Abstract:
An elevator system having a double or multiple elevator cabins per elevator shaft can be controlled using a method, wherein at least one destination call is entered or at least one identification code is received on at least one call entry floor, said destination call or identification code designating an arrival floor; wherein at least one trip by at least one elevator cabin of the double or multiple elevator cabin from a departure floor to an arrival floor is determined for the destination call or identification code; wherein before determining a trip, it is determined whether at least one situation-specific parameter is fulfilled; and if said situation-specific parameter is fulfilled, at least one situation-compatible call assignment is determined for a trip having a floor difference of zero between the call entry floor and the departure floor or having a floor difference of zero between the destination floor and the arrival floor.
Abstract:
An apparatus and a method are disclosed by which it is determined whether a receiver has received an object identifier, and wherein, in case the receiver has received the object identifier, entry control information is created based on the object identifier, and in case the receiver has not received the object identifier, the entry control information is created based on default information.
Abstract:
The invention refers to an elevator system having a plurality of elevator cars, which elevator cars comprise several first cars and at least one second car, which second car differs from the first cars in its size and/or technical configuration, whereby the first cars and the second car run together within one and the same elevator shaft, which elevator system comprises an elevator control comprising a call allocation control having a first part connected to at least one call input device for allocating the first elevator cars and a second part connected to at least one call issuing means for the call allocation of the second car, whereby the first and second part of the call allocation control are configured to work independently of each other.
Abstract:
A ropeless elevator system includes a plurality of elevator cars configured to travel in a hoistway having at least one lane, a propulsion system to impart force to each elevator car of the plurality of elevator cars, and a controller. The controller is programmed to operate in an in-group mode where the plurality of elevator cars perform service demands, an out-of-group mode where at least one selected elevator car of the plurality of elevator cars is prevented from performing the group service mode service demands, and a transition mode where the at least one selected elevator car is prepared and transitioned from operation in the in-group mode to operation in the out-of-group mode.
Abstract:
An elevator system includes: a destination call registration device which accepts an operation of registering a destination call by specifying a destination floor; an exit floor selection part provided in the destination call registration device and by use of which a user selects an exit floor provided with an exit of a building as a destination floor of the destination call; an exit floor determination part which determines, on the basis of predetermined conditions, which floor is the exit floor from candidates for an exit floor which are set beforehand as floors capable of being selected as the exit floor among plural floors of the building; and a destination call registration part which registers the destination call in which the specific floor determined as the exit floor by the exit floor determination part is a destination floor in the case the exit floor selection part is operated by a user.
Abstract:
A passenger conveyance special loading system includes a depth-sensing sensor for capturing depth map data of objects within a field of view. A processing module in communication with the depth-sensing sensor receives the depth map data, the processing module uses the depth map data calculate passenger data associated with an object to determine a special loading condition. A passenger conveyance controller receives the passenger data from the processing module, the passenger conveyance controller controls a passenger conveyance dispatch control function in response to the special loading condition.
Abstract:
Embodiments are directed to receiving, by a controller comprising a processor, data that is external to a conveyance device, processing, by the controller, the external data, and controlling, by the controller, the conveyance device based on the processed external data, wherein the external data comprises at least one of: security management data and emergency services data.
Abstract:
The invention refers to a group control of an elevator group comprising several elevators, which group control comprises a destination control system with at least one destination call panel for issuing a first destination call by inputting a first destination floor whereupon the destination control system allocates said first destination call to a first elevator of said elevator group. The destination call panel has a link actuator, which, upon activation, initiates the destination control system to receive at least a second destination call with a second destination floor and/or departure floor, which second destination call is also allocated to said first elevator by the destination control system. By this measure passengers with different departure and/or destination floors can travel with the same elevator.
Abstract:
A method of allocating calls of a lift installation with at least one lift and at least one car per lift to move passengers in a journey from at least one input floor to at least one destination floor, a system for executing the method and a computer readable memory with instructions for executing the method. The method includes receiving input calls from passengers travelling from an input floor to a destination floor, each call identifying at least one floor as an input floor or a destination floor. A start zone with identified input floors and a destination zone with identified destination floors are determined from the input calls and destination calls. Each identified floor within a corresponding zone is considered using at least one selection criterion and a stopping floor is selected which satisfies the criterion. The car is caused to stop at fewer than all the identified input floors and identified destination floors during the journey.
Abstract:
An exemplary elevator input device includes a passenger interface configured to allow a passenger to place a call to indicate a desired elevator service. The elevator input device includes a controller configured to interpret any passenger input regarding desired elevator service. The controller identifies which of a plurality of elevator cars will be able to provide the desired elevator service according to a predetermined criterion. The plurality of elevator cars considered by the controller includes every elevator car that is capable of serving the call. The controller is also configured to assign the call to the identified elevator car.