[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

CN208907856U - A kind of automatic Pilot simulator and its steering mechanism - Google Patents

A kind of automatic Pilot simulator and its steering mechanism Download PDF

Info

Publication number
CN208907856U
CN208907856U CN201821118500.5U CN201821118500U CN208907856U CN 208907856 U CN208907856 U CN 208907856U CN 201821118500 U CN201821118500 U CN 201821118500U CN 208907856 U CN208907856 U CN 208907856U
Authority
CN
China
Prior art keywords
steering wheel
driving part
automatic pilot
steering mechanism
steering
Prior art date
Legal status (The legal status 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 status listed.)
Active
Application number
CN201821118500.5U
Other languages
Chinese (zh)
Inventor
张地
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BEIJING UNISTRONG NAVIGATION TECHNOLOGY Co Ltd
Original Assignee
BEIJING UNISTRONG NAVIGATION TECHNOLOGY Co Ltd
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 BEIJING UNISTRONG NAVIGATION TECHNOLOGY Co Ltd filed Critical BEIJING UNISTRONG NAVIGATION TECHNOLOGY Co Ltd
Priority to CN201821118500.5U priority Critical patent/CN208907856U/en
Application granted granted Critical
Publication of CN208907856U publication Critical patent/CN208907856U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Steering Control In Accordance With Driving Conditions (AREA)

Abstract

It includes: bracket that the utility model, which discloses a kind of automatic Pilot simulator and its steering mechanism, the steering mechanism,;Driving part is fixed on the bracket;Steering wheel is sequentially connected with the driving part, and under automatic mode, the driving part is able to drive the steering wheel and is rotated;Angular transducer, for monitoring the corner of the steering wheel;Damper at least works under artificial mode, can increase damping for the rotation of the steering wheel, and the size of the damping is directly proportional to the corner;Wherein, the artificial mode refers to that tester intervenes the rotation of the steering wheel manually, and the driving part does not work.The steering mechanism of the provided automatic Pilot simulator of the utility model can cooperate the components such as analogue system, what comes into a driver's computer, and security performance and driving training to autonomous driving vehicle etc. carry out analogue simulation, be more advantageous to the popularization of autonomous driving vehicle, use.

Description

A kind of automatic Pilot simulator and its steering mechanism
Technical field
The utility model relates to driving simulator technical field more particularly to a kind of automatic Pilot simulator and its turning machines Structure.
Background technique
Because of the safety problem of autonomous driving vehicle, currently, the test of autonomous driving vehicle gradually turns via real road Enter the analogue simulation stage, other than needing sound analogue system, what comes into a driver's computer, the steering mechanism of simulator is also one ten Divide important component.
Therefore, a kind of steering mechanism of automatic Pilot simulator how is provided, to realize the emulation mould of autonomous driving vehicle It is quasi-, it is still those skilled in the art's technical problem urgently to be resolved.
Utility model content
The purpose of the utility model is to provide a kind of automatic Pilot simulator and its steering mechanism, wherein the steering mechanism The components such as analogue system, what comes into a driver's computer can be cooperated, security performance and driving training to autonomous driving vehicle etc. are imitated True simulation is more advantageous to the popularization of autonomous driving vehicle, uses.
In order to solve the above technical problems, the utility model provides a kind of steering mechanism of automatic Pilot simulator, comprising: branch Frame;Driving part is fixed on the bracket;Steering wheel is sequentially connected with the driving part, under automatic mode, the driving Component is able to drive the steering wheel and is rotated;Angular transducer, for monitoring the corner of the steering wheel;Damper, until It works under artificial mode less, damping, and the size of the damping and the corner can be increased for the rotation of the steering wheel It is directly proportional;Wherein, the artificial mode refers to that tester intervenes the rotation of the steering wheel manually, the driving part not work Make.
The steering mechanism of the provided automatic Pilot simulator of the utility model has two kinds of works of automatic mode and artificial mode Operation mode, in automatic mode, driving part can drive steering wheel to be rotated, to carry out automatic Pilot, and in emergency Or when mistake occurs in automatic mode, tester can intervene the rotation of steering wheel manually, to switch to artificial mould Formula is driven.
In a manual mode, damper can increase damping, the size of the damping and turning for steering wheel for the rotation of steering wheel Angle is directly proportional, reversed blocking torque is brought can be manually rotated steering wheel for tester, so that tester is in rotation direction Better feel can be obtained when disk, i.e., the practical operation that steering wheel rotational angle is bigger, rotation is more heavy feels that tester can To obtain better test experience.Meanwhile damper also has certain effectiveness in vibration suppression, can reduce institute in steering wheel rotation process The vibration of generation, noise.
Above-mentioned steering mechanism can cooperate the components such as analogue system, what comes into a driver's computer, to the safety of autonomous driving vehicle Performance and driving training etc. carry out analogue simulation, are more advantageous to the popularization of autonomous driving vehicle, use.
Optionally, the driving part is torque motor, and shaft is connected directly with the steering wheel.
Optionally, the driving part is torque motor, and the steering wheel is connected with steering column, the torque motor Shaft be connected with the steering column.
Optionally, the damper is installed on the shaft of the torque motor, and at work, the damper can be The shaft increases damping.
Optionally, the damper is electromagnetic damper.
It optionally, further include retarder, the input shaft of the retarder is connected with the shaft of the torque motor, described Angular transducer is installed on the retarder.
It optionally, further include limiting component, the limiting component is installed on the shaft, turns for limiting the steering wheel Dynamic angle.
It optionally, further include controller, the controller is connect with the driving part, the equal signal of the damper, Under artificial mode, the controller can control the driving part stop working, the damper work.
Optionally, the bracket includes two supporting legs being oppositely arranged, and the outer wall of the driving part is provided with two branch Axis is supportted, two support shafts are installed on two supporting legs correspondingly, with the fixation driving part.
The utility model also provides a kind of automatic Pilot simulator, including steering mechanism, and the steering mechanism is above-mentioned The steering mechanism of automatic Pilot simulator.
Since the steering mechanism of above-mentioned automatic Pilot simulator has been provided with technical effect as above, then, having should The automatic Pilot simulator of steering mechanism is also when having similar technical effect, therefore this will not be repeated here.
Detailed description of the invention
Fig. 1 is provided a kind of structure of specific embodiment of the steering mechanism of automatic Pilot simulator by the utility model Schematic diagram.
The reference numerals are as follows in Fig. 1:
1 bracket, 11 supporting legs;
2 driving parts, 21 support shafts;
3 steering wheels, 31 steering columns;
4 angular transducers;
5 dampers;
6 retarders;
7 limiting components.
Specific embodiment
In order to make those skilled in the art more fully understand the technical solution of the utility model, with reference to the accompanying drawing and have The utility model is described in further detail for body embodiment.
The words such as " first " described herein, " second ", be merely for convenience of description scheme same or like two with On structure or component, be not offered as certain particular determination to sequence.
Referring to FIG. 1, Fig. 1 is provided a kind of specific implementation of the steering mechanism of automatic Pilot simulator by the utility model The structural schematic diagram of mode.
As shown in Figure 1, the utility model provides a kind of steering mechanism of automatic Pilot simulator, including bracket 1, driving portion Part 2, steering wheel 3, angular transducer 4 and damper 5.
Driving part 2 is securable to bracket 1, and is sequentially connected with steering wheel 3, and in automatic mode, driving part 2 can Steering wheel 3 is driven to be rotated, to carry out automatic Pilot.Angular transducer 4 can be used for the corner of monitoring direction disk 3.Damper 5 Can at least work, be damped with increasing for the rotation of steering wheel 3 in a manual mode, and the size of the damping and corner at Direct ratio.Wherein, artificial mode refers to that tester intervenes the rotation of steering wheel 3 manually, and under the mode, driving part 2 does not work.
As described above, the steering mechanism of the provided automatic Pilot simulator of the utility model has automatic mode and artificial mould Two kinds of operating modes of formula, in automatic mode, driving part 2 can drive steering wheel 3 to be rotated, to carry out automatic Pilot, and When mistake occur in emergency or automatic mode, tester can intervene the rotation of steering wheel 3 manually, to cut Artificial mode is shifted to be driven.
In a manual mode, damper 5 can increase damping, size and the steering wheel 3 of the damping for the rotation of steering wheel 3 Corner is directly proportional, reversed blocking torque is brought can be manually rotated steering wheel 3 for tester, so that tester is in rotation side Better feel can be obtained when to disk 3, i.e., the practical operation that 3 rotational angle of steering wheel is bigger, rotation is more heavy is felt, tester Member can obtain better test experience.Meanwhile damper 5 also has certain effectiveness in vibration suppression, can reduce steering wheel 3 and rotate Generated vibration, noise in journey.
Above-mentioned steering mechanism can cooperate the components such as analogue system, what comes into a driver's computer, to the safety of autonomous driving vehicle Performance and driving training etc. carry out analogue simulation, are more advantageous to the popularization of autonomous driving vehicle, use.
In specific scheme, above-mentioned driving part 2 can be torque motor, and torque motor has the slow-speed of revolution, big The advantages that torque, fast response, and the output of torques such as may be implemented, shaft (not shown) can be connected with steering wheel 3, Directly to drive steering wheel 3 to be rotated.Alternatively, steering wheel 3 can connect steering column 31, which can be with direction The shaft of disk 3 is connected, and then transmits power from shaft to steering column 31, and steering wheel 3 is driven to be rotated.
Using this structure, the drive mechanism between driving part 2 and steering wheel 3 can be significantly simplified, and then can simplify whole The structure of a steering mechanism advantageously reduces the weight and manufacturing cost of steering mechanism;Moreover, because drive mechanism is more simple Single, the transmission efficiency between driving part 2 and steering wheel 3 can be higher, additionally it is possible to reduce the energy in steering mechanism's operational process Consumption.
It may be noted that the above-mentioned description as described in 2 specific structure of driving part and its drive mechanism between steering wheel 3, only It is a kind of exemplary description of the utility model embodiment, can not be simulated as automatic Pilot provided to the utility model The restriction of the practical range of the steering mechanism of device;In the specific implementation, those skilled in the art can also be using other forms Driving part 2, for example, parallel axes, row can also be arranged in the driving part 2 between common motor, with steering wheel 3 The deceleration mechanism of the forms such as star row, to reduce revolving speed, this scheme is similarly the utility model scheme claimed.
By taking driving part 2 is torque motor as an example, damper 5 can be installed on the shaft of torque motor, work When, damper 5 can increase damping for shaft.In addition to this scheme, the steering column in steering wheel 3 is also can be set in damper 5 On 31, the technical effect for increasing damping for the rotation of steering wheel 3 can be equally played.
Above-mentioned damper 5 is specifically as follows electromagnetic damper, can be set in shaft, when being powered, the electromagnetic damping Device can produce damping, and the damping value is adjustable, easily to generate different size of resistance according to the corner of steering wheel 3 Buddhist nun, when power is off, the electromagnetic damper do not work, i.e., no longer have and provide the effect of damping for steering wheel 3.
As previously mentioned, in automatic mode, steering wheel 3 is driven by driving part 2, at this point, tester is not necessarily to other side It is operated to disk 3, then, the technical effect for enhancing feel as brought by damper 5 does not need actually, in this way, Under automatic mode, so that it may energization of the cutting to damper 5, to reduce the resistance of the rotation of steering wheel 3.Certainly, it is contemplated that damping The technical effect for the reduction vibration that device 5 is also equipped with, in automatic mode, damper 5 can continue to work, to reduce driving portion The drive steering wheel 3 of part 2 generated noise when rotating.
Still using Fig. 1 as visual angle, which can also include retarder 6, and the input shaft of retarder 6 can be with torque electricity The shaft of motivation is connected, and angular transducer 4 is installed on the retarder 6, with the decelerating effect by the retarder 6 come the side of detection The relative rotation of the vehicle characterized to disk 3.Certainly, which can be used for absolutely turning for detection direction disk 3 Angle, at this point it is possible to not need above-mentioned retarder 6.
It is to be appreciated that above-mentioned " relative rotation " refers to the angle of the vehicle wheel rotation of vehicle when steering wheel 3 rotates, the angle For value usually between positive and negative 30-40 degree (to turn left to be positive, right-hand rotation is negative), above-mentioned " absolute corner " refers to the reality of steering wheel 3 Border corner, the angle value is related with specific vehicle, usually positive and negative between 540 degree.
For more preferable simulation true environment, avoids 3 amount of spin of steering wheel excessive, limiting component 7, limiting section can also be set Part 7 can be installed on shaft, for limiting the angle of the rotation of steering wheel 3.
Specifically, which may include the first gear and second gear being meshed, and the diameter of first gear can To be less than second gear, for the transmission ratio of first gear and second gear less than 1, first gear can be set in shaft, and can Rotated synchronously with shaft, the end face of second gear can circumferentially spaced setting there are two the first limited blocks, when second gear edge One direction turns to when abutting against the first limited block and the second limited block of fixed setting, and steering wheel 3 can be prevented to continue It is rotated in the direction, and then the extreme position that steering wheel 3 is rotated in the direction can be limited.Alternatively, the limiting component 7 can also Think the composite structure of wheel and rack, gear can be set in shaft, and rotate synchronously with shaft, and gear can drive when rotating Rack gear carries out linear displacement, and then the block piece of the forms such as block can be arranged on the motion profile of rack gear, when the end of rack gear When abutting against with block, rack gear can not continue to act, also can be to steering wheel 3 so as to reversely limit the rotation of steering wheel 3 Rotation limit position be determined.
With continued reference to FIG. 1, bracket 1 may include two supporting legs 11 being oppositely arranged, the outer wall of driving part 2 can be set Two support shafts 21 are equipped with, two support shafts 21 can be located substantially on same axis, and be installed on two supporting legs 11 correspondingly, To fix the driving part 2, and then entire steering mechanism is fixed.Specifically, the upper surface of supporting leg 11 can be equipped with V Shape slot, support shaft 21 can be caught in the v-shaped opening of V-shaped groove, then support shaft 21 can be fixed on supporting leg 11 by gland; Above-mentioned support shaft 21 can be circular shaft, or the forms such as pin can also be arranged when for circular shaft in the axis of other shapes Locating part, rotated to avoid support shaft 21 (being inconjunction with driving part 2) confronting legs 11.
For the steering mechanism of automatic Pilot simulator involved in the respective embodiments described above, following the utility model is implemented Example will also be described the control process of the automatic Pilot simulator.
Above-mentioned steering mechanism can also include controller, which can be connected with driving part 2, damper 5 with signal It connects, in automatic mode, controller can control the operating of driving part 2, to drive steering wheel 3 to be rotated, at this point, damper Whether 5, which work, to be configured as needed;When monitor tester hand operate steering wheel 3 when (specifically can reflect for The signal that the control electric current of driving part 2 increases, it is of course also possible to be monitored by others sensors), controller can be with Control driving part 2 shuts down, with completely by manually being operated to steering wheel 3, at this point, into artificial mode, controller Also control damper 5 is worked, is damped with increasing for the rotation of steering wheel 3.
The utility model also provides a kind of automatic Pilot simulator, including what comes into a driver's computer, steering mechanism etc., the turning machine Structure is the steering mechanism of automatic Pilot simulator involved in the respective embodiments described above.
Since the steering mechanism of above-mentioned automatic Pilot simulator has been provided with technical effect as above, then, having should The automatic Pilot simulator of steering mechanism is also when having similar technical effect, therefore this will not be repeated here.
Above are merely preferred embodiments of the utility model, it is noted that for the ordinary skill people of the art For member, without departing from the principle of this utility model, several improvements and modifications can also be made, these improvements and modifications Also it should be regarded as the protection scope of the utility model.

Claims (10)

1. a kind of steering mechanism of automatic Pilot simulator characterized by comprising
Bracket (1);
Driving part (2) is fixed on the bracket (1);
Steering wheel (3) is sequentially connected with the driving part (2), and under automatic mode, the driving part (2) is able to drive institute Steering wheel (3) is stated to be rotated;
Angular transducer (4), for monitoring the corner of the steering wheel (3);
Damper (5), at least works under artificial mode, can increase damping, and the resistance for the rotation of the steering wheel (3) The size of Buddhist nun is directly proportional to the corner;
Wherein, the artificial mode refers to that tester intervenes the rotation of the steering wheel (3), the driving part (2) manually It does not work.
2. the steering mechanism of automatic Pilot simulator according to claim 1, which is characterized in that the driving part (2) is Torque motor, shaft are connected directly with the steering wheel (3).
3. the steering mechanism of automatic Pilot simulator according to claim 1, which is characterized in that the driving part (2) is Torque motor, the steering wheel (3) are connected with steering column (31), the shaft of the torque motor and the steering column (31) It is connected.
4. the steering mechanism of automatic Pilot simulator according to Claims 2 or 3, which is characterized in that damper (5) peace Shaft loaded on the torque motor, at work, the damper (5) can increase damping for the shaft.
5. the steering mechanism of automatic Pilot simulator according to claim 4, which is characterized in that the damper (5) is electricity Magnetic damper.
6. the steering mechanism of automatic Pilot simulator according to Claims 2 or 3, which is characterized in that further include retarder (6), the input shaft of the retarder (6) is connected with the shaft of the torque motor, and the angular transducer (4) is installed on institute State retarder (6).
7. the steering mechanism of automatic Pilot simulator according to Claims 2 or 3, which is characterized in that further include limiting component (7), the limiting component (7) is installed on the shaft, for limiting the angle of the steering wheel (3) rotation.
8. the steering mechanism of automatic Pilot simulator according to claim 1, which is characterized in that it further include controller, it is described Controller is connect with the driving part (2), the damper (5) signal, and in a manual mode, the controller can be controlled Make the driving part (2) stop working, the damper (5) work.
9. the steering mechanism of automatic Pilot simulator according to claim 1, which is characterized in that the bracket (1) includes phase To two supporting legs (11) of setting, the outer wall of the driving part (2) is provided with two support shafts (21), two support shafts (21) two supporting legs (11) are installed on, correspondingly with the fixation driving part (2).
10. a kind of automatic Pilot simulator, including steering mechanism, which is characterized in that the steering mechanism is in claim 1-9 The steering mechanism of described in any item automatic Pilot simulators.
CN201821118500.5U 2018-07-13 2018-07-13 A kind of automatic Pilot simulator and its steering mechanism Active CN208907856U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821118500.5U CN208907856U (en) 2018-07-13 2018-07-13 A kind of automatic Pilot simulator and its steering mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821118500.5U CN208907856U (en) 2018-07-13 2018-07-13 A kind of automatic Pilot simulator and its steering mechanism

Publications (1)

Publication Number Publication Date
CN208907856U true CN208907856U (en) 2019-05-28

Family

ID=66612527

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821118500.5U Active CN208907856U (en) 2018-07-13 2018-07-13 A kind of automatic Pilot simulator and its steering mechanism

Country Status (1)

Country Link
CN (1) CN208907856U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110186698A (en) * 2019-06-02 2019-08-30 深圳市中智仿真科技有限公司 A kind of automobile simulator steering mechanism
CN111618834A (en) * 2020-05-13 2020-09-04 中汽数据(天津)有限公司 Steering device special for automobile driving robot
CN112767760A (en) * 2020-12-14 2021-05-07 北方信息控制研究院集团有限公司 Compound portable equipment simulation training equipment
CN114377380A (en) * 2022-01-13 2022-04-22 北京乐客灵境科技有限公司 Simulated racing car driving control system and realization method thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110186698A (en) * 2019-06-02 2019-08-30 深圳市中智仿真科技有限公司 A kind of automobile simulator steering mechanism
CN111618834A (en) * 2020-05-13 2020-09-04 中汽数据(天津)有限公司 Steering device special for automobile driving robot
CN112767760A (en) * 2020-12-14 2021-05-07 北方信息控制研究院集团有限公司 Compound portable equipment simulation training equipment
CN114377380A (en) * 2022-01-13 2022-04-22 北京乐客灵境科技有限公司 Simulated racing car driving control system and realization method thereof

Similar Documents

Publication Publication Date Title
CN208907856U (en) A kind of automatic Pilot simulator and its steering mechanism
US6557662B1 (en) Magneto-rheological simulated steering feel system
CN102176291B (en) Steering wheel road feel simulating device with adjustable rotating angle range
CN109733468A (en) A kind of steering system and method and vehicle
JP2019529891A (en) Modular test bench for the entire vehicle prepared for travel
AU2020372379B2 (en) Steering system and vehicle
US20200070878A1 (en) Vehicle steering control system, vehicle and control method
BR112018071295A2 (en) electric vehicle control method and electric vehicle control device
CN107705663A (en) Variable setting angle driving simulator with power sense feedback
CN106197987A (en) A kind of electromagnetic brake fatigue experimental device
CN203337386U (en) An engine tilt test apparatus
EP4371833A3 (en) Leaning vehicle
CN201971062U (en) Steering control system for electric vehicle
KR101820620B1 (en) Rotation drive device
CN102663919A (en) Simulation steering system of automotive driving simulator
CN205375887U (en) Steering wheel feedback device
JP2006184041A5 (en)
CN107369355A (en) The steering wheel feedback device and method of a kind of automobile driving simulator
US6190279B1 (en) Power transmission system with a stall prevention feature
KR101688181B1 (en) Reliability test system of pulley for vehicle with operation panel
CN210271477U (en) Automobile electric power steering system teaching aid
CN208903468U (en) A kind of steering wheel feedback device of automobile driving simulator
CN221563205U (en) Simulated steering device and automobile simulated driver
CN207534802U (en) Rotation system
CN109584672A (en) A kind of driving simulator transfer of gear position limiting and encoding measurement

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant