The invention relates to solutions for presenting information during a run with an elevator.
An elevator system contains different display devices, with which information is displayed. The information presented generally relates to the use of the elevator, such as to information about the stopping floors of an elevator car, the location of an elevator car, et cetera. Developments in display technology have enabled the placement of thinner displays with better picture quality than before e.g. on the stopping floors of an elevator as well as in elevator cars. Owing to improved display technology, it would also be possible to present more diversified and more detailed information in an elevator system.
A new type of display technology for elevators also poses challenges, more particularly relating to the presentation of information. The more precise picture quality of displays is easily left unexploited and the larger amount of details on a display than before might even hamper understanding of the matter being presented if new displays are used simply to replace used displays that are based on simple images, numbers, et cetera, without any additional measures.
The aim of the invention is to provide a solutionto the problem for detecting and identifying the information to be presented on the display of an elevator car. To achieve this aim the invention discloses a method and also an elevator system as recited in the claims. Some inventive embodiments and inventive combinations of the various embodiments are also presented in the descriptive section and in the drawings of the present application.
In the method according to the invention for presenting information during a run with an elevator, the interior lighting of an elevator car is dimmed during a run sequence of the elevator car and information is presented inside on an illuminated display in the elevator car when the interior lighting of the elevator car has been dimmed. In a preferred embodiment of the invention the interior lighting of an elevator car is dimmed in the starting phase of a run of the elevator car and the interior lighting of the elevator car is brightened in the ending phase of the run of the elevator car.
In one embodiment of the invention the presentation of information on an illuminated display in an elevator car is started in connection with the dimming of the lighting of the elevator car and the presentation of information on an illuminated display in an elevator car is ended in connection with the brightening of the lighting of the elevator car.
In one embodiment said method is a method for a special run of an elevator. In a preferred embodiment of the invention a run sequence of an elevator car is started on the basis of a destination call. The information given in the destination call is compared to the special floors tabulated about the destination floor, and if the destination floor information corresponds to a special floor, a method for a special run of the elevator is started. Said special run of the elevator is preferably driven directly from the departure floor to the destination floor given in the destination call without stopping at other floors during the run.
In one embodiment of the invention the apparatus is video apparatus in the elevator car, with said illuminated display in the elevator car functioning as the display device of which video apparatus . In this case the film to be shown with the video apparatus is selected on the basis of said destination floor information. In this case the amount of information to be presented can be selected on the basis of the elevator journey e.g. such that when the elevator journey is longer the amount of information is increased.
In one embodiment of the invention the speed of the elevator car is determined and also the interior lighting of the elevator car is dimmed when the speed of the elevator car increases to a preset limit value. In one embodiment of the invention the interior lighting of the elevator car is brightened when the speed of the elevator car decreases to a preset limit value.
The elevator system according to the invention comprises an elevator car, means for controlling a run sequence of the elevator car, means for adjusting the interior lighting of the elevator car, an illuminated display, fitted to the inside of the elevator car, and also a control unit, which is configured to perform any method/function according to what is disclosed above in connection with a run with an elevator.
In a preferred embodiment of the invention the interior lighting of an elevator car comprises a LED light source fitted to the inside of the elevator car, and the means for adjusting the interior lighting of the elevator car are arranged to decrease and also, on the other hand, to increase, the luminous flux of said LED light source during a run sequence of the elevator car.
By means of the invention the visibility of information to be presented on a display of an elevator car can be improved by increasing the luminance contrast of the display in relation to the environment of the display.
Increasing the luminance contrast also increases the attention value of the information to be presented on the display, in which case the attention of elevator passengers can be directed to the display better. This is also an advantage e.g. in a situation when information that is important from the viewpoint of safety, or for other reasons, is presented on the display.
The dimming of the lighting during a run sequence of an elevator car also decreases the energy consumption of an elevator.
The preceding summary, as well as the additional features and advantages of the invention presented below, will be better understood by the aid of the following description of some embodiments, said description not limiting the scope of application of the invention.
In the following, the invention will be described in detail with reference to the attached drawings, wherein
The elevator control unit 8 takes care of the control of the movement of the elevator car 1 in response to destination calls. For this reason the elevator control unit 8 calculates the target value for the speed of the elevator car, i.e. the speed reference, according to which the elevator car is moved in the elevator hoistway. If the elevator system consists of a number of elevators, said elevator control unit 8 can also be a group control unit, which allocates a received elevator call to be served to one of the elevators of the elevator group such that the operation of the elevator group can be optimized towards set operational targets.
In the elevator system of
The lighting of the elevator car is implemented with LED luminaires 2. On the roof of the elevator car is a current supply device 9 for the LED luminaires, which current supply device forms from 230-volt network voltage an adjustable DC voltage for the supply voltage of the LED luminaires. The luminous flux of the LED luminaires is increased by increasing the DC voltage of the current supply device 9 and is decreased by decreasing the DC voltage of the current supply device 9.
The video apparatus 7 on the roof of the elevator car and also the current supply device 9 of the LED luminaires are connected to the elevator control unit 8 with a data transfer bus. Software 10 is recorded in the memory of the elevator control unit 8, by executing which software the processor of the elevator control unit 8 controls the lighting 2 of the elevator car and also the video apparatus 7. In the starting phase of a new run sequence the processor of the elevator control unit 8 sends to the current supply device 9 of the LED luminaires a control command for dimming the luminous flux of the LED luminaires and, in the same connection or after a short delay, also to the video apparatus 7 a control command for presenting information on the display 3 of the elevator car. In this case the current supply device 9 of the LED luminaires reduces the DC voltage to be supplied to the LED luminaires to a certain final value for voltage gradually such that the lighting of the elevator car dims evenly. After the lighting has dimmed, information received from the video apparatus 7 is started to be presented on the display of the elevator car, in which case the luminance contrast of the display 3 in the elevator car increases and the attention value and perceivability of the information to be presented improves.
In one embodiment of the invention special floors 6 are tabulated in the memory of the elevator control unit 8. The processor of the elevator control unit 8 compares the destination call received from a call-giving device 5 to the tabulated special floors, and if the destination floor information corresponds to a special floor 6, the processor starts a special run of the elevator. In this case passengers are transferred from the departure floor to the destination floor according to the destination call by driving the elevator car 1 directly to the destination floor without stopping at other floors in between. In this case the amount of information, such as the length of the film, to be displayed with the video apparatus 7 is selected on the basis of the special floor 6 and also on the basis of the departure floor of the run such that the information/length of film to be displayed is selected on the basis of the length of the elevator journey.
In one embodiment the elevator control unit 8 sends said control command for dimming the luminous flux of the LED luminaires at the same time as the doors of the elevator car start to be closed after the giving of a destination call. The video apparatus 7 is started when the speed of the elevator car 1 has reached a set value. In the ending phase of a run in connection with the deceleration phase the elevator control unit 8 sends a brightening command for the lighting when the speed of the elevator car has decreased to below a preset value. In the same connection, the video apparatus is also ended and the presentation of information ceases.
The invention is described above by the aid of a few examples of its embodiment. It is obvious to the person skilled in the art that the invention is not only limited to the embodiments described above, but that many other applications are possible within the scope of the inventive concept defined by the claims.
Number | Date | Country | Kind |
---|---|---|---|
20106228 | Nov 2010 | FI | national |
This non-provisional application is a Continuation of International Application No. PCT/FI2011/050981 filed on Nov. 7, 2011, which claims the benefit of Finnish Patent Application No. 20106228 filed in Finland on Nov. 22, 2010. The entire contents of all of the above applications are hereby incorporated by reference.
Number | Name | Date | Kind |
---|---|---|---|
3110879 | Nikazy | Nov 1963 | A |
5042620 | Yoneda et al. | Aug 1991 | A |
5485897 | Matsumoto et al. | Jan 1996 | A |
5606154 | Doigan et al. | Feb 1997 | A |
5844181 | Amo et al. | Dec 1998 | A |
6076638 | Gertz | Jun 2000 | A |
6341668 | Fayette et al. | Jan 2002 | B1 |
6578675 | Wilson et al. | Jun 2003 | B2 |
6615175 | Gazdzinski | Sep 2003 | B1 |
7000735 | Meyer | Feb 2006 | B2 |
8297791 | Kuang et al. | Oct 2012 | B2 |
8373345 | Mattila et al. | Feb 2013 | B2 |
8528701 | Schwarzentruber | Sep 2013 | B2 |
20040188182 | Walters et al. | Sep 2004 | A1 |
Number | Date | Country |
---|---|---|
1864933 | Dec 2007 | EP |
7-252029 | Oct 1995 | JP |
9-328264 | Dec 1997 | JP |
WO 9840816 | Sep 1998 | WO |
WO 9936341 | Jul 1999 | WO |
WO 2008135627 | Nov 2008 | WO |
Entry |
---|
Translation JP19940044087 and JP 19960149192. |
Number | Date | Country | |
---|---|---|---|
20130248301 A1 | Sep 2013 | US |
Number | Date | Country | |
---|---|---|---|
Parent | PCT/FI2011/050981 | Nov 2011 | US |
Child | 13890514 | US |