mirror of https://github.com/ArduPilot/ardupilot
ArduCopter: BATT_PIN parameter added to allow you to select which pin is used for voltage and current measurements
To save a parameter, the current sensor pin is assumed to always be 1 higher than the voltage pin.
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@ -114,8 +114,9 @@ public:
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k_param_ch7_option,
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k_param_auto_slew_rate,
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k_param_sonar_type,
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k_param_super_simple = 155,
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k_param_axis_enabled = 157,
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k_param_super_simple,
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k_param_battery_pin,
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k_param_axis_enabled,
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k_param_copter_leds_mode,
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k_param_ahrs, // AHRS group
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@ -236,6 +237,7 @@ public:
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AP_Int8 optflow_enabled;
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AP_Float low_voltage;
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AP_Int8 super_simple;
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AP_Int8 battery_pin;
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AP_Int16 rtl_approach_alt;
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AP_Int8 tilt_comp;
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AP_Int8 axis_enabled;
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@ -98,6 +98,13 @@ const AP_Param::Info var_info[] PROGMEM = {
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// @User: Standard
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GSCALAR(super_simple, "SUPER_SIMPLE", SUPER_SIMPLE),
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// @Param: BATT_PIN
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// @DisplayName: Battery Voltage sending pin
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// @Description: Setting this to 0 ~ 11 will enable battery voltage sending on pins A0 ~ A11. Current will be measured on this pin + 1
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// @Values: 99:Disabled, 0:A0, 1:A1, 10:A10
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// @User: Standard
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GSCALAR(battery_pin, "BATT_PIN", BATTERY_PIN_1),
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// @Param: APPROACH_ALT
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// @DisplayName: RTL Approach Altitude
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// @Description: This is the altitude the vehicle will move to as the final stage of Returning to Launch. Set to zero to land.
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@ -140,8 +140,7 @@
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# define USB_MUX_PIN -1
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# define CLI_SLIDER_ENABLED DISABLED
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# define OPTFLOW_CS_PIN 34
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# define BATTERY_PIN_1 0
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# define CURRENT_PIN_1 1
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# define BATTERY_PIN_1 0 // Battery voltage on A0, Current on A1
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#elif CONFIG_APM_HARDWARE == APM_HARDWARE_APM2
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# define A_LED_PIN 27
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# define B_LED_PIN 26
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@ -153,8 +152,7 @@
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# define CLI_SLIDER_ENABLED DISABLED
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# define USB_MUX_PIN 23
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# define OPTFLOW_CS_PIN A3
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# define BATTERY_PIN_1 1
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# define CURRENT_PIN_1 2
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# define BATTERY_PIN_1 1 // Battery voltage on A1, Current on A2
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#endif
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////////////////////////////////////////////////////////////////////////////////
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@ -77,11 +77,11 @@ static void read_battery(void)
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}
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if(g.battery_monitoring == 3 || g.battery_monitoring == 4) {
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static AP_AnalogSource_Arduino bat_pin(BATTERY_PIN_1);
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static AP_AnalogSource_Arduino bat_pin(g.battery_pin);
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battery_voltage1 = BATTERY_VOLTAGE(bat_pin.read_average());
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}
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if(g.battery_monitoring == 4) {
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static AP_AnalogSource_Arduino current_pin(CURRENT_PIN_1);
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static AP_AnalogSource_Arduino current_pin(g.battery_pin+1); // current is always read from one pin higher than battery voltage
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current_amps1 = CURRENT_AMPS(current_pin.read_average());
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current_total1 += current_amps1 * 0.02778; // called at 100ms on average, .0002778 is 1/3600 (conversion to hours)
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}
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