Abstract:
An elevator user creates on a user terminal an individual user program, that is adapted to his needs, for operating the elevator. The user terminal can include a keypad for selecting commands and entering values, and a screen for displaying the command sequence. Depending upon authorization, the user can access the entire command set or only certain commands. The user program is transmitted to a terminal of an elevator control by wireless communication and proceeds to a program control which adds to the user program data required for execution and stores it in a memory. A task manager of the control program initiates the execution of the user program by an interpreter that interprets the program step by step. In the case of elevator-specific instructions such as, for example, travel commands or door opening commands, the interpreter calls up an interface that initiates the further execution by an elevator control.
Abstract:
A potential elevator passenger or occupant (bearer) carries a portable transmitting device with which he must overtly indicate his intent to take an elevator trip before interrogation by a beacon will cause an elevator call to be automatically registered for him, or indicate his intent before gaining access to a space. The intent to take a trip is cancelled when the bearer enters an elevator car, requiring an additional overt act prior to entering an automatic elevator call the next time that the bearer approaches an elevator. Default destinations (floors or spaces) may be signified for the bearer, depending on the floor where the device is located, or the bearer may establish an alternative destination, the alternative destination being cancelled from the device when the bearer enters an elevator or gains access to a space. The intent may be managed and a default destination may be provided either by the portable device or by a system in the building. Authentication of the bearer's voice may precede provision of the token. Tokens may be manifested by the presence alternative destinations.
Abstract:
A portable input apparatus permits an elevator destination call to be generated remotely from an associated elevator installation with respect to time and location. The input apparatus can be formed as, for example, a wristwatch having a user interface including a first display for visually indicating data, a first keyboard for the manual input of data or travel commands and an audio unit for the acoustic input of data or travel commands and for the generation of audio information to the elevator user. A destination floor identification, such as the English word “twenty-seven”, can be an acoustic command destination call entered into the input apparatus and indicated on the first display as “27” whereby in the proximity of the elevator installation, the destination call is automatically communicated to an elevator control of the elevator installation. The elevator control then communicates to the portable input apparatus the identity of the elevator car that has been assigned to serve the call.
Abstract:
A remote control arrangement (and method) for generating a car command remotely, includes a wireless transmitter and a wireless receiver which is coupled to an elevator controller. The receiver is detachably connected to wiring which leads to the controller. After finishing use of the transmitter/receiver arrangement, elevator service personnel detaches the receiver from the elevator wiring leading to the controller.
Abstract:
A remote controller linkage is established to an elevator system having one or more elevators and using a data transmission network (21) comprising 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:
An elevator system including an elevator controller configured for: effecting a first communication with a mobile device to receive data from an electronic calendar that is activated on the mobile device, rendering a plurality of determinations from the first communication, including: a first determination that a first entry in the electronic calendar indicates that a passenger associated with the mobile device has a first scheduled event that occurs at a first scheduled time, a second determination to effect elevator service proximate to the first scheduled time to the passenger, and effecting a second communication with the elevator car to thereby effect the second determination.
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.
Abstract:
An elevator system that allows a plurality of autonomous mobile bodies to be rearranged in an alighting order in a car. The elevator system includes processing circuitry to move and stop an elevator car based on information indicating destination floors transmitted from autonomous mobile bodies, to select an autonomous mobile body in the car and an autonomous mobile body that will board the car as targets to be rearranged. The processing circuitry is further to determine an alighting order of the autonomous mobile bodies to be rearranged based on the destination floor of each of the autonomous mobile bodies to be rearranged, and to transmit information indicating the alighting order to each of the autonomous mobile bodies to be rearranged so that the autonomous mobile bodies are arranged one by one in the alighting order.
Abstract:
An elevator system with an elevator car includes a controller for the elevator car, at least one processor, and a wireless network access point. According to a method of controlling the elevator car, a portable device transmits a probe request, the portable device is carried by a passenger of the elevator system. The probe request contains at least a first probe request data set, the first probe request data set is of a first type. The wireless network access point detects the probe request. The at least one processor accesses data storage. In the data storage there is stored a plurality of passenger profiles. Each passenger profile of the plurality of passenger profiles contains a first profile data set of the first type and a second profile data set representing at least one destination floor.
Abstract:
An elevator control system, an elevator system including the elevator control system, and a method for controlling an elevator. An elevator control system includes: one or more call-out units, each of which is provided at a corresponding elevator landing station; a control unit configured to perform the following operations: receiving a call request message from one or more of the call-out units, the call request message includes, in addition to an identification of a departure floor, at least one of: an identification of a call requester and a set of elevator resource demand features associated with the call requester; and generating a dispatching command for an elevator car in response to the received call request message.