Method and device for controlling a vehicle windshield wiper system.
The touchscreen-based windshield wiper control system addresses manual complexity and automatic reliability issues by displaying a large wiper button on the vehicle's screen for intuitive activation, improving safety and reducing mechanical wear.
Patent Information
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- STELLANTIS AUTO SAS
- Filing Date
- 2024-10-21
- Publication Date
- 2026-04-24
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
Title of the invention: Method and device for controlling a vehicle windshield wiper system. technical field
[0001] The invention relates to methods and devices for controlling a windshield wiper system of a vehicle, in particular but not exclusively a motor vehicle. The invention relates in particular to a method and device for controlling the display of a trigger button for a vehicle's windshield wiper system. Technological background
[0002] Modern vehicles are equipped with a windshield wiper system configured to activate / deactivate the operation of the wipers, particularly the front windshield wipers, via a control button. The wiper system sets the wiper blades in motion, which sweep the windshield surface rhythmically to remove raindrops. This operation helps maintain a clear view of the road and ensures the safety of the driver and passengers.
[0003] The front windshield wiper system is controlled by manually operating a control device generally located on the vehicle's steering wheel. Such a control device corresponds, for example, to a stalk switch under the steering wheel or a control module. The same stalk switch or module is generally used to control different vehicle systems or components, for example, to control the windshield washer system and the turn signals on one side of the vehicle.
[0004] Manually controlling the windshield wiper system via the stalk or control module can be complicated and unintuitive, as the visibility of the control element on the stalk or control module is reduced due to its location behind and / or below the steering wheel. In heavy rain, for example, visibility is reduced, requiring the driver to pay closer attention to the road. The driver, who must focus more intently on the road as visibility decreases, may find it difficult to quickly use the stalk to activate the wiper system.
[0005] Manipulating the control switch or control module also generates safety risks for the vehicle, as the driver's attention to activating the wipers via the wiper system may be reduced due to this complexity and / or poor visibility.
[0006] In the latest vehicles, the windshield wipers can be activated automatically by receiving data from integrated rain sensors. These Sensors detect the presence of water on the windshield and activate the system without requiring manual intervention. However, once wet, the sensors don't always distinguish between rain and frost. This poses a major problem because if the wipers activate while immobilized by a layer of frost on the windshield, it could damage the mechanism or even break the motors that power the wipers. For this reason, the automatic wiper function is often deactivated by default each time the vehicle is started. The user must manually reactivate this option, which can sometimes be overlooked or forgotten.
[0007] In other cases, the sensitivity of the sensors is deliberately reduced to avoid any risk of breakage due to frost, but this can lead to a delay in the activation of the windshield wipers, particularly during light showers. Summary of the present invention
[0008] One object of the present invention is to solve at least one of the problems of the technological background described above.
[0009] An object of the present invention is, for example, to facilitate the control or command of a vehicle's windshield wiper system.
[0010] Another object of the present invention is, for example, to minimize the time lost by the driver in finding the control button for the windshield wiper system.
[0011] According to a first aspect, the present invention relates to a method for controlling a windshield wiper system of a vehicle, the vehicle having a display system comprising a touch screen, the method being implemented by a processor and comprising the following steps: - receipt of initial data indicating the detection of rain and / or snow on the vehicle's front windshield - display control of a wiper system control button on a main display area of the touchscreen according to an initial graphical representation based on initial data, the size of the control button according to the initial graphical representation being greater than a first determined threshold, - reception of second data points representing a touch press on the control button, - transmission of third data representing a command to activate the wiper system to a wiper system controller, the transmission being triggered by the reception of the second data.
[0012] Detecting the presence of rain and / or snow on the vehicle's windshield allows for a significant response depending on driving conditions, increasing vehicle safety. Displaying a large-sized windshield wiper system control button on the touchscreen, i.e., larger than a predetermined threshold, allows for quick and intuitive operation compared to a physical button or small touchscreen, without the driver needing to take their attention away from the road to look for the button, improving driver attention to the road, and thus improving the safety of the vehicle and other road users.
[0013] According to one variant, the first threshold represents a ratio between the size of the control button and a total size of a main display area of the touch screen.
[0014] According to one variant, the first threshold is equal to 90%.
[0015] According to one variant, the first threshold is equal to 50%.
[0016] According to another variant, the first threshold is configurable via an HMI (Human-Machine Interface) Man-Machine) of the vehicle.
[0017] According to yet another variant, the method further includes a step of controlling the display of the wiper system control button on the touch screen according to a second graphic representation, a size of the control button according to the second graphic representation being less than a second threshold, the second threshold being less than the first threshold.
[0018] According to another variant, the display of the control button according to the second graphic representation is carried out on a secondary display area of the touch screen.
[0019] According to a second aspect, the present invention relates to a control device for a windshield wiper system of a vehicle, the device comprising a memory associated with a processor configured for the implementation of the steps of the process according to the first aspect of the present invention.
[0020] According to a third aspect, the present invention relates to a vehicle, for example of the automobile type, comprising a device as described above according to the second aspect of the present invention.
[0021] According to a fourth aspect, the present invention relates to a computer program which includes instructions adapted for carrying out the steps of the process according to the first aspect of the present invention, in particular when the computer program is executed by at least one processor.
[0022] Such a computer program may use any programming language, and be in the form of source code, object code, or an intermediate code between source code and object code, such as in a partially compiled form, or in any other desirable form.
[0023] According to a fifth aspect, the present invention relates to a computer-readable recording medium on which is recorded a computer program comprising instructions for carrying out the steps of the process according to the first aspect of the present invention.
[0024] On the one hand, the recording medium can be any entity or device capable of storing the program. For example, the medium may include a means storage, such as a ROM, CD-ROM or microelectronic circuit type ROM, or a magnetic recording medium or a hard disk drive.
[0025] On the other hand, this recording medium can also be a transmissible medium such as an electrical or optical signal, such a signal being able to be transmitted via an electrical or optical cable, by conventional or radio frequency, by self-directing laser beam, or by other means. The computer program according to the present invention can, in particular, be downloaded from an Internet-type network.
[0026] Alternatively, the recording medium may be an integrated circuit in which the computer program is incorporated, the integrated circuit being adapted to execute or to be used in the execution of the process in question. Brief description of the figures
[0027] Other features and advantages of the present invention will become apparent from the description of the particular and non-limiting embodiments of the present invention below, with reference to the attached Figures 1 to 7, in which:
[0028] [Fig-1] schematically illustrates part of a vehicle's passenger compartment, according to a example of a particular embodiment of the present invention;
[0029] [Fig.2] schematically illustrates a screen of the vehicle of [Fig.1], according to a first a particular and non-limiting example of a realization of the present invention;
[0030] [Fig.3] schematically illustrates the vehicle screen of [Fig.1], according to a second a particular and non-limiting example of a realization of the present invention;
[0031] [Fig.4] schematically illustrates the vehicle screen of [Fig.1], according to a third a particular and non-limiting example of a realization of the present invention;
[0032] [Fig.5] schematically illustrates the vehicle screen of [Fig.1], according to a fourth a particular and non-limiting example of a realization of the present invention;
[0033] [Fig.6] illustrates a device configured to control a windshield wiper system of the vehicle of [Fig.1], according to a particular and non-limiting embodiment of the present invention.
[0034] [Fig.7] illustrates a flowchart of the different stages of a control process of a windshield wiper system of the vehicle of [Fig.1], according to a particular and non-limiting embodiment of the present invention. Description of examples of achievements
[0035] A method and a device for controlling a windshield wiper system of a vehicle will now be described in what follows with joint reference to Figures 1 to 7. The same elements are identified with the same reference signs throughout the description that follows.
[0036] The terms "first," "second" (or "firsts," "seconds"), etc., are used in this document by arbitrary convention to allow for the identification and distinction of different elements (such as operations, means, etc.) implemented in the embodiments described below. Such elements may be distinct or correspond to a single element, depending on the embodiment.
[0037] According to a particular and non-limiting embodiment of the present invention, the control of a windshield wiper system is implemented by one or more vehicle computers, in particular by one or more processors of this or these computers. The vehicle also includes a display system comprising a touchscreen interface, referred to as a touchscreen, controlled by a computer, for example the computer of the vehicle's infotainment system, referred to as the IVI computer (from the English "In-Vehicle Infotainment" or in French "Infodivertissement étoilé").
[0038] Initial data representing the detection of rain and / or snow on the vehicle's windshield are received. This initial data corresponds, for example, to rain sensor data indicating the presence of rain on the windshield. Following the receipt of this initial data, the control unit adjusts the display of the windshield wiper system control button according to a first graphical representation. The size of the control button in this first graphical representation is greater than a predetermined threshold to make the control button more easily visible and accessible to a vehicle user. Secondary data representing a touch input on the control button is received from the touchscreen interface, for example, when a user touches the touchscreen at the display location of the control button.In response to this second set of data, third sets of data representing a command to activate the wiper system are transmitted to a wiper system controller, for example to trigger the operation of the wipers.
[0039] Fig. 1 schematically illustrates a part of the passenger compartment of vehicle 10, according to a particular and non-limiting embodiment of the present invention.
[0040] Vehicle 10 corresponds, for example, to a vehicle with an internal combustion engine, with electric motor(s), or even a hybrid vehicle with an internal combustion engine and one or more electric motors. Vehicle 10 thus corresponds, for example, to a land vehicle, for example a car, a truck, a bus.
[0041] The vehicle 10 advantageously incorporates a windshield wiper system configured to control the activation or deactivation of the windshield wiper sweep of the vehicle 10.
[0042] In one embodiment of the present invention, the vehicle 10 includes a switch 11 configured to control various functions of the vehicle 10, for example the operation of the windshield washer, or the turn signals of the vehicle 10.
[0043] According to one example, a function of the switch 11 allows the activation and deactivation of the vehicle wiper sweep 10.
[0044] The vehicle 10 includes a display system comprising a touch screen 12 and a computer configured to control the display of content(s) of a graphical human-machine interface, known as an HMI, on the touch screen 12. The computer corresponds, for example, to the computer of the infotainment system, known as the IVI computer (from the English "In-Vehicle Infotainment" or in French "Infodivertissement étoilé") of the vehicle 10.
[0045] The touch screen 12 corresponds for example to an LCD type screen (from the English "Liquid Crystal Display" or in French "Display à cristals liquide"), for example of type TFT (from the English "Thin-Film Transistor" or in French "Transistor en film mince"), or OLED (from the English "Organic Light-Emitting Diode" or in French "Diode électroluminescente organique").
[0046] [Fig.2] schematically illustrates the touch screen 12, according to a particular and non-limiting embodiment of the present invention.
[0047] According to one embodiment, the touch screen 12 consists of a main display area 21 and a secondary display area 22. For example, the main display area 21 is used to display a set of information for the driver and / or passengers of the vehicle 10, for example navigation information, or information relating to the operating status of the vehicle 10. According to an embodiment illustrated in [Fig. 2], the secondary display area 22 is used to display various touch buttons for controlling systems of the vehicle 10, for example a windshield wiper system control button shown according to a second graphic representation 220.
[0048] According to another embodiment, the touch screen 12 consists of a single main display area 21, occupying the entire available display area of the touch screen 12, for example in the case where the vehicle 10 has a control 11 and / or a center console including physical buttons, not requiring the display of such buttons on the touch screen 12.
[0049] The touchscreen 12 is configured to display content for the driver and passengers of the vehicle 10. The touchscreen 12 is also configured to allow the driver and / or passengers of the vehicle 10 to interact with one or more systems embedded in the vehicle 10 via a human-machine interface (HMI) displayed on the touchscreen 12. For example, the touchscreen 12 is configured to interact with the vehicle's IVI system and / or wiper system 10.
[0050] The vehicle display system 10 is connected in communication with the vehicle wiper system 10, for example the computer in charge of the display system (for example the IVI computer) is connected in communication to the computer (also called controller) in charge of the wiper system via one or more data buses of the vehicle 10's on-board network.
[0051] A problem that arises then concerns the driver of vehicle 10 pressing a physical control button for the windshield wiper system, for example on the stalk 11, when activation of the wipers is necessary, for example during heavy rain. Activating the correct function on the stalk 11 requires increased precision from the driver of vehicle 10, while their attention must be focused on the road, as visibility decreases as rain accumulates on the windshield.
[0052] Furthermore, in the case of an automatic wiper activation function, this function may not be activated automatically when the vehicle 10 is started, and the driver may have forgotten to activate the function. Thus, during heavy rain that reduces visibility and requires the driver of vehicle 10 to react quickly, the actions necessary to reactivate the function or switch to manual wiper activation via the stalk 11 may confuse the driver and reduce their attention to the road.
[0053] A control process for the vehicle 10 wiper system is advantageously implemented by one or more processors, for example one or more processors of the IVI computer and / or one or more processors of the computer or controller in charge of the wiper system.
[0054] In a first operation of the process, at least one processor of the vehicle 10, for example the IVI computer or a set of computers, receives initial data representative of a detection of the presence of rain and / or snow on a windshield of the vehicle 10.
[0055] According to one embodiment, this initial data is received, for example, from a rain sensor on the vehicle 10. This sensor, for example of the optoelectronic type, detects raindrops on the windshield by means of an infrared measurement. For example, the initial data corresponds to the current amount of rain detected on a windshield by the rain sensor.
[0056] According to one variant, this initial data is, for example, received from a vehicle detection camera 10. This camera identifies the raindrops present on a windshield of the vehicle 10. For example, the initial data corresponds to a current amount of rain detected on a windshield by the camera.
[0057] In a second operation of the process, illustrated in [Fig.3], the display of a wiper system control button is controlled in such a way that the button is displayed on the main display area 21 of the touch screen 12 according to a first graphic representation 320, the size of the control button according to the first graphic representation 320 being greater than a first determined threshold.
[0058] The control button is displayed in a determined content of a human-machine interface, called HMI, which content is displayed on the touch screen 12.
[0059] The first graphic representation 320 represents, for example, a vehicle windscreen and a windscreen wiper.
[0060] The fact that the size of the control button according to the first graphic representation 320 is greater than a first determined threshold, allows a display easily visible to the driver on the touch screen 12, to quickly trigger the activation of the windshield wiper system.
[0061] According to one embodiment, the first threshold represents a ratio between the size of the control button according to the first graphic representation 320 and the total size of the main display area 21 of the touch screen 12. This ratio is expressed as a percentage of the total size of the main display area 21 occupied by the control button according to the first graphic representation 320.
[0062] A display control of graphic content or any graphic object (text, pictogram, icon, control button, indicator, etc.) includes a rendering of the graphic content or graphic object, such rendering corresponding to a set of operations performed by one or more processors on the pixels of one or more images of the graphic content to be displayed on the touch screen 12. For example, the rendering consists of associating to a set of pixels of an image pixel data (for example color data expressed in an RGB (Red, Green, Blue) type space) associated with each graphic object.
[0063] The display control of the control button according to the first graphical representation thus includes the transmission of control signals to the touch screen 12 to modify the values associated with the pixels of the touch screen 12 at the location intended to display the control button according to the first graphical representation 320 (or any graphical object).
[0064] According to one particular embodiment, the first threshold is equal to 90%. Thus, the control button will be displayed with a size greater than 90% of the size of the main display area 21, as illustrated in [Fig. 3]. A first threshold of 90% informs the driver of the urgency to activate the windshield wiper system because visibility is reduced. Another advantage is that it allows the driver to press the control button without looking at the 12-inch touchscreen, while keeping your eyes fixed on the road.
[0065] According to another particular embodiment, the first threshold is equal to 50%. Thus, the control button will be displayed with a size greater than 50% of the size of the main display area 21, as illustrated in Figures 4 and 5. For example, a first threshold of 50% makes it easier for the driver to touch the control button, while keeping a display area available on the main display area to show other information useful to the driver for ensuring control and supervision of the vehicle 10, for example, navigation information.
[0066] According to an embodiment illustrated by [Fig.4], the first graphic representation 420 occupies the left part of the main display area of the touch screen 12, and the right part of the main display area of the touch screen 12 is available to display other information.
[0067] According to an embodiment illustrated by [Fig.5], the first graphic representation 520 occupies the upper part of the main display area of the screen 12, and the lower part of the main display area of the screen 12 is available to display other information.
[0068] According to another embodiment, the first threshold represents dimensions in pixels of a height and a width of a minimum rectangular area on which to display the control button.
[0069] According to one embodiment, the first threshold is configurable via a vehicle HMI (Human-Machine Interface) 10. For example, the first threshold is configurable by selecting its value from a menu or page of the HMI. The driver selects a threshold according to their preferences, for example, a high threshold if the driver wants to make pressing the control button easier, as shown in the first graphic representation 320, 420, or 520.
[0070] In a third operation of the process, second data representing a touch press on the control button displayed according to the first graphic representation 320, 420 or 520 are received, following a touch press by a user (for example the driver of the vehicle 10) on the control button displayed on the touch screen 12.
[0071] A touch press on the control button displayed according to the first graphic representation 320, 420 or 520 sends information to the IVI computer so that the latter implements one or more functions associated with the command corresponding to the touch press.
[0072] The second data representing a touch press are for example received via one or more data buses linking the touch interface of the screen (or a computer controlling such a touch interface where applicable) and the IVI computer.
[0073] A touch press corresponds to a short or brief touch press in which the duration of the press on the control button is less than a threshold duration (for example, equal to 500 or 1000 ms). According to one embodiment, a touch press corresponds to a long touch press in which the duration of the press on the control button is greater than the threshold duration (for example, equal to 500 or 1000 ms).
[0074] In a fourth operation of the process, the IVI computer transmits third data representing a command or request to activate the wiper system to the wiper system controller, the transmission of the third data being triggered by the reception of the first data by the IVI computer.
[0075] These third data are for example transmitted via one or more data buses linking the IVI computer and a control computer for the wiper system.
[0076] The activation command or request enables the windshield wiper system to be activated, and triggers the operation of the wiper blades to remove rain from the windshield of vehicle 10.
[0077] According to one embodiment, the display time of the control button according to the first graphic representation 320, 420, or 520 on the main display area of the touchscreen 12 is a fixed duration. For example, the display time of the control button according to the first graphic representation 320, 420, or 520 on the main display area of the touchscreen 12 is 10, 15, or 20 seconds. The driver thus has a period of time to decide whether to press the control button, for example, if the vehicle 10 is currently in a turn requiring the driver to control the steering wheel with both hands, and therefore a delay between the appearance of the control button according to the first graphic representation 320, 420, or 520 and the driver's opportunity to press it.
[0078] According to another example, the display time of the control button, according to the first graphic representation 320, 420, or 520 on the main display area 21 of the touchscreen 12, depends on the initial data. For example, the display time is longer if the initial data indicates an amount of rain resulting in very low visibility (below a predetermined threshold) on the windshield of the vehicle 10.
[0079] According to one embodiment of the present invention, the control button shown in the first graphic representation 320, 420, or 520 on the main display area of the touchscreen 12 disappears upon receipt of the second data. This second data indicates that a touch has been detected on the control button, and it is therefore no longer necessary to display this control button in the first graphic representation 320, 420, or 520. In other words, the reception the second data also triggers an end-of-display control of the control button according to the first graphic representation 320, 420 or 520, the content displayed on the touch screen 12 then corresponding to the content displayed before the display of the control button according to the first graphic representation 320, 420 or 520.
[0080] According to one embodiment, the process further comprises a display control operation for the wiper system control button on the touchscreen 12 according to a second graphical representation 220, the size of the control button according to the second graphical representation 220 being less than a second threshold, the second threshold being less than the first threshold. This embodiment makes it possible to maintain a reduced-size control button available on the touchscreen 12, for example, when the control button according to the first graphical representation 320, 420, or 520 disappears from the touchscreen 12.
[0081] According to one embodiment, the display of the control button according to the second graphic representation 220 is carried out on a secondary display area 22 of the touch screen 12.
[0082] The secondary display area 22 corresponds for example to a lower band of the touch screen 12, representing one or more control buttons commanding the activation of one or more systems of the vehicle 10, one of these control buttons being the control button of the windshield wiper system 10 according to the second graphic representation 220.
[0083] Figure 6 schematically illustrates a device 6 configured for the control of a A vehicle display system and / or a system for controlling a vehicle's windshield wiper system, for example vehicle 10, according to specific and non-limiting embodiments of the present invention. Device 6 corresponds, for example, to a device embedded in vehicle 10, for example a computer.
[0084] Device 6 is, for example, configured to carry out the operations described opposite Figures 1 to 5 and / or the steps of the process described opposite [Fig. 7]. Examples of such a device 6 include, but are not limited to, embedded electronic equipment such as a vehicle's on-board computer, an electronic control unit such as an ECU (Electronic Control Unit), a smartphone, a tablet, or a laptop computer. The elements of device 6, individually or in combination, can be integrated into a single integrated circuit, into several integrated circuits, and / or into discrete components. Device 6 can be implemented in the form of electronic circuits or software (or computer) modules, or a combination of electronic circuits and software modules.
[0085] The device 6 comprises one (or more) processor(s) 60 configured to execute instructions for carrying out the steps of the process and / or for execution instructions from the software embedded in the device 6. The processor 60 may include integrated memory, an input / output interface, and various circuits known to those skilled in the art. The device 6 further includes at least one memory 61, for example, volatile and / or non-volatile memory, and / or includes a memory storage device that may include volatile and / or non-volatile memory, such as EEPROM, ROM, PROM, RAM, DRAM, SRAM, flash, magnetic disk, or optical disk.
[0086] The computer code of the embedded software(s) including the instructions to be loaded and executed by the processor is for example stored on memory 61.
[0087] According to various particular and non-limiting embodiments, the device 6 is coupled in communication with other similar devices or systems and / or with communication devices, for example a TCU (Telematic Control Unit), for example via a communication bus or through dedicated input / output ports.
[0088] According to a particular and non-limiting embodiment, the device 6 includes a block 62 of interface elements for communicating with external devices. The interface elements of the block 62 include one or more of the following interfaces: - radio frequency RF interface, for example of the Wi-Fi® type (according to IEEE 802.11), for example in the 2.4 or 5 GHz frequency bands, or of the Bluetooth® type (according to IEEE 802.15.1), in the 2.4 GHz frequency band, or of the Sigfox type using UBN (Ultra Narrow Band) radio technology, or LoRa in the 868 MHz frequency band, LTE (Long-Term Evolution), LTE-Advanced; - USB interface (from the English "Universal Serial Bus" or "Universal Serial Bus" in French); - HDMI interface (from the English "High Definition Multimedia Interface", or "High Definition Multimedia Interface" in French); - LIN interface (from the English "Local Interconnect Network", or in French "Réseau interconnecté local").
[0089] According to another particular and non-limiting embodiment, the device 6 includes a communication interface 63 which enables communication with other devices (such as other computers in the embedded system) via a communication channel 630. The communication interface 63 corresponds, for example, to a transmitter configured to transmit and receive information and / or data via the communication channel 630. The communication interface 63 corresponds for example to a wired network of type CAN (from the English "Controller Area Network" or in French "Réseau de contrôlers"), CAN FD (from the English "Controller Area Network Flexible Data-Rate" or in French "Réseau de contrôlers à débit de données flexible"), FlexRay (standardized by the ISO 17458 standard) or Ethernet (standardized by the ISO / IEC 802-3 standard).
[0090] According to a particular and non-limiting embodiment, the device 6 can provide output signals to one or more external devices, such as a display screen 640, touch or not, one or more speakers 650 and / or other peripherals 660 (projection system) via output interfaces 64, 65 and 66 respectively. According to a variant, one or more of the external devices is integrated into the device 6.
[0091] Figure 7 illustrates a flowchart of the different steps in a method for controlling a windshield wiper system of a vehicle, for example vehicle 10, according to a particular and non-limiting embodiment of the present invention. The method is implemented, for example, by a device embedded in vehicle 10 or by device 6 of Figure 6.
[0092] In a first step 71, initial data representative of the detection of the presence of rain and / or snow on a windshield of the vehicle are received.
[0093] In a second step 72, the display of a wiper system control button is controlled to display this button on a main display area of the touch screen according to a first graphical representation based on the first data, a size of the button according to the first graphical representation being greater than a first determined threshold.
[0094] In a third step 73, second data representing a touch press on the control button are received.
[0095] In a fourth step 74, third data representing a command to activate the wiper system are transmitted to a wiper system controller, the transmission of the third data being triggered by the reception of the second data.
[0096] According to one variant, the variants and examples of the operations described in relation to one of Figures 1 to 5 apply to the steps of the process in [Fig.7].
[0097] Of course, the present invention is not limited to the embodiments described above but extends to a method for displaying a button representing a vehicle's windshield wiper system in various graphic representations, which would include secondary steps without departing from the scope of the present invention. The same would apply to a device configured for implementing such a method.
[0098] The present invention also relates to a vehicle, for example an automobile or more generally a land motor vehicle, comprising the device 6 of [Fig.6] or a display system comprising the device 6 of [Fig.6] connected in communication to a touch screen 12.
Claims
Demands
1. A method for controlling a windshield wiper system of a vehicle (10), said vehicle (10) having a display system including a touchscreen (12), said method being implemented by a processor and comprising the following steps: - receiving (71) first data representing the detection of the presence of rain and / or snow on a windshield of said vehicle (10) - display control (72) of a control button of said windshield wiper system on a main display area (21) of said touchscreen (12) according to a first graphical representation (320) as a function of said first data, a size of said control button according to said first graphical representation (320) being greater than a first determined threshold, - receiving (73) second data representing a touch press on said control button,- transmission (74) of third data representing an activation command for said windshield wiper system to a controller of said windshield wiper system, said transmission being triggered by the reception of said second data.
2. Method according to claim 1, wherein said first threshold represents a ratio between said size of said control button and a total size of said main display area of said touch screen (12).
3. Method according to claim 2, wherein said first threshold is equal to 90%.
4. Method according to claim 2, wherein said first threshold is equal to 50%.
5. Method according to any one of claims 1 to 4, wherein said first threshold is configurable via a human-machine interface of said vehicle (10).
6. A method according to any one of the preceding claims, comprising a display control step of said wiper system control button on said touch screen (12) according to a second graphic representation (220), a size of said control button according to said second graphic representation (220) being less than a second threshold, said second threshold being less than the first threshold.
7. Method according to claim 6, wherein the display of said control button according to said second graphic representation (220) is carried out on a secondary display area (22) of said touch screen (12).
8. Computer program comprising program code instructions for implementing the method according to any one of the preceding claims, when said program is executed by a processor.
9. Control device for a windshield wiper system of a vehicle (10), said control device comprising a memory associated with at least one processor configured for carrying out the steps of the method according to any one of claims 1 to 7.
10. Vehicle (10) comprising a device according to claim 9.
Citation Information
Patent Citations
MOTOR VEHICLE STEERING INSTALLATION AND ITS MANAGEMENT METHOD
FR3031717A1
Rhodococcus sp. BH5 strain with Se(IV) reducing ability and manufacturing method of Se nanoparticles using Rhodococcus sp BH5 strain
KR102531952B1
Adaptive Vehicle User Interface
US20110082620A1