SoC Calculator #754
@ -211,7 +211,8 @@ void PowerController::watchStateOfCharge() {
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}
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ReturnValue_t PowerController::calculateOpenCircuitVoltageCharge() {
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float vBatCorrected = bpxBatteryHk.battVoltage.value - iBat * batteryInternalResistance;
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float vBatCorrected =
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(bpxBatteryHk.battVoltage.value - iBat * batteryInternalResistance) * MILLIVOLT2VOLT;
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uint8_t lookUpTableIdx = LOOK_UP_TABLE_MAX_IDX;
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ReturnValue_t result = lookUpTableOcvIdxFinder(vBatCorrected, lookUpTableIdx);
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if (result != returnvalue::OK) {
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@ -267,7 +268,7 @@ float PowerController::linearInterpolation(float x, float x0, float x1, float y0
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}
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ReturnValue_t PowerController::lookUpTableOcvIdxFinder(float voltage, uint8_t &idx) {
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if (voltage >= lookUpTableOcv[1][100]) {
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if (voltage >= lookUpTableOcv[1][99]) {
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triggerEvent(power::VOLTAGE_OUT_OF_BOUNDS, 0);
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sif::error << "Power Controller::Voltage is too high" << std::endl;
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return returnvalue::FAILED;
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@ -105,6 +105,8 @@ class PowerController : public ExtendedControllerBase, public ReceivesParameterM
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float coulombCounterCharge = 0; // [mC]
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float coulombCounterChargeUpperThreshold = 0.0; // [mC]
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static constexpr float MILLIVOLT2VOLT = 1e-3;
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static constexpr int16_t INVALID_TOTAL_BATTERY_CURRENT = 0;
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static constexpr float INVALID_SOC = -1;
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