Abstract:
Electronic devices in a system may be controlled by a user. The user may have one or more wearable devices or other devices. A user's device may be used by the user in identifying a target electronic device of interest among the electronic devices in the system. The target electronic device may be identified using a gaze tracking sensor that senses the user's point-of-gaze, an orientation sensor that detects a direction in which the user's device is pointed, or other sensor circuitry. Visual feedback, audio feedback, and/or haptic feedback may be provided to the user to confirm which electronic device has been identified as a target electronic device of interest. User input may be gathered by sensors and used in adjusting operating parameters in the target electronic device of interest. Health monitoring operations and other operations may also be performed.
Abstract:
A method for policing and managing the operation of a flying, unmanned aircraft in the event of usurpation of control of, malfunction of, or ill-intentioned use of, this aircraft includes the steps of (a) detecting inappropriate operation of the aircraft; (b) transmitting a takeover command to the aircraft to interrupt control of the operation of this aircraft by a first pilot and relinquish control of the aircraft to a second pilot; and (c) transmitting control commands to the aircraft to control its operation by the second pilot, until the need for alternate pilot control of the aircraft has ended or until the aircraft has landed safely.
Abstract:
The present invention provides a wearable control device for controlling a controlled appliance, wherein the wearable control device comprises a biological information input unit for receiving input biological information, a processing unit for determining whether the input biological information is registered biological information and generating a control signal based on said input biological information only when the input biological information is the registered biological information, and a first communication unit for communicating the control signal to the controlled appliance and for receiving a response signal from the controlled appliance. The present invention further provides a control system for controlling the controlled appliance and a corresponding control method.
Abstract:
A portable information terminal is placed in proximity with an ID recognition unit of a notebook PC. By reading ID from the portable information terminal, the notebook PC is able to identify a network address of the portable information terminal so as to establish a network connection with the portable information terminal. The notebook PC then sends suitable operation information to the portable information terminal via a network. For example, if presentation is running on the notebook PC, screen information for operating the presentation is transferred to the portable information terminal. Accordingly, by using one device connected to the other device by a wired or wireless network, the operation of the other device can be controlled.
Abstract:
A remote control including at least one biometric sensor for detection of biometric feature data of the palmar area of a hand, at least one illuminant for illumination or exposure of the palmar area of the hand to be detected, at least one pressure or contact sensor, at least one processor, and one communication interface for generating and receiving commands or data, wherein the activation of the biometric sensor is functionally coupled to an activation of the at least one pressure or contact sensor that is arranged in a circumferential frame and/or in the rear of the remote control.
Abstract:
The various example embodiments herein disclose a method and apparatus for controlling at least one device by a wearable device, the method comprising determining a position of the wearable device on a finger of a user based on a biometric parameter of the finger, activating a profile corresponding to the determined position of the wearable device on the user's finger; and controlling the at least one device based on the activated profile.
Abstract:
An electronic key actively executes wireless communication following a keyless entry communication and passively executes wireless communication following a RFID communication. A vehicle control device is mounted on a vehicle and actively executes wireless communication following each of the keyless entry communication and RFID communication. An ECU/BCM unlocks a door by communicating with the electronic key using the keyless entry communication and issues a password to the electronic key in relation to this action. When a door knob or handle is pulled, an RFID-IC acquires the password issued by the ECU/BCM from the electronic key using the RFID communication and unlocks the door by authenticating the acquired password.
Abstract:
Provided are an apparatus and a method for auto-pairing of a remote controller using an NFC tag. In the NFC tag, a flag indicating whether to pair the NFC tag, identification information of the remote controller and security information are stored and transmitted to an NFC receiver of a controlled device upon tagging. The controlled device enters a pairing mode according to the value of the flag and the identification information of the remote controller and returns a confirmation signal. The remote controller, which receives the confirmation signal, also enters a pairing mode. In this state, the controlled device requests pairing from the remote controller in an RF communication manner, and pairing is established through an automatic authentication process.
Abstract:
A mobile terminal is disclosed. The mobile terminal can transmit/receive information or a signal to/from a cooking apparatus, improve user convenience, remotely monitor a state of the cooking apparatus, and receive a control command with respect to the cooking apparatus.
Abstract:
Systems and methods according to the present invention address these needs and others by providing a handheld device, e.g., a 3D pointing device, which uses hand tremor as an input. One or more sensors within the handheld device detect a user's hand tremor and identify the user based on the detected tremor.