Door system with sensor unit and communication element
A door system for a public transit vehicle with at least one door opening and a door that closes this door opening includes a sensor unit, which does three-dimensional and touch-free scanning of a passenger compartment in the area of the door opening and at least one communication element for the context-based communication with passengers based on readings by the sensor unit. A process for monitoring and controlling door systems of a public transit vehicle are also provided including the steps of touch-free and three-dimensional scanning of a passenger compartment in the area of a door opening with a sensor unit and measuring distances, shapes, and movements of objects by evaluating the readings of the touch-free and three-dimensional scanning. The process also includes issuing context-based information to affected passengers via a communications system, whereby the information is based on readings from the sensor unit. A process for monitoring and controlling such a door system.
1. A door system for a public transit vehicle with at least one door opening and a door that closes the door opening, the door system comprising:
a sensor unit for three-dimensional and touch-free scanning of a passenger compartment in the area of the door opening, wherein the sensor unit is configured for scanning distances, shapes, and movements of objects,
wherein the sensor unit determines speed and direction in which objects move,
and at least one communication element configured for automatically issuing context-based communication with passengers on the basis of readings from the sensor unit.
2. The door system according to claim 1 , wherein the sensor unit measures distances based on a transmitted point cloud in which the delay of a reflection of a pulse is evaluated.
3. The door system according to claim 1 , wherein the sensor unit comprises an optical sensor.
4. The door system according to claim 2 , wherein the sensor unit comprises an evaluation unit.
5. The door system according to claim 2 , wherein the sensor unit comprises a laser scanner unit.
6. The door system according to claim 1 , wherein the passenger compartment comprises an interior space of the vehicle or an exterior space outside the vehicle.
7. The door system according to claim 1 , wherein two door wings are present, and the sensor unit monitors a space between the main closing edges of the two door wings.
8. The door system according to claim 1 , wherein the sensor unit is designed and oriented such that in addition, outside the vehicle a space is scanned which extends up to 5 m from the door opening.
9. The door system according to claim 1 , wherein a space through which the door or the door wings move, is monitored by the sensor unit to prevent injury, whereby the opening movement of the door or the door wing is interrupted when there is an obstacle in that space.
10. The door system according to claim 1 , wherein the communication element is designed as speakers in the door area.
11. The door system according to claim 1 , wherein the communication element is designed as monitor in the door area.
12. The door system according to claim 1 , wherein the communication element is designed as lights in the door area.
13. A process for monitoring and control of a door systems of a public transit vehicle, the process including the following steps:
touch-free and three-dimensional scanning of a passenger compartment in the area of a door opening with a sensor unit,
measuring distances, shapes, and movements of objects by evaluating the readings of the touch-free and three-dimensional scanning,
determining speed and direction in which objects move, and
automatically issuing by the door system at least one context-based information to affected passengers via a communications system, whereby the information is based on readings from the sensor unit.
14. The process according to claim 13 , wherein boarding and de-boarding passengers are determined and counted, and information is given to passengers that is based on the rate at which the vehicle is being filled.
15. The process according to claim 13 , wherein the sensor unit scans a boarding aid whereby, when obstacles such as a layer of snow or ice are determined, an appropriate information is given to the passengers.
16. The process according to claim 13 , wherein the sensor unit determines whether an object or a passenger is leaning against a door or a door wing while the door or the door wing is to remain closed and whether an appropriate message should be sent to the passenger while the door or the door wing remains closed until the potential danger is removed.
17. The process according to claim 13 , wherein the sensor unit determines whether an object, or particularly a passenger, is standing too closely to the door or a door wing while the door or the door wing is to be opened and whether an appropriate message should be sent to the passenger while the door or the door wing remains closed until the potential danger is removed.
18. The process according to claim 13 , wherein the sensor unit determines whether passengers are moving towards a door marked as defective and whether it is necessary to send the passengers an appropriate message.
19. The process according to claim 13 , wherein the sensor unit determines, whether passengers are preventing the closing of a door by standing to close to the door and whether an appropriate information is already being sent to the passengers prior to the door closing.
20. The process according to claim 13 , wherein the sensor unit determines whether passengers have a bicycle with them; and that it is checked whether there is room for the bicycle in this car, and if not, the passengers are told whether there might be room in another car.