Method for outputting a starting region for a parking process of a motor vehicle, electronic computing apparatus, and motor vehicle
The disclosure relates to a method for outputting a starting region for a parking process of a motor vehicle, in which the starting region for the motor vehicle on a road is determined for at least one determined parking space, starting from which region it is possible for the motor vehicle to be parked in the parking space in one go, and the starting region is output overlying the road in a field of view of the driver.
1. A method for outputting a starting region for a parking process of a motor vehicle, comprising:
determining the starting region for the motor vehicle on a road for at least one determined parking space, starting from which region it is possible for the motor vehicle to be parked in the parking space in one go; and
displaying the starting region overlying the road in a field of view of the driver; wherein
a symbol is output overlying the parking space in the field of view of the driver;
the symbol represents a determined likely orientation of the motor vehicle in the parking space for parking the motor vehicle in the parking space in one go proceeding from the starting region;
the symbol is output as a hologram overlying the parking space in the field of view of the driver; and wherein
the symbol representing the orientation of the motor vehicle in the parking space is adapted depending on a received user input and the determined starting region is adapted depending on the adapted orientation represented by the adapted symbol.
2. The method of claim 1 , wherein the starting region is projected using augmented reality onto a windscreen of the motor vehicle in the field of view of the driver.
3. The method of claim 1 , comprising determining the field of view depending on a determined eye level and determining a viewing direction of the driver of the motor vehicle.
4. The method of claim 1 , wherein the starting region is output in the field of view of the driver using laser beams projected onto the road.
5. The method of claim 1 , wherein the starting region is output as a planar, demarcated region of the road.
6. The method of claim 1 , wherein, in addition to the starting region, an area to be driven over by the motor vehicle during the parking process when parking in the parking space proceeding from the starting region is output.
7. The method of claim 1 , wherein the starting region is determined depending on one or more of at least one determined obstacle in the surroundings of the parking space, a width of the parking space, a length of the parking space, and an orientation of the parking space.
8. The method of claim 1 , wherein, when the motor vehicle is arranged in the starting region, the motor vehicle is moved into the parking space using assisted parking or using manual parking.
9. The method of claim 1 , wherein respective starting regions are determined for different parking spaces and all determined starting regions are output as a summed overall region.
10. The method of claim 1 , wherein one parking space is selected from multiple parking spaces depending on a received user input and the starting region is determined and output for the selected parking space.
11. An electronic computing apparatus for a motor vehicle, which is configured to:
determine the starting region for the motor vehicle on a road for at least one determined parking space, starting from which region it is possible for the motor vehicle to be parked in the parking space in one go; and
display the starting region overlying the road in a field of view of the driver, wherein
a symbol is output overlying the parking space in the field of view of the driver;
the symbol represents a determined likely orientation of the motor vehicle in the parking space for parking the motor vehicle in the parking space in one go proceeding from the starting region;
the symbol is output as a hologram overlying the parking space in the field of view of the driver, and wherein
the symbol representing the orientation of the motor vehicle in the parking space is adapted depending on a received user input and the determined starting region is adapted depending on the adapted orientation represented by the adapted symbol.
12. A motor vehicle having an electronic computing apparatus of claim 11 .
13. The method of claim 2 , comprising determining the field of view depending on a determined eye level and determining a viewing direction of the driver of the motor vehicle.
14. The method of claim 2 , wherein the starting region is output in the field of view of the driver using laser beams projected onto the road.
15. The method of claim 3 , wherein the starting region is output in the field of view of the driver using laser beams projected onto the road.
16. The method of claim 2 , wherein the starting region is output as a planar, demarcated region of the road.
17. The method of claim 3 , wherein the starting region is output as a planar, demarcated region of the road.