The present invention relates to a method as defined in the preamble of claim 1 for controlling the elevators in an elevator bank.
Prior art is described in patent application U.S. Pat. No. 5,183,981 (B66B 1/20), which discloses a system for channeling an elevator group in up-peak conditions by optimizing the service to floors having a high traffic intensity, by grouping the various floors of the building into sectors. In the arrangement described in the specification, a given elevator car in the elevator group is assigned to serve a sector comprising certain floors in the building. In this arrangement, the number of passengers arriving at floors above each entrance lobby floor is known.
In elevator technology, the above-described division of a building into service sectors is called zoning. Likewise, destination calls are generally known in elevator technology as target floor calls, which means that a passenger wanting to enter an elevator gives his/her target floor already in the lobby of departure when issuing a call for an elevator.
In addition, the above-described prior-art conventional zoning is based on the use of ordinary call buttons. The zone to be served by the elevators has to be shown on displays placed above the door openings of the elevators in the elevator bank, for example so that the information on the display above a given elevator says e.g. that the elevator in question serves floors 12-16, which are regarded as a service zone currently permanently allocated to certain elevators in the elevator group. Because the same elevator in this case may shortly be reallocated to serve a different zone, the information displayed often changes in the lobby of departure.
A problem encountered in prior-art implementations is the fact that the information shown on the displays above the elevators changes very often, which, in the case of large elevator banks, makes it difficult or even impossible to follow this information displayed, with the result that a passenger intending to use an elevator will not necessarily be able to catch or find the right elevator and his/her elevator journey is retarded and delayed substantially.
The principal problem in prior-art solutions is that the number of destination floor calls given by passengers without zoning is large, which increases the traveling time and reduces the transportation capacity of the elevators.
The object of the invention is to reduce the number of elevator-specific destination calls and stoppages and to eliminate the drawbacks encountered in the above-mentioned prior art.
In precise terms, the method of the invention for controlling the elevators in an elevator bank is characterized by what is disclosed in the characterization part of claim 1. The features of some preferred embodiments are disclosed in the subclaims.
By applying the method of the invention, significant advantages as compared with prior art are achieved.
According to the method of the invention for controlling the elevators in an elevator bank, passengers using the elevators do not know at all that zoning is implemented in the building, because the passengers are told immediately which elevator is going to serve them. In addition, a significant advantage as compared with the existing and known prior art is that no expensive separate elevator-specific displays showing information about service sectors comprising different floors in the building are needed in the elevator lobby, such displays being additionally difficult for the passengers using the elevators to follow.
A further advantage achieved by the present invention is that it also enables the use of extra large elevator groups. The invention makes it possible to use an elevator group comprising 12-16 or more elevators. The elevators may also be located in different lobbies.
An important advantage achieved by the present invention is that the zone limits for the elevators in an elevator group are dynamically changed according to the prevailing transportation need. Therefore, the invention provides the advantage that zoning expressly increases the transportation capacity “in a situation of heavy incoming traffic”.
Another significant advantage achieved by the present invention in conventional zoning of the elevators in an elevator pixel group in a building is that it makes it possible to know at an early stage the destinations of the passengers entering the elevator from each floor. Therefore, no elevators need to be allocated to floors or zones void of passengers from where no destination floor calls have been issued. Thus, the transportation capacity of the elevator group can be more efficiently allocated according to the actual transportation need currently prevailing on different floors of the building to zones where a peak traffic situation prevails and/or destination floor calls have been issued.
Furthermore, the present invention can be advantageously used to increase the transportation capacity of the elevators while significantly reducing the traveling times of passengers using the elevators as compared with conventional zoning or a mere elevator group using destination calls. On the other hand, passenger waiting times become longer in the case of an embodiment of the present invention.
The present invention concerns a method for controlling the elevators in an elevator bank in a building divided into zones comprising a plurality of floors via a process whereby destination floor calls are issued to the elevators by means of destination floor call input devices in the lobby of departure and the calls are distributed internally among different zones in the building by the elevator group control system. According to the most advantageous embodiment of the present invention, the elevators and the floors to be served are divided dynamically within the aforesaid elevator group control system into aforesaid zones, varying the numbers of elevators and the zone limits according to traffic forecasts and the need for transportation.
According to a second embodiment according to the invention, in the aforesaid elevator group control system, the zone limits of the zones are divided dynamically into standard floors according to the prevailing traffic. Thus, the zone limits of the zones comprising elevators of the elevator group are unchanged regardless of the transportation need. The maximum number of zones is equal to the number of elevators in the group.
According to a further embodiment, in the aforesaid elevator group control system, elevators are allocated dynamically between different zones.
According to a further embodiment, an elevator arriving at a lobby serves the zone that has remained longest without service and/or where the number of passengers waiting in the zone is largest. Information regarding the number of passengers waiting in each zone is obtained from destination control.
In addition, according to the present invention, one or more elevators in the aforesaid elevator group are preferably used to serve two or more zones in the aforesaid building according to the transportation need.
Further according to the invention, one or more elevators in the aforesaid elevator group allocated to a zone other than the zone comprising the entrance lobby floor are used to serve the entrance lobby floor in addition to their own zone according to the transportation need and traffic forecasts.
In addition, according to a further embodiment of the invention, one or more elevators in the aforesaid elevator group allocated to a zone other than the zone comprising a sky lobby floor are used to serve the sky lobby floor in addition to their own zone according to the transportation need and traffic forecasts.
Further according to an embodiment, in the aforesaid elevator group, using a destination floor call input device, the group elevator control system provides immediate information as to which one of the elevators in the elevator group has been allocated to the passenger.
Further according to an embodiment, the elevators in the aforesaid elevator group are allocated to different zones in such manner that the number of elevators in said elevator group that are allocated to each zone varies according to the transportation need in each zone.
In addition, according to an embodiment of the invention, the number of zone limits varies dynamically according to the transportation need and the transportation capacity of the aforesaid elevator group.
Further according to an embodiment, in the elevator group control system, dynamic zoning is activated when the volume of traffic within the elevator group exceeds a given limit value indicating a peak traffic situation.
In addition, according to an embodiment of the invention, a given zone is only served by elevators in the elevator group that have been actually allocated to the one zone in question or to several other zones.
In addition, according to an embodiment of the invention, it is possible that different elevators in the elevator group have been allocated to either one or two or more zones or to all zones in the building. Likewise, according to the invention, an embodiment is possible in which one or more of the elevators in the elevator group can be allocated to serve all zones.
In the following, the invention will be described in detail by referring to the attached drawings, wherein
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In the foregoing, the invention has been described by way of example with reference to the attached drawings while different embodiments of the invention are possible in the scope of the inventive concept defined in the claims.
Number | Date | Country | Kind |
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20021057 | Jun 2002 | FI | national |
Number | Date | Country | |
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Parent | PCT/FI03/00416 | May 2003 | US |
Child | 10990454 | Nov 2004 | US |