Abstract:
An elevator hall call registration apparatus automatically registers a destination floor call based on verification information by a personal authentication device. The hall call registration apparatus includes a first personal authentication device which authenticates a user, a hall call registration apparatus main body which performs destination floor call registration based on verification information including personal ID unique to the user verified in the first personal authentication device, and a destination floor changing device which accepts an operation for the user to perform at least one of a change and cancel of the destination floor of a destination floor call registration. If it is judged based on an operation performed in the destination floor changing device that the operation is performed by the user authenticated by the first personal authentication device, the hall call registration apparatus can perform a change and cancel of a destination floor of the destination floor call registration.
Abstract:
An elevator security system for a building includes data relating to a floor that a user may access in the building, a device in which the data is stored, a credential containing the data in a machine readable format and created by the user, and a first machine reader reading the credential and sending data therein to the device for querying whether the user may access the floor, the device allowing access to an elevator car for transport to the floor if the credential is in sync with the data stored in the device.
Abstract:
A method for determining a destination call for use by an elevator installation with a control unit and at least one destination call device includes ascertaining several destination calls and making them known to the user by the destination call device. A destination call is selected by a change in position of the user and/or a data communication is activated between the destination call device and a communications unit, which is carried by the user, within a defined range of a radio link section of the destination call device and thereupon a destination call is selected by a change in position of the communications unit inside or outside the radio link section. The selected destination call is communicated to the control unit for serving the destination call.
Abstract:
A method of operating an elevator system in a building with at least one building door includes through opening and/or closing the building door the floor of the opened and/or closed building door is defined as the start floor and a destination call for an elevator car to the start floor is actuated. As soon as the elevator car has reached the start floor, an elevator door of the start floor is opened. As soon as at least one user has entered the elevator car, the opened elevator door is closed and the user is conveyed by the elevator car to a destination floor, wherein the destination floor is defined by a destination call stored for a start floor.
Abstract:
A method for enabling the use of an elevator system by disabled persons includes detecting at least one position change of a user using at least one sensor, said position change being in the form of at least one signal and at least one reference signal. The signal is then compared to the reference signal. At lease one signal status change is generated when at least one predefined comparison result is fulfilled. For the generated signal state change, the elevator system is at least partially brought to an operating mode enabling the use thereof by disabled persons.
Abstract:
A person is detected before entering an elevator in a building, and a destination floor desired by the person is detected. When the person leaves the elevator, the floor on which the person leaves the elevator is detected using a further detecting device. An action is triggered if the floor on which the person leaves the elevator and the destination floor do not match.
Abstract:
The invention relates to a method of operating an elevator system in a building with at least one building door (2, 2′, 2″). Through opening and/or closing the building door (2, 2′, 2″) the floor (1, 1′, 1″) of the opened and/or closed building door (2, 2′, 2″) is defined as the start floor and a destination call for an elevator car (7) to the start floor is actuated. As soon as the elevator cage (7) has reached the start floor, an elevator door (3, 3′, 3″) of the start floor is opened. As soon as at least one user has entered the elevator car (7), the opened elevator door (3, 3′, 3″) is closed and the user is conveyed by the elevator car (7) to a destination floor, wherein the destination floor is defined by a destination call stored for a start floor.
Abstract:
A method of controlling a lift installation with at least one lift car, at least one lift control and at least one mobile apparatus, and a control system for a controlling a lift installation. A reporting device near the lift installation receives at least one activation signal from a transmitting/receiving device of a mobile apparatus. The reporting device activates in response to the received activation signal. At least one network address of a recognition device of a lift control of the lift installation is transmitted from the activated reporting device to the transmitting/receiving device of the mobile apparatus.
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:
Systems, methods and devices for real-time contactless elevator service operation of an elevator includes a trained neural network (TNN) model. The TNN model is trained using a training processor with augmented datasets as a synthetic training dataset, to later perform elevator identifier recognition. The augmented data sets are generated from synthetic text images, the synthetic text images are augmented with different geometrical parameters and visual parameters to a predetermined number of variations in appearance to a set of training elevator identifiers. A camera captures a user image. A text image portion from the user image is extracted using the TNN model, and detects an elevator identifier in the extracted text image portion using the extracted text image portion and the TNN model. The detected elevator identifier is displayed for user confirmation or user cancellation, and upon user confirmation, generates a control command based the detected elevator identifier associated with an elevator service.