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.
Abstract:
A smart home network system includes a number of traditional home devices having wireless communication function, a smart gateway, and a plurality of signal conversion devices. When the smart gateway wants to control a traditional home device, the smart gateway sends a cable control signal to a related signal conversion device in the area where the target traditional home device is placed. The related signal conversion device receives the cable control signals from the smart gateway, and converts the cabled control signal into a wireless control signal conforming to the wireless communication function type of the target tradition home device, then transmits the wireless control signal to the target traditional home device. Therefore, the traditional home devices with wireless communication function can be connected into the system, and be controlled by the smart gateway.
Abstract:
A platform, apparatus and method for Internet of Things Implementations for controlling electronic equipment. For example, one embodiment of a system comprises: an Internet of Things (IoT) hub comprising a network interface to couple the IoT hub to an IoT service over a wide area network (WAN), and at least one IoT device communicatively coupled to the IoT hub over a wireless communication channel, the IoT device comprising an infrared (IR) or radio frequency (RF) blaster to control environmental control equipment via IR or RF communication with the environmental control equipment, the IoT device further comprising at least one sensor to measure current environmental conditions capable of being controlled by the environmental control equipment, the IoT device to transmit an indication of the current conditions to the IoT hub over the wireless communication channel; and the IoT hub comprising a remote control code database to store remote control codes usable to control the environmental control equipment, the IoT hub further comprising control logic to generate remote control commands using the remote control codes, the remote control commands selected by the control logic in response to the current environmental conditions measured by the sensor and input from an end user provided via a user device indicating a desired environmental condition, the IoT hub to transmit the commands to the IoT device over the wireless communication channel; the IoT device to responsively transmit the remote control commands to the environmental control equipment to attempt to control the environmental control equipment; wherein the IoT hub is configured to continually or periodically monitor the current environmental conditions measured by the sensor and wherein, if the desired environmental condition is not achieved after a specified period of time, then generate a notification from the IoT hub indicating that the environmental control equipment may not be functioning properly.
Abstract:
A Wi-Fi/radio frequency (RF) converting device includes a Wi-Fi transceiver, a multiplexing converting module, and a RF transceiver. The Wi-Fi transceiver receives a Wi-Fi control signal from a control signal generator. The multiplexing converting module receives the Wi-Fi control signal from the Wi-Fi transceiver and converts the Wi-Fi control signal into a RF control signal. The RF transceiver receives the RF control signal from the multiplexing converting module and sends the RF control signal to a plurality of electric elements. An RF extension device may be provided to share the signal transmission between the electric elements and the Wi-Fi/RF converting device.
Abstract:
When a controlled device receives a change command from a control device, the controlled device changes a real current memory, generates a change notification that includes first data indicative of the control device having transmitted the change command and second data indicative of the change result in response to the change command, and transmits the generated change notification to the plurality of control devices. Each control device receives a change notification from the controlled devices, changes a virtual current memory based on the second data of the change notification if the first data of the change notification does not indicate the control device. Each control device does not change the virtual current based on the second data included in the change notification if the first data indicates the control device.
Abstract:
A content access device and system may allow portable remote devices to be paired with a variety of different devices, allowing remote control through a network connection. Content access devices may expose application program interfaces, allowing incoming network traffic to control operation of the device much in the same way that a local infrared remote would. Routing content commands through an external application server may also yield other benefits, such as allowing more customized selection of information and advertising content to users based on their viewing history.