METHOD FOR CONTROLLING A TRANSPORT DEVICE, NAMELY AN ESCALATOR OR A MOVING WALKWAY
20190047827 ยท 2019-02-14
Assignee
Inventors
Cpc classification
F16P3/142
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B66B27/00
PERFORMING OPERATIONS; TRANSPORTING
B66B29/08
PERFORMING OPERATIONS; TRANSPORTING
B66B25/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66B29/00
PERFORMING OPERATIONS; TRANSPORTING
F16P3/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A method may be employed to control a transport device such as a moving walkway or an escalator with a control unit. The transport device may include a transport area for accommodating a person to be transported, transport means such as movable pallets or movable steps adapted for conveying the person located in the transport area in a standing manner, drive means adapted for driving the transport means, and an image recording device for creating visual images of a sector of the transport area. Based on the recorded images a movement of the person within the transport area is analysed. Based upon a result of the analysis the control unit is transferred into a safety modus.
Claims
1.-11. (canceled)
12. A method for controlling a transportation device with a control unit, the transportation device including a transport area for accommodating a person to be transported, transport means adapted for conveying the person in the transport area in a standing manner, drive means adapted for driving the transport means, and an image recording device for generating visual images of a sector of the transport area, the method comprising: analyzing a movement of the person within the transport area based on the visual images; and transferring the control unit into a safety modus based on the analysis of the movement of the person. an
13. The method of claim 12 comprising generating with the image recording device the visual images, which include a sequence of at least two visual images of the person traveling in the transport area, wherein the analyzing comprises comparing heights of representations of the person in the at least two visual images.
14. The method of claim 12 comprising generating with the image recording device the visual images, which include a sequence of at least two visual images of the person traveling in the transport area, wherein the analyzing comprises filtering pixels of a representation of the person and analyzing an optical flow of the pixels.
15. The method of claim 12 comprising generating with the image recording device the visual images, which include a sequence of at least two visual images of the person traveling in the transport area, wherein the analyzing comprises filtering pixels of representations of the person in the at least two visual images and analyzing an optical flow of the pixels.
16. The method of claim 12 wherein the analyzing comprises performing a first evaluation that leads to a result, wherein the control unit is transferred into the safety modus if the result indicates that the person is falling or has fallen.
17. The method of claim 12 wherein the analyzing comprises performing a first evaluation that leads to a result, wherein the control unit is transferred into an intermediate modus if the result indicates that the person is falling or has fallen at a falling time.
18. The method of claim 12 wherein the analyzing comprises performing a first evaluation that leads to a result, wherein the control unit is transferred into an intermediate modus if the result indicates that the person is falling or has fallen.
19. The method of claim 18 comprising performing a second evaluation when the control unit is in the intermediate modus, wherein if the second evaluation leads to a result that indicates that the person is standing up at a stand up time and if a predetermined time condition is fulfilled, the control unit is transferred into a normal operation modus, and if the second evaluation leads to a result that indicates that the person is not standing up at the stand up time the control unit is transferred into or maintained in the safety modus.
20. The method of claim 18 comprising: detecting a location of the person, who has fallen; and determining a time-left period until the person reaches an exit of the transport means based on the location of the person.
21. The method of claim 18 comprising performing a second evaluation when the control unit is in the intermediate modus, wherein if the second evaluation leads to a result that indicates that the person is standing up and if a predetermined time condition is fulfilled, the control unit is transferred into a normal operation modus, and if the second evaluation leads to a result that indicates that the person is not standing up the control unit is transferred into or maintained in the safety modus.
22. The method of claim 21 comprising: detecting a location of the person, who is not standing up based on the second evaluation; determining a time-left period until the person reaches an exit of the transport means based on the location of the person; and transferring the control unit into the safety modus if the time-left period is less than a predetermined period.
23. The method of claim 12 comprising: detecting a location of the person, who has fallen; and determining a time-left period until the person reaches an exit of the transport means based on the location of the person.
24. A transportation device comprising: a control unit; a transport area for accommodating a person to be transported; transport means adapted for conveying the person in the transport area in a standing manner; drive means adapted for driving the transport means; and an image recording device for creating visual images of a sector of the transport area, wherein a movement of the person within the transport area is analyzed based on the visual images that have been created, wherein the control unit is transferred into a safety modus based on the analysis of the movement of the person.
25. The transportation device of claim 24 wherein the control unit is adapted to analyze the movement of the person within the transport area based on the visual images that have been created.
26. The transportation device of claim 25 wherein the control unit is adapted to decelerate the drive means or to trigger an alarm based on the analysis of the movement of the person.
27. The transportation device of claim 24 wherein the control unit is adapted to decelerate the drive means or to trigger an alarm based on the analysis of the movement of the person.
28. The transportation device of claim 24 configured as a moving walkway.
29. The transportation device of claim 24 configured as an escalator.
30. The transportation device of claim 24 wherein the transport means comprises movable pallets or movable steps.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0025] The invention is illustrated in more detail below by means of drawings.
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
BEST MODUS FOR CARRYING OUT THE INVENTION
[0032]
[0033] The moving walkway 3a comprises further a number of video cameras 9, which are directed on the transport area 6 for recording images of the transport area 6 and the person 2 in there. The cameras 9 are connected to a control unit 8, which is adapted to analyse the recorded images, as explained subsequently. The control unit 8 can be connected by a wired or wireless data connection 13 to the transport device control 17 which is capable of stopping the drive unit by issuing a respective stop order to the drive means 3 or triggering alarm commands to other transport device components (buzzers, lighting appliances, etc.). Issuing the stop order may be realized by outputting an explicit stop signal or by terminating an enabling signal, which is outputted previously. The transport area, or at least sections of the transport area constitutes an observation area, which is observed by the cameras 9. The control unit may include a tracking module able to identify a person that is detected in the current image and has been detected into previous images as the same person. The control unit may be understood as an assembly of one more control sub-units, in particular a first control sub-unit for analysing the images and a second control sub-unit for controlling the drive means.
[0034]
[0035] The inventive method will be explained in more detail with the help of the
[0036]
[0037]
[0038] The second height h12 is compared to the first height h11 of the representation. If the second height is significantly smaller than the first height h12, it is detected in a first evaluation, that the person is fallen on the ground (evaluation by height comparison).
[0039] Another possibility performing the first evaluation is to analyse the flow of pixels of the representation 10 between the two images. Therefore at least parts of the representations 10 are braked down to pixels, wherein the flow of the pixels between in a sequence of images is analysed. Using the optical flow is a commonly known method in image data processing (see also https://en.wikipedia.org/wiki/Optical_flow).
[0040] If the flow of the pixels, as shown in
[0041] To perform the prescribed evaluation methods it is preferable, that the line of sight of the cameras onto the observation area have a horizontal component, in particular to better detect any motion parameters of the person in a vertical direction.
[0042] In
[0043] In
[0044] However this waiting period is only applicable if the person has a sufficient distance to the exit area 16 of the transport device. Therefore a time t_toExit until the person has reached the exit area 16 at a time t_Exit is calculated, which is continuously reducing. If the time t_toExit is larger than a predetermined minimum value t_min, there is still a safe distance between the person and the exit area 16. In this case the system waits for the person to stand up. If the time t_toExit decreases below the minimum value t_min, a safety distance between the person and the exit area is not given anymore. Now the control unit switches finally into safety modus S and reduces massively the drive speed or stops the drive means.
[0045] So if in the intermediate modus a second evaluation result at the time t_D the person is standing up before the time t_toExit has decreased below the minimum value t_min, then the drive means are not stopped (
[0046] The evaluation by height comparison and the evaluation by flow analyse can be combined to perform the first and/or second evaluation. Further for performing the second evaluation can be performed with the same principal method as the first evaluation is performed, but only in reversed manner.
LIST OF REFERENCE NUMBERS AND DESIGNATIONS
[0047] 1 moving walkway/escalator [0048] 2 person [0049] 3 pallet/step [0050] 4 band of pallets/steps [0051] 5 handrail [0052] 6 transport area [0053] 7 drive motor [0054] 8 control unit [0055] 9 video camera [0056] 10 representation of person in image [0057] 11 first image [0058] 12 second image [0059] 13 data connection [0060] 14 height-over-time diagram [0061] 15 entrance [0062] 16 exit [0063] T transport direction [0064] V Vector of pixels [0065] h height of representation of person [0066] N normal operating modus [0067] I intermediate operating modus [0068] S safety modus