Abstract:
The invention relates to a method and system for controlling access from a communications network (2) to any device (4) that is opened automatically, said system comprising a mobile device (2) and a remote control (1). The remote control (1) is characterised in that it: obtains the signals that control the automatic opening devices (4), either by means of cloning via antenna or using other means, and transmits said signals to the communications network (3), by means of its connection to any mobile device (2). Access can then be controlled from the communications network (3), simply by transmitting the signal that actuates the automatic opening device (4), via the mobile device (2) to which the remote control (1) is connected, to another requesting remote control (1). The remote control (1) then transmits the signal allowing the actuation thereof. Any remote control (1) can be used to actuate any automatic opening device (4).
Abstract:
A control method for controlling at least one of a plurality of apparatuses. The control method includes: displaying candidate information and obtaining, via a network, an operation history of each of the apparatuses. The method includes generating a control signal for performing a predetermined control on a target apparatus, when the user confirms that the predetermined control is to be performed.
Abstract:
An end range of motion improving device is disclosed including, first and second link members to independently rotate an upper leg and a lower leg of a patient, having a controller to selectively rotate the link members, and a networked computing system to facilitate communication between the controller and other networked devices.
Abstract:
A system includes a processor configured to wirelessly receive a vehicle system command from a remote source over a first communication channel. The processor is also configured to open a second communication channel with an apparent command-originating source, responsive to receiving the command. The processor is further configured to request, over the second communication channel, verification that the command originated from the apparent command-originating source and execute the command responsive to command-origin verification.
Abstract:
A lighting control system and method is disclosed for not only controlling visual content loaded within a group set of illumination devices configured within a wireless network, but also for ensuring minimal control delay to those grouped devices. The lighting control system can include a lighting controller device that controls a plurality of lamps within a mesh network, not only to group those lamps but also to assign content to lamps within that group. The combination of a guaranteed groupcast to each of the group of lamps and an acknowledge back from those lamps that is aggregated over a single path achieves the improved lighting control system disclosed herein.
Abstract:
A system may include a non-destructive testing (NDT) device. The NDT device may further include a communications system configured to receive control data from an external system, wherein the NDT device is configured to use the control data to control a component included in the NDT device, to control a parameter of the NDT device, or a combination thereof.
Abstract:
A method and a system for providing vehicle services to at least one communication device located at a vehicle via a vehicle telematics unit. The method carried out by the system includes the steps of: receiving a request at the vehicle telematics unit for first vehicle services from a first communication device located at a vehicle; associating a first identifier with the first communication device; and providing the first vehicle services to the first communication device, wherein the vehicle services are provided according to at least one services parameter associated with the first identifier.
Abstract:
Described herein are implementations for using a remote control device to control a target device on a network. An exemplary remote control device may generate a data packet comprising a command for controlling the target device and a network address associated with the target device. The remote control device may establish a connection to an infrastructure device on the network, and transmit the data packet to the infrastructure device. The infrastructure device may multicast the data packet to a plurality of IoT devices on the network. An IoT device, of the plurality of IoT devices, may execute the command based on determining, using the network address, that the IoT device is the target device.
Abstract:
A terminal includes a microphone, a display, an audio output module, a communication unit to exchange data with a server or a home appliance, and a controller to control display of a screen including information related to the home appliance and to control output of information corresponding to user voice based on the information related to the home appliance on the screen via the display or the audio output module when the user voice is received via the microphone. Therefore, it is possible to improve user convenience upon utilizing the home appliance.
Abstract:
Light-based systems for communicating information associated with service orders and/or the identification of personal objects are disclosed. A personal mobile electronic communication device is used in conjunction with a communication network and a lighting controller to communicate service orders by lighting with one or more individually controllable luminaires in a lighting network. A personal mobile electronic communication device is, alternatively or additionally, used in conjunction with a communication network, and a lighting controller controlling an illumination proximate to the personal mobile electronic communication device such that the illumination proximate to the personal mobile electronic communication device visually indicates the service order.