Abstract:
PURPOSE: A multi-node wireless power transmission method using magnetic resonance induction is provided to efficiently control wireless chargers by receiving information from the wireless chargers. CONSTITUTION: A multi-node wireless power transmission method using magnetic resonance induction is as follows. A wireless power transmission device(100) receives information from multiple wireless chargers(200). The target wireless chargers among the wireless chargers are selected based on the received information. An ON order for activating a wireless power receiving function is transmitted to the selected wireless chargers. An OFF order for cutting off a wireless power receiving function is transmitted to the residual wireless chargers. Wireless power is transmitted to the wireless chargers using magnetic resonance induction.
Abstract:
PURPOSE: A magnetic resonance induction type wireless power transmission apparatus is provided to prevent the waste of energy by cutting off power supply when sensing foreign materials. CONSTITUTION: A power converting unit of a wireless power transmission apparatus comprises an oscillator(121) which creates a signal with a fixed frequency, a power amp(122), a matching network(123), and a current sensor(124) which is connected between the matching network and a transmission antenna(110) and measures current transferred from the matching network to the transmission antenna to sense current changes.
Abstract:
PURPOSE: A charging system of a charging device based on a magnetic resonance induction method and a charging method thereof are provided to recognize information of the charging devices without additional frequency band consumption using a magnetic field communication technology. CONSTITUTION: A charging base station transfers energy to a charging device. A communication part transfers energy by matching the charging device and a resonant frequency. The communication part includes a coil. A storage part stores information for operating a charging base station and information with respect to the charging device. A controller controls the communication part.
Abstract:
PURPOSE: A charging system and a charging method of charging device based magnetic resonance induction are provided to recognize the information of a charger without additional frequency band through a magnetic field communications technology. CONSTITUTION: A first charge station is searched. A second charge station capable of performing wireless power electrical transmission is searched. An energy transmission request socket is transmitted to the secondary charge station. An energy transport request packet comprises an identifier of a charging machine. Wireless power is received from the searched secondary charge station.
Abstract:
PURPOSE: A multi-mode wireless power transmission system using magnetic resonance induction and a charging method thereof are provided to efficiently charge wireless chargeable devices by utilizing other wireless chargeable devices as repeaters. CONSTITUTION: A wireless power transmission apparatus(100) transmits a charge ON signal to wireless chargeable devices(200_4,200_6) to charge and a repeater signal to wireless chargeable devices(200_3,200_5) which does not need charge. A control unit of a wireless chargeable device receiving the charge ON signal turns off a switch in an adaptive matching network and turns on a power control switch. A wireless chargeable device receiving the repeater signal turns on both the switches.
Abstract:
PURPOSE: A multi-node wireless power transmission system and a wireless chargeable device using magnetic resonance induction are provided to selectively charge a target device by receiving information from a plurality of wireless chargeable devices through a wireless power transmission device. CONSTITUTION: A power management unit(220_1) comprises a matching network(221), a rectifier(222), a power control switch(223), and a DC-DC converter(224). The DC-DC converter is connected to an external load of the power management unit. The power control switch receives an ON/OFF switching signal from a control unit. The matching network aligns frequency in order to induce resonance between a wireless chargeable device and a wireless power transmission device and implements impedance matching between a receiving antenna(210) and a wireless chargeable device.
Abstract:
PURPOSE: A distance measurement system and a method are provided to minimize a distance error by calculating a separation distance in consideration of an RSSI value. CONSTITUTION: A distance measurement system comprises one or more target node(10) and a reference node(20). The target node transmits a distance measurement acknowledge message according to a received ranging require-message. According to the strength of a radio signal about the distance measurement acknowledge message, the reference node checks whether the separation distance from the target node is lower than a fixed critical short distance or not. The reference node decides the error correction in a CSS mode in consideration of the radio signal strength and measures the separation distance.
Abstract:
The present invention relates to a hardware platform for a multi-node wireless charging base station for wirelessly charging a plurality of devices using a magnetic resonance induction method, and to an energy transmission unit therefor. The hardware platform for a multi-node wireless charging base station of the present invention includes: an MCU controlling a main function of the wireless charging base station; a clock generator providing a clock to the MCU; a platform control module including a power control unit for controlling the power of a power-supply source for wireless charging, and a communication control unit; a hardware module combining charging and communication functions, including an optimizing unit for controlling power transmission in an optimized state according to a load, a transmission unit, and a communication unit; and an antenna module including an antenna for transmitting energy wirelessly, and an antenna interface unit for providing an interface between the energy transmission unit and the antenna.