1. Field of the Invention
The present invention discloses a system and method for interacting multi-screen in a car, and more particularly a system and method for interacting multi-screen in a car to perform remote operation, and information sharing.
2. Description of the Prior Art
As the automotive industry develops, cars are being equipped with more and more features. Cars may now be equipped with touch screens for the driver and the passengers giving them the freedom to choose from a variety of entertainment, such as music, radio, movie, internet, or games that they prefer. Since passengers may use their own device, the driver may not be affected and therefore increase the safety during driving and decrease the boredom of the passengers while travelling.
The secondary devices 20 and 30 at the back seat, similar to the main device 10, comprise touch screens 21 and 31, controllers 22 and 32, memories 23 and 33, DVD units 24 and 34, receiving units 25 and 35, sound cards 26 and 36, and connection interfaces 27 and 37. The secondary devices 20 and 30 and the main device 10 each have an independently operating controller. Although the devices can play movie or process files without disturbing one another, such system would have a high production cost.
Furthermore, when the secondary devices 20 and 30 and the main device 10 need to interact with each other, there is a need to use the main connection interface 17, and connection interfaces 27 and 37 or a wireless connection such as Bluetoothâ„¢ to establish an intranet connection between the devices within the car. The movie or the information to be shared is transformed to a transmission file and a wired or wireless connection is used to share to a designated recipient device. After the designated recipient device has received the transmission file, the transmission file needs to go through numerous operations for the recipient device to be able to view the shared movie or information. The numerous operations to be performed will divide the attention of the driver from driving and thus affect the safety of driving.
When there is a problem with operating one of the devices, i.e. the driver is not able to divide the attention to set the navigation system or children in the backseat are crying because they are not able to view cartoons, the passenger or the driver would have difficulty in accessing another device because the small space in the car makes it hard to move around. The passenger and driver are also not able to use the touch screens to perform interaction.
In another prior art (U.S. Pat. No. 6,243,645), the internet signal, the television signal, and the radio signal streamed are simultaneously received by the devices and the devices may interchange between the streamed signals to immediately display a same video on the main device and the secondary devices. Although the main device and the secondary devices may view the same image, the main device and the secondary devices are not able to independently operate and are also not able to use the touch screens to interact with other devices. Therefore, there is a need to develop a way for interacting multi-screen in a car.
An objective of the present invention is to provide a system and method for interacting multi-screen in a car having a memory of a main device configured to have frame buffers corresponding to the main device and at least one secondary device. A user interface is used to choose a touch screen to interact with and direct to a corresponding frame buffer of the touch screen to simultaneously display and control an image. Thereby, improve the interaction of each touch screens.
Another objective of the present invention is to provide a system for interacting multi-screen in a car that uses a controller of a main device in coordination with a memory to execute function selected in the user interface of each touch screen and transmit function frames. Thereby, components of the secondary device are simplified to decrease cost of production.
A further objective of the present invention is to provide a system and method for interacting multi-screen in a car that uses a memory of a main device to configure frame buffers corresponding to a plurality of icons to provide each touch screen with a variety of selections and direct the touch screen to a corresponding frame buffer to display a corresponding image. Thereby, the interaction operation is simplified.
To achieve the objective of the present invention, a main device of the system configures a main switch to turn on or turn off a power supply of the main device. A main touch screen of the main device is configured to display a user interface having a plurality of icons to select from. A controller of the main device in coordination with a memory of the main device is configured to generate a user interface image corresponding to the icon selected to display on the main touch screen and output sound using a sound card of the main device. Furthermore, a main connection interface configured to input/output video signals through a wired or a wireless connection. At least one secondary device configures a secondary connection interface to use a connection to connect to the main connection interface. The at least one secondary device has a secondary switch configured to turn on or turn off a power supply of the secondary device. When the controller of the main device detects the power supply of the secondary device is turned on, the user interface is transferred to a secondary touch screen of the secondary device where another icon is selected. The controller of the main device in coordination with the memory is configured to generate a user interface image corresponding to the another icon selected to display on the secondary touch screen and output sound using a sound card of the main device. The memory of the main device is configured to form a main frame buffer corresponding to the main device to store a user interface image on the main touch screen when the controller is performing function of the icon selected and at least one secondary frame buffer corresponding to the at least one secondary device. Each of the at least one secondary frame buffer is configured to store a user interface image on the secondary touch screen when the controller is performing function of the another icon.
The system uses the user interface image in the main frame buffer as default image to be displayed on the main touch screen. The user interface comprises a secondary touch screen icon and a main touch screen icon. When the secondary touch screen icon is selected on the main touch screen, the controller maintains the user interface image in the main frame buffer and directs the main touch screen to the secondary frame buffer for the main touch screen to receive the user interface image in the secondary frame buffer having the main touch screen and the secondary touch screen simultaneously display a same image to initiate interaction between the main touch screen and the secondary touch screen. After the interaction, the main touch screen icon is selected on the main touch screen. The controller maintains the user interface image in the secondary frame buffer and directs the main touch screen to the main frame buffer for the main touch screen to receive the user interface image of the main frame buffer and display the user interface image of the main frame buffer.
The system uses the user interface image in the secondary frame buffer as default image to be displayed on the secondary touch screen. When the main touch screen icon is selected on the secondary touch screen, the controller maintains the user interface image in the secondary frame buffer and directs the secondary touch screen to the main frame buffer for the secondary touch screen to receive the user interface image in the main frame buffer having the main touch screen and the secondary touch screen simultaneously display a same image to initiate interaction between the main touch screen and the secondary touch screen. After the interaction, the secondary touch screen icon is selected on the secondary touch screen. The controller maintains the user interface image in the main frame buffer and directs the secondary touch screen to the secondary frame buffer for the secondary touch screen to receive the user interface image of the secondary frame buffer and display the user interface image of the secondary frame buffer.
The memory of the main device is further configured to form a frequently executed icon frame buffer corresponding to a frequently executed icon such as navigation icon to store a user interface image when the controller is performing function of the frequently executed icon. When the frequently executed icon is selected, the controller in coordination with the memory is configured to perform a function corresponding to the frequently executed icon selected and update the user interface image stored in the frequently executed icon frame buffer at the same time. When the frequently executed icon is selected in the main touch screen/the secondary touch screen, the device is directed to the frequently executed icon frame buffer having the main touch screen/the secondary touch screen directly receive the user interface image in the frequently executed icon frame buffer and immediately display the user interface image in the frequently executed icon frame buffer. When the main touch screen/the secondary touch screen exits the frequently executed icon frame buffer, the controller continues to execute the function corresponding to the frequently executed icon in a background and continues to update the user interface image in the frequently executed icon frame buffer until the main device is turned off.
The method of operation of a system for interacting multi-screen in a car comprises turning on a power supply of a touch screen, displaying a user interface image stored in a corresponding frame buffer of a memory on the touch screen, transmitting the user interface image to the touch screen to provide a plurality of icons for selecting, directing the touch screen to a frame buffer of the memory corresponding to a touch screen icon when the touch screen icon of the plurality of icons is selected, the touch screen directly receiving a user interface image in the frame buffer corresponding to the touch screen icon, and operating and controlling the user interface image displayed on the touch screen.
The plurality of icons of the user interface of the method comprise the touch screen icon and a frequently executed icon. When the frequently executed icon is selected, the touch screen is directed to a frequently executed icon frame buffer corresponding to the frequently executed icon selected having the touch screen directly receive a user interface image in the frequently executed icon frame buffer and operate and control the user interface image displayed on the touch screen. When the icon selected is not the frequently executed icon or the touch screen icon, a function corresponding to the icon selected is performed and the user interface image of the corresponding frame buffer is updated having the touch screen receive the user interface image in the corresponding frame buffer and operate and control the image displayed on the touch screen.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
To achieve the objective of the present invention, preferred embodiments of the present invention are described in the following paragraphs together with some illustrations.
The main device 40 may be used as a main host of the car. The main device 40 comprises a main switch 41, a main touch screen 42, a controller 43, a memory 44, a DVD unit 45, a receiver unit 46, a main sound card 47 and a main connection interface 48. The main switch 41 may be configured to turn on or turn off a power supply of the main device 40. The controller 43 may be configured to detect if the power supply of the main device 40 is turned on. When the power supply of the main device 40 is turned on, a main touch screen 42 of the main device 40 may be configured to display a user interface 70 as shown in
The secondary device 50 may comprise a secondary connection interface 51, a secondary switch 52, a secondary touch screen 53, and a secondary sound card 54. The secondary connection interface 51 may use the connection 49 to connect to the main connection interface 48 of the main device 40. The secondary switch 52 may be configured to turn on or turn off a power supply of the secondary device 50. When the secondary switch 52 turns on the power supply of the secondary device 50, the controller 43 of the main device 40 may be configured to detect if the power supply of the secondary device 50 is turned on using the connection 49. The user interface 70 may then be transmitted to the secondary device 50 through the secondary connection interface 51 to allow the passenger to select from the plurality of icons 71. And according to the icon 71 selected, the controller 43 of the main device 40 in coordination with the memory 44 may be configured to perform a function of the icon 71 selected in the secondary touch screen 53. The generated image corresponding to the selected icon 71 in the secondary touch screen 53 may be displayed on the secondary touch screen 53 and a secondary sound card 54 may be used to output sound for use of the passenger. Aside from the secondary connection interface 51, the secondary switch 52, the secondary touch screen 53, and the secondary sound card 54, the secondary device 50, the secondary device 50 may also access the controller 43, the memory 44, the DVD unit 45 and the receiving unit 46 of the main device 40. Therefore, the components of the secondary device 50 may be simplified to decrease the cost of the system for interacting multi-screen in the car 2.
To allow the main device 40 and the secondary device 50 to access shared components quickly and smoothly, the memory 44 of the main device 40 may be configured as shown in
During the operation of the system for interacting multi-screen in the car 2, the main switch 41 may be used to turn on the power supply of the main device 40. The controller 43 may be used to detect if the power supply of the main device is turned on and have the main touch screen 42 display the user interface image in the main frame buffer 61 as a default. The user interface 70 shown in
The passenger may use the secondary switch 52 to turn on the power supply of the secondary device 50. The controller 43 of the main device 40 may be used to detect if the power supply of the secondary device 50 is turned on. The user interface image in the secondary frame buffer 62 is displayed as default on the secondary touch screen 53 when the secondary touch screen is turned on. The user interface 70 shown in
When the driver needs to discuss, for example, the car condition with the passenger, the passenger may access the user interface 70 and select a main touch screen icon 74. The controller 43 may maintain the user interface image in the secondary frame buffer 62. At the same time, the secondary touch screen 53 is directed to the main frame buffer 61. The secondary touch screen 53 may receive the image showing the car parameters being monitored from the main frame buffer 61. The secondary touch screen 53 and the main touch screen 42 may simultaneously display the image showing the car parameters being monitored as shown in
Similarly, when a passenger needs to interact with the driver, i.e. children sitting in the back are crying because they are not able to watch cartoons, the driver may access the user interface 70 and select a secondary touch screen icon 75. The controller 43 maintains the user interface image in the main frame buffer 61 and directs the main touch screen 42 to the secondary frame buffer 62 for the main touch screen 42 and the secondary touch screen 53 to receive the user interface image in the secondary frame buffer 62. The main touch screen 42 and the secondary touch screen 53 may simultaneously display video from the DVD unit 45 as shown in
Step S1: turn on a power supply of a device to turn on a touch screen;
Step S2: display a user interface image stored in a corresponding frame buffer of a memory on the touch screen;
Step S3: transmit the user interface image to the touch screen to provide a plurality of icons for selecting;
Step S4: determine if the selected icon is a touch screen icon; if the selected icon is not a touch screen icon, perform step S5; if that the selected icon is a touch screen icon, perform step S8;
Step S5: execute the function corresponding to the icon selected and update the user interface image in the corresponding frame buffer;
Step S6: display a user interface image in the corresponding frame buffer to the touch screen;
Step S7: operate and control the user interface image displayed on the touch screen;
Step S8: maintain the user interface image in the frame buffer and direct the touch screen to a frame buffer of the memory corresponding to a touch screen icon;
Step S9: display the user interface image of the frame buffer on the touch screen and return to step S7.
Therefore, according to the first embodiment of the method disclosed, the present invention may configure frame buffers to correspond to the touch screens in the memory. The user interface is used to select which of the touch screens to interact with. The touch screen is directed to the frame buffer of the memory corresponding to the touch screen icon selected. At the same time, the user interface image of the frame buffer is simultaneously displayed, operated, and controlled to improve the interaction between touch screens.
When the main device is turned on, the user interface image in the main frame buffer 61 may be displayed as default on the main touch screen 42. A frequently executed icon corresponding to the frequently executed icon frame buffer displayed on the user interface 70 may be selected by the driver. For example, the frequently executed icon selected may be a navigation icon 76. The controller 43 in coordination with the memory 44 may perform a function of the navigation icon 76 and generate a navigation image. At the same time, the user interface image stored in the navigation frame buffer 84 is updated. The navigation frame buffer 84 may be one of the frequently executed icon frame buffers. The main touch screen 42 is directed to the navigation frame buffer 84 to receive the user interface image in the navigation frame buffer 84 and have the main touch screen 42 displaying the navigation image as shown in
When the driver is not able to operate the main touch screen 42 and needs the passenger to help set the starting point F to end point D of the navigation, the passenger may select the navigation icon 76 from the user interface 70 from the secondary touch screen 53. The controller 43 maintains the user interface image of the secondary frame buffer 62 and directs the second touch screen 53 to the navigation frame buffer 84. Because the navigation frame buffer 84 already has a user interface image established by the main device 40, the function of the navigation icon 76 need not be re-executed. The secondary touch screen 53 may directly receive the user interface image of the navigation frame buffer 84 to immediately display the same navigation image as displayed in the main touch screen 42 and set the route R using the navigation image displayed on the secondary touch screen 53. After finishing setting of the route R, the passenger may select the secondary touch screen icon 75 from the user interface 70 displayed on the secondary touch screen 53. The controller 43 directs the secondary touch screen 53 back to the secondary frame buffer 62 and the secondary touch screen 53 returns to displaying the user interface image maintained in the secondary frame buffer 62. The main touch screen 42 of the driver is left to continue receiving the user interface image of the navigation frame buffer 84 to continue receiving navigation image as a reference during the drive.
If the driver does not need to refer to the navigation image, the main touch screen icon 73 may be selected from the user interface 70 displayed in the main touch screen 42 to receive the user interface image in the main frame buffer 61. The controller 43 may continue performing function of the navigation icon in the background to continue updating the user interface image in the navigation frame buffer 84 to allow the main touch screen 42 or the secondary touch screen 53 to immediately return to the navigation image upon request until the main device is turned off and, in effect, turning off the operation of the navigation frame buffer 84. Therefore, the present invention may use the user interface image of the frequently executed icon frame buffer 83 that is continuously operating to allow main device 40 of the driver and the secondary device 50 of the plurality of passengers to achieve quick synchronization and operate with the same image in order to improve interaction.
Step P1: turn on a power supply of a device to turn on a touch screen;
Step P2: display a user interface image stored in a corresponding frame buffer of a memory on the touch screen;
Step P3: transmit the user interface image to the touch screen to provide a plurality of icons for selecting;
Step P4: determine if the selected icon is a touch screen icon; if the selected icon is not a touch screen icon, perform step P5; If the selected icon is a touch screen icon, perform step P9;
Step P5: determine if the selected icon is a frequently executed icon; if the selected icon is not a frequently executed icon, perform step P6; if the selected icon is a frequently executed icon, perform step P9;
Step P6: execute the function corresponding to the icon selected and update the user interface image in the corresponding frame buffer;
Step P7: display a user interface image in the corresponding frame buffer to the touch screen;
Step P8: operate and control the user interface image displayed on the touch screen;
Step P9: maintain the user interface image in the frame buffer and direct the touch screen to a frame buffer of the memory corresponding to a touch screen icon or the frequently executed icon;
Step P10: the touch screen directly receives a user interface image in the frame buffer corresponding to the touch screen icon or the frequently executed icon and return to step P8.
The second embodiment of the present invention shows that the memory of the main device may not only be used to configure a main frame buffer or a secondary buffer but also be used to configure a frequently executed icon frame buffer. Not only giving each of the touch screens a variety of selection but also allowing the touch screens to be immediately directed to the frequently executed icon frame buffer to receive user interface image from the frequently executed icon frame buffer to be displayed on the touch screens. In doing so, the interaction operation among the touch screens is simplified.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.