The present invention relates to a resonant type transmission power supply device and a resonant type transmission power supply system that detect the presence or absence of a foreign object in an electromagnetic field generated from a transmission antenna, and, when detecting a foreign object, reduce or stop power transmission.
A conventional power supply device having a function of detecting the presence or absence of a foreign object, as shown in
Patent reference 1: Japanese Unexamined Patent Application Publication No. 2013-215073
However, because the sensor coils 102 for foreign object detection are disposed separately from the transmission antenna 101 and the reception antenna in the conventional configuration, the following problems arise. A first problem is that the size of the entire device increases by the size of the sensor coils 102. More specifically, because the sensor coils 102 are arranged on the transmission antenna 101 and the reception antenna, the height (thickness) of the device increases especially and its mass also increases. Another problem is that it is difficult to detect a foreign object existing at a long distance away from the transmission antenna 101 and the reception antenna or in the vicinity of the center between the transmission antenna 101 and the reception antenna even if the foreign object exists within the range of the electromagnetic field generated from the transmission antenna 101. A further problem is that because a large number of sensor coils 102 are needed for foreign matter detection, this results in a cause of increase in the cost. A still further problem is that because it is necessary to drive a large number of sensor coils 102 for foreign matter detection, this results in a cause of increase in the power consumption.
The present invention is made in order to solve the above-mentioned problems, and it is therefore an object of the present invention to provide a resonant type transmission power supply device and a resonant type transmission power supply capable of detecting the presence or absence of a foreign object in an electromagnetic field generated from a transmission antenna, and performing reduction or stop of power transmission a foreign object is detected.
According to the present invention, there is provided a resonant type transmission power supply device including: a pulse input circuit to input a pulse voltage to a transmission antenna at set intervals; a variable resonance frequency circuit to cause a resonance frequency of the transmission antenna to be variable and perform sweep detection of the resonance frequency when a pulse voltage is inputted by the pulse input circuit; a frequency characteristic detecting circuit to detect a frequency characteristic of the transmission antenna when the sweep detection of the resonance frequency is performed by the variable resonance frequency circuit; a foreign object detecting circuit to detect the presence or absence of a foreign object in an electromagnetic field generated from the transmission antenna on the basis of a detection result acquired by the frequency characteristic detecting circuit; and a power control circuit to reduce or stop the supply of electric power to the transmission antenna when a foreign object is detected by the foreign object detecting circuit.
Because the resonant type transmission power supply device according to the present invention is configured as above, the presence or absence of a foreign object in the electromagnetic field generated from the transmission antenna can be detected, and, when a foreign object is detected, the power transmission can be reduced or stopped.
Hereafter, the preferred embodiments of the present invention will be explained in detail with reference to the drawings.
The resonant type power transmission system transmits electric power including an electric signal. This resonant type power transmission system is configured with the resonant type transmission power supply device 1, a transmission antenna 2, a reception antenna 3, and a reception power supply device 4, as shown in
The resonant type transmission power supply device 1 is arranged as a stage preceding the transmission antenna 2, and controls the supply of the electric power to the transmission antenna 2. Further, the resonant type transmission power supply device 1 has a function of detecting the presence or absence of a foreign object in an electromagnetic field shown by a broken line in
The transmission antenna 2 transmits the electric power from the resonant type transmission power supply device 1 to the reception antenna 3 (the transmission is not limited to non-contact one).
The reception antenna 3 receives the electric power from the transmission antenna 2 (the reception is not limited to non-contact one). The electric power received by this reception antenna 13 is supplied to load equipment or the like (not shown) via the reception power supply device 4.
The reception power supply device 4 is arranged between the reception antenna 3 and the load equipment or the like, and rectifies the electric power (AC output) received by the reception antenna 3. This reception power supply device 4 is a power supply circuit of AC input-DC output type or AC input-AC output type.
A transmission method which the resonant type power transmission system uses in the case of wireless power transmission is not limited particularly, and can be any one of a method according to magnetic-field resonance, a method according to electric-field resonance, and a method according to electromagnetic induction.
Next, the configuration of the resonant type transmission power supply device 1 will be explained.
The resonant type transmission power supply device 1 is configured with a variable resonance frequency circuit 11, a frequency characteristic detecting circuit 12 and a power supply control circuit 13.
The variable resonance frequency circuit 11 causes the resonance frequency of the transmission antenna 2 to be variable and performs sweep detection of the resonance frequency under control by a variable circuit control circuit 135, which will be described below, of the power supply control circuit 13 when a pulse voltage is inputted by a pulse input circuit 134. The details of this variable resonance frequency circuit 11 will be described below.
The frequency characteristic detecting circuit 12 detects the frequency characteristics of the transmission antenna 2 when the sweep detection of the resonance frequency is performed by the variable resonance frequency circuit 11. This frequency characteristic detecting circuit 12 detects, as the frequency characteristics, the electric power (reflection power) which returns to the transmission antenna 2 without being able to be power-transmitted from the transmission antenna, the frequencies of a voltage and a current inputted to the transmission antenna 2, the phase difference between the voltage and the current, and the amplitudes of the reflection power, the voltage and the current.
The power supply control circuit 13 detects the presence or absence of a foreign object in the electromagnetic field generated from the transmission antenna 2 on the basis of the detection results acquired by the frequency characteristic detecting circuit 12, and, when detecting a foreign object, reduces or stops the supply of the electric power to the transmission antenna 2. This power supply control circuit 13 is configured with an inverter circuit 131 that performs output of a high frequency alternating current, and a control circuit 132 that controls the output. The inverter circuit 131 is an inverter power supply circuit of AC input-AC output type or DC input-AC output type. The control circuit 132 is configured with a control pattern memory circuit 133, the pulse input circuit 134, the variable circuit control circuit 135, a foreign object detecting circuit 136 and a power control circuit 137.
The control pattern memory circuit 133 is a memory that stores information about the foreign object detection and the power control. The information stored in this control pattern memory circuit 133 includes information showing a threshold for the frequency characteristics (the reflection power, the frequencies of the voltage and the current, the phase difference between the voltage and the current, and the amplitudes of the reflection power, the voltage and the current) , which are used when the foreign object detecting circuit 136 performs the foreign object detection, information showing the types of foreign objects (dielectric objects and magnetic objects) detectable using the frequency characteristics, and information showing the descriptions of the control by the power control circuit 137 according to the types of foreign objects (stop of the electric power supply in the case of a dielectric foreign object, reduction of the electric power supply in the case of a magnetic foreign object, etc.)
The pulse input circuit 134 inputs a pulse voltage to the transmission antenna 2 at set intervals.
The variable circuit control circuit 135 controls the variable resonance frequency circuit 11 to cause the resonance frequency of the transmission antenna 2 to be variable and cause the variable resonance frequency circuit 11 to perform the sweep detection of the resonance frequency when a pulse voltage is inputted by the pulse input circuit 134.
The foreign object detecting circuit 136 detects the presence or absence of a foreign object in the electromagnetic field generated from the transmission antenna 2 according to the information stored in the control pattern memory circuit 133 and on the basis of the detection results acquired by the frequency characteristic detecting circuit 12.
When a foreign object is detected by the foreign object detecting circuit 136, the power control circuit 137 reduces or stops the supply of the electric power to the transmission antenna 2 according to the information stored in the control pattern memory circuit 133.
Next, the configuration of the variable resonance frequency circuit 11 will be explained by referring to
The variable resonance frequency circuit 11 shown in
Next, examples of the configuration of the variable inductor L1 will be explained by referring to
In the example of
Further, in the example of
Further, in the example of
Next, an example of the configuration of each of the variable capacitors C1, C2 and C3 will be explained by referring to
In the example of
Next, the operation of the resonant type transmission power supply device 1 configured as above will be explained by referring to
In the resonant type power transmission system, AC or DC power is supplied to the power supply control circuit 13 of the resonant type transmission power supply device 1, and the inverter circuit 131 of the power supply control circuit 13 supplies an AC output having a high frequency to the transmission antenna 2. The electric power supplied to the transmission antenna 2 resonates at the AC frequency and is transmitted from the transmission antenna 2 to the reception antenna 3. AC output of the electric power received by the reception antenna 3 to the reception power supply device 4 is performed. The reception power supply device 4 then rectifies the electric power and performs DC or AC output of the electric power.
On the other hand, in the resonant type transmission power supply device 1, by inputting a pulse voltage in a low frequency kHz band to the transmission antenna 2 at the set intervals, the sweep detection of the resonance frequency of the transmission antenna 2 is performed by using a high frequency component in a MHz band. The frequency characteristic detecting circuit 12 then detects the frequency characteristics at that time, and transmits a signal showing the characteristics to the power supply control circuit 13. The control circuit 132 of the power supply control circuit 13 then detects the presence or absence of a foreign object in the electromagnetic field generated from the transmission antenna 2, thereby controlling the AC output to the transmission antenna 2.
When no foreign object exists in the electromagnetic field generated from the transmission antenna 2, the frequency of the reflection power from the transmission antenna 2, the frequency of the voltage inputted to the transmission antenna 2, the frequency of the current inputted to the transmission antenna 2, the phase difference between the voltage and the current, and the amplitudes of the reflection power, the voltage and the current are as shown in
In contrast, when a dielectric foreign object (a person' s hand, an animal or the like) exists in the electromagnetic field generated from the transmission antenna 2, the frequency of the voltage has a waveform as shown in
Further, when a dielectric foreign object exists, the frequency of the current has a waveform as shown in
Further, when a dielectric foreign object exists, the frequency of the reflection power has a waveform as shown in
Further, when a dielectric foreign object exists, the phase difference between the voltage and the current, and the amplitudes of the reflection power, the voltage and the current have waveforms as shown in
When detecting a dielectric foreign object, the power supply control circuit 13 then stops the supply of the electric power to the transmission antenna 2, for example.
In contrast, when a magnetic foreign object (metal or the like) exists in the electromagnetic field generated from the transmission antenna 2, the frequency of the voltage has a waveform as shown in
Further, when a magnetic foreign object exists, the frequency of the current has a waveform as shown in
Further, when a magnetic foreign object exists, the frequency of the reflection power has a waveform as shown in
Further, when a magnetic foreign object exists, the phase difference between the voltage and the current, and the amplitudes of the reflection power, the voltage and the current have waveforms as shown in
When detecting a magnetic foreign object, the power supply control circuit 13 then reduces the supply of the electric power to the transmission antenna 2, for example.
As mentioned above, because the resonant type transmission power supply device according to this Embodiment 1 is configured in such a way as to input a pulse voltage to the transmission antenna 2 at the set intervals, and cause the resonance frequency of the transmission antenna 2 to be variable and perform the sweep detection of the resonance frequency, and detect the frequency characteristics of the transmission antenna 2 at that time, the resonant type transmission power supply device can detect the presence or absence of a foreign object in the electromagnetic field generated from the transmission antenna 2, and, when detecting a foreign object, can reduce or stop the supply of the electric power to the transmission antenna 2.
Further, because sensor coils 102 or the likes for foreign object detection, like those disposed in a conventional configuration, are not needed for the foreign object detection, the transmission and reception antennas 2 and 3 can be configured in a small size and in a lightweight. Further, a foreign object existing, in the electromagnetic field generated from the transmission antenna 2, at a long distance away from the transmission antenna 2 or in the vicinity of the center of the transmission and reception antennas 2 and 3 can be also detected. Further, because additional devices, such as sensor coils 102, are not needed, a cost reduction can be achieved. Further, because it is not necessary to drive additional devices such as sensor coils 102, low power consumption can be achieved.
Although the case in which the frequency characteristic detecting circuit 12 shown in
Further, commonality of the variable resonance frequency circuit 11 shown in
In Embodiment 2, a case in which a plurality of transmission and reception systems (each having a resonant type transmission power supply device 1, a transmission antenna 2 and a reception antenna 3) are disposed, and perform power transmission at opposite phases and at the same fixed frequency, respectively will be shown. In this case, the plurality of resonant type transmission power supply devices 1 construct a resonant type transmission power supply system according to the present invention.
Each position detecting circuits 138 detects the position of a foreign object on the basis of a detection result (a waveform difference) acquired by the frequency characteristic detecting circuit 12 of each of the systems when the foreign object is detected by a corresponding foreign object detecting circuit 136.
Further, a corresponding power control circuit 137 reduces or stops the supply of the electric power to the corresponding transmission antenna 2 on the basis of the position of the foreign object detected by the position detecting circuit 138.
As a result, in which one of the transmission and reception systems the foreign object is located is determined. Further, whether the foreign object is located in the immediate vicinity of the transmission and reception antennas 2 and 3 or in the vicinity of the center between the transmission antenna 2 and the reception antenna 3 is determined. Then, it can be determined that the foreign object is garbage when the foreign object is located in the immediate vicinity of the transmission and reception antennas 2 and 3, or the foreign object is a person's hand, an animal or the like when the foreign object is located in the vicinity of the center. Further, whether or not the foreign object is a moving object can be determined. Therefore, the accuracy of detection of foreign objects is improved.
While the invention has been described in its preferred embodiments, it is to be understood that an arbitrary combination of two or more of the above-mentioned embodiments can be made, various changes can be made in an arbitrary component according to any one of the above-mentioned embodiments, and an arbitrary component according to any one of the above-mentioned embodiments can be omitted within the scope of the invention.
The resonant type transmission power supply device according to the present invention can detect the presence or absence of a foreign object in an electromagnetic field generated from a transmission antenna, and, when detecting a foreign object, can perform reduction or stop of the power transmission, and the resonant type transmission power supply device is suitable for use as a resonant type transmission power supply device or the like that controls the supply of electric power to a transmission antenna.
1 resonant type transmission power supply device, 2 transmission antenna, 3 reception antenna, 4 reception power supply device, 11 variable resonance frequency circuit, 12 frequency characteristic detecting circuit, 13 power supply control circuit, 111 variable control circuit, 112 coil, 113 motor control circuit, 114 FET, 115 capacitor, 116 FET, 131 inverter circuit, 132 control circuit, 133 control pattern memory circuit, 134 pulse input circuit, 135 variable circuit control circuit, 136 foreign object detecting circuit, 137 power control circuit, and 138 position detecting circuit.
Filing Document | Filing Date | Country | Kind |
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PCT/JP2013/084838 | 12/26/2013 | WO | 00 |