Method for controlling a device for treating a vehicle windshield with a hydrophobic liquid

JP7686775B2Active Publication Date: 2025-06-02VALEO SYST DESSUYAGE SAS
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Patent Information

Application Number
JP2023560197
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-03-29
Filing Date
2022-03-25
Publication Date
2025-06-02
Estimated Expiration
2042-03-25

AI Technical Summary

Technical Problem

Existing methods for applying hydrophobic liquid to vehicle windshields require human intervention and periodic manual activation, which can lead to suboptimal operation and potential contamination of surroundings.

Method used

A method for controlling a treatment device that autonomously activates the application of hydrophobic liquid on vehicle windshields based on predefined criteria, including ambient brightness, vehicle location, operation status, and presence of occupants, ensuring optimal conditions for application.

Benefits of technology

The method ensures automatic and periodic application of hydrophobic liquid without user intervention, maintaining optimal windshield conditions and preventing environmental contamination.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to a control method (1) for controlling a processing device (30) for treating a windscreen (31) of a vehicle (3), said processing device (30) comprising at least one wiping system (300) with at least one spraying device (3000) having at least one opening (3000a) through which a hydrophobic liquid (Lq) can be sprayed onto said windscreen (31), said control method (1) comprising periodically executing at least one processing cycle, the steps of: - recovering at least one data item representative of the state of the vehicle; - processing the recovered at least one data item representative of the state of the vehicle; - verifying fulfillment of at least one criterion for activating the spraying device (3000) as a function of the processed at least one data item representative of the state of the vehicle; and - activating the spraying device if the at least one criterion for activating the spraying device is fulfilled.
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Description

[Technical field]

[0001] The present invention relates to a method for controlling a device for treating a vehicle windscreen, which is particularly, but not exclusively, applicable to motor vehicles. [Background technology]

[0002] The skilled person knows, in particular from the applicant's FR 3 068 938 A1, a method for controlling a device for treating a windscreen of a vehicle, the treatment device comprising at least one wiper blade, the control method comprising the step of activating the treatment device to spray a hydrophobic liquid onto the windscreen of the vehicle when the at least one wiper blade is in an elevated position, the at least one wiper blade moving over the windscreen and comprising an orifice through which the hydrophobic liquid can be sprayed, the at least one wiper blade being connected to a hydrophobic liquid reservoir.

[0003] After application to the windshield, the hydrophobic liquid must be allowed to dry for approximately 15 minutes and then wiped off to remove excess hydrophobic liquid.

[0004] This prior art proposes using a vehicle device to spray / spread a hydrophobic liquid onto the vehicle's windows. Thus, applying and spreading the hydrophobic product onto the windows can be done via a wiping system by remotely controlling the process. This control can be performed by the user from the vehicle's dashboard or even remotely, for example by an application on a mobile phone or tablet.

[0005] Such control methods of the prior art require human intervention as it is the user who manually (remotely or otherwise) initiates the control method on demand, which therefore implies some training on the part of the user to remember to periodically and periodically initiate hydrophobic treatment of the windshield in order for the wiping system to operate under optimal operating conditions. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] French Patent Application Publication No. 3068938 Summary of the Invention [Problem to be solved by the invention]

[0007] The object of the invention is to propose a method for controlling a processing device for processing the windscreens of automatic and autonomous vehicles, where human intervention is no longer necessary.

[0008] Furthermore, the invention proposes a method for controlling a treatment device for treating vehicle windshields, which is initiated periodically, automatically and autonomously, predicting conditions in which it is not advisable to carry out treatment with a hydrophobic liquid. [Means for solving the problem]

[0009] To this end, the invention proposes a method for controlling a treatment device for treating a windscreen of a vehicle, said treatment device comprising at least one wiping system comprising at least one spraying device having at least one orifice, through which a hydrophobic liquid can be sprayed onto said windscreen, said control method comprising the following steps: - obtaining at least one data representative of a state of a vehicle; - processing at least one acquired data representative of a state of the vehicle; - checking the fulfillment of at least one criterion for activating a spraying device as a function of the at least one processed data representative of a state of the vehicle; - activating a spraying device if at least one criterion for activating the spraying device is met; The method is characterized in that at least one processing cycle is periodically initiated, the processing cycle comprising:

[0010] The control method according to the invention allows the hydrophobic treatment of the windshield to be initiated automatically, periodically and autonomously when treatment is required so that the wiping system operates under optimal operating conditions. Thus, the user does not have to periodically commit to initiating the hydrophobic treatment, as this is managed periodically, automatically and autonomously by the electronic control unit of the control system according to the invention.

[0011] By way of example, a treatment cycle may be initiated 1 to 3 months after the last treatment cycle.

[0012] According to one non-limiting embodiment, the processing cycle of the control method according to the invention comprises the following steps: - acquiring a plurality of data representative of a state of a vehicle; - processing a plurality of acquired data representative of a state of the vehicle; - checking the fulfillment of a number of criteria for activating a spraying device as a function of a number of processed data representative of a state of the vehicle; - activating a spraying device when each criterion of a plurality of criteria for activating the spraying device is satisfied; Equipped with.

[0013] According to one non-limiting embodiment, at least one data representative of a state of the vehicle or a plurality of data representative of a state of the vehicle is selected from among brightness around the vehicle, a position of the vehicle, operation of the vehicle, the presence of a person in the vicinity of or inside the vehicle, or a current time.

[0014] According to a non-limiting embodiment, the step of obtaining the at least one data representative of the vehicle state or the plurality of data representative of the vehicle state is continuously performed during a processing cycle until the at least one criterion for activating the spray device or each criterion among the plurality of criteria for activating the spray device is satisfied. In other words, the step of obtaining the at least one data representative of the vehicle state or the plurality of data representative of the vehicle state is continuously performed during a processing cycle until the spray device is activated.

[0015] According to one non-limiting embodiment, the ambient brightness of the vehicle is measured by a brightness sensor present in the vehicle.

[0016] According to one non-limiting embodiment, the location of the vehicle is determined by a location sensor present in the vehicle, such as a geolocation device (GPS) or any other means known to those skilled in the art.

[0017] According to one non-limiting embodiment, the vehicle satisfies these conditions: -The vehicle accessories are powered on; -The vehicle's engine is running It is activated when at least one of the following is satisfied:

[0018] According to one non-limiting embodiment, the presence of a person in the vicinity of the vehicle is detected by the person activating an opening in the vehicle.

[0019] According to one non-limiting embodiment, the presence of a person within the vehicle is detected by at least one presence sensor in a passenger compartment of the vehicle.

[0020] According to one non-limiting embodiment, the current time is determined by a clock inside the vehicle.

[0021] According to one non-limiting embodiment, the step of processing at least one data representative of the state of the vehicle or a plurality of data representative of the state of the vehicle involves separately comparing at least one data representative of the state of the vehicle from among the data representative of the state of the vehicle with comparison data.

[0022] According to one non-limiting embodiment, the comparison data is a luminance threshold. In one non-limiting example, the luminance threshold ranges from 5 lux to 120,000 lux.

[0023] According to one non-limiting embodiment, the comparison data relates to detection of position sensor measurements. In one non-limiting example, the comparison data relates to detection of a signal of a geolocation device.

[0024] According to one non-limiting embodiment, the comparison data relates to an inoperative state of the vehicle.

[0025] According to one non-limiting embodiment, the comparison data relates to non-detection of a person in the vicinity of or inside the vehicle.

[0026] According to one non-limiting embodiment, the comparison data relates to a primary time range and / or a secondary time range. In one non-limiting example, the primary time range is in the range of 08:00am to 09:00pm in summer and 06:00pm to 08:00am in winter. In one non-limiting example, the secondary time range is in the range of 09:00pm to 08:00am in summer and 06:00pm to 08:00am in winter.

[0027] According to one non-limiting embodiment, the step of checking fulfillment of at least one criterion for activating the spraying device or each criterion for activating the spraying device involves comparing at least one datum or each datum representative of the vehicle state from among the data representative of the vehicle state with a corresponding comparison datum or corresponding multiple comparison datum, respectively.

[0028] According to one non-limiting embodiment, the at least one criterion for activating the spray device is met when the ambient luminance of the vehicle exceeds a luminance threshold, or when the location of the vehicle is located, or when the vehicle is not operating, or when there are no people present in the vicinity of or inside the vehicle, or when the current time is within a primary time range.

[0029] According to one non-limiting embodiment, each criterion of the multiple criteria for activating the spray device is met when the ambient luminance of the vehicle exceeds a luminance threshold, and / or when the location of the vehicle is located, and / or when the vehicle is not operating, and / or when there are no people present in the vicinity of or inside the vehicle, and / or when the current time is within a primary time range.

[0030] According to one particular, non-limiting embodiment, the spray device is activated if all criteria for activating the spray device are met simultaneously.

[0031] The control method according to the invention is also particularly advantageous in that the electronic control unit predicts the conditions under which treatment with a hydrophobic liquid is recommended and under which the electronic control unit should or should not initiate the treatment device.

[0032] According to one non-limiting embodiment, the treatment device further comprises a drive motor for the at least one wiping system, a piping system connected to the at least one spray device of the wiping system and a reservoir, and at least one pump configured to circulate the hydrophobic liquid in the piping system to the spray device of the wiping system, and operating the treatment device to spray the hydrophobic liquid onto the windshield comprises: - operating the at least one pump to circulate the hydrophobic liquid through the piping system to the at least one orifice of the spray device of the wiping system; - controlling the drive motor to move the wiping system over the windshield; Includes.

[0033] A system is also proposed for a processing device for treating a windscreen of a vehicle, said processing device comprising at least one wiping system comprising at least one spraying device having at least one orifice, through which said hydrophobic liquid can be sprayed onto said windscreen, said control system comprising at least one device for detecting at least one data representative of a state of the vehicle and an electronic control unit, - processing at least one acquired data representative of a state of the vehicle; - checking the fulfillment of at least one criterion for activating a spraying device as a function of the at least one processed data representative of a state of the vehicle, Activating the spray device if at least one criterion for activating the spray device is met. An electronic control unit configured as above; The present invention is characterized by comprising:

[0034] According to one particular, non-limiting embodiment, the at least one device for detecting at least one data representative of a state of the vehicle is selected from among a brightness sensor or a position sensor of the vehicle, or a sensor for turning on the vehicle, or the presence of a person in the vicinity of or in the vehicle, or a clock in the automobile, or any other detection device known to a person skilled in the art.

[0035] In one particular embodiment of the control method according to the invention, the control method comprises the following steps: - determining, by a first detection device present on said vehicle, in this case a luminance sensor, at least one data representative of a state of the vehicle, in this case the ambient luminance of the vehicle; - comparing the brightness with a first comparison criterion, in this case a brightness threshold value, to determine whether a first criterion for activating the spray device is met; - not activating the processing device so as not to spray hydrophobic liquid onto the windshield if a first criterion for activating a spraying device is not met, in which case the luminance is below the luminance threshold; Equipped with.

[0036] The control method of this particular embodiment is also particularly advantageous in that the electronic control unit predicts conditions under which treatment with hydrophobic liquids is not recommended and the treatment device should not be initiated.

[0037] According to non-limiting embodiments, the control method may further comprise one or more additional features taken from among the following, either alone or according to all technically possible combinations:

[0038] According to a particular embodiment of the invention, the vehicle may comprise a second detection device, in this case a geolocation device, configured to obtain second data representative of a state of the vehicle in order to geolocate the vehicle, the control method comprising the following steps: - determining from second data representative of a state of the vehicle whether a second criterion for activating the spraying device is met, in this case whether geolocation of the vehicle via the geolocation device is functional; - not activating the processing device to not spray hydrophobic liquid on the windshield if at least one of the criteria for activating a spraying device is not met, in which case the brightness is above the brightness threshold and the geolocation of the vehicle via the geolocation device is not functional; Equipped with.

[0039] If at least one of the criteria for activating the spray device is not met, the spray device is not activated.

[0040] According to a particular embodiment of the present invention, - if the brightness is above the brightness threshold and the geolocation of the vehicle via the geolocation device is working, check another data or data representative of the state of the vehicle, in this case whether the vehicle is operating and / or whether a person is present in the vicinity of or inside the vehicle, and if so, i.e. if at least one of the criteria for activating a spraying device is not met, do not activate the processing device so as not to spray hydrophobic liquid onto the windshield, otherwise activate the processing device to spray hydrophobic liquid onto the windshield if each of the criteria for activating a spraying device is met.

[0041] According to a particular embodiment of the invention, the vehicle satisfies these conditions: -The vehicle accessories are powered on; -The vehicle's engine is running It is activated when at least one of the following is satisfied:

[0042] According to a particular embodiment of the invention, the presence of a person in the vicinity of the vehicle is detected by said person activating an opening of the vehicle.

[0043] According to a particular embodiment of the invention, the presence of a person in the vehicle is detected by at least one presence sensor in a passenger compartment of the vehicle.

[0044] According to a particular embodiment of the invention, the treatment device further comprises a drive motor for the at least one wiping system, a piping system connected to the at least one spray device of the wiping system and a reservoir, and at least one pump configured to circulate the hydrophobic liquid in the piping system to the spray device of the wiping system, and wherein operating the treatment device to spray the hydrophobic liquid onto the windshield comprises: - operating the at least one pump to circulate the hydrophobic liquid through the piping system to the at least one orifice of the spray device of the wiping system; and - controlling the drive motor to move the wiping system over the windshield; Includes.

[0045] According to a particular embodiment of the invention, the control method comprises the following steps: - determining additional data representative of the state of the vehicle, in this case the current time; - determining from the additional data representative of the vehicle state whether a corresponding criterion for activating the spray device is met, in which case the current time is within the first time range or the second time range; - not activating a processing device to not spray hydrophobic liquid onto said windshield if at least one of the criteria for activating a spraying device is not met, in which case the current time is within said primary time range and the luminance is below said luminance threshold; - not activating a processing device to not spray hydrophobic liquid onto the windshield if at least one of the criteria for activating a spraying device is not met, in which case the current time is within the secondary time range and the luminance is below the luminance threshold. It further comprises:

[0046] According to one non-limiting embodiment, the luminance threshold ranges from 5 lux to 120,000 lux, for example, the luminance threshold is equal to 20 lux.

[0047] According to one non-limiting embodiment, the wiper blade includes a hydraulic ramp having an orifice through which the hydrophobic liquid can be sprayed / distributed onto the windshield.

[0048] According to a particular embodiment of the invention, the processing device of the control system comprises at least one wiping system comprising at least one spraying device having at least one orifice through which the hydrophobic liquid can be sprayed onto the windscreen, and the control system comprises a detection device, in this case a luminance sensor, configured to determine at least one data representative of a state of the vehicle, in this case a luminance sensor of the surroundings of the vehicle, and an electronic control unit, - comparing at least one data representative of a state of the vehicle, in this case a brightness threshold value, with a comparison value, in this case a brightness threshold value, in order to determine whether a corresponding criterion for activating the spray device is met; - not activating the processing device to not spray hydrophobic liquid onto the windshield if the corresponding criterion for activating a spraying device is not met, in which case the brightness is below the brightness threshold; and an electronic control unit configured to:

[0049] According to one non-limiting embodiment, the control system further comprises at least one sensor configured to detect the presence of a person in the vicinity of the vehicle or in the passenger compartment of the vehicle.

[0050] According to one non-limiting embodiment, the control system further comprises a geolocation device configured to geolocate the vehicle.

[0051] There is also proposed a computer program product comprising instructions which, when executed by a computer, cause the computer to carry out the steps of the control method according to any one of the above mentioned features.

[0052] Also proposed is a non-transitory computer readable storage medium comprising instructions which, when they are executed by a computer, cause the computer to carry out a control method according to any one of the aforementioned features.

[0053] The invention and its various applications will be better understood on reading the following description and on referring to the accompanying drawings, in which: [Brief description of the drawings]

[0054] [Figure 1] 4 is a flowchart of a method for controlling a processing device for processing a windshield of a vehicle according to a first non-limiting embodiment of the present invention. [Diagram 2] 2 is a flow chart of the control method of FIG. 1, the control method comprising an additional step, according to one non-limiting embodiment. [Diagram 3] 3 is a flow chart of the control method of FIG. 2, the control method comprising an additional step, according to one non-limiting embodiment. [Figure 4] 5 is a flowchart of a method for controlling a processing device for treating a windshield of a vehicle according to a second non-limiting embodiment of the present invention. [Diagram 5] FIG. 5 is a schematic diagram of a control system configured to implement the control method of FIGS. 1-4, according to one non-limiting embodiment. [Figure 6] FIG. 5 is a schematic diagram of a processing device for processing a vehicle windshield controlled by the control method of FIGS. 1-4 according to one non-limiting embodiment. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0055] Unless otherwise specified, elements that are identical by structure or function that appear in various figures use the same reference numerals.

[0056] The method 1 for controlling a processing device 30 for processing a windshield 31 of a vehicle 3 according to the present invention is described with reference to Figs. 1 to 4 according to a non-limiting embodiment. In one non-limiting embodiment, the vehicle 3 is a car. Car is understood to mean any type of motorized vehicle. This embodiment is taken as a non-limiting example throughout the remainder of the description. Thus, throughout the remainder of the description, the vehicle 3 is also called a car 3. As shown in Fig. 5, the car 3 further comprises an accessory 34, an engine 35, an opening 36. In one non-limiting embodiment, the car 3 comprises a GPS geolocation device. In one non-limiting embodiment, the car 3 comprises at least one presence sensor 37.

[0057] As shown in FIG. 6, the processing device 30 controlled by the control method 1 includes: - Wiping system 300; - drive motor 301; -Plumbing 302; a reservoir 303 for storing a hydrophobic liquid Lq; at least one pump 304 Equipped with.

[0058] The wiping system 300 includes: - at least one spray device 3000 having at least one orifice 3000a capable of spraying a hydrophobic liquid Lq onto the windshield 31; at least one wiper blade 3001 (also called blade); and a drive arm 3002 (also called arm) connected to said at least one wiper blade 3001 via a connection device (not shown) Equipped with.

[0059] The wiping system 300 used for the hydrophobic treatment is the same as that used to remove water and dirt from the glossy surface of the windshield 31.

[0060] In one illustrated non-limiting embodiment, the wiping system 300 is equipped with a wiper blade 3001 and has at least one drive arm 3002 that performs a reciprocating angular movement opposite the glossy side of the windshield 31 between a low position PB and a high position PH.

[0061] The drive arm 3002 is in particular arranged in a rod extending along a longitudinal axis, one end of the rod being connected to the wiper blade 3001 via a connection device (not shown) and the other end of the rod being connected to a means for driving the wiper blade 3001, such as a drive motor 301.

[0062] In a non-limiting embodiment, the at least one spraying device 3000 is located on the wiper blade 3001, or on the drive arm 3002, or on the arm / blade connection device, or even on the hood of the automobile 3. It is possible to have a combination of these various embodiments. In one non-limiting embodiment, the spraying device 3000 comprises a plurality of orifices 3000a. Thus, in a non-limiting embodiment, the orifices 3000a are located on the wiper blade 3001, or on the drive arm 3002, or on the arm / blade connection device, or even on the hood of the automobile 3. The orifices 3000a can be arranged to spray the hydrophobic liquid Lq towards the top of the wiper blade 3001, i.e. towards the top of the windshield 31, or towards the bottom of the wiper blade 3001, i.e. towards the bottom of the windshield 31.

[0063] In a non-limiting embodiment, each wiper blade 3001 comprises at least one hydraulic ramp (also called ramp) with an orifice 3000a capable of spraying / spreading the hydrophobic liquid Lq onto the windshield 31. The hydraulic ramps thus form a spraying device 3000. In an alternative non-limiting embodiment, each wiper blade 3001 comprises two ramps, one with an orifice 3000a configured to spray the hydrophobic liquid Lq towards the top of the windshield 31 and the other with an orifice 3000a configured to spray the hydrophobic liquid Lq towards the bottom of the windshield 31. These ramps can spray liquid simultaneously or alternately depending on the direction of movement of the wiper blade 31. The or each ramp of the wiper blade 3001 is supplied with the hydrophobic liquid Lq via a piping system 302.

[0064] The drive motor 301 is configured to drive one or more wiper blades 3001, via a drive arm 3002, between their respective low and high positions PB and PH.

[0065] A tubing system 302 connects the reservoir 303 to the orifice 3000 a of the at least one spray device 3000 .

[0066] In one non-limiting embodiment, the reservoir 303 is a separate reservoir from the reservoir containing the windshield washer fluid, each reservoir being associated with a different pump. In another non-limiting embodiment, the reservoir 303 can be partitioned and include two respective compartments for storing the hydrophobic liquid Lq and the washer fluid, each compartment being associated with a different pump.

[0067] The at least one pump 304 is associated with a reservoir 303 containing a hydrophobic liquid Lq and is configured to circulate the hydrophobic liquid Lq within the piping system 302 until the hydrophobic liquid Lq is discharged onto the surface to be treated, i.e. the windshield, through one or more orifices 3000a of the at least one spray device 3000.

[0068] In order to apply a hydrophobic liquid Lq to a windshield 31 of a vehicle 3, a control method 1 of a processing device 30 is described below according to two non-limiting embodiments, respectively shown in Fig. 1, Fig. 2 and Fig. 3 for a first non-limiting embodiment and respectively shown in Fig. 4 for a second non-limiting embodiment. The control method 1 is implemented by a control system 2, shown in Fig. 5, which comprises a first detection device, in this case a luminance sensor 21, and an electronic control unit 22. As will be seen below, the conditions for activating and for not activating the processing device 30 are determined. According to a first non-limiting embodiment, the activation and non-activation conditions are a function of the data representative of the vehicle's state, such as the luminance Lx, and of the GPS geolocation device. According to a second non-limiting embodiment, the activation and non-activation conditions are a function of the data representative of the vehicle's state, such as the luminance Lx, of the GPS geolocation device, and of a time range H1, H2 including the current time h.

[0069] A first non-limiting embodiment is described below with reference to FIGS.

[0070] In step E1, as shown F1(21,Lx), a first detection device, in this case the luminance sensor 21, determines first data representative of a vehicle condition, in this case the ambient luminance Lx of the automobile 3. It transmits the value of the luminance Lx to the electronic control unit 22.

[0071] In step E2, as shown F2(22, Lx, S1), the electronic control unit 22 compares the luminance Lx with a comparison datum, in this case a luminance threshold S1. In one non-limiting embodiment, the luminance threshold S1 is equal to 20 lux.

[0072] If the luminance Lx is below the luminance threshold S1 (branch OK1), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq on the windshield 31 (step E3, as shown F3(22,!30)). Indeed, in this case it is possible to park the car 3 in a garage or an unlit underground car park. Also, in order not to contaminate the floor of the garage or underground car park, the processing device 30 is not activated, thus avoiding contaminating the garage or car park by spraying the hydrophobic liquid Lq on the windshield 31. Indeed, when it is sprayed on the windshield 31, the hydrophobic liquid Lq spray falls to the ground and part of the hydrophobic liquid Lq spread on the windshield 31 flows to the ground, which poses a risk of contaminating the floor of the underground car park or garage where the car 3 is parked. If the first criterion for activating the spraying device is met, in this case when the luminance Lx is above the luminance threshold S1 (branch NOK1), the following steps are carried out, as shown in FIG. 2.

[0073] To reliably check whether the car 3 is in a garage or in an underground car park, a second detection device is used, in this case the GPS geolocation device of the car 3 .

[0074] Thus, as shown in FIG. 2, in step E4, illustrated F4 (22, GPS), the electronic control unit 22 determines whether a second criterion for activating the spraying device is met, in this case whether geolocation of the vehicle 3 via the GPS geolocation device is working.

[0075] If at least one of the two criteria for activating the spraying device is not met, in this case the brightness Lx is above the brightness threshold S1 and the geolocation of the car 3 via the GPS geolocation device does not work (branch NOK2), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 (step E5, illustrated F5(22,!30)). Indeed, in this case the car 3 is in a lighted garage or a lighted underground car park where geolocation is not possible, and the processing device 30 is not activated so as not to contaminate the floor of the garage or underground car park.

[0076] It should be noted that when each of the two criteria for activating the spray device is met, in this case the luminance Lx is above the luminance threshold S1 and the geolocation via the GPS geolocation device is working, this means that the car 3 is outdoors. Therefore, as shown in Fig. 2, the control method 1 further includes the following steps:

[0077] If the luminance Lx is above said luminance threshold S1 and the geolocation via the GPS geolocation device works (branch OK2), the electronic control unit 22 checks that a third criterion for activating the spraying device is fulfilled based on third data representative of the vehicle state. In this first embodiment, the electronic control unit 22 checks whether the motor vehicle 3 is in operation and / or whether a person o is present in the vicinity of the motor vehicle 3 or inside said motor vehicle 3, i.e. in the passenger compartment 33 (step E6, illustrated F6(22,3,o,33)). If so (branch OK3), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq on the windscreen 31 (step E7, illustrated F7(22,!30)).

[0078] Indeed, in this case, the car 3 is located outdoors, - a) whether it is running; -b) or is stationary but with a person o located in the passenger compartment 33 of the motor vehicle 3. This means that either the person exits the motor vehicle 3 or the person starts the motor vehicle 3 in order to use it. -c) or the vehicle is stationary, but a person o is located next to the vehicle 3. This means that the person o enters the vehicle 3 to use it.

[0079] In these cases, the processing device 30 must not be woken up, otherwise a) whether spraying a hydrophobic liquid on the windscreen 31 while the driver is driving impairs the driver's visibility; b) or persons located inside the vehicle 3 are at risk of being sprayed with the hydrophobic liquid Lq when exiting said vehicle 3, or their visibility is hindered when starting and driving the vehicle 3, -c) or a person located next to the car 3 is at risk of being sprayed with the hydrophobic liquid Lq That is why.

[0080] Furthermore, when the vehicle is in operation, aerodynamic currents on the windshield generated by the movement of the vehicle or the operation of the wiping system can damage and interfere with the application of the hydrophobic liquid Lq.

[0081] In fact, to properly apply the treatment, it is recommended to wait at least 15 minutes, so that the hydrophobic liquid Lq has time to dry properly.

[0082] Otherwise (branch NOK3), each of the activation criteria of the spray device is met and the electronic control unit 22 activates the processing device 30 to spray the hydrophobic liquid Lq onto the windscreen 31 (step E8, F8 as shown (22, 30, Lq, 31)). Thus, in this case, the car 3 is stationary since it is not in operation, its passenger compartment 33 is unoccupied and no one is in the vicinity of the car 3 (which means that the car 3 will not be used afterwards). The hydrophobic liquid Lq can therefore be applied onto the windscreen 31 and will have time to dry.

[0083] In one non-limiting embodiment, the step E8 of activating the treatment device 30 to spray the hydrophobic liquid Lq onto the windshield 31 comprises the following sub-steps carried out simultaneously: a substep E80 (shown as F80(304, Lq, 302, 3000(3000a))) of activating the at least one pump 304 so as to circulate the hydrophobic liquid Lq in the piping system 302 to the at least one orifice 3000a of the at least one spray device 3000; and a substep E81 (shown in the figure F81(301,300) for controlling the drive motor 301 to move the wiper system 300 over the windscreen 31; Equipped with.

[0084] In one non-limiting embodiment, the vehicle 3 comprises: - the accessory 34 of the vehicle 3 is powered on; or - Engine 35 of car 3 is running It is working properly.

[0085] In one non-limiting embodiment, the presence of a person in the vehicle 3 is detected by the at least one presence sensor 37 in the passenger compartment 33 of the automobile 3. In a non-limiting example, the at least one presence sensor 37 is a presence sensor located in a driver or passenger seat, a camera, a biometric sensor, or any other type of presence sensor in the passenger compartment 33. In the non-limiting example shown in Figure 5, two cameras 37 are shown, one located at the front and one located at the rear in the passenger compartment 33 of the automobile 3.

[0086] In one non-limiting embodiment, the presence of a person o in the vicinity of the vehicle 3 is detected by the person o activating an opening 36 of the vehicle 3. In a non-limiting embodiment, the opening 36 is a door or a boot or a tailgate of the vehicle 3.

[0087] A second non-limiting embodiment is described below with reference to FIGS.

[0088] To improve control method 1, the time ranges H1, H2 are used to check whether it is daytime or nighttime.

[0089] In step E1, as shown F1(21,Lx), a first detection device, in this case the luminance sensor 21, determines first data representative of a vehicle condition, in this case the ambient luminance Lx of the automobile 3. It transmits the value of the luminance Lx to the electronic control unit 22.

[0090] In step E2, as shown in F2(22, Lx, S1), the electronic control unit 22 compares the luminance Lx with a first comparison data, in this case a luminance threshold S1. In one non-limiting embodiment, the luminance threshold S1 is equal to 20 lux.

[0091] In step E3, shown F3(22,h), the electronic control unit 22 determines additional data representative of the vehicle's state, in this case the current time h, in one non-limiting embodiment from a clock inside the automobile 3. It should be noted that this step can occur simultaneously with either step E1 or E2, or after or before either of these steps.

[0092] In step E4, as shown F4(22,h,H1,H2), the electronic control unit 22 compares the current time with additional comparison data by determining whether the current time h is within the primary time range H1 or the secondary time range H2.

[0093] In one non-limiting embodiment, the primary time range H1 relates to daytime hours and the secondary time range H2 relates to nighttime hours. The primary time range H1 and the secondary time range H2 can vary as a function of the season. Thus, in one non-limiting embodiment, the primary time range H1 ranges from 08:00 hours to 21:00 hours and the secondary time range H2 ranges from 21:00 hours to 08:00 hours. This corresponds to daytime hours and nighttime hours in summer. Thus, in another non-limiting embodiment, the primary time range H1 ranges from 08:00 hours to 18:00 hours and the secondary time range H2 ranges from 18:00 hours to 08:00 hours. This corresponds to daytime hours and nighttime hours in winter.

[0094] If one of the criteria for activating the spraying device is not met, in this case when the current time h is within said primary time range H1 and the luminance Lx is below the luminance threshold S1 (branch OK1), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq on the windshield 31 (step E5, illustrated F5(22,!30)). Indeed, in this case, it is daytime, but the car 3 may be parked in an unlit garage or an unlit underground car park. Also, in order not to contaminate the floor of the garage or underground car park, the processing device 30 is not activated, thus avoiding contaminating the garage or car park by spraying the hydrophobic liquid Lq on the windshield 31.

[0095] Otherwise (branch NOK1), if one of the criteria for activating the spraying device is not met, in this case the current time h is within the secondary time range H2 and the luminance Lx is below the luminance threshold S1 (branch OK2), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windshield 31 (step E6, shown F6(22,!30). Indeed, in this case it is nighttime, but the car 3 may be parked in a garage or an unlit underground car park. If the respective criteria for activating the spraying device are met, in this case the luminance Lx is above the luminance threshold S1 (branch NOK2), the following steps are executed as shown in FIG. 4.

[0096] In the same manner as the first non-limiting embodiment, second data representative of the state of the vehicle, in this case geolocation via a second detection device, in this case a GPS geolocation device, can be used and a time range can be combined with the geolocation.

[0097] Thus, as shown in Figure 4, in step E7, illustrated F7 (22, GPS), the electronic control unit 22 determines whether a second criterion for activating the spraying device is met, in this case whether the geolocation of the vehicle 3 via the GPS geolocation device is working. It should be noted that this step can be performed simultaneously with any of steps E1 to E5 or after or before any of these steps.

[0098] If one of the three criteria for activating the spraying device is not met, in this case the current time h is within the primary time range H1, the luminance Lx is above the luminance threshold S1 and geolocation via the GPS geolocation device does not work (branch NOK3), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windshield 31 (step E8, illustrated F8(22,!30). Indeed, in this case it is daytime and the car 3 is located in a lighted garage or a lighted underground car park, where geolocation is not possible, and the processing device 30 is not activated so as not to contaminate the floor of the garage or underground car park.

[0099] If one of the three criteria for activating the spraying device is not met, in this case if the current time h is within the secondary time range H2, if the luminance Lx is above the luminance threshold S1 and if geolocation via the GPS geolocation device does not work (branch NOK4), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 (step E9, shown F9(22,!30). Indeed, in this case it is nighttime and the car 3 is in a lighted garage or a lighted underground car park, where geolocation is not possible, and the processing device 30 is not activated so as not to contaminate the floor of the garage or underground car park.

[0100] It should be noted that if the geolocation via the GPS geolocation device is working, this means that the car 3 is outdoors. Therefore, as shown in Figure 4, the control method 1 further includes the following steps:

[0101] If each of the three criteria for activating the spraying device is met, in this case if the current time h is within the primary time range H1, if the luminance Lx is above the luminance threshold S1 and if geolocation by the GPS geolocation device works (branch OK5), the electronic control unit 22 checks for (non-)generation of third data representative of the state of the vehicle, in which case the electronic control unit 22 checks whether the motor vehicle 3 is operating and / or whether a person o is present in the vicinity of the vehicle or inside the motor vehicle 3 (step E10, illustrated F10(22,3,o,33)), and if so (branch OK6), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windshield 31 (step E11, illustrated F11(22,!30)).

[0102] Indeed, in this case, it is daytime and the car 3 is located outdoors, - a) whether it is running; -b) or stationary, but a person o is in the passenger compartment 33 of the motor vehicle 3. This means that either the person has exited the motor vehicle 3, or the person has started the motor vehicle 3 in order to use it. -c) or the vehicle is stationary, but a person o is located next to the vehicle 3. This means that the person o enters the vehicle 3 to use it.

[0103] In these cases, the processing device 30 must not be woken up.

[0104] Otherwise (branch NOK6), if each of the activation criteria of the spraying device is fulfilled, the electronic control unit 22 activates the processing device 30 to spray the hydrophobic liquid Lq onto the windscreen 31 (step E12, illustrated F12 (22, 30, Lq, 31)). Indeed, in this case, it is daytime and the car 3 is stationary since it is not in operation, or its passenger compartment 33 is unoccupied, or nobody is near the car 3 (which means that the car 3 will not be used afterwards). The hydrophobic liquid Lq can therefore be applied onto the windscreen 31 and will have time to dry.

[0105] If one of the criteria for activating the spraying device is not met, in this case if the current time h is within the secondary time range H2, if the luminance Lx is above the luminance threshold S1 and if geolocation via the GPS geolocation device works (branch OK7), the electronic control unit 22 checks whether a third criterion for activating the spraying device is met (not met), i.e. if the vehicle is operating and / or if a person is present in the vicinity of the vehicle or inside the vehicle 3 (step E13, shown F13 (22, 3, 33)), and if so (branch OK8), the electronic control unit 22 does not activate the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windshield 31 (step E14, shown F14 (22, !30)).

[0106] Thus, it is nighttime, the car 3 is outdoors and illuminated by a street lamp, - a) whether it is running; -b) or is stationary but the person o is in the passenger compartment 33 of the motor vehicle 3. This means that either the person exits the motor vehicle 3 or the person starts the motor vehicle 3 in order to use the motor vehicle 3. -c) or the vehicle is stationary, but a person o is located next to the vehicle 3. This means that the person o enters the vehicle 3 to use it.

[0107] In these cases, the processing device 30 must not be woken up.

[0108] In another case (branch NOK8), once each of the activation criteria of the spraying device is met, the electronic control unit 22 activates the processing device 30 to spray the hydrophobic liquid Lq onto the windshield 31 (step E15, illustrated (step E14, illustrated F15(22, 30, Lq, 31)). Indeed, in this case, it is nighttime, the car 3 is not in operation, its passenger compartment 33 is not occupied and no one is near the car 3 (which means that the car 3 will not be used thereafter). The car is parked outdoors, possibly illuminated by a lighted street. The hydrophobic liquid Lq can therefore be applied onto the windshield 31 and will have time to dry.

[0109] Thus, the control method 1 is implemented by a control system 2 of a processing device 30 for treating a windscreen 31 of a vehicle 3, said processing device 30 comprising at least one wiping system 300 comprising at least one spraying device 3000 having an orifice 3000a, through which said hydrophobic liquid Lq can be sprayed onto said windscreen 31, said control system 2 being shown in Fig. 5 according to a non-limiting embodiment. said control system 2 comprises a detection device, such as a luminance sensor 21, and an electronic control unit 22.

[0110] The luminance sensor 21 is arranged to determine the ambient luminance Lx of the vehicle 3 in question (function f1(21,Lx) as shown).

[0111] The functionality of the electronic control unit 22 is shown according to two non-limiting embodiments, shown as dashed lines, the second embodiment considering the time ranges H1 and H2.

[0112] In a first non-limiting embodiment M1, the electronic control unit 22: - comparing first data representative of the vehicle state, in this case the luminance Lx, with first comparison data, in this case a luminance threshold S1 (function f2(22, Lx, S1); - a first criterion for activating a spraying device is not met, in this case not activating the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 when the luminance Lx is below the luminance threshold S1 (function f3(22,!30); - determining, based on second data representative of the state of the vehicle, whether a second criterion for activating the spraying device is met, in this case whether geolocation via a GPS geolocation device is working (function f4(22,GPS); - not activating the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 when at least one of the two criteria for activating the spraying device is not met, in this case when the luminance Lx is above the luminance threshold S1 and when the geolocation of the motor vehicle 3 via the GPS geolocation device is not working (function f5(22,!30) as shown); - checking the fulfillment of a third criterion for activating the spraying device based on third data representative of the vehicle state, i.e. checking whether the vehicle 3 is in operation and / or whether a person o is present in the vicinity of or inside the vehicle 3 when each of the two first criteria for activating the spraying device is fulfilled, in this case when the luminance Lx is above the corresponding luminance threshold S1 and when the geolocation of the vehicle 3 via the GPS geolocation device is working (function f6(22,3,o,33) as shown); not activating the processing device 30 when one of the three criteria for activating the spraying device is not met, in this case when the luminance Lx is above the luminance threshold S1, when the geolocation of the car 3 via the GPS geolocation device is active and when the car 3 is operating and / or when a person o is present in the vicinity of or inside the car 3 (function f7(22,!30) as shown); and - activating the processing device 30 to spray a hydrophobic liquid Lq onto the windshield 31 when each of the criteria for activating a spraying device is fulfilled, in this case when the luminance Lx exceeds the luminance threshold S1, when the geolocation of the vehicle 3 via a GPS geolocation device is active and when the vehicle 3 is not in operation and / or when there are no people in the vicinity of or inside the vehicle 3 (function f8(22, 30, Lq, 31) as shown); It is configured as follows.

[0113] In a second non-limiting embodiment, the electronic control unit 22 is - comparing first data representative of the vehicle state, in this case the luminance Lx, with first comparison data, in this case a luminance threshold S1 (function f2(22, Lx, S1); - determining additional data describing the state of the vehicle, in this case the current time h (function f3(22,h) as shown); - determining additional data representative of the vehicle state, i.e. whether the corresponding criteria for activating the spraying device are met, i.e. whether the current time h is within the primary time range H1 or the secondary time range H2 (shown function f4(22,h,H1,H2)); not activating the processing device 30 when at least one of the two criteria for activating the spray device is not met, in this case when the luminance Lx is below the luminance threshold S1 and when the current time h is within the primary time range H1 (function f5(22,!30) as shown); and - not activating the processing device 30 when at least one of the two criteria for activating the spray device is not met, in this case when the luminance Lx is below the luminance threshold S1 and the current time h is within the secondary time range H2 (shown function f6(22,!30)); - determining from the second data representative of the vehicle state whether the corresponding criteria for activating the spraying device are met, i.e. whether geolocation via the GPS geolocation device is working (function f7(22,GPS); - not activating the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 when at least one of the three criteria for activating the spraying device is not met, in this case when the current time h is within the primary time range H1, when the luminance Lx is above the luminance threshold S1 and when the geolocation of the motor vehicle 3 via the GPS geolocation device is not working (function f8(22,!30) as shown); - not activating the processing device 30 so as not to spray the hydrophobic liquid Lq onto the windscreen 31 when at least one of the three criteria for activating the spraying device is not fulfilled, in this case when the current time h is within the secondary time range H2, when the luminance Lx is above the luminance threshold S1, when the geolocation of the motor vehicle 3 via the GPS geolocation device is not working (shown function f9(22,!30)); - checking from the third data representative of the vehicle state whether the corresponding criteria for activating the spraying device are fulfilled, i.e. checking whether the vehicle 3 is activated and / or whether a person o is present in the vicinity of or inside the vehicle 3 when the current time h is within the primary time range H1, when the luminance Lx is above the luminance threshold S1 and when the geolocation of the vehicle 3 via the GPS geolocation device is working (function f10(22,3,o,33) as shown); not activating the processing device 30 when at least one of the criteria for activating the spraying device is not met, in this case when the current time h is within the primary time range H1, when the luminance Lx is above the luminance threshold S1, when the geolocation of the car 3 via the GPS geolocation device is active and when the car 3 is operating and / or when a person o is present in the vicinity of or inside the car 3 (function f11(22, !30) as shown); and - activating the processing device 30 to spray a hydrophobic liquid Lq onto the windshield 31 when each of the criteria for activating a spraying device is fulfilled, in this case when the current time h is within the primary time range H1, when the luminance Lx is above the luminance threshold S1, when localization of the vehicle 3 via a GPS localization device is functional and when the vehicle 3 is not in operation and / or when there is no person in the vicinity of or inside the vehicle 3 (function f12(22, 30, Lq, 31) as shown);

[0114] - checking from the third data representative of the vehicle state whether the corresponding criteria for activating the spraying device are fulfilled, i.e. checking whether the car 3 is activated and / or whether a person o is present in the vicinity of or inside the car 3 when the current time h is within said secondary time range H2, when the luminance Lx is above said luminance threshold S1 and when the geolocation of the car 3 via the GPS geolocation device is working (shown function f13(22,3,o,33)); not activating the processing device 30 when the current time h is within the secondary time range H2, when at least one of the criteria for activating the spraying device is not fulfilled, in this case when the luminance Lx is above the luminance threshold S1, when the geolocation of the car 3 via the GPS geolocation device is active and when the car 3 is activated and / or when a person o is present in the vicinity of or inside the car 3 (function f14(22, !30) as shown); and - activating the processing device 30 to spray a hydrophobic liquid Lq onto the windshield 31 when each of the criteria for activating a spraying device are fulfilled, in this case when the current time h is within the secondary time range H2, when the luminance Lx is above the luminance threshold S1, when the geolocation of the vehicle 3 via a GPS geolocation device is functional and when the vehicle 3 is not in operation and / or when there is no person in the vicinity of or inside the vehicle 3 (function f15(22, 30, Lq, 31) as shown); It is configured as follows.

[0115] It should be noted that the control system 2 may include one or more computer program products Pg that include one or more instruction sequences that can be executed by the electronic control unit 22, the execution of which may result in the implementation of the described control method 1.

[0116] This kind of computer program Pg can be registered in a non-volatile writable memory of the ROM type, in an EEPROM or in a non-volatile rewritable memory of the FLASH type. The computer program Pg can be entered into the memory in the factory, or can be loaded into the memory, or can be loaded into the memory remotely. The sequence of instructions can be a sequence of machine instructions or a sequence of a control language that is interpreted by the electronic control unit when they are executed. In the non-limiting example of FIG. 5, the computer program Pg is written into the memory 23 of the control system 2.

[0117] Thus, the control system 2 comprises at least one memory 23 coupled to the electronic control unit 22. The memory 23 is a non-transitory computer-readable storage medium comprising instructions that, when executed by a computer, cause the computer to perform the control method 1.

[0118] Naturally, the description of the invention is not limited to the above-mentioned embodiments and fields. Thus, in another non-limiting embodiment, the (non-)activation of the processing device 30 can be influenced by the habits of the user of the car 3. In this case, a model of the user's habits can be used. In this case, the electronic control unit 22 performs machine-cognitive learning of said model from a predefined set of user habits.

[0119] The invention described above therefore has, in particular, the following advantages: - making it possible to check conditions under which the processing device 30 should not be activated, in particular when the motor vehicle 3 is in a parking lot or garage, when the motor vehicle 3 is moving, when a person has an emergency use of the motor vehicle 3 or even when a person is in the passenger compartment 33 of the motor vehicle 3, thus preventing the floor of the garage or underground car park from getting wet from the hydrophobic liquid Lq and thus preventing the risk of people getting wet near the motor vehicle 3; - allowing the conditions for activating the treatment device 30 to be checked, in particular when the motor vehicle 3 is stationary and not in a parking lot or garage, even when no one is suddenly going to use the motor vehicle 3 or when there is no one in the passenger compartment 33 of the motor vehicle 3, thus allowing time for the hydrophobic liquid Lq to dry; -Easy to implement; has.

Claims

1. A method (1) for controlling a processing device (30) for treating a windscreen (31) of a vehicle (3), comprising: said treatment device (30) comprises at least one wiping system (300) comprising at least one spraying device (3000) having at least one orifice (3000a), through which a hydrophobic liquid (Lq) can be sprayed onto said windscreen (31); The control method (1) comprises the following steps: - obtaining at least one data representative of a state of said vehicle (Lx, GPS, o, h); - processing at least one acquired data representative of a state of the vehicle (Lx, GPS, o, h); - checking the fulfillment of at least one criterion for activating said spraying device as a function of at least one processed data representative of the state of said vehicle (Lx, GPS, o, h), - activating said spraying device (3000) if at least one criterion for activating said spraying device is met; 1. A control method (1) comprising: periodically initiating at least one processing cycle, the method comprising:

2. The processing cycle comprises the following steps: - acquiring a number of data representative of the state of the vehicle (Lx, GPS, o, h); - processing said plurality of acquired data (Lx, GPS, o, h) representative of a state of said vehicle; - checking the fulfillment of a number of criteria for activating said spraying device as a function of a number of processed data (Lx, GPS, o, h) representative of the state of said vehicle; - activating said spraying device (3000) when each criterion of said plurality of criteria for activating said spraying device is satisfied; The control method (1) according to claim 1, comprising:

3. A control method (1) as described in claim 1 or 2, wherein the process of acquiring the at least one data (Lx, GPS, o, h) representing the state of the vehicle or the plurality of data (Lx, GPS, o, h) representing the state of the vehicle is performed continuously during the processing cycle until the at least one criterion for activating the spraying device or each criterion from among the plurality of criteria for activating the spraying device is satisfied.

4. A control method (1) according to any one of claims 1 to 3, wherein the at least one data (Lx, GPS, o, h) representing the state of the vehicle or the plurality of data (Lx, GPS, o, h) representing the state of the vehicle is selected from among the brightness (Lx) of the surroundings of the vehicle, the position (GPS) of the vehicle, the operation of the vehicle, the presence of a person (o) in the vicinity of or inside the vehicle (3), or the current time (h).

5. 5. The control method of claim 4, wherein the at least one criterion for activating the spraying device is met when the ambient luminance (Lx) of the vehicle is above a threshold value, or when the position (GPS) of the vehicle is located, or when the vehicle is not operating, or when there is no person (o) in the vicinity of or inside the vehicle (3), or when the current time (h) is within a primary time range (H1).

6. 5. The control method of claim 4, wherein each of the plurality of criteria for activating the spray device is met when the ambient luminance (Lx) of the vehicle is above a luminance threshold (S1), and / or when the position (GPS) of the vehicle is located, and / or when the vehicle is not operating, and / or when no person (o) is present in the vicinity of or inside the vehicle (3), and / or when the current time (h) is within a primary time range (H1).

7. 7. A method according to any one of claims 4 to 6, wherein the ambient luminance (Lx) of the vehicle is measured by a luminance sensor present on the vehicle.

8. A control method according to any one of claims 4 to 6, wherein the position (GPS) of the vehicle is determined by a position sensor present on the vehicle.

9. The vehicle (3) satisfies these conditions: - the vehicle's accessories are powered on; - the vehicle's engine is running The control method according to any one of claims 4 to 6, which is activated when at least one of the following conditions is satisfied:

10. 7. A method according to any one of claims 4 to 6, wherein the presence of a person (o) in the vicinity of the vehicle (3) is detected by said person activating an opening of the vehicle.

11. 7. A method according to any one of claims 4 to 6, wherein the presence of a person (o) in the vehicle (3) is detected by at least one presence sensor in a passenger compartment of the vehicle.

12. A method according to any one of claims 4 to 6, wherein the current time (h) is determined by a clock internal to the vehicle.

13. The processing device (30) a drive motor (301) for said at least one wiping system (300); a piping system (302) connected to the at least one spray device (3000) and a reservoir (303) of the wiping system (300); at least one pump (304) configured to circulate the hydrophobic liquid (Lq) through the piping system (302) to the spray device (3000) of the wiping system (300); Activating the treatment device (30) to spray the hydrophobic liquid (Lq) onto the windshield (31) comprises: - operating said at least one pump (304) to circulate said hydrophobic liquid (Lq) in said piping system (302) to said at least one orifice (3000a) of said spray device (3000) of said wiping system (300), and at the same time - controlling said drive motor (301) to move said wiping system (300) over said windshield (31); 13. The control method (1) according to any one of claims 1 to 12, comprising:

14. A control system (2) for a processing device (30) for processing a windscreen (31) of a vehicle (3), comprising: said treatment device (30) comprises at least one wiping system (300) comprising at least one spraying device (3000) having at least one orifice (3000a), through which said hydrophobic liquid (Lq) can be sprayed onto said windscreen (31); The control system (2) at least one device for detecting at least one data representative of a state of the vehicle; An electronic control unit (22), - processing said at least one acquired data representative of a state of said vehicle; - checking the fulfillment of at least one criterion for activating said spraying device (3000) as a function of said at least one processed data representative of the state of said vehicle, - activating said spray device if at least one criterion for activating said spray device is met, An electronic control unit (22) configured as described above; A control system (2).