Abstract:
The present invention concerns a method and a system for transferring an ongoing communication in which a mobile terminal is involved between a first and a second base stations of a wireless cellular telecommunication network, one of the base stations being located in a moving conveyance. The first base station: obtains an information indicating that the first base station will become neighbour of the second base station, identifies a mobile terminal which is currently under communication with a remote telecommunication device through the first base station, transfers a message to the second base station requesting the second base station to prepare resources enabling the continuation of the communication through the second base station, obtains an information indicating that the first base station is neighbour of the second base station, transfers the ongoing communication in which the mobile terminal is involved to the second base station.
Abstract:
A method of guiding a user in an environment particularly in a building, utilizes at least one first communications unit communicating data to a mobile second communications unit carried by the user. The first communications unit transmits a contact signal within a predetermined range for establishing contact with the second communications unit. If the second communications unit is located within the range and receives the contact signal, contact is established between the first communications and the second communications unit. In order to enable guidance of the user through the environment by means of the second communications unit, data are communicated from the first communications unit to the second communications unit.
Abstract:
In an elevator call registration system, elevator-related information is constantly transmitted from an elevator call registration server, and a call registration reservation for a desired elevator can be made by selecting contents from the information. Therefore, it is not necessary for the user to access a site where necessary contents are stored, enabling an easy call registration reservation. Further, since the call registration detects that the user is approaching the reserved elevator, the car is positioned at a good time and the user can smoothly go to a desired floor.
Abstract:
The invention relates to the equipping of an elevator (1, 2) with hardware in order to control the same. This hardware is provided in the form of a customary radio telephone (3) which serves as a unit for controlling the elevator. The radio telephone (3), also designated as mobile, comprises a keypad (4) provided as a data entry unit, and comprises a display element (5), also named display, which is provided as a data output unit. The mobile (3) can wirelessly communicate with a mobile radio telephone network (6), whereby speech and/or data can be transmitted. The mobile radio telephone network (6) can contact other mobiles or a terminal (7) in order to transmit speech and/or data. The terminal (7) is comprised of a computer system, designated as server (8), which has access to a memory (9) containing elevator-specific and/or general information. The server (8) is also connected to the elevator system (1, 2) via an interface (10). The mobile (3), mobile radio telephone network (6) and terminal (7) form a human-machine interface between the user and the elevator system (1, 2).
Abstract:
The invention relates to the equipping of an elevator (1, 2) with hardware in order to control the same. This hardware is provided in the form of a customary radio telephone (3) which serves as a unit for controlling the elevator. The radio telephone (3), also designated as mobile, comprises a keypad (4) provided as a data entry unit, and comprises a display element (5), also named display, which is provided as a data output unit. The mobile (3) can wirelessly communicate with a mobile radio telephone network (6), whereby speech and/or data can be transmitted. The mobile radio telephone network (6) can contact other mobiles or a terminal (7) in order to transmit speech and/or data. The terminal (7) is comprised of a computer system, designated as server (8), which has access to a memory (9) containing elevator-specific and/or general information. The server (8) is also connected to the elevator system (1, 2) via an interface (10). The mobile (3), mobile radio telephone network (6) and terminal (7) form a human-machine interface between the user and the elevator system (1, 2).
Abstract:
A remote controller linkage is established to an elevator system having one or more elevators and using a data transmission network (21) including at least one serial communication bus for the transmission of control signals between the operating and/or other devices belonging to the system, car calls, landing calls and other information obtained from and/or generated by the devices included in the elevator system. At least one of the serial communication buses belonging to the data transmission network (21) of the elevator system is connected to a functional unit (3,7,10,13) fitted to receive messages sent to it by a remote controller (1,22). On the basis of the message received, the functional unit (3,7,10,13) transmits into the serial communication bus a message containing at least one control, call or other datum and the bus address of the transmitting functional unit (3,7,10,13).
Abstract:
A remote call registration system for an elevator including a transmitting device carried by a user and a receiving device disposed at a position near to but spaced a distance from the elevator hall. A signal transmitted from the transmitting device is received by the receiving device when the user is at a given walking distance from the elevator hall and sent to a call registration device to register the call prior to arrival of the user at the elevator hall. The distance between the receiving device and the elevator hall is predetermined to be substantially equal to the walking distance corresponding to a mean waiting time required for the cage to arrive at the hall after the call is registered by the call registration device. Thus, the user's waiting time at the elevator hall is substantially reduced.
Abstract:
Elevator commands, such as car calls, are entered through a wireless, hand-held transmitter. A command is received and registered as if it were directly entered on the car-operating panel. Transmission of some calls is delayed after the call is entered on the transmitter.
Abstract:
A Bluetooth module in an elevator system in the field of elevator intelligent control technologies. The Bluetooth module according to the present invention is arranged substantially corresponding to a mounting hole of a first physical button/second physical button of the elevator system, such that a Bluetooth signal broadcast by the Bluetooth module can be propagated from at least part of the mounting hole to a landing zone/the interior of an elevator car. The first physical button is a physical button arranged on an elevator call panel assembly in the landing zone of the elevator system. The second physical button is a physical button arranged on an elevator call panel assembly of the elevator car of the elevator system. Embodiments can be easily implemented by transforming the existing elevator system and can achieve good coverage of Bluetooth signals in the landing zone and/or the interior of the elevator car.
Abstract:
According to an aspect, there is provided an elevator signalization apparatus. The elevator signalization apparatus comprises first receiving means for receiving floor information representing floor occupancy information associated with a building; output means for indicating floor occupancy to a user; second receiving means for receiving user associated information; and transmitting means for transmitting a control signal to an elevator controller based on the received user associated information.