Avtograph

Avtograph
Fabricant: TechnoKom
Forum de discussion

Nombre des unités

3471
En ligne
10501
Nombre total

Afin d'identifier le boîtier Avtograph les détails suivants sont à utiliser dans les réglages de l'unité sur Wialon :

Type du boîtier GPS: Avtograph
ID unique: serial

Précisez les paramètres suivants dans le programme de configuration ou dans la configuration Avtograph pour les utiliser dans Wialon Hosting :

Port du serveur: 20132

10501 unités Avtograph connectées au le centre de données Wialon — Ça fait 0.44% de nombre total des boîtiers GPS connectés.

Le diagramme ci-dessous représente la dynamique des connexions dans le centre de données Wialon au cours des 30 derniers jours:

Nom du paramètre Description Unités
ainN Analog inputs, where N - number of inputs V
air_pressure Air pressure kPa
air_temp Air temperature °C
amber_warning_lamp_status Amber warning lamp status (On, Off)
battery Battery voltage V
charge_air_pressure Charge air pressure kPa
charge_air_temp Charge air temperature from CAN-bus °C
choker_pos Choker position %
coolant_temp Coolant temperature °C
counterN Counter state, where N - number of counter
counterN_mode

Counter mode, where N - number of counter:
1 - counter
2 - periodical
3 - frequency (need to devide counter value by 100)

cpu_load CPU usage %
cruise_control_speed Cruise control speed km/h
cruise_control_state Cruise control state
dinN Digital inputs
engine_hours Engine Hours h
engine_oil_pressure Engine oil pressure from CAN-bus kPa
engine_oil_temp Engine oil temperature from CAN-bus °C
engine_rpm Engine RPM rpm
engine_torque_mode Engine torque mode
error_status Error status (1, 0)
flash_lamp_status Flash lamp status
fmi Failure Mode Identifier
fuel_consumption Fuel consumption L
fuel_flow_sensor_can_adress Fuel flow sensor can adress from RS485
fuel_flow_sensor_channel Fuel flow sensor channel from RS485
fuel_flow Total fuel flow L
fuel Fuel level from LLS 1 sensor L
fuel_level Fuel level %
fuel_levelN Fuel level from CAN bus, where N - number of sensor %
fuel_temp Fuel temperature °C
gpsant GPS antenna state
hdop HDOP (Horizontal Dilution Of Precision)
idle_trottle_mode Idle trottle mode
incoming_passengers Incoming passengers from RS485 person
inputs_expander_status Inputs expander status
instant_fuel_consumption Instant fuel consumption L
kickdown_trottle_mode Kickdown trottle mode
llsN LLS sensor value, where N - number of sensor
malfunction_indicator_lamp_status Malfunction indicator lamp status (On, Off)
manometr_pressure Gauge pressure from CAN-bus kPa
mileage_day Day mileage km
mileage Mileage km
mileage_mtn Mileage till next maintenance km
navigation_device Navigation data source (Internal, External)
navigation_system Navigation data source (GPS, Glonass or GPS+Glonass)
negative_inputs_status Negative inputs state
nominal_friction_torque Nominal friction torque %
occurence_count Occurence count
oil_temp Engine oil temperature °C
operating_torque Operating torque %
outgoing_passengers Outgoing passengers from RS485 person
passenger_flow_channel Passenger flow channel from RS485
passenger_flow_mode Passenger flow mode from RS485
passenger_flow_status Passenger flow status from RS485
positive_inputs_status Positive inputs state from RS485
prev_instant_fuel_consumption Previous instant fuel consumption L
protect_lamp_status Protect lamp status (On, Off)
PTO_state PTO state
pwr_ext External power V
pwr_int Internal power V
red_stop_lamp_status Red stop lamp status (On, Off)
refueling_amount Refueling amount from RS485 L
refueling_card_id Refueling card ID from RS485
refueling_time Refueling time from RS485 s
spn_conv_method Spn Conversion method
spn Suspect Parameter Number
tempN Temperature sensors value, where N - number of sensor °C
user_record User record from CAN-bus
weight_measurement_channel Weight measurement channel from RS485
weight_measurement_mode Weight measurement mode from RS485
weight_measurement_status Weight measurement status from RS485
weight Weight from RS485 kg
wheel_loadN Wheel load, where N - number of wheel kg
wheel_speed Wheel speed km/h
fm_ver Firmware Version
hd_ver Hard Version
flags

Flags. Bitwise parameter (1 - on, 0 - off):
bit1 - Main power
bit2 - Backup power
bit3 - 1-th antenna state
bit4 - 2-nd antenna state
bit5 - SOS button
bit6 - Move
bit7 - GSM connection
bit8 - Home network
bit9 -
Used receiver (1 - inner, 0 - external)
bit10...bit12 - Position detection mode (01 - only GPS, 10 - only GLONASS, 11 - mixed, 100 - GSM position)

inN

Input wutn number N

gps_acc

Quality Of Coordinates:
1 - best
7 - worst
0 - not valid

gsm_acc GSM accuracy m
sensN_M Sensor data from the senros where N - module address and M - sensor number
sens0_M Fuel sensor
sens1_M

Temperature sensor. Resolution 1/16 degree per bit with -55 offset.

sens2_M

Voltage:
Sensor 0 - voltage of main network, 0.01 V per bit
Sensor 1 - backup battery voltage, 0.01 V per bit
Sensor 2 - Analog input 1 voltage, 0.01 V per bit
Sensor 3 - Analog input 2 voltage, 0.01 V per bit

sens3_M RAW GSM signal level
sensN_M_valid

Bitwise parameter:
bit1 - Validity of the sensor with N module address and M number
bit2 - Sensor data format (0 - not calibrated data, 1 - raw data)

tps_channel Passenger counter system channel number
tps_er

Passenger counter system error code:
0 - no error
1 - door close error
2 - defect sensor possible
3 - sabotage possible

tps_door

Door state:
1 - opened

tps_pass Passenger category
tps_in The number of passengers who entered from the previous message
tps_out The number of passengers who left from the previous message
lls_wideN Data from LLS sensor with N number (advanced mode)
temp_wideN LLS sensor temperature with N number (advanced mode)
valid_lls_wideN

Data validity from LLS sennsor with number N:
0 - not valid
1 - valid

tpms_press_x_y tire pressure value
tpms_temp_x_y tire temperature value
tpms_alarm_x_y too low or high tire pressure
user_mbus_#1_#2 User modbus, #1 - Modbus address, #2 - Modbus register address

You can also download an example of object configuration file for Avtograph to be used in Wialon GPS tracking software. When creating an object, import this configuration file by selecting "Import from File" option. This way you will create a pre-configured object with some sensors. Do not forget to specify the unique Id of Your device.

The units of the parameters depend on the configuration.

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