The invention relates to a windshield wiper device having a wiper motor that can be actuated by means of a control unit and that actuates a wiper in order to wipe a predetermined wiping area. The invention further relates to a method for operating such a windshield wiper device.
Windshield wiper devices for cleaning motor vehicle window panes normally comprise a wiper motor, which moves a wiper relative to the motor vehicle window pane in the event of rain or humidity. The wiper motor is generally embodied as a dual lever synchronous wiper system having a separate wiper for the driver's and passenger's side. The wiper motor determines the wiping area via the wiping arc of the wiper as well as the reversal point of said wiper. The layout of the size of the wiping area is subject to statutory regulations. These determine the essential boundary conditions particularly for the wiping area on the driver's side. The wiping area on the driver's side is generally kept constant by means of the wiper motor in order to provide a distance to the A-pillar that is as small as possible and a large wiping area as well as to meet the statutory field of vision requirements.
In contrast, only the wiping arc on the passenger's side is predefined. A relatively large margin of play exists when adjusting the upper reversal point because there are no statutory requirements for the field of vision. There are therefore two directions of design for the passenger's side, wherein one of the two designs is used for half of all customers. According to a first design, a large wiping angle is predefined. In the case of a large wiping angle, the wiping arc of the passenger's side wipes into the wiping area of the driver's side. This can be disturbing to the driver, particularly in the case of a large volume of water if water is additionally slung into the driver's field of vision. According to a second design, a small wiping angle is predefined. In the case of a small wiping angle, the reversal point of the passenger's side wiper takes place at an early stage. In so doing, the water deposited by the passenger's side wiper at the reversal point cannot be removed by the driver's side wiper so that water runs down into the field of vision of the driver after the wiper motor has been turned off
It is the aim of the invention to find an optimal solution for a windshield wiper device.
According to the invention, a windshield wiper device having a wiper motor is disclosed, which can be actuated by means of a control unit and that actuates a wiper in order to wipe a predetermined wiping area. The control unit thereby adjusts the wiping area of the wiper depending on an environmental and/or wiper parameter.
An advantage of the windshield wiper device according to the invention is that an adaptive wiping area can be adjusted by taking into account the environmental and/or wiper parameters when determining the wiping area as a function of the situation. Furthermore, the proportion of time, in which the driver's vision of the roadway is unimpeded, is increased by the wiping operation. This is particularly achieved as a result of the water being optimally removed according to the invention with the aid of the wiper control system.
In a further embodiment of the invention, the windshield wiper device is embodied as a dual motor windshield wiper device, wherein the two wiper motors can be separately actuated in order to individually adjust the wiping field of the associated wiper. The wiping field on the driver's side and the passenger's side can thus be separately adjusted in order to provide the driver with an unimpeded view of the roadway.
According to a further embodiment of the invention, the wiping angle of a first wiping angle setting is smaller than the wiping angle of a second wiping angle setting by at least 3 degrees. A first wiping angle setting preferably comprises a wiping angle of 90 degrees and a second wiping angle setting a wiping angle of over 90 degrees. The use of the two wiping angle settings allows for an optimal adaptation of the wiper operation to the amount of water striking the window pane.
In addition, the second wiping angle setting is implemented according to a further embodiment of the invention when the wiper is turned off. The use of said second wiping angle setting upon deactivation of the wiper is provided as an additional application. It is thereby ensured that the entire volume of water is removed from the driver's side during the last wiping action.
The invention is explained below in detail with the aid of the exemplary embodiments while making reference to the accompanying drawings. In the drawings, the following items are shown:
A windshield wiper device 1 is shown in a schematic depiction in
The driver's side wiper motor 111 maintains a consistent wiping arc as well as reversal point thereof in relation to the A-pillar on the driver's side. The wiping arc of the passenger's side wiper 102 is kept consistent by the passenger's side wiper motor 112. The determination of the upper reversal point of said passenger's side wiper 102 allows for a relatively large margin of play because statutory field of vision requirements substantially do not exist for the wiping area on the passenger's side. The wiping field on the passenger's side can thus be optimized according to the invention during the wiper operation. In addition, the option also exists according to the invention to optimize the wiping area on the driver's side if the statutory regulations permit it.
The two wiper motors 111, 112 are actuated with the aid of a control unit 12. The control unit 12 thereby adjusts the wiping area on the passenger's side according to the invention as a function of an environmental and/or wiper parameter 13, 14. The wiper parameter 13 can comprise a wiper speed and/or operating mode and the environmental parameter 14 can comprise a volume of water and/or driving speed. Further environmental and/or wiper parameters 13, 14 can alternatively be acquired. Said control unit 12 can thereby take one, several or all of the environmental and/or wiper parameters 13, 14 into account.
The wiper parameters 13 regarding wiper speed and/or operating mode, wherein the activation/deactivation operation of the wipers 101, 102 is understood among under things by the term operating mode, can be manually activated via the steering column switch 16 and/or via a rain sensor 24 in the on-board electrical system 15. The data are subsequently processed by the control unit 12. During activation and deactivation of the wipers 101, 102, the wiper 101, 102 is brought out or brought into a parked position. The environmental parameter 14 regarding driving speed can be adjusted via the on-board electrical system 15. The environmental parameter 14 regarding volume of water is ascertained via the rain sensor 24 and/or via an energy model in the on-board electrical system 15.
With the use of the rain sensor 24 or the energy model, it can be determined if and how hard it is raining in order to activate the two wiper motors 111, 112 via the control unit 12. The rain sensor 24 carries out an optical electronic measurement using a light emitting diode (LED) as the light source and a detecting photodiode. In so doing, the physical law of reflection on the boundary of an optically thicker to an optically thinner material (index of refraction) is used. A load on the wiper motor 111, 112 can be detected using the energy model. From this data, the wiping area or the speed of the wiper 101, 102 can be determined by the control unit 12.
The advantage of the windshield wiper device 1 according to the invention is that an adaptive wiping area can be adjusted on the passenger's side by taking the environmental and/or wiper parameter 13, 14 into account when defining the wiping field as a function of the situation. In addition, the view of the roadway by the driver can be increased during wiper operation.
In the first operating state, the two wipers 101, 102 are activated by switching on the steering column switch 16 or by means of the rain sensor 24 or respectively the energy model. As is shown in
As is shown in
During deactivation the two wipers 101, 102, which is shown in
In a further operating state, which is not shown in
By the use of a wiper motor system 11 as a dual motor system comprising a wiper motor 111, 112 for the driver's and passenger's side, the wiping area of the passenger's side wiper 102 can be optimized. In so doing, the proportion of time in which the driver has an uninterrupted view of the roadway is increased during the wiper operation.
Number | Date | Country | Kind |
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10 2009 029 098.2 | Sep 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP10/60010 | 7/13/2010 | WO | 00 | 5/15/2012 |