Abstract:
In the method of the present invention, a procedure and an apparatus for the entry of calls in an elevator system are de scribed. In the method, a destination call is entered outside the elevator car if the starting floor is a floor with intensive departing traffic. On other floors, the customer first enters a collective-control up or down call in the traditional manner and then a destination call in the elevator car. In an example of the method, the above procedure additionally comprises a function whereby the elevator customer is identified and an identified regular customer is allowed to select and confirm his/her destination floor from among one or more preprogrammed alternatives . As preprogrammed floors, the destination floors most frequently used by the regular customer in question are stored, the starting floor being fixed. Preprogrammed floors can be set for several different starting floors separately. When the customer is an occasional user of the elevator system or when a regular user is going to floors other than the preprogrammed floors, a call is entered as a destination call in the elevator lobby on floors with intensive departing traffic and as an up or down call according to collective control in the elevator lobby and on other floors .
Abstract:
The invention refers to an arrangement for the allocation of destination calls in an elevator system with at least two elevators, comprising a wireless transmitter device connected with an allocation control of the elevator system. The transmitter device interacts within a certain mutual distance with a wireless ID device carried by a passenger, which ID device is configured to transmit to the transmitter device an ID which is linked with a special transportation service in the elevator system. The elevator system comprises a memory with correlated operation parameters of the elevators which are linked to the particular special transportation service request of the ID device, whereby the ID device is configured to transmit ID data and/or a call with a departure floor and destination floor to the allocation control. The transmitter device is located within a transmitter accommodation space located at least in the vicinity of an elevator, whereby the transmitter device is located in the vicinity of a tag carrying a symbol correlated to the special transportation service.
Abstract:
Provided are an elevator charging system, a management server, a moving body, a moving body server, a charging method, and a storage medium storing program that make it possible to charge usage fees reflecting the demand of moving bodies. In a charging system (1), cars (5) transport moving bodies (11) between a plurality of floors. A communication unit (7a) receives usage requests each corresponding to one of the moving bodies (11). Each of the requests includes information about a call requesting assignment to one of the cars (5), and information about a desired price for a usage fee. An assignment unit (8) assigns each call to one of the cars (5) while prioritizing calls in requests having higher priority, based on information including the desired prices. A storage unit (9a) stores therein the fees charged for the requests of which the calls have been assigned.
Abstract:
An elevator request authorization system is provided and includes a second server configured to grant an elevator use token upon request from a first server registerable with the second server for establishing secure communications between the second server and the first server. The first server is configured to be receptive of an elevator request relating to elevator usage by a user, to authenticate the user, to authorize the elevator usage by the user to which the elevator request relates, to request the elevator use token from the second server via the secure communications upon authentication and authorization and to deliver the elevator use token to the user upon receipt.
Abstract:
Methods and systems for making elevator service requests in a building. The method including obtaining a floor plan for the building and overlaying a measurement system of suitable scale onto the floor plan. The method also includes identifying relevant features and their location in the floor plan based on the measurement system, determining a pathway from a user device to a target area in the vicinity of an elevator door based on the relevant features, and computing a travel duration from the user device to the target area. Finally, the method includes assigning an elevator car to a user based on a user service request at the user device and the travel duration.
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:
An elevator interactive terminal and an elevator interactive system. The elevator interactive system of the present invention comprises an elevator interactive terminal, configured with a social communication media module, wherein a user is registered as a first registered user in the social communication media module; and a server coupled to a communication bus of an elevator system, configured with the social communication media module and to register an elevator as the second registered user in the social communication media module, wherein, based on the social communication media module, interactive communication is performed between the first registered user on the elevator interactive terminal corresponding to the user and the second registered user on the server corresponding to the elevator.
Abstract:
A ropeless elevator system (80) is disclosed. The ropeless elevator system (80) may include a plurality of elevator cars (24), a first hoistway (22), a second hoistway (26), an upper transfer station (34), and a lower transfer station (36). Movement of each of the plurality of elevator cars (24) may be controlled according to a predetermined assignment (90, 112) in which: a plurality of floors (101-110, 121-130) is divided into a plurality of floor groups (92, 94, 114, 116), each of the plurality of elevator cars (24) is assigned to at least one of the plurality of floor groups (92, 94, 114, 116), and each of the plurality of elevator cars (24) is dispatched only to floors within the at least one floor group assigned thereto.