Abstract:
A method and an elevator call entry system for calling an elevator in a building (1) to a passenger's (3) starting floor. The passenger's (3) arrival is detected by means of a first remote sensing device (5) , which is placed at a first distance from the elevator. Next, an elevator call is generated to serve the passenger (3) detected by the remote sensing device (5) . The call generated by the first remote sensing device (5) is confirmed on the basis of a detection made by a second remote sensing device (7) , which is located at a second distance from the elevator, the second distance being shorter than the first distance.
Abstract:
A method and an elevator call entry system for calling an elevator in a building (1) to a passenger's (3) starting floor. The passenger's (3) arrival is detected by means of a first remote sensing device (5) , which is placed at a first distance from the elevator. Next, an elevator call is generated to serve the passenger (3) detected by the remote sensing device (5) . The call generated by the first remote sensing device (5) is confirmed on the basis of a detection made by a second remote sensing device (7) , which is located at a second distance from the elevator, the second distance being shorter than the first distance.
Abstract:
A conveyance system comprises at least one user interface having at least one service request pushbutton for providing service requests to the conveyance system. An identifier device is provided to a passenger. The identifier device stores identifier device data for determining a service profile of the identifier device. The identifier device data in the identifier device is read when a passenger presses or touches a service request pushbutton of the user interface. Based on the data read from the identifier device, the service profile of the identifier device is determined. A service request connected to the service request pushbutton is activated based on the service profile.
Abstract:
A method for tracking objects includes providing each of at least two different objects with a transmitter having individualized identifier data; logically connecting the objects to each other by connecting the identifier data of the transmitters to each other; recording the identifier data of the transmitters of the objects in a memory; connecting contact information of the object in question to the identifier data; detecting the transmitter of the object with a receiver of an identification point when the object comes close to the identification point; determining based on the identifier data contained in the memory whether at least two objects logically connected to each other have traveled past the identification point inside a pre-defined time window; and performing one or more pre-defined feedback actions when at least two of the objects logically connected to each other have not traveled past the identification point inside the pre-defined time window.