KR20120054229A - Pedal simulator - Google Patents

Pedal simulator Download PDF

Info

Publication number
KR20120054229A
KR20120054229A KR1020100115500A KR20100115500A KR20120054229A KR 20120054229 A KR20120054229 A KR 20120054229A KR 1020100115500 A KR1020100115500 A KR 1020100115500A KR 20100115500 A KR20100115500 A KR 20100115500A KR 20120054229 A KR20120054229 A KR 20120054229A
Authority
KR
South Korea
Prior art keywords
magnet
pedal
pedal simulator
stroke sensor
stroke
Prior art date
Application number
KR1020100115500A
Other languages
Korean (ko)
Inventor
권용식
Original Assignee
현대모비스 주식회사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 현대모비스 주식회사 filed Critical 현대모비스 주식회사
Priority to KR1020100115500A priority Critical patent/KR20120054229A/en
Publication of KR20120054229A publication Critical patent/KR20120054229A/en

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T13/00Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems
    • B60T13/74Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with electrical assistance or drive
    • B60T13/748Transmitting braking action from initiating means to ultimate brake actuator with power assistance or drive; Brake systems incorporating such transmitting means, e.g. air-pressure brake systems with electrical assistance or drive acting on electro-magnetic brakes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T7/00Brake-action initiating means
    • B60T7/02Brake-action initiating means for personal initiation
    • B60T7/04Brake-action initiating means for personal initiation foot actuated
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T8/00Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
    • B60T8/32Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to a speed condition, e.g. acceleration or deceleration
    • B60T8/34Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to a speed condition, e.g. acceleration or deceleration having a fluid pressure regulator responsive to a speed condition
    • B60T8/40Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to a speed condition, e.g. acceleration or deceleration having a fluid pressure regulator responsive to a speed condition comprising an additional fluid circuit including fluid pressurising means for modifying the pressure of the braking fluid, e.g. including wheel driven pumps for detecting a speed condition, or pumps which are controlled by means independent of the braking system
    • B60T8/4072Systems in which a driver input signal is used as a control signal for the additional fluid circuit which is normally used for braking
    • B60T8/4081Systems with stroke simulating devices for driver input
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T2270/00Further aspects of brake control systems not otherwise provided for
    • B60T2270/82Brake-by-Wire, EHB

Abstract

The magnet 11 is coupled to the pedal simulator of the present invention at a predetermined deflection angle a to the piston 6, and is attached to the outside of the cylinder 4 which accommodates the piston 6. The stroke sensor 12 which detects a stroke change and transmits it to the ECU 1 is provided, so that the initial value 0 of the stroke sensor 12 for recognizing the initial position value by the ECU 1 when the pedal simulator is initialized fails. In this case, it is possible to recognize the initial value 0 of the stroke sensor 12 only by the rotation operation of the magnet 11 without any hardware change.

Description

Pedal Simulator

BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a pedal simulator. More particularly, the present invention relates to a pedal simulator that can perform initialization error correction with a simple operation without changing hardware.

In general, a brake by wire system (BBW) is a method of braking a vehicle without using hydraulic pressure.

The BBW (Brake By Wire System) has an EMB (Electro mechanical Brake), which uses an actuator power with a 12V voltage motor as the wheel disc braking force, or self-energizes the motor power with a wedge structure using the wheel disc braking force. EWB (Electro Wedge Brake) is applied, which creates a large braking force.

In addition, the hydraulic pressure is not applied to the BBW is further provided with a pedal simulator that makes the pedal feel to the driver operating the pedal, such a pedal simulator is configured to form a pedal feeling by the damper or spring force of the rubber material.

The pedal simulator includes a stroke sensor for transmitting a change of stroke to the ECU, and the stroke sensor typically applies a method of detecting a movement of the ring magnet.

The magnet type stroke sensor as described above performs initialization before mounting on the BBW. If the hardware initial position value is not recognized as the initial value (0) of the sensor signal, the required braking force of the user may not be realized. Because it is not.

The inherent error of the magnet type stroke sensor affecting the initialization must be corrected in hardware, so that failure of the hardware action will not only produce a bad pedal simulator but also make it more difficult to meet the high sensor sensitivity requirements. There will be no.

Accordingly, the present invention in view of the above point corrects the initialization effect due to the error of the magnet type stroke sensor itself without hardware redesign or structural change, thereby preventing mass production of the defective pedal simulator due to the failure of the stroke sensor initialization. The aim is to provide a pedal simulator that can prevent and satisfy high sensor sensitivity requirements.

The present invention for achieving the above object in the pedal simulator that provides a reaction force according to the pedal operation,

A magnet provided on the operation rod receiving the stroke of the pedal and coupled to the piston for pressing the elastic damper provided inside the cylinder to have a predetermined inclination angle; Characterized in that configured to include a stroke sensor.

The inclination angle of the magnet has an upward extension angle at which a portion of the magnet closer to the stroke sensor is opened, and is inclined at 15 degrees.

The present invention has the effect of preventing the mass production of the defective pedal simulator and the cost reduction by correcting the initialization effect due to the error of the magnet type stroke sensor itself without hardware redesign or structural change.

In addition, since the present invention satisfies the high sensor sensitivity demand as a signal initialized by a user performing an operation during initialization correction, the present invention also has an effect of accurately implementing the required level of the pedal feeling.

1 is a block diagram of a pedal simulator according to the present invention applied to a brake by wire system (BBW), Figure 2 (a) to (c) is before the pedal simulator according to the invention is mounted on a BBW In the case of initialization failure, the operation is executed again without any hardware change.

DETAILED DESCRIPTION Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings. Since the exemplary embodiments of the present invention may be embodied in various different forms, one of ordinary skill in the art to which the present invention pertains may be described herein. It is not limited to the Example to make.

1 is a block diagram of a pedal simulator according to the present invention applied to a brake by wire system (BBW).

As shown in the figure, the BBW includes an ECU 1 for calculating and controlling a required braking force according to the stroke of the pedal 2 for implementing the braking will, and a pedal for transmitting a reaction force to the pedal 2 so as to feel a pedal feeling to the driver. It consists of a simulator 3 and a brake 20 controlled by the ECU 1 to implement braking.

The brake 20 uses EMB (Electro mechanical Brake), which uses an actuator power with a 12V voltage motor as the wheel disk braking force, or self-Energizing the motor power in a wedge structure using the wheel disk braking force to provide a large braking force. EWB (Electro Wedge Brake).

The pedal simulator 3 includes a cylinder 4 having a chamber formed therein, an operating rod 5 connected to the pedal 2 to move directly under the stroke of the pedal 2, and the operating rod 5. A piston 6 provided at the end of the cylinder, a rubber damper 7 accommodated in the chamber of the cylinder 4 to transmit reaction force to the piston 6, and a movement distance of the piston 6 is detected. The sensor member 10 is transmitted to the ECU (1).

The sensor member 10 is a magnet 11 moving together with the piston 6 and a stroke sensor attached to the outside of the cylinder 4 to detect a stroke change of the magnet 11 and transmit it to the ECU 1. 12).

The magnet 11 is a ring type fitted to the outer diameter of the piston 6, and is assembled in a state inclinedly coupled to the piston 6 at a predetermined inclination angle a.

As shown in FIG. 1, the inclination angle a direction has an upward extension angle at which a portion of the magnet 11 closer to the stroke sensor 12 is opened.

The inclination angle a is formed at an appropriate inclination angle, and is formed at an inclination angle of about 15 degrees in this embodiment.

In addition, the magnet 11 is mechanically perfectly coupled to the piston 6 and is designed such that the axial shaking of the piston 6 is controlled by sufficient sliding resistance of the cylinder 4.

2 (a) to 2 (c) show an operation diagram of re-executing initialization without a hardware change upon initialization failure performed before the pedal simulator according to the present invention is mounted on the BBW.

That is, the stroke sensor 12 detects the stroke change of the magnet 11 at the initialization of the pedal simulator, and is not recognized as the initial value 0 of the stroke sensor 12 for recognizing the initial position value in the ECU 1. In this case, the initial reset state for recognizing the initial value (0) is simply displayed without changing hardware of the pedal simulator.

When the initialization is performed again in the initial initialization failure state, as shown in (a), the operator rotates (M) the operating rod 5 exposed to the outside of the cylinder (4).

The rotation of the operation rod 5 as described above, the magnet 11 is also rotated by rotating the piston 6 together, the magnet 11 as shown in Fig. 2 (b) by the rotation of the magnet 11 signal affected zone By positioning at K, the stroke sensor 12 can recognize the initial value 0. FIG.

This is due to the characteristic of the stroke sensor 12 is not affected by the signal of the stroke sensor 12 other than the signal influence section (K) close to it.

When the initial position value is recognized as the signal initial value 0 of the stroke sensor 12 by the ECU 1 as described above, the force F is applied to the operating rod 5 as shown in FIG. 6) together with the magnet (11) is pushed, and the suitability test by the detection of the stroke sensor 12 for the stroke change of the magnet (11).

As described, the pedal simulator equipped with the magnet 11 and the stroke sensor 12 according to the present embodiment has an initial value of the stroke sensor 12 only by the rotation operation of the magnet 11 without any hardware change upon initialization. (0) can be recognized.

1: ECU 2: Pedal
3: pedal simulator 4: cylinder
5: working rod 6: piston
7: elastic damper 10: sensor member
11: magnet 12: stroke sensor
30: brake

Claims (3)

In the pedal simulator that provides a reaction force according to the pedal operation,
A magnet provided on the operation rod receiving the stroke of the pedal and coupled to the piston for pressing the elastic damper provided inside the cylinder to have a predetermined inclination angle; A pedal simulator comprising a stroke sensor.
The pedal simulator of claim 1, wherein the inclination angle of the magnet has an upward extension angle at which a portion of the magnet closer to the stroke sensor is opened.
The pedal simulator of claim 2, wherein the angle of inclination of the magnet is 15 degrees.
KR1020100115500A 2010-11-19 2010-11-19 Pedal simulator KR20120054229A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020100115500A KR20120054229A (en) 2010-11-19 2010-11-19 Pedal simulator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020100115500A KR20120054229A (en) 2010-11-19 2010-11-19 Pedal simulator

Publications (1)

Publication Number Publication Date
KR20120054229A true KR20120054229A (en) 2012-05-30

Family

ID=46270133

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020100115500A KR20120054229A (en) 2010-11-19 2010-11-19 Pedal simulator

Country Status (1)

Country Link
KR (1) KR20120054229A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20150048399A (en) 2013-10-28 2015-05-07 현대모비스 주식회사 Control-method of pedal-simulator
US9254829B2 (en) 2012-12-12 2016-02-09 Hyundai Motor Company Pushing force controlling apparatus for pedal simulator
CN107226076A (en) * 2017-05-17 2017-10-03 江苏理工学院 A kind of brake feel analogue means based on motor force
CN113911084A (en) * 2021-11-19 2022-01-11 中汽创智科技有限公司 Pedal simulator and braking system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9254829B2 (en) 2012-12-12 2016-02-09 Hyundai Motor Company Pushing force controlling apparatus for pedal simulator
KR20150048399A (en) 2013-10-28 2015-05-07 현대모비스 주식회사 Control-method of pedal-simulator
CN107226076A (en) * 2017-05-17 2017-10-03 江苏理工学院 A kind of brake feel analogue means based on motor force
CN107226076B (en) * 2017-05-17 2020-02-14 江苏理工学院 Brake feel simulation device based on motor force
CN113911084A (en) * 2021-11-19 2022-01-11 中汽创智科技有限公司 Pedal simulator and braking system
CN113911084B (en) * 2021-11-19 2024-03-01 中汽创智科技有限公司 Pedal simulator and braking system

Similar Documents

Publication Publication Date Title
US10668912B2 (en) Position determining method for a parking lock
KR101114373B1 (en) Brake pedal stroke sensor
US11827195B2 (en) Pedal operating unit
JP4339349B2 (en) Operation pedal device for vehicle
US8353111B2 (en) Handle control provided with an angular position sensor
US9096203B2 (en) Brake master cylinder
KR20120054229A (en) Pedal simulator
KR101696505B1 (en) Method for operating a brake-boosted brake system of a vehicle, and control device for a brake-boosted brake system of a vehicle
WO2017072232A3 (en) Control arrangement consisting of an actuating element with an input surface and rotary actuator arranged on said input surface
US9428247B2 (en) Control device
JP2018533093A (en) Device for force simulation in the operating elements of a vehicle, in particular pedal force simulator
CN111247352B (en) Drum brake
US9821776B2 (en) Brake actuation sensor device for a vehicle brake system and method for mounting a brake actuation sensor device on a vehicle brake system
JP2008146629A (en) Device for detecting amount of pedal operation
US8752421B2 (en) Flaw detection testing device for hub unit
WO2010064304A1 (en) Operation amount detector
US10351173B2 (en) Wheel carrier for a two-track motor vehicle
US20220314939A1 (en) Vehicle brake pedal with linear pedal resistance and rotary dampener/position sensor assemblies
KR20140076371A (en) Stroke sensor unit for brake pedal device
JP2020511628A (en) Overload detector in chassis member
US11125293B2 (en) Brake device for a utility vehicle
JP6510467B2 (en) Pedal pressure detection device
US20230304550A1 (en) Electromechanical vehicle brake and method for determining the position of an electromechanical vehicle brake
KR101966452B1 (en) Accelerator pedal apparatus of vehicle
WO2010109639A1 (en) Operation amount detection device

Legal Events

Date Code Title Description
WITN Withdrawal due to no request for examination