VEHICLE CONTROL APPARATUS AND METHOD USING SWIVEL OPERATION OF SMART DEVICE
20220252219 · 2022-08-11
Assignee
Inventors
Cpc classification
G06F1/1694
PHYSICS
G06F3/04842
PHYSICS
G06F1/1652
PHYSICS
F16M13/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H04M1/0241
ELECTRICITY
G06F3/0346
PHYSICS
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
H04M1/72454
ELECTRICITY
G06F1/1626
PHYSICS
G06F3/0362
PHYSICS
International classification
F16M13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle control system using a swivel operation of a smart device may include: a smart device mounted on a holder within a vehicle; and a control unit configured to receive swivel data according to a swivel operation performed to the smart device, and change and display a vehicle function control screen.
Claims
1. A system for controlling a vehicle based on a swivel operation of a smart device, comprising: a processor; and a computer-readable medium in communication with the processor and storing instructions that, when executed by the processor, cause the processor to control the vehicle control system to perform: displaying, on a display of a vehicle, a vehicle function control screen; receiving swivel data representing a swivel operation performed with respect to a smart device mounted on a holder of the vehicle; and changing, based on the received swivel data, the vehicle function control screen displayed on the display.
2. The system of claim 1, wherein the smart device is configured to perform a steering wheel function of the vehicle.
3. The system of claim 1, wherein the smart device comprises a connection link, and at least a portion of the smart device is swiveled by a rotation of the connection link.
4. The system of claim 1, wherein: the smart device comprises a flexible display; and the swivel is generated by twisting the flexible display.
5. The system of claim 1, wherein the swivel operation comprises a rotation of the smart device.
6. The system of claim 1, wherein the instructions, when executed by the processor, further cause the processor to control the vehicle control system to perform: receiving a user input via the displayed vehicle function control screen; and transmitting a function execution command corresponding to the received user input.
7. The system of claim 1, wherein the smart device is configured to return to an initial shape after being rotated by the swivel operation.
8. A method of controlling a vehicle based on a swivel operation of a smart device, comprising: displaying, on a display of a vehicle, a vehicle function control screen; receiving swivel data representing a swivel operation performed with respect to a smart device mounted on a holder of the vehicle; and changing, based on the received swivel data, the vehicle function control screen displayed on the display.
9. The method of claim 8, wherein the smart device is configured to perform a steering wheel function of the vehicle.
10. The method of claim 8, wherein the smart device comprises a connection link, and at least a portion of the smart device is swiveled by a rotation of the connection link.
11. The method of claim 8, wherein the smart device comprises a flexible display, and the swivel data is generated by twisting the flexible display.
12. The method of claim 8, wherein the swivel operation comprises a rotation of the smart device.
13. The method of claim 8, further comprising: receiving a user input via the displayed vehicle function control screen; and transmitting a function execution command corresponding to the received user input.
14. The method of claim 8, wherein the smart device is configured to return to an initial shape after being rotated by the swivel operation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035] The above-described purpose of the present disclosure and the advantages and characteristics of the present disclosure and a method for achieving the advantages and characteristics will be clearly understood through embodiments to be described below in detail with reference to the accompanying drawings.
[0036] However, the present disclosure are not limited to the embodiments disclosed below, and may be embodied in various different forms. These embodiments are provided to make this disclosure thorough and complete and to fully convey the purpose, configuration and effect of the present disclosure to those skilled in the art to which the present disclosure pertains. The scope of the present disclosure is only defined by claims.
[0037] Terms used in this specification are used for describing exemplary embodiments while not limiting the present disclosure. The terms of a singular form may include plural forms unless particularly mentioned. The term such as “comprise” or “comprising” used in the specification specifies a component, step, operation and/or element, but does not exclude the presence or addition of other components, steps, operations and/or elements.
[0038] A vehicle control apparatus or system using a swivel operation of a smart device in accordance with an embodiment of the present disclosure includes a smart device held on a holder within a vehicle and a control unit configured to recognize swivel information acquired by a swivel operation applied to the smart device, and change and display a vehicle function control screen.
[0039] The smart device is mounted on the holder and performs a steering wheel function.
[0040] The smart device includes a connection link, and has a partial area which is swiveled by the rotation of the connection link.
[0041] The smart device includes a flexible display, and the control unit recognizes swivel information acquired by a twist of the flexible display.
[0042] With the smarted device rotated by a swivel operation, the control unit changes and displays the vehicle function control screen.
[0043] With the smart device returned to the shape before the rotation after the smart device is rotated by the swivel operation, the control unit transmits a function execution command according to a signal inputted through the vehicle function control screen.
[0044]
[0045]
[0046] In the present embodiment, a general smart device 100a may be used as illustrated in
[0047] Referring to
[0048] As illustrated in
[0049] Referring to
[0050] A user can grab the mounted smart device itself with his/her hand so as to perform the steering wheel manipulation, and can perform a front/rear swivel operation on the basis of a driver and a dashboard. This operation will be described below with reference to
[0051] Referring to
[0052] In accordance with the embodiment of the present disclosure, the user may rotate the smart device or the steering wheel having the smart device mounted thereon at a predetermined angle by swiveling the smart device or the steering wheel, and manipulate the rotated smart device or the rotated steering wheel. With the smart device or the steering wheel returned to the basic shape at the angle before the rotation after the smart device or the steering wheel is rotated at the predetermined angle, the user can manipulate a function changed by the swivel operation.
[0053] Referring to
[0054] Referring to
[0055] According to a swivel operation of the user, the smart device 100a and the holder 200 are rotated so that the screen of the smart device 100a is changed to a preset function control screen, and provides UI feedback.
[0056] Referring to
[0057] At this time, the user may fix a left area of the smart device 100b, and perform a swivel operation on a right area thereof. On the contrary, the user may fix the right area of the smart device 100b, and perform a swivel operation on the left area thereof.
[0058] Referring to
[0059] Referring to
[0060] Referring to
[0061] As described above, the user may rotate the smart device 100a at the predetermined angle by performing a swivel operation on the smart device 100a mounted on the steering wheel 300, and manipulate the rotated smart device 100a. With the smart device 100a returned to the basic shape at the angle before the rotation after the smart device 100a is rotated at the predetermined angle, the user can manipulate the function changed by the swivel operation. An elastic member is disposed to return the smart device to the basic shape after the swivel operation.
[0062] Referring to
[0063] That is, in the present embodiment, the steering wheel 300 itself is not swiveled, but the smarted device 100a mounted on the steering wheel 300 is swiveled to change the vehicle function control screen UI.
[0064] As described above, the user may rotate the smart device 100a at a predetermined angle by performing a swivel operation on the smart device 100a mounted on the steering wheel 300, and manipulate the rotated smart device 100a. With the smart device 100a returned to the basic shape at the angle before the rotation after the smart device 100a is rotated at the predetermined angle, the user can manipulate a function changed by the swivel operation. An elastic member is disposed on the swivel rotating part so as to return the smart device to the basic shape after the swivel operation.
[0065] Referring to
[0066] The smart device 100b is a display separate-type smart device, and is divided into preset areas which are connected through the rotatable connection link 110.
[0067] Therefore, as illustrated in
[0068] At this time, as a specific area is swiveled, a different vehicle function control screen is displayed.
[0069] Referring to
[0070] The user may rotate the smart device 100b at a predetermined angle by performing a swivel operation on the smart device 100b, with the smart device 100b mounted on the steering wheel 300, and manipulate the rotated smart device 100b. With the smart device 100b returned to the basic shape at the angle before the rotation after the smart device 100b is rotated at the predetermined angle, the user can manipulate the function changed by the swivel operation. An elastic member is disposed on the connection link so as to return the smart device to the basic shape after the swivel operation.
[0071] Referring to
[0072] The smart device 100c is a flexible smart device, and is mounted on the steering wheel 300 by the holder 200.
[0073] The user can perform a swivel operation on the smart device 100c by twisting the wrist joints of both hands of the user who grabs the steering wheel 300.
[0074] At this time, since the user swivels the steering wheel 300 itself having the smart device 100c mounted thereon, the steering wheel 300 having the smart device 100c mounted thereon by the holder 200 includes a rotating part 310.
[0075] The user rotates the steering wheel 300 and the smart device 100c at a predetermined angle by performing a swivel operation on the steering wheel 300 and the smart device 100c, with the smart device 100c mounted on the steering wheel 300. With the steering wheel 300 and the smart device 100c returned to the basic shapes at the angle before the rotation after the steering wheel 300 and the smart device 100c are rotated at the predetermined angle, the user manipulates a function changed by the swivel operation. An elastic member is included in the rotating part 310, in order to return the steering wheel 300 to the basic shape.
[0076] In accordance with the embodiment of the present disclosure, a swivel state is recognized by a swivel rotating part sensor (e.g., potentiometer, encoder or angle sensor) applied to the front/rear of a smart device holder.
[0077] Furthermore, a gyro sensor included in the smart device itself is used to recognize a signal for a front/rear swivel operation.
[0078] When the smart device is a flexible display device, the contraction and expansion of a twisted area formed by twisting a flexible display screen is recognized in order to recognize the swivel state of the smart device.
[0079] A service agent receives an accelerometer (Y=−170+8.49/0+0.33/+170−8.87) and gravity (Y=+7.75˜Y=−7.75), normalizes values of −170 to +170 to a range value, and transmits angle range data (e.g., ROTATE 0 to ROTATE 1024) to middleware.
[0080] The middleware transmits an e-corner control value to an e-corner module, and the e-corner module is rotated on the basis of the received range value.
[0081] While a steering wheel angle is decided, a gyro sensor signal input value for a steering operation is decided. Thus, the swivel state can be recognized through a change in gyro sensing value for a front/rear swivel operation, in addition to a preset value. In this case, the change in gyro sensing value is the largest in a Z-axis direction.
[0082] Referring to
[0083] As illustrated in
[0084]
[0085]
[0086] In accordance with the embodiment of the present disclosure, manipulation setting can be performed on the basis of a focused area on an internal display of a vehicle.
[0087]
[0088] In accordance with the embodiment of the present disclosure, manipulation setting can be performed on the basis of a focused area on the internal display of the vehicle.
[0089]
[0090]
[0091] The vehicle control system using a swivel operation of a smart device in accordance with the preset disclosure includes an input unit 1310 configured to receive swivel data or information of a smart device within a vehicle, a memory 1320 configured to store a program for displaying a vehicle function control screen by using the swivel information, and a processor 1330 configured to execute the program. The processor 1330 changes and displays the vehicle function control screen by using the swivel information.
[0092] The input unit 1310 receives the swivel information of the smart device, as a swivel rotating part included in a holder is rotated.
[0093] The input unit 1310 receives swivel information of a partial area of the smart device by the rotation of a connection link included in the smart device.
[0094] The input unit 1310 receives swivel information acquired by a twist of the screen of the smart device including a flexible display.
[0095] When the smart device including the flexible display is mounted on a steering wheel including a rotating part, the input unit 1310 receives swivel information which is acquired as a driver grabs and rotates the steering wheel.
[0096] With the smart device rotated by the swivel operation, the processor 1330 changes and displays the vehicle function control screen.
[0097] With the smart device returned to the shape before the rotation after the smart device is rotated by the swivel operation, the processor 1330 transmits a function execution command according to a signal inputted through the vehicle function control screen.
[0098]
[0099] The vehicle control method using a swivel operation of a smart device includes step S1410 of acquiring swivel information by checking a swivel state of a smart device and step S1420 of changing and displaying a vehicle function control screen according to the swivel state.
[0100] Step S1410 includes receiving the swivel information of the smart device, as a swivel rotating part included in a holder is rotated.
[0101] Step S1410 includes receiving swivel information of a partial area of the smart device by the rotation of a connection link included in the smart device.
[0102] Step S1410 includes receiving swivel information acquired by a twist of the screen of the smart device including a flexible display.
[0103] Step S1420 includes changing and displaying a vehicle function control screen, with the smart device rotated by the swivel operation.
[0104] Step S1420 includes transmitting a function execution command according to a signal inputted through the vehicle function control screen, with the smart device returned to the shape before the rotation after the smart device is rotated by the swivel operation.
[0105] The vehicle control method using a swivel operation of a smart device in accordance with the embodiment of the present disclosure may be implemented in a computer system or recorded in a recording medium. The computer system may include one or more processors, a memory, a user input device, a data communication bus, a user output device and a storage place. The above-described components perform data communication through the data communication bus.
[0106] The computer system may further include a network interface coupled to a network. The processor may be a CPU (Central Processing Unit), or a semiconductor device configured to process a command stored in the memory and/or the storage place.
[0107] The memory and the storage place may include various types of volatile or nonvolatile storage media. Examples of the memory may include a ROM (Read Only Memory) and RAM (Random Access Memory).
[0108] Therefore, the vehicle control method using a swivel operation of a smart device in accordance with the embodiment of the present disclosure may be implemented as a method which can be executed in a computer. When the vehicle control method using a swivel operation of a smart device in accordance with the embodiment of the present disclosure is performed in a computer device, computer-readable commands may perform the vehicle control method in accordance with the embodiment of the present disclosure.
[0109] The vehicle control method using a swivel operation of a smart device in accordance with the embodiment of the present disclosure may be implemented as computer-readable codes in a computer-readable recording medium. The computer-readable recording medium includes all types of recording media storing data which can be read by a computer system. Examples of the computer-readable recording media may include a ROM, RAM, magnetic tape, magnetic disk, flash memory, optical data storage device and the like. Furthermore, the computer-readable recording media may be stored and executed as codes which are distributed to computer systems connected through a computer communication network and read in a distributed manner.