In order for numerous electronic control units to be able to exchange data with each other, these units are connected by a high-speed CAN data bus (see Chapter 5). The CAN bus consists of two lines, which allows to reduce the amount of electrical wiring. Each control unit can simultaneously transmit and receive data, but each specific unit reads only the data it needs from the CAN bus.
The principles of organizing fuel and air supply systems are described in Section 1.
A description of the sensors and components used by the engine management system to reduce exhaust gas toxicity is presented in Parts B.
Information from the sensors listed below and some others is used by the ECM to generate control voltages that are sent to the actuators to ensure optimal engine operation in any situation. If some sensors fail, the control unit switches to the emergency program mode to prevent possible engine damage and ensure further movement of the vehicle.
The engine control unit (ECM) determines the optimal injection timing and the amount of fuel injected in coordination with other vehicle systems.
The crankshaft position sensor (CPS) provides the engine control unit with information about the crankshaft speed and its exact position. This information is used to determine injection timing. The CKP sensor is located on the rear of the engine and operates using the Hall effect by scanning the teeth of the rotor mounted on the crankshaft. One of the teeth is missing, and the detection of this gap indicates that the crankshaft is in the position corresponding to the TDC position of the compression stroke of piston No. 1 of cylinder. If the CKP sensor is faulty, the engine shuts down and will not start.
The camshaft position (CMP) sensor works similarly to the CKP sensor by scanning the toothed rotor on the end of the camshaft. The CMP sensor, together with the SKR sensor, is used to determine the TDC of the piston of the first cylinder and determine the injection sequence.
Engine coolant temperature information from the ECT sensor is used by the ECM to calculate fuel injection timing and duration, which vary depending on engine temperature.
The gas pedal module consists of a gas pedal, a support bracket, springs, a rotary trunnion with two magnets and a dual gas pedal position sensor (APP). In the gas pedal module with "Kickdown" function (on models with AT) an additional compression spring with a stop is installed between the gas pedal and the support bracket to allow the driver to feel the moment the kickdown function is engaged. The APP sensor operates using a non-contact, Hall-effect sensor. The ECM uses the signal from the APP sensor to calculate the amount of fuel to inject. When the APP sensor fails, the engine idles at high speed and does not respond to pressing the gas pedal.
The brake pedal position sensor monitors the position of the brake pedal to ensure cruise control and transmission operation. The transmission neutral position sensor is used to allow the engine to start on models with automatic transmission.
The engine oil level and temperature sensor is designed for more flexible oil change intervals. The information from the sensor is used to determine the oil level and quality. When determining the quality of oil, the deposition of soot particles in the oil is also taken into account. The soot deposition parameter is determined empirically and stored in the corresponding characteristic.
This article was copied from the website: audimanual.ru
