Abstract:
The present invention relates to automatic elevator call control, and belongs to the field of elevator intelligent control technologies. An automatic elevator call system provided in the present invention calculates duration information from the moment when the personal mobile terminal leaves coverage of the wireless signal to the moment when the personal mobile terminal enters the coverage again, and when the duration information is less than or equal to a preset time threshold, causes the personal mobile terminal to be incapable of automatically sending an elevator call request command in a time period from the moment when the personal mobile terminal enters the coverage again to the moment when the personal mobile terminal leaves the coverage again. The present invention can effectively avoid invalid or abnormal elevator call request operations, and the elevator system achieves high running efficiency.
Abstract:
An elevator control system includes an elevator system with at least one elevator car configured to travel to a plurality of floors. An electronic controller controls the elevator system to deliver the elevator car to a given floor in response to an elevator car request. A mobile user includes a display screen and is installed with a secondary-touch detection system that detects a first touch action applied to the display screen and a second touch action applied to the display screen. The mobile user device launches a full service request user interface in response to detecting the first touch action, and performs at least one of launching a pop-up service request user interface and automatically communicates the elevator car request to the controller in response to detecting the second touch action.
Abstract:
An elevator automatic guide assistant system comprises a user assistant system, an elevator outside assistant system, and an elevator inside assistant system. The user assistant system is configured to send a taking elevator instruction and target floor information to the elevator outside assistant system, receive and send the feedback information to a user. The elevator outside assistant system is configured to guide the user to arrive at an elevator doorway. The elevator inside assistant system is configured to send floor information to the elevator outside assistant system and the user assistant system, receive instructions from the user assistant system, and guide the user to arrive at the target floor. The present disclosure relates also to a guide method of the elevator automatic guide assistant system.
Abstract:
A destination call-giving device for giving destination calls in an elevator system includes a device available to a user for selecting a destination floor from a plurality of floors that are in a certain sequence, and an output for communicating the selected destination floor to the control system of the elevator system. The device for selecting a destination floor includes a touch-sensitive display forming a user interface for presenting to the user information related to the selection of a destination floor and for receiving the input of the user. The destination floor is arranged to be selectable by the user from the aforementioned plurality of floors by moving a touch-sensitive point on a touch-sensitive display.
Abstract:
Methods and systems for making elevator service requests, the methods including receiving, by a computing device comprising a processor, building information, populating a first scrollable wheel and a second scrollable wheel with floor information contained within the building information, displaying a user interface, including the first scrollable wheel and the second scrollable wheel, on a display of the computing device, receiving a first user input at the first scrollable wheel including a first list element located within a first selection box, receiving a second user input at the second scrollable wheel including a second list element located within a second selection box, receiving a user input request to make an elevator service request, generating an elevator service request packet based on the first user input and the second user input, and transmitting the elevator service request packet to an elevator controller to make an elevator service request.
Abstract:
The present disclosure provides systems and methods for automatically entering and leaving a ride apparatus. A method for automatically entering a ride apparatus comprises: establishing a wireless communication connection with a control system of the ride apparatus; sending, via the wireless communication connection, an automatic entering request to the control system, the automatic entering request comprising a ride starting position; receiving, via the wireless communication connection, status information sent by the control system; and determining, according to the status information, that the ride apparatus has arrived at the ride starting position, and automatically entering the ride apparatus.
Abstract:
A system and a method of assigning an elevator car of an elevator system based on an adjustment parameter are provided. The method includes assigning, using the elevator controller, the elevator car based on the adjustment parameter in response to receiving an elevator call, wherein the adjustment parameter includes at least a person to call ratio, receiving one or more system parameters, and updating the adjustment parameter based on the system parameters.
Abstract:
An elevator car location sensing system includes at least one first barometric pressure sensor disposed at a sensor position. The first barometric pressure sensor is configured to measure at least one first barometric pressure at the sensor position. An elevator control module is configured to electrically communicate with at least one mobile terminal device that is movable among a plurality of different altitudes. The elevator control module receives a second barometric pressure from the mobile terminal device located at a current altitude, and determines the current altitude based on a comparison between the first barometric pressure and the second barometric pressure.
Abstract:
Elevators and other facilities in buildings and other constructed environments can be controlled remotely. In an advanced controlling method at least one person is guided through constructed environment along a predetermined route. When the route is known facilities, such as elevators, may be called or activated in advance so that the person guided along the route does not need to do it when arriving at the area of influence of the facility. When there are more than one person travelling the routes may be combined such that the central system controlling allocations of facilities may call or activate resources more than one person.
Abstract:
The invention relates to a device providing traffic forecasts for elevator systems, comprising a data-processing system, wherein the device is designed to establish a data connection between the data-processing system and the elevator system, and wherein the device is designed to establish a data connection between the data-processing system and at least one mobile device, and wherein the device is designed to receive data from the elevator system and/or from at least one mobile device, and wherein the device is designed to send processed data to at least one mobile device.The invention further relates to a method providing traffic forecasts.