198002690 - GENERAL REMARKS - VDC/ESP VEHICLE STABILITY CONTROL SYSTEM
CONSTRUCTION SPECIFICATIONS
VIEW OF ASSEMBLY
SPECIFICATIONS
The BOSCH 8.1 ABS braking system currently used is the most advanced available to guarantee safe driving. To achieve this, an ESP system which includes ASR/MSR/HBA/HHC functions has been added to the ABS/EBD hydraulic control unit.

ESP SYSTEM
Introduction
The ESP (Electronic Stability Program) is an active safety system for the control of the vehicle during dynamic manoeuvres, which intervenes in emergency conditions. The ESP system, as well as including the ASR/MSR/HBA/HHC functions described previously, keeps the vehicle stable in the event of brisk manoeuvres, especially on slippery surfaces. It reacts quickly to both vehicle oversteer and understeer, restoring stability and allowing the driver to maintain full control of the vehicle. This has been achieved through the addition of special sensors: steering angle sensor and yaw/lateral acceleration/longitudinal acceleration sensor.The ESP system is managed by the A.B.S. electronic control unit, built into a special hydraulic control unit which allows action on the braking system, independent of the user''s action.The control unit processes the following signals:- steering angle/steering wheel rotation speed sensor- yaw/lateral/longitudinal acceleration sensor- motorised throttle position- wheel RPM sensors- hydraulic braking system pressure sensorand uses special algorithms in the electronic control unit software to obtain the figures for the dynamic control of the vehicle:- longitudinal and transverse slip between the wheels and the road surface- axle drift.Using these figures, the system interprets the effective dynamics of the vehicle; having identified all the critical conditions resulting from environmental factors (e.g. surface with poor grip) or any errors made by the user (e.g. panic situations) and with subsequent intervention on the brakes and the drive torque, the vehicle is restored to good driving conditions.The system interfaces with:- E.C.M. (Engine Control Module) for regulating drive torque,- BCM (Body Computer Node) for the transmission of the vehicle speed and the control of the warning lights.The exchange of information between these components takes place via the C-CAN line.The K serial line is used to diagnose the system.The system is combined with a power unit with a specific brake pump; in addition, the pipes between the brake pump and the A.B.S. control unit have a larger diameter (6 mm) than normal pipes (4 mm); this is designed to prevent adverse effects on the operation of the ESP at low brake fluid temperatures.Operating strategies
As described previously, in addition to controlling longitudinal vehicle slip, the ESP system also controls transverse slip and thus the vehicle''s lateral stability.The lateral stability of a vehicle depends on the reaction of the tyres to lateral forces, and on the adhesion force of the wheel to the road surface.It should be remembered that wheel grip depends on the vertical load and the wheel condition (loaded or unladen) and on the friction coefficient, which is in turn determined by the road surface and tyre conditions.When the vehicle is travelling in a straight line, the lateral forces do not really have an effect unless outside factors intervene (e.g. a gust of wind or a change to a different surface) and increase their intensity, unlike when driving round a bend where there is a strong increase in lateral forces due to the increase in centrifugal force.The action of the lateral forces produces a variation in the drift angle of the wheels and, consequently, a variation in the axle drift (drift angle = difference between the desired route and the actual route).The lateral forces do not, however, act equally on all four wheels because they are not subject to the same load conditions. In fact, the load on the wheel differs according to the situation the wheel is in, namely:- acceleration (lightening of the front axle and loading of the rear axle)- braking (loading of the front axle and lightening of the rear axle)- bend to the right/left (loading of the outer wheels and lightening of the inner wheels)- accelerating/decelerating round a bend (combination of the cases mentioned above).It is obvious that if the lateral forces acting on the individual wheels vary, there will also be a variation in the forces acting on the vehicle axles; consequently the lateral forces acting on the front axle overcome those on the rear axle and vice versa, determining a rotation (moment) on the vertical axis of the vehicle (yaw axis).The yaw moment affects the behaviour of the vehicle, producing either understeer or oversteer.UNDERSTEER:understeer for a vehicle is when, with increasing lateral acceleration, the drift angle for the front axle increases greatly compared with that of the rear axle. When this happens, the vehicle tends to go straight ahead (taking the curve wide) when cornering.


|  | The system intervenes before the oversteer and understeer values are too high, in order to prevent the countersteering manoeuvre from making handling difficult. | 

|  | the ESP system improves driving safety but there are limited situations which cannot be controlled by the ESP system. It is, therefore, not seen as a device which improves the vehicle''s performance, but as a device that improves its safety. | 
Asr/msr function
This system, in addition to the normal anti-lock and brake force distribution functions controlled by the ABS with EBD, also carries out the following functions:- acceleration slipping adjustment (A.S.R.)- adjustment of the engine braking torque (M.S.R.)- locking the differential through action on the brakes (T.C.).These functions are carried out through action on the drive torque (ASR/MSR) and the application of a braking force on one or both the drive wheels (TC).If, during acceleration, one or both the drive wheels tend to slip, the ASR system asks the engine management control unit to reduce the torque transmitted to the wheels. Almost simultaneously, it brakes the wheel or wheels without any intervention by the user (TC)If the wheels tend to lock during heavy deceleration, the MSR system requests that the engine management control unit adjusts the engine braking torque in order to prevent the vehicle becoming unstable.The system can be bypassed by operating the button on the dashboard next to the Hazard pushbutton (hazard lights).The LED in the button comes on and the display in the instrument panel signals that the ASR/MSR system has been switched off.The warning light in the panel coming on indicates that the system is excluded on account of a fault recorded by the control unit.The intervention of the ASR/MSR is signalled by the flashing of the warning light in the instrument panel.Each time the vehicle is started up, the ASR/MSR function is activated even if the function was switched off when the vehicle was switched off.The system works through signals coming from the active sensors for the four wheels, from the brake light switch and from the ASR on/off button.It continuously compares the speed of the wheels on the same side of the vehicle (right front with right rear and left front with left rear) and when a difference in speed of more than 2-6 km/h (intervention level) is detected between two wheels on the same side, it intervenes with the ASR logic.The ABS/ASR control unit communicates continuously with the engine management control unit via the C-CAN line.Slipping of the drive wheelsIntervention - intervention times for good road grip conditionsDrive torque reduction by the engine management control unit through the alteration of the ignition advances, 6/100 of a second after the slipping limit is exceeded.A further reduction in torque through a decrease in the throttle opening (by the engine management control unit through the motorised throttle body after 15/100 of a second).Intervention of the hydraulic system (braking force on the drive wheels) after 2/10 of a second.Operation in poor grip conditionsThe system is capable of recognising these conditions by comparing the acceleration of the drive wheels with the to| ... DATA ERROR - CROPPED TEXT | Ошибка данных - Текст обрезан ... | 
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