk time limit exceeded" },
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{ 21, "Current sensor issue(sensor bias/sensor broken)" },
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{ 26, "Terminals overheated" },
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{ 28, "Converter issue (dual converter models only)" },
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{ 33, "Input voltage too high (solar panel)" },
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{ 34, "Input current too high (solar panel)" },
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{ 38, "Input shutdown (due to excessive battery voltage)" },
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{ 39, "Input shutdown (due to current flow during off mode)" },
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{ 40, "Input" },
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{ 65, "Lost communication with one of devices" },
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{ 67, "Synchronisedcharging device configuration issue" },
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{ 68, "BMS connection lost" },
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{ 116, "Factory calibration data lost" },
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{ 117, "Invalid/incompatible firmware" },
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{ 118, "User settings invalid" }
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};
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return getAsString(values, ERR);
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}
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/*
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* getOrAsString
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* This function returns the off reason (OR) as readable text.
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*/
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frozen::string const& VeDirectMpptController::veMpptStruct::getOrAsString() const
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{
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static constexpr frozen::map<uint32_t, frozen::string, 10> values = {
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{ 0x00000000, "Not off" },
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{ 0x00000001, "No input power" },
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{ 0x00000002, "Switched off (power switch)" },
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{ 0x00000004, "Switched off (device moderegister)" },
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{ 0x00000008, "Remote input" },
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{ 0x00000010, "Protection active" },
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{ 0x00000020, "Paygo" },
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{ 0x00000040, "BMS" },
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{ 0x00000080, "Engine shutdown detection" },
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{ 0x00000100, "Analysing input voltage" }
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};
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return getAsString(values, OR);
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}
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