Abstract:
A method for controlling an unmanned aerial vehicle, comprising: obtaining, by the UAV, a controlling command based on a preconfigured file, wherein the preconfigured file is generated based on a natural language indicating an operation of the UAV; performing, by the UAV, the operation according to the controlling command. By implementing the method of the present disclosure, the user may save many months or longer in skills learning, there the control of the UAV is facilitated and the user experience is improved. The present disclosure also provides an unmanned aerial vehicle and a controlling device.
Abstract:
The present invention relates to a remote control device (10) for at least one domestic appliance, in particular a cooking appliance. The remote control device (10) is a mobile and free- standing apparatus and is connected or connectable to the domestic appliance via at least one wireless connection. The remote control device (10) includes at least one sensor for detecting a movement of said remote control device (10) and for generating a corresponding signal for the domestic appliance. The remote control device (10) includes at least one transmitter for sending commands corresponding with the detected signals to the domestic appliance.
Abstract:
A method for connecting to a target device by a Bluetooth device based on a position metric is described. The method includes detecting a reference position metric between the Bluetooth device and the target device during pairing of the Bluetooth device and the target device. The method also includes detecting a current position metric between the Bluetooth device and the target device. The method further includes connecting to the target device based on a comparison of the reference position metric and the current position metric.
Abstract:
A multi-dimensional remote control device which may be more effectively manipulated and a method of controlling an operation thereof are provided. The remote control device for controlling an electronic device may include a processor configured to activate an input interface provided on one surface from among input interfaces provided on at least one of multiple surfaces of the remote control device, to receive an input from the activated input interface, and to transmit the input to the electronic device via a communication interface.
Abstract:
A wearable device can be worn by a user, and can include one or more sensors to detect user gestures performed by the user. The wearable device can further include a wireless communication module to establish a communication link with a self-propelled device, and a controller that can generate control commands based on the user gestures. The control commands may be executable to accelerate and maneuver the self-propelled device. The controller may then transmit the control commands to the self-propelled device over the communication link for execution by the self-propelled device.
Abstract:
An electronic device includes: a first sensor configured to generate a movement signal corresponding to a user movement; a second sensor configured to physically contact the user to generate a user bio-signal; a processor configured to determine a user sleeping state using the generated movement signal and the generated user bio-signal in each of time periods, and determine an operation state of another electronic device based on the determined sleeping state in respective time periods; and a communicator configured to transmit a control command corresponding to the determined operation state to the another electronic device.
Abstract:
A modular sensing device and method of operating a smart home device includes initiating a control mode from a plurality of modes on the modular sensing device, where the control mode determines a manner in which user gestures are interpreted. Based on initiating the control mode, a connection with the smart home device can be established. Furthermore, the modular sensing device and method can further include receiving sensor data corresponding to the user gestures, translating the sensor data into a corresponding control command, and transmitting the control command to the smart home device. The corresponding control command can be executable to control the smart home device in accordance with the user gesture.
Abstract:
A control device and method for controlling a plurality of targeted devices. The control device includes orientation and direction sensors for measuring orientation and direction of the control device relative to the environment, a device location tracking system for determining the location of the control device relative to at least one reference device, a database for storing location data of spatial targets for the target devices, a processor for determining if the control device is pointed at the spatial target based on the location data of the spatial target and the orientation, direction, and location of the control device, and an input mechanism for receiving control instructions for controlling the targeted device.
Abstract:
A display system, a display apparatus, a remote control apparatus, and a method for controlling the same are provided. The display system according to the exemplary embodiment: a display apparatus; and a remote control apparatus sensing a motion and transmitting the sensed motion information to the display apparatus. The display apparatus displays a UI element when receiving motion information of the remote control apparatus and displays image contents when receiving a power on command from the remote control apparatus while the UI element is displayed.
Abstract:
본 발명은 복수의 디바이스에 대한 원격제어를 수행할 수 있는 원격제어장치에 관한 것이다. 본 발명의 실시예에 따른 원격제어장치는, 복수의 키(key)를 구비하는 키 입력부와, 적어도 하나의 디바이스 또는 디바이스에 대응하는 송신 장치로부터의, 적어도 하나의 디바이스 식별 신호를 수신하는 수신부와, 수신된 적어도 하나의 디바이스 식별 신호에서 원격 제어 가능한 디바이스의 식별 신호를 검출하고, 검출된 식별 신호에 기초하여, 복수의 키 중 적어도 하나를, 디바이스의 원격 제어를 위한 제어 명령에 매칭하는 프로세서와, 제어 명령에 매칭된 키가 선택되는 경우, 제어 명령에 대응하는 신호를 송신하는 송신부를 포함한다. 이에 의해, 복수의 디바이스에 대한 원격제어를 수행할 수 있게 된다.