Abstract:
The present invention discloses a solution for maintaining passenger-specific favorite floor lists in an elevator system, which comprises at least one elevator, call-giving devices for registering calls given by the passengers, a control system that is responsive to the aforementioned calls and memory means, in which is recorded at least one passenger-specific favorite floor list. A passenger is identified in connection with giving a call on the basis of the ID number of an identifier. The favorite floor list is updated on the basis of calls given by the passenger and/or a given updating criterion.
Abstract:
An elevator system in which plural elevator banks are present in a building, and a security gate through which a user should pass is defined for each bank, appropriate guidance can be given to the user without reducing the elevator operating efficiency. The elevator system includes a notifying device for notifying the user who passes through the security gate of information; an identifying mechanism determining, based on the identification information inputted from an inputting device when the user passes through the security gate, whether or not the user is a pre-registered person; and a determining mechanism determining whether or not the security gate through which the user, who is determined to be a pre-registered person by the identifying mechanism, passes is a normal gate for the user. If the result of determination is Yes, elevator call registration is made, and if the result of determination is No, the notifying device notifies the user of information for guiding the user to the normal gate with no elevator call registration being made.
Abstract:
A visitor can receive guidance (e.g., movement directions) through a portable electronic device. The visitor can read an information-containing tag with the electronic device to input location information into the device. With the electronic device, the visitor can then select one or more destinations. The device then provides directions to the visitor for the one or more destinations.
Abstract:
An exemplary system for communicating with an elevator passenger includes a plurality of elevator passenger interface devices configured to allow an elevator passenger to indicate at least an elevator service request. The interface devices are configured to communicate at least elevator service information to an elevator passenger. A server communicates with the plurality of interface devices. The server is configured to determine when there is input at any of the interface devices. The server is configured to determine a meaning of such input. The server is also configured to determine output to provide at the corresponding interface device and to communicate the determined output to the corresponding interface device. The determined output is responsive to the determined meaning of the input.
Abstract:
In accordance with exemplary embodiments there is determining geo-routines of a user, the geo-routines based on at least one of a location and an altitude and a trajectory of the user, recording the determined geo-routines of user of the system; and based on a current trajectory of a user indicating that the user is going to use a transportation system, optimizing a use of the system according to the recorded geo-routines of the user of the system. In addition, sending information including a location and/or an altitude of a user, and a trajectory of the user, the information associated with a current geo-routine of the user, and receiving information to optimize the use of a transportation system, the receiving based on a current trajectory indicating that the user is going to use the transportation system and on the current geo-routine and/or historical geo-routines of a user of the transportation system.
Abstract:
A wireless telecommunication system includes a telecommunication device emitting signals in an area located in a moving conveyance while the moving conveyance is moving. Information is obtained representative of a destination area of the moving conveyance in which the signals emitted by the telecommunication device in the area located in a moving conveyance are not received. The signals emitted by the telecommunication device are obtained in the area located in a moving conveyance. The obtained signals are emitted in the destination area of the moving conveyance prior to the arrival of the moving conveyance in the destination area.
Abstract:
An elevator operation controller can land the elevator cage of an elevator at a predetermined floor by giving a command to the elevator without using a special key or a special portable terminal. An elevator operation controller 10 includes a receiving unit 11 specified by a proper telephone number and capable of receiving a speech from the elevator user through a public communication line, a speech recognition unit 12 for recognizing the speech of the elevator user received by the receiving unit 11, a command processing unit 13 for converting a command given by the elevator user and recognized by speech recognition made by the speech recognition unit 12 into an elevator operating signal, and an operation control unit 14 for controlling the operation of the elevator on the basis of the operating signal provided by the command processing unit 13.
Abstract:
Elevator call devices (41, 41a, 66, 75) have a programmable touch screen (42, 66, 74) which can be programmed to display (a) ten-key destination call buttons (46), (b) up hall call and down hall call buttons (58), or (c) N-key destination buttons (65), as well as buttons (50-53, 60, 63) which identify utilization of major floors of the building, including functions such as cafeteria, sky lobby, parking, public transport, and lobby, as well as tenants. A controller (78) programs the touch screen in dependence on (d) traffic volume, (e) time of day, (f) floor of the building where the touch screen is disposed or (g) identity of a particular passenger (VIP) in the vicinity of a touch screen.
Abstract:
A method and apparatus for verifying destination calls needed in an elevator system. In the method a person having entered a destination call is identified first on the floor level outside the elevator and again in the elevator car allocated to the person. The destination floor call received from a destination call device as well as starting floor information obtained from a detector used to identify the person having entered the call are transmitted to the elevator control system, which, based on the destination call, allocates an elevator to the person having entered the call. If the system identifies the person having entered the call when the person is in the elevator car, then the destination call is acknowledged in the system as executed. On the other hand, if the person having entered the call is not identified in the elevator car allocated to him/her, then the previously entered destination call is kept valid and a new elevator is allocated to the person having entered the call.
Abstract:
An elevator system (20) includes a transceiver (22) that receives at least one wirelessly transmitted signal (24). In one example, a signaling device (26) includes a plurality of switches (28) that can be activated to provide a signal indicating a desired or intended destination. The signal also provides an indication of the individual from whom the signal is received. A system controller (30) responds to the signal by assigning an elevator car (32) to travel to the intended destination. When the elevator car (32) is situated to receive the individual, in the event that another wireless signal is received, the system provides at least one access feature including delaying closing an elevator car door or generating an audible sound to guide the individual to the car. In one example, the system maintains information regarding expected locations of individuals providing such signals to facilitate providing assistance to them for exiting a building, for example.