mirror of https://github.com/ArduPilot/ardupilot
98 lines
3.9 KiB
C++
98 lines
3.9 KiB
C++
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/*
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "AP_TemperatureSensor_config.h"
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#if AP_TEMPERATURE_SENSOR_ANALOG_ENABLED
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#include "AP_TemperatureSensor_Analog.h"
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extern const AP_HAL::HAL &hal;
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const AP_Param::GroupInfo AP_TemperatureSensor_Analog::var_info[] = {
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// @Param: PIN
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// @DisplayName: Temperature sensor analog voltage sensing pin
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// @Description: Sets the analog input pin that should be used for temprature monitoring.
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// @Values: -1:Disabled, 2:Pixhawk/Pixracer/Navio2/Pixhawk2_PM1, 5:Navigator, 13:Pixhawk2_PM2/CubeOrange_PM2, 14:CubeOrange, 16:Durandal, 100:PX4-v1
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// @User: Standard
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AP_GROUPINFO("PIN", 1, AP_TemperatureSensor_Analog, _pin, -1),
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// @Param: A0
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// @DisplayName: Temperature sensor analog 0th polynomial coefficient
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// @Description: a0 in polynomial of form temperature in deg = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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AP_GROUPINFO("A0", 2, AP_TemperatureSensor_Analog, _a[0], 0),
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// @Param: A1
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// @DisplayName: Temperature sensor analog 1st polynomial coefficient
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// @Description: a1 in polynomial of form temperature in deg = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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AP_GROUPINFO("A1", 3, AP_TemperatureSensor_Analog, _a[1], 0),
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// @Param: A2
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// @DisplayName: Temperature sensor analog 2nd polynomial coefficient
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// @Description: a2 in polynomial of form temperature in deg = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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AP_GROUPINFO("A2", 4, AP_TemperatureSensor_Analog, _a[2], 0),
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// @Param: A3
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// @DisplayName: Temperature sensor analog 3rd polynomial coefficient
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// @Description: a3 in polynomial of form temperature in deg = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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AP_GROUPINFO("A3", 5, AP_TemperatureSensor_Analog, _a[3], 0),
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// @Param: A4
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// @DisplayName: Temperature sensor analog 4th polynomial coefficient
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// @Description: a4 in polynomial of form temperature in deg = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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AP_GROUPINFO("A4", 6, AP_TemperatureSensor_Analog, _a[4], 0),
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AP_GROUPEND
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};
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AP_TemperatureSensor_Analog::AP_TemperatureSensor_Analog(AP_TemperatureSensor &front,
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AP_TemperatureSensor::TemperatureSensor_State &state,
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AP_TemperatureSensor_Params ¶ms) :
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AP_TemperatureSensor_Backend(front, state, params)
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{
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AP_Param::setup_object_defaults(this, var_info);
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_state.var_info = var_info;
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_analog_source = hal.analogin->channel(_pin);
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}
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// Update function called at 5Hz
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void AP_TemperatureSensor_Analog::update()
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{
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if ((_analog_source == nullptr) || !_analog_source->set_pin(_pin)) {
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// Invalid pln
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return;
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}
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// Use ratiometric voltage, measured voltage is relative to supply
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const float voltage = _analog_source->voltage_average_ratiometric();
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// Evaluate polynomial
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// temperature (deg) = a0 + a1*voltage + a2*voltage^2 + a3*voltage^3 + a4*voltage^4
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float temp = 0.0;
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float poly = 1.0;
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for (uint8_t i = 0; i < ARRAY_SIZE(_a); i++) {
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temp += _a[i] * poly;
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poly *= voltage;
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}
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// update state
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set_temperature(temp);
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}
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#endif // AP_TEMPERATURE_SENSOR_ANALOG_ENABLED
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