WIRELESS CHARGING METHOD AND APPARATUS BASED ON RADIO FREQUENCY RECEIVING AND PHASE COMPENSATION RETRANSMISSION
First Claim
1. A focused wireless charging method based on radio frequency receiving and phase compensation retransmission, comprising:
- a first step of transmitting a wake-up signal to an embedded system by an external system, making the embedded system being in a state to be charged;
a second step of transmitting a test signal at a given frequency by the embedded system, receiving the test signal by the external system, and measuring relative phase delay data of the test signal received by each one of multiple antenna units according to a reference phase of a same frequency reference signal of the external system;
a third step of converting the external system to a feeding state, setting initial phases of a feed signal according to the phase delay data of the test signal received by each one of the multiple antenna units of the external system in the second step, comprising converting the phase delay data to an equal sized phase advance, realizing stacking in same phase by each signal when same frequency signals transmitted by each one of the multiple antenna units of the external system arrive at a receiving antenna of the embedded system;
a fourth step of feeding a transmitting multiple antenna system according to a phase configuration in the third step by the external system, wherein signals are transmitted to the receiving antenna of the embedded system by each one of the multiple antenna units, realizing an in-phase stacking and a focus of field, and realizing wireless charging to the embedded system;
a fifth step of transmitting an acknowledgement signal by the embedded system after completing the wireless charging, and stopping the wireless charging after the acknowledgement signal is received by the external system.
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Abstract
Embodiments provide focused wireless charging method and apparatus based on radio frequency receiving and phase compensation retransmission. The method is based on the reciprocity principle, making each charging signal transmitted by the external charging system could stack in-phase when arriving at the embedded rechargeable battery, realizing wireless near field focusing in any given area in an unknown complex inhomogeneous propagation environment and a high charging efficiency. The focused wireless charging technology based on radio frequency receiving and phase compensation retransmission in embodiments could realize in-phase stacking and precise focus of each wireless charging signal of the external system on the embedded batteries to be charged automatically under different propagation environment, different environment medium, and possible random offset of the rechargeable battery. This method has strong environmental adaptability, high energy transmission efficiency, transmission stability, less radiation to human body and no need of accurate information of the location of charging equipment.
7 Citations
6 Claims
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1. A focused wireless charging method based on radio frequency receiving and phase compensation retransmission, comprising:
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a first step of transmitting a wake-up signal to an embedded system by an external system, making the embedded system being in a state to be charged; a second step of transmitting a test signal at a given frequency by the embedded system, receiving the test signal by the external system, and measuring relative phase delay data of the test signal received by each one of multiple antenna units according to a reference phase of a same frequency reference signal of the external system; a third step of converting the external system to a feeding state, setting initial phases of a feed signal according to the phase delay data of the test signal received by each one of the multiple antenna units of the external system in the second step, comprising converting the phase delay data to an equal sized phase advance, realizing stacking in same phase by each signal when same frequency signals transmitted by each one of the multiple antenna units of the external system arrive at a receiving antenna of the embedded system; a fourth step of feeding a transmitting multiple antenna system according to a phase configuration in the third step by the external system, wherein signals are transmitted to the receiving antenna of the embedded system by each one of the multiple antenna units, realizing an in-phase stacking and a focus of field, and realizing wireless charging to the embedded system; a fifth step of transmitting an acknowledgement signal by the embedded system after completing the wireless charging, and stopping the wireless charging after the acknowledgement signal is received by the external system. - View Dependent Claims (2)
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3. A focused wireless charging apparatus based on radio frequency receiving and phase compensation retransmission, comprising:
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an embedded system; and an external system, wherein the embedded system comprises a rechargeable battery, a signal source, a receiving antenna, and a transmitting antenna, wherein the external system comprises a power source, a receiving multiple antenna system, and a transmitting multiple antenna system; wherein the external system further comprises a phase control apparatus, and the receiving antenna and the transmitting antenna adopt a receiving system and a transmitting system with multiple antennas. - View Dependent Claims (4, 5, 6)
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Specification