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Home >> Mercedes Benz >> 2009 >> E550 Base >> Repair and Diagnosis >> Brakes >> Mechanical - Hydraulic >> Brakes -- Location, Removal & Installation -- E550 (211.072) >> Basic Knowledge >> Electronic stability program (ESP) function - GF42.45-P-0001TM

Electronic stability program (ESP) function - GF42.45-P-0001TM

MODEL 211.0/2, 219.3 as of 1.6.06 

except CODE (494) USA version 

except CODE (498) Japan version 

MODEL 211.0/2, 219.3 as of 1.7.06 

with CODE (494) USA version 

with CODE (498) Japan version 

Schematic representation 

Fig 1: View Of Understeering And Oversteering Vehicle
G07502560Courtesy of MERCEDES-BENZ OF NORTH AMERICA.

Example of understeering vehicle (A) 

A vehicle understeers on a left curve. The vehicle pushes outwards over the front wheels. Precisely calculated braking force is applied to the left rear wheel.

Example of oversteering vehicle (B) 

A vehicle oversteers in a left curve. In the process the rear of the vehicle breaks away. A precisely calculated braking action is performed on the right front wheel.

General 

The Electronic Stability Program (ESP) is an active safety system for improving the vehicle stability in all driving situations. It operates by individual brake intervention at one or more wheels on the front or rear axle. The ESP stabilizes the vehicle when cornering, when braking or when rolling without drive and keeps it safely on course. It supplements the familiar functions of the antilock brake system (ABS), the acceleration slip regulation (ASR) and the engine braking regulation (MSR).

The function of the stability control overrides the ABS and ASR control systems.

In addition to active ESP brake intervention there is also an influence on the engine/transmission management

The ESP controls under the following driving conditions:

The ESP contains the following systems:

Avoids the individual wheels locking by reducing the brake pressure at the wheels in question

Reduces wheel slip of the drive wheels in overrun mode and as a result better directional stability and road adhesion

Fig 2: Identifying Electronic Stability Program Function Diagram
G07502561Courtesy of MERCEDES-BENZ OF NORTH AMERICA.

Function overview 

Brake forces, drive forces and side forces acting on one side, which act on the vehicle from outside endeavor to turn the vehicle about its vertical axis. The ESP detects the vehicle handling and selectively brakes individual wheels for correction. It regulates when cornering (vehicle understeers or oversteers) and when driving straightahead (vehicle deviates from course due to dissimilar road conditions).

Sensor system 

A distinction is made between sensors which detect the driver's wish (e.g. the steering angle sensor) and sensors which record the actual vehicle handling. These include:

The ESP control unit is constantly supplied with the current data on engine torque and transmission ratio.

Via the yaw rate and lateral acceleration sensor the brake forces, drive forces and side forces which want to turn the vehicle about the perpendicular axis are recorded (yaw rate). The torque acting on the vehicle can be calculated by the information listed. If this value exceeds certain thresholds then the corresponding wheels are braked by the ESP control unit to neutralize the torque which is acting.

At the same time commands are passed on to the ME-SFI [ME] control unit or CDI control unit and VGS control unit or ETC [EGS] control unit via CAN C. For drive torque reduction a torque requirement is given to the ME-SFI [ME] control unit or CDI control unit. If necessary a downshift is prevented by the VGS control unit or ETC [EGS] control unit. The selective and accurately modulated intervention takes place in a few fractions of a second.

Active brake intervention and drive torque reduction by the ESP ensure optimum vehicle stability. The following processes are performed: