Patent classifications
B66B2201/4653
ELEVATOR PASSENGER ENTRY DETECTION
An aspect of an elevator system includes receiving, from a user, a destination selection and assigning to the user a first elevator and notifying the user of the assignment. The user is detected in a second elevator, and the second elevator is controlled to travel to the destination selected by the user based on detecting the user in the second elevator.
SYSTEMS AND METHODS FOR OPERATION OF ELEVATORS AND OTHER DEVICES
Embodiments of systems and methods for digital control of elevator and other access gateways are described herein. More specifically, embodiments comprise systems and methods for retrofitting or outfitting elevator systems with digital control systems that can be universally applied to virtually every manufacturer's elevator systems.
ACCESS CONTROL SYSTEM WITH FEEDBACK TO PORTABLE ELECTRONIC DEVICE
Methods and systems to control access to a predetermined service or area. An access code is read from a portable electronic device of a user using an access terminal at a service site. As a result of reading the access code from the portable electronic device, access-related information is transmitted to the portable electronic device.
PREFERRED ELEVATOR SELECTION WITH DISPATCHING INFORMATION USING MOBILE PHONE APP
The present invention provides an elevator-calling control apparatus, an elevator-calling control system and an elevator-calling control method thereof, and belongs to the field of elevator control technologies. In an elevator-calling control process, the following steps are included: inputting an elevator-calling command; displaying elevator running state information and estimated time of arrival information of several elevators in a corresponding elevator group for a passenger to make reference, wherein the elevator running state information at least includes information that reflects a current crowding degree of the elevator; and selecting an elevator from the several elevators as the elevator that the passenger determines to take. The elevator-calling control of the present invention may facilitate a passenger to actively select an elevator that the passenger determines to take, which has good user elevator calling and taking experience and enhances the running efficiency of the elevator.
INTERACTION TERMINAL AND SYSTEM FOR ELEVATOR
An elevator interactive terminal and an elevator interactive system. The elevator interactive system of the present invention comprises an elevator interactive terminal, configured with a social communication media module, wherein a user is registered as a first registered user in the social communication media module; and a server coupled to a communication bus of an elevator system, configured with the social communication media module and to register an elevator as the second registered user in the social communication media module, wherein, based on the social communication media module, interactive communication is performed between the first registered user on the elevator interactive terminal corresponding to the user and the second registered user on the server corresponding to the elevator.
ELEVATOR CARS
An elevator car comprising a passenger cab and a robot cab, the robot cab is configured to accommodate at least one autonomous robot; wherein the robot cab includes: a robot cab controller configured to receive elevator call requests from the at least one autonomous robot and a coupling mechanism configured to couple the robot cab to the passenger cab.
TRAVEL-SPEED BASED PREDICTIVE DISPATCHING
An aspect includes a system with a communication interface configured to receive a mobile device location indicator at a first location and a second location. The system also includes a memory system and a processing system configured to perform operations. The operations include detecting a mobile device at the first location and observing a current state of one or more conditions present during detection of the mobile device. A travel prediction of the mobile device between the first location and the second location is determined based on a travel history of the mobile device and the current state of the one or more conditions. A command is output to a dispatching system based on detection of the mobile device at the first location and the travel prediction of the mobile device to align with a predicted arrival of the mobile device at the second location.
ELEVATOR SCHEDULING METHODS, APPARATUSES, SERVERS AND COMPUTER READABLE STORAGE MEDIA
An elevator scheduling method and an apparatus, a server, and a computer-readable storage medium are provided. The elevator scheduling method is applied to a server, and comprises: determining an elevator schedule request, wherein the elevator schedule request comprises starting floor information and target floor information; determining a target elevator to be scheduled to a target robot based on the elevator schedule request and operation information of schedulable elevators; generating a control instruction based on the starting floor information, the target floor information, and identification information of the target elevator; and sending the control instruction to an elevator control device, wherein the elevator control device controls movement of the target elevator.
METHOD OF CONFIGURING AN ELEVATOR SYSTEM
A method of configuring an elevator system (1), includes positioning a wireless communication device (4, 4′) on or within an elevator car (2). When the elevator car (2) is in the vicinity of a landing floor (8a) of the elevator system (1), the wireless communication device (4, 4′) transmits data comprising a unique identification code, or part thereof (26, 44) to a landing fixture (10a, 12a, 14a, 16a, 18a) on the landing floor (8a). The landing fixture (10a, 12a, 14a, 16a, 18a) receives the data. The method further includes, based on the received data, the landing fixture (10a, 12a, 14a, 16a, 18a) storing the unique identification code (44).
System and Method of Enabling a Mobile Robot to Take an Elevator Autonomously
A system for enabling a mobile robot to utilize an elevator autonomously comprises a pressing module including at least one pressing finger adapted to press elevator call buttons on an elevator call control panel. A lifting device of the system supports the pressing module and selectively adjusts a height position of the pressing module for aligning the at least one pressing finger on the pressing module to height positions horizontally aligned with the elevator call buttons. A controller wirelessly communicates with the mobile robot and the pressing module. In response to a command sent by the mobile robot, the controller instructs the pressing module to press an elevator call button on the elevator call control panel associated with the command.