244000406 - CONSTRUCTION SPECIFICATIONS

The system for running on two types of fuel comprises the Magneti Marelli IAW 48P2 system for petrol operation and the Metatron METAFUEL 5D0 system for operating on CNG. The two systems are connected via a high speed CAN line.The Magneti Marelli IAW 48P2 system belongs the category of systems integrated with:inductive discharge, digital, electronic ignitionstatic advancesequential, phased type electronic injection (1-3-4-2).The Metatron METAFUEL 5D0 belongs the category of systems integrated with:sequential, phased type electronic injection (1-3-4-2).The CNG system is clear for the basic system for all components and the operation of the basic system is not affected in all operating conditions.The two control units share some of the system elements. This sharing is transparent to the basic system.The list of components shared by the two systems, connected in parallel, is as follows:intake manifold pressure sensor;throttle position sensorengine rpm sensor;engine timing sensor;Lambda sensor upstream of the catalytic converterThe list of additional components for the methane system is as follows:electronic injection unit for METAFUEL 5D0;CNG pressure sensor on the pressure reduction unit casing; CNG cut out solenoid valve relay on the canisters;CNG cut out solenoid valves on the canisters;solenoid valve and pressure reduction unit;CNG / petrol switch (SEDIMO);CNG injector relay;injectors;petrol pump cut out relay;

OPERATION

The system is configured to normally run on methane. The two control units are always supplied whilst the engine is running.Methane/petrol switching can take place:by means of a manual control on the mode selector (SEDIMO) located in the dashboard.automatically when ordered by the methane engine management control unit if the methane in the tank has run out (pressure in the canister less than 11 bar) or in the recovery condition when methane operation is not advisable.The operating mode is signalled by means of the PETROL operation warning light (POWER MODE) in the sedimo component. Irrespective of the switch position, this indicator shows the operating mode - methane (green) or petrol (orange) by means of the two LEDs in the selector.

Diagram showing information entering/leaving the control unit

The communcation between the petrol engine management control unit and the CNG engine management control unit takes place via the CAN line.

OPERATING LOGICS

Petrol operation

In this operating mode there are no functional variations in relation to the basic system.The Magneti Marelli 48P2 basic electronic unit does not alter its behaviour and the system management strategies are the same as for the basic version.The specific elements for the CNG system do not interfere in any way with the basic system.

Methane operation

The engine runs on CNG after starting which always takes place using petrol (obviously with the selector positioned to CNG mode before starting). The petrol pump is deactivated during CNG operation, except during starting, for a period of a few seconds, corresponding to the activation of the CNG injection, necessary in order to be able to carry out the fault diagnosis of the deactivation relay.The METAFUEL 5D0 electronic unit manages the sequential, phased type injection of the CNG, the activation of the CNG cut out solenoid valves and the deactivation of the petrol pump. All the other engine management functions, including the ignition advance, are left to the basic unit. Injection takes place directly through the operation of the specific CNG system injectors. The ignition advance is adjusted by sending the basic electronic unit the advance variation to be added to the one for petrol operation. This communication takes place via the CAN line between the two control units. The other basic electronic unit functions are carried out normally and all the input signals remain unchanged. All the commands are implemented as usual (stepper, ignition, etc.).The METAFUEL 5D0 electronic unit processes the information coming from the basic system sensors, that coming via the CAN line from the 48P2 control unit and the information coming from the additional sensors for CNG operation in order to recognize the system operating conditions and produce suitable commands for the CNG injectors.The activation of the CNG cut out solenoid valves and the deactivation of the petrol pump takes place when switching from petrol to methane. When switching from methane to petrol, the METAFUEL 5D0 electronic unit operates in the opposite way to previously (i.e. it deactivates the CNG cut out solenoid valves and reactivates the petrol pump). In this case the petrol pump is switched on immediately to pressurize the system.The management strategies use typical curves and control parameters stored in the METAFUEL 5D0 electronic unit memory. The calibration figures are defined on the basis of performance, consumption, emission and driveability aims.The specific management strategies for the CNG system are basically as follows:Engine Signal ManagementIgnition managementInjection managementIdle speed managementStart-upOperation during acceleration and decelerationCut-off operationOperation in full load conditionsProtection beyond revsBarometric correctionFuel vapour recoveryControl of combustion gases - Pre-catalyzer Lambda sensorAir conditioning compressor connectionResidual fuel pressure signalPetrol pump operation;Methane solenoid valve operation;Methane injector operation;Switching between two operating modes (petrol and methane)Connection with electronic key (Fiat CODE)System self-diagnosis

Engine Signal Management

The METAFUEL 5D0 electronic unit recognizes the engine timing and determines the injection timing angle. This recognition takes place by processing the signals coming from the timing sensor and from the rpm and TDC sensor. These two signals make up the engine signals.

Ignition management

The coil charging time and the moment of ignition in relation to TDC are always determined and managed by the basic electronic unit which receives the variation in the advance to be implemented from the METAFUL 5D0 via the CAN.The METAFUEL 5D0 electronic unit memory contains a map of the advance shift values according to the engine speed and load conditions. The calculation of the advance correction involves selecting a basic value and correcting in according to the coolant temperature.

Injection management

The aim of the fuel management is to supply the correct amount of fuel required by each cylinder to satisfy the objectives of performance, consumption and engine emissions. The METAFUEL 5D0 unit does not manage the starting stage.The injection is the sequential, phased type.The METAFUEL 5D0 control unit uses an indirect type engine load measurement system (speed-density). This method is used to calculate the quantity of fuel to inject into each cylinder for each engine cycle.The methane is supplied by modulating the injector opening time. The injector inlet pressure is established by the pressure reduction unit.

Idle speed management

The idle speed management (stepper management) is carried out by the basic electronic unit; the METAFUEL 5D0 unit modifies the idle speed by means of a suitable offset transmitted via the CAN.

Start-up

The engine is always started up on petrol.

Operation during acceleration and deceleration

These operating conditions are identified by means of the throttle position and manifold pressure signals.During these two stages the METAFUEL 5D0 unit adjusts the fuel injection as quickly as possible in order to maximize acceleration torque and ensure optimum driveability during deceleration.

CUT-OFF operation

The fuel cut off strategy is implemented when the throttle is closed at high engine speeds. This strategy is only enabled above a certain coolant temperature level. The METAFUEL 5D0 electronic unit manages the inlet and outlet from this stage in order to reduce emissions during these engine operating conditions.

Operation in full load conditions

Full load opeartion is managed by the METAFUEL 5D0 electronic unit with air/CNG mixture enrichment strategies that are similar to those for petrol engine management systems.

Protection beyond revs

The METAFUEL 5D0 electronic unit manages the protection of the engine outside of revs. This protection involves cutting off the injection when a given speed is exceeded. Normal injection is resumed when the speed returns to below the critical value.

Barometric correction

There is a strategy in the METAFUEL 5D0 control unit that recognizes the altitude and implements a barometric correction of the mixture strength.

Control of combustion gases - pre-catalyzer Lambda sensor

The METAFUEL 5D0 electronic unit uses the signal for the Lambda sensor upstream of the catalyzer to control the metering of the air/CNG mixture in order to ensure maximum catalyzer conversion efficiency.The METAFUEL 5D0 electronic unit manages the heaters for the two Lambda sensors, via the CAN, located upstream and downstream of the catalyzer.

Air conditioning compressor connection

The METAFUEL 5D0 electronic unit is not connected to the air conditioning system.The switching on and off of the compressor in certain operating conditions to improve the performance of the engine is managed by the basic electronic unit through the same modes and operating conditions as for the basic system.

Residual fuel pressure signal

The METAFUEL 5D0 electronic unit receives the canister residual pressure signal from the CNG pressure sensor fitted on the pressure reduction unit. This information is then sent by the METAFUEL 5D0 control unit to the special indicator on the left of the instrument panel.

Petrol pump operation

The petrol pump is closed to earth by the inertia switch and is operated by the METAFUEL 5D0 electronic unit via a special relay.The petrol pump is stopped:if there is a petrol/methane switch;if the inertia switch has gone off.When switching from CNG to petrol the METAFUEL 5D0 electronic unit immediately reactivates the petrol pump to pressurize the system.

Methane cut out solenoid valve operation

There are 4 CNG cut out solenoid valves:1 solenoid valve fitted on each canister (3 in number);1 solenoid valve fitted on the pressure reduction unit.The 2 solenoid valves are connected to one another in parallel, closed to earth by the inertia switch and operated by the METAFUEL 5D0 electronic unit by means of a special relay. The solenoid valves are closed:if the engine speed goes below a certain level;after a certain time with the key ON without the engine being started up (timed enablement);if there is a CNG/petrol switch;if the inertia switch has gone off.After the CNG/petrol switch, the METAFUEL 5D0 electronic unit deactivates the CNG cut out solenoid valves.

Methane injector operation

The operation of the CNG injectors is the phased sequential type.The injector timing varies according to the engine speed and the intake air pressure in order to improve the cylinder filling with benefits in terms of consumption, driveability and pollution.The injectors receive an electrical supply via a specific relay: the CNG engine management control unit closes the contacts for the appropriate part of the CNG injectors according to the situation

Switching between two operating modes (petrol and methane)

This function is regulated by the METAFUEL 5D0 electronic unit and by a switch built into the component (SEDIMO).Position "G" of the selector (1) indicates the choice to run on gas (green LED on) (2), whilst running on petrol is indicated by the amber yellow LED lit up (3). There is also a residual pressure gauge (4) consisting of a series of green LEDs + 1 yellow LED for the reserve condition. This indicator is activated when the last LED is on and the reserve condition exists.
The lighting up logic for the "petrol mode" indicator in the SEDIMO component is, irrespective of the selector switch position, to signal:a) CNG operation = green LED onb) petrol operation = amber yellow LED onThe switching between the two operating modes, when instructed by the user, can take place at any time, but only when the engine speed is below a certain level.The pressure of the CNG in the canisters is utilized in identifying the "empty canisters" condition for the automatic return to petrol operation. As a result of the canisters being drained, the pressure in the rail decreases rapidly to below a certain level.Switching from petrol to methaneThe following cases are possible:1. Manually, by the user with the engine switched offSelector switch position: methane gas"PETROL mode" LED lit up:During starting the "petrol mode" LED is on (activated), thereby indicating that the engine is supplied with petrol. When the engine has been started up (as soon as cranking is over) the switch to methane takes place and the "methane mode" warning light lights upSwitching to CNG is prevented if the pressure of the methane is below a level corresponding to the "empty canister" situation, if the engine coolant temperature is too low or if a fault has been located in the system.2. Manually, by the user with the engine running.Selector switch initial position: petrol"PETROL mode" LED initially coming onBy selecting the methane mode the user starts the petrol to CNG switching function which only takes place when the following conditions are satisfied:CNG canister pressure above a certain level;engine coolant temperature above a certain level;n
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Ignition management

The coil charging time and the moment of ignition in relation to TDC are always determined and managed by the basic electronic unit which receives the variation in the advance to be implemented from the METAFUL 5D0 via the CAN.The METAFUEL 5D0 electronic unit memory contains a map of the advance shift values according to the engine speed and load conditions. The calculation of the advance correction involves selecting a basic value and correcting in according to the coolant temperature.

Injection management

The aim of the fuel management is to supply the correct amount of fuel required by each cylinder to satisfy the objectives of performance, consumption and engine emissions. The METAFUEL 5D0 unit does not manage the starting stage.The injection is the sequential, phased type.The METAFUEL 5D0 control unit uses an indirect type engine load measurement system (speed-density). This method is used to calculate the quantity of fuel to inject into each cylinder for each engine cycle.The methane is supplied by modulating the injector opening time. The injector inlet pressure is established by the pressure reduction unit.

Idle speed management

The idle speed management (stepper management) is carried out by the basic electronic unit; the METAFUEL 5D0 unit modifies the idle speed by means of a suitable offset transmitted via the CAN.

Start-up

The engine is always started up on petrol.

Operation during acceleration and deceleration

These operating conditions are identified by means of the throttle position and manifold pressure signals.During these two stages the METAFUEL 5D0 unit adjusts the fuel injection as quickly as possible in order to maximize acceleration torque and ensure optimum driveability during deceleration.

CUT-OFF operation

The fuel cut off strategy is implemented when the throttle is closed at high engine speeds. This strategy is only enabled above a certain coolant temperature level. The METAFUEL 5D0 electronic unit manages the inlet and outlet from this stage in order to reduce emissions during these engine operating conditions.

Operation in full load conditions

Full load opeartion is managed by the METAFUEL 5D0 electronic unit with air/CNG mixture enrichment strategies that are similar to those for petrol engine management systems.

Protection beyond revs

The METAFUEL 5D0 electronic unit manages the protection of the engine outside of revs. This protection involves cutting off the injection when a given speed is exceeded. Normal injection is resumed when the speed returns to below the critical value.

Barometric correction

There is a strategy in the METAFUEL 5D0 control unit that recognizes the altitude and implements a barometric correction of the mixture strength.

Control of combustion gases - pre-catalyzer Lambda sensor

The METAFUEL 5D0 electronic unit uses the signal for the Lambda sensor upstream of the catalyzer to control the metering of the air/CNG mixture in order to ensure maximum catalyzer conversion efficiency.The METAFUEL 5D0 electronic unit manages the heaters for the two Lambda sensors, via the CAN, located upstream and downstream of the catalyzer.

Air conditioning compressor connection

The METAFUEL 5D0 electronic unit is not connected to the air conditioning system.The switching on and off of the compressor in certain operating conditions to improve the performance of the engine is managed by the basic electronic unit through the same modes and operating conditions as for the basic system.

Residual fuel pressure signal

The METAFUEL 5D0 electronic unit receives the canister residual pressure signal from the CNG pressure sensor fitted on the pressure reduction unit. This information is then sent by the METAFUEL 5D0 control unit to the special indicator on the left of the instrument panel.

Petrol pump operation

The petrol pump is closed to earth by the inertia switch and is operated by the METAFUEL 5D0 electronic unit via a special relay.The petrol pump is stopped:if there is a petrol/methane switch;if the inertia switch has gone off.When switching from CNG to petrol the METAFUEL 5D0 electronic unit immediately reactivates the petrol pump to pressurize the system.

Methane cut out solenoid valve operation

There are 4 CNG cut out solenoid valves:1 solenoid valve fitted on each canister (3 in number);1 solenoid valve fitted on the pressure reduction unit.The 2 solenoid valves are connected to one another in parallel, closed to earth by the inertia switch and operated by the METAFUEL 5D0 electronic unit by means of a special relay. The solenoid valves are closed:if the engine speed goes below a certain level;after a certain time with the key ON without the engine being started up (timed enablement);if there is a CNG/petrol switch;if the inertia switch has gone off.After the CNG/petrol switch, the METAFUEL 5D0 electronic unit deactivates the CNG cut out solenoid valves.

Methane injector operation

The operation of the CNG injectors is the phased sequential type.The injector timing varies according to the engine speed and the intake air pressure in order to improve the cylinder filling with benefits in terms of consumption, driveability and pollution.The injectors receive an electrical supply via a specific relay: the CNG engine management control unit closes the contacts for the appropriate part of the CNG injectors according to the situation

Switching between two operating modes (petrol and methane)

This function is regulated by the METAFUEL 5D0 electronic unit and by a switch built into the component (SEDIMO).Position "G" of the selector (1) indicates the choice to run on gas (green LED on) (2), whilst running on petrol is indicated by the amber yellow LED lit up (3). There is also a residual pressure gauge (4) consisting of a series of green LEDs + 1 yellow LED for the reserve condition. This indicator is activated when the last LED is on and the reserve condition exists.
The lighting up logic for the "petrol mode" indicator in the SEDIMO component is, irrespective of the selector switch position, to signal:a) CNG operation = green LED onb) petrol operation = amber yellow LED onThe switching between the two operating modes, when instructed by the user, can take place at any time, but only when the engine speed is below a certain level.The pressure of the CNG in the canisters is utilized in identifying the "empty canisters" condition for the automatic return to petrol operation. As a result of the canisters being drained, the pressure in the rail decreases rapidly to below a certain level.Switching from petrol to methaneThe following cases are possible:1. Manually, by the user with the engine switched offSelector switch position: methane gas"PETROL mode" LED lit upDuring starting the "petrol mode" LED is on (activated), thereby indicating that the engine is supplied with petrol. When the engine has been started up (as soon as cranking is over) the switch to methane takes place and the "methane mode" warning light lights upSwitching to CNG is prevented if the pressure of the methane is below a level corresponding to the "empty canister" situation, if the engine coolant temperature is too low or if a fault has been located in the system.2. Manually, by the user with the engine running.Selector switch initial position: petrol"PETROL mode" LED initial coming onBy selecting the methane mode the user starts the petrol to CNG switching function which only takes place when the following conditions are satisfied:CNG canister pressure above a certain level;engine coolant temperature above a certain level;no faults detected during the fault diagnosis of the METAFUEL 5D0 electronic unit.The switching does not take place unless all the conditions are satisfied. When the switching has taken place the "methane mode" LED in the SEDIMO device is lit up.Switching from methane to petrolThe following cases are possible:1. Automatically (with the engine running).Initial selector position: "methane mode"."Methane mode" LED initial coming onThe automatic switching from methane to petrol takes place according to decisions by the METAFUEL 5D0 unit control strategies and only if the following operating conditions are satisfied:methane pressure below a certain level;identification of a fault in the systemIf one of the conditions has been satisfied, the switching from CNG to petrol takes place immediately and the "petrol mode" LED in the SEDIMO device lights up. The position of the selector remains unchanged.After the switching has taken place, CNG operation is completely inhibited until the cause of the automatic switching is eliminated (fuel supply or elimination of the fault).2. Manually, by the user with the engine running.This operation is only permitted if the engine speed is below a certain level"Methane mode" selector initial position"Petrol mode" LED initial coming on.When switching to the petrol mode the user starts the switching function from CNG to petrol which takes place immediately together with the "petrol mode" indicator in the SEDIMO component coming on.

Connection with electronic key

The METAFUEL 5D0 control unit is not connected to the electronic key control unit (Fiat CODE).The electronic key system only maintains its operation with the basic system; therefore, in order to be able to switch to methane, it is necessary to receive the go ahead from the petrol control unit and this go ahead is given if the check with the Fiat CODE is okay and the operation with the electronic key is guaranteed in all conditions.Starting with a key that has not been memorized in the electronic key control unit is not permitted in either operating mode (petrol or CNG). The procedure for personalizing the vehicle or programming the keys is the same and should be carried out in the petrol mode.

System self-diagnosis

The METAFUEL 5D0 electronic unit carries out the fault diagnosis of the input/output, cyclically checking the signals and an internal self-diagnosis programmes the codes in the EEPROM in the case of malfunctions (passive self-diagnosis).It is also possible to activate the individual actuators, using the diagnostic equipment, checking their efficiency (active self-diagnosis).The total cancellation of the EEPROM is carried out by means of the diagnostic equipment.If there is a fault, the control unit manages the alternative functions to keep the engine running where possible to allow the vehicle to reach a service centre or, in more serious cases, it automatically switches the system to petrol operation, switching off the residual pressure indicator in the SEDIMO device (recovery).

PASSIVE SELF-DIAGNOSIS

The METAFUEL 5D0 electronic unit carries out the fault diagnosis of the input/output, cyclically checking the signals and in the case of malfunctions, programming the codes in the EEPROM (passive self-diagnosis). The fault diagnosis carried out and the recovery actions in the case of a fault in the following components are reported:

Manifold pressure sensor

The METAFUEL 5D0 electronic unit carries out the following electrical fault diagnosis on the signal coming from the manifold pressure sensor every 4 ms:short circuit to earth;short circuit to Vbattery or open circuit.If a fault is detected, the control unit implements the following recovery actions:return to petrol operating mode and switching on "petrol mode" indicator in the mode selector;warning light in instrument panel lit up.

Throttle position sensor

The METAFUEL 5D0 electronic unit carries out the following electrical fault diagnosis on the signal coming from the throttle position sensor every 4 ms:short circuit to earth;short circuit to Vbattery or open circuit.If a fault is detected, the control unit implements the following recovery actions:return to petrol operating mode and switching on "petrol mode" indicator in the mode selector;warning light in instrument panel lit up.

Methane pressure sensor

The METAFUEL 5D0 electronic unit carries out the following electrical fault diagnosis on the signal coming from the CNG pressure sensor cyclically:Short circuit to earth;Short circuit to Vbattery or open circuit.If a fault is detected, the control unit implements the following recovery actions, but only if there is a short circuit to earth:Return to petrol operating mode and switching on "petrol mode" indicator in the instrument panel;Switching on of the selector warning light;The pressure indicator in the SEDIMO is off.

CAN line

The METAFUEL 5D0 electronic unit cyclically carries out a functional diagnosis on the CAN line to check for a break in the connection.If a fault is detected, the control unit implements the following recovery actions:return to petrol operating mode and switching on "petrol mode" indicator in the instrument panel foar each individual break; Return to CNG operating mode when the connection is restored, switching off the "petrol mode" indicator in the instrument panel;definitve return to petrol operating mode and then switching on of the "petrol mode" indicator in the instrument panel after 5 interruptions in a single trip and switching on of the warning light in the instrument panel.

Pre-catalyzer Lambda sensor

The METAFUEL 5D0 electronic unit cyclically carries out a functional fault diagnosis signalling that the Lambda sensor is not working properly in the case of a fault or malfunction.If a fault is detected, the control unit implements the following recovery actions:disabling closed-loop mixture strength check;inhibition of self-adjustment strategies.

Rpm sensor

The METAFUEL 5D0 electronic unit checks the accuracy of the counting of the impulses coming from the rpm sensor facing the flywheel with 58 teeth, signalling if there is a fault or malfunction:signal not present.If a fault is detected, the control unit implements the following recovery actions:resynchronization;the vehicle does not move or cuts out.

Timing sensor

The METAFUEL 5D0 electronic unit cyclically carries out a fault diagnosis on the timing sensor signalling the following in the case of a fault or malfunction:signal not plausible.There are no recovery actions planned, the system will operate at 360 degrees with the correct or incorrect timing.

Methane injectors

The METAFUEL 5D0 electronic unit cyclically carries out an electrical fault diganosis on the CNG injectors signalling the following problems:injector cold side open circuit;injector cold side short circuit to earth;injector cold side short circuit to Vbattery.If a fault is detected, the control unit implements the following recovery actions:return to petrol operating mode;warning light in instrument panel lit up.

Methane injector relay

The METAFUEL 5D0 electronic unit cyclically carries out an electrical fault diganosis on the CNG injector relay coil every 131 ms, signalling the following problems:short circuit to earth or open circuit: this fault diagnosis is only possible in the petrol operating mode;short circuit to Vbattery: this fault diagnosis is only
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