WIRELESS CHARGING APPARATUS AND METHOD THEREOF
20220402382 · 2022-12-22
Assignee
Inventors
- Byoung-kuk LEE (Suwon-si, KR)
- Sangjoon ANN (Suwon-si, KR)
- Won Jin SON (Suwon-si, KR)
- Man Jae KWON (Suwon-si, KR)
- Dong Hyeon SIM (Suwon-si, KR)
- Ju A LEE (Suwon-si, KR)
Cpc classification
B60L53/38
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A wireless charging apparatus according to an embodiment of the present disclosure includes a pad determinor configured to determine a receiving pad mounted on an electric vehicle entering a wireless charging station, and a power transmitter configured to select a transmitting pad to correspond to the receiving pad determined by the pad determinor, and transmit charging power to the receiving pad through the transmitting pad.
Claims
1. A wireless charging apparatus, comprising: a pad determinor configured to determine a receiving pad mounted on an electric vehicle entering a wireless charging station; and a wireless charger configured to select a transmitting pad to correspond to the receiving pad determined by the pad determinor, and transmit charging power to the receiving pad through the transmitting pad.
2. The apparatus of claim 1, wherein the pad determinor includes: a searching coil; and a controller configured to determine the receiving pad through a change in inductance of the searching coil due to a difference in magnetic coupling characteristics between the searching coil and the receiving pad.
3. The apparatus of claim 2, wherein the searching coil is positioned between the receiving pad and the transmitting pad.
4. The apparatus of claim 2, wherein the wireless charger does not transmit power to the receiving pad through the searching coil.
5. The apparatus of claim 2, wherein the searching coil is formed to be larger than the receiving pad.
6. The apparatus of claim 2, wherein the searching coil is formed to have the same size as the transmitting pad.
7. A method of wireless charging an electric vehicle entering a wireless charging station using a wireless charging apparatus, comprising: detecting a receiving pad mounted on the electric vehicle entering the wireless charging station; determining the detected receiving pad; selecting a transmitting pad to correspond to the determined receiving pad; and transmitting charging power to the receiving pad through the transmitting pad.
8. The method of claim 7, wherein the determining is performed to determine the receiving pad through a change in inductance of a searching coil due to a difference in magnetic coupling characteristics between the searching coil disposed in the wireless charging apparatus and the receiving pad.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings, which are included as a part of the description to help understanding the present disclosure, provide various embodiments of the present disclosure. In addition, the accompanying drawings are used to describe embodiments of the present disclosure with the description.
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION
[0031] Hereinafter, a wireless charging apparatus and a method thereof will be described as embodiments of the present disclosure.
[0032] The following embodiments combine elements and features of the present disclosure in a predetermined form. Each element or feature may be considered optional unless explicitly stated otherwise. Each element or feature may be implemented in a form that is not combined with other elements or features. In addition, some elements and/or features may be combined to constitute an embodiment of the present disclosure. The order of operations described in the embodiments of the present disclosure may be changed. Some configurations or features of one embodiment may be included in another embodiment, or may be replaced with corresponding configurations or features of another embodiment.
[0033] In the description of the drawings, parts, devices, and/or configurations that may obscure the gist of the present disclosure are not described, and parts, devices, and/or configurations that could be understood at the level of those skilled in the art are also not described. In addition, in the drawings, parts referred to using the same reference numerals mean the same elements or steps in a device configuration or method.
[0034] Throughout the specification, when a part is said to “comprising or including” a certain element, this means that other elements may be further included without excluding other elements unless otherwise stated. In addition, terms such as “˜ unit” or “˜ group” described in the specification mean a unit for processing at least one function or operation. Also, the terms “a or an”, “one”, “the” and similar related terms may be used in a sense including both the singular and the plural in the context of describing the present disclosure (especially, in the context of the following claims) unless otherwise indicated in the present disclosure or otherwise clearly contradicted by context.
[0035] In addition, specific terms and/or symbols used in the embodiments of the present invention are provided to help the understanding of the present invention, and the use of these specific terms may be changed to other forms without departing from the technical spirit of the present disclosure.
[0036]
[0037] Referring to
[0038] When an electric vehicle 300 enters a wireless charging station, the wireless charging apparatus 100 may sense it and provide a sensing signal to the pad determinor 110.
[0039] The pad determinor 110 may determine a receiving pad 310 loaded or mounted on the electric vehicle 300 entering the wireless charging station. That is, when receiving the sensing signal, the pad determinor 110 may operate to determine the receiving pad 310 loaded or mounted on the electric vehicle 300. The electric vehicle 300 may include at least one receiving pad 310. As shown in (a), (b), (c), and (d) in
[0040] The wireless charger 130 may select the transmitting pad 131 to correspond to the receiving pad 310 determined from the pad determinor 110. The wireless charger 130 may transmit power to the receiving pad 310 through the selected transmitting pad 131.
[0041] The wireless charger 130 may include at least one transmitting pad 131. As shown in
[0042] As shown in
[0043] A display 150 may be disposed on the wireless charging apparatus 100, and may display a charging process in the receiving pad 310 using the transmitting pad 131 in real time.
[0044] The wireless charging apparatus 100 according to an embodiment of the present disclosure may improve charging performance therebetween by charging it by determining the shape of the receiving pad 310 mounted on the electric vehicle 300 entering the wireless charging station, and using the transmitting pad 131 corresponding to the shape of the determined receiving pad 310.
[0045] The pad determinor 110 may include a searching coil 111 and a controller 113.
[0046] The searching coil 111 may be positioned between the receiving pad 310 and the transmitting pad 131. The searching coil 111 may be defined as a coil that determines the shape or type of the receiving pad 310 by using a difference in magnetic characteristics according to the shape of the receiving coil (VA coil). The searching coil 111 may determine the shape of the receiving pad 310 by using magnetic characteristics between the receiving coils (VA coils) disposed on the receiving pad 310. The present disclosure may design the shape of the searching coil 111 to minimize a change in magnetic characteristics due to an alignment error between the searching coil 111 and the receiving coil (VA coil).
[0047] The searching coil 111 may increase the size of Lsearching according to the number of turns. Therefore, as N (N is a natural number greater than or equal to 1) of the searching coil 111 is larger, the difference in Lsearching according to the receiving coil (VA coil) is large, so that the shape of the receiving coil (VA coil) can be easily determined. That is, as the number of turns N of the searching coil 111 increases, the shape of the receiving pad 310 may be more accurately determined.
[0048] Here, the searching coil 111 should be configured to be as light as possible and not occupy a volume, so it is desirable to design N as small as possible. Accordingly, the searching coil 111 may have the number of 9 to 11 turns having a relatively small value of N while clearly showing a difference in Lsearching. That is, since the searching coil 111 does not play a main power transmission role, it is preferable to be configured to be light and not occupy a volume. Accordingly, the searching coil 111 may be composed of an inductor having a thinner and simpler configuration than the transmitting/receiving pad 310, thereby reducing the volume and weight occupied by the inductor.
[0049] The controller 113 may determine the receiving pad 310 through change in inductance of the searching coil 111 due to a difference in magnetic coupling characteristics between the search coil 111 and the receiving pad 310. The controller 113 may include a current sensor or a metal detector circuit, etc. This will be described later. The controller 113 may be configured to determine electrical parameters for each shape of the receiving pad 310 using the current sensor or the metal detector circuit, etc.
[0050] The controller 113 may determine the receiving pad 310 by using different magnetic property depending on the shape of the receiving pad 310, and different coupling characteristics with the searching coil 111 for each shape of the receiving pad 310. As shown in
[0051] The controller 113 may determine the shape or type of the receiving pad 310 by sensing that the inductance of the searching coil 111 varies depending on the type of the receiving pad 310 having a receiving coil having a different shape even when the same voltage is applied to the searching coil 111.
[0052]
[0053] Referring to
[0054] Since the searching coil 111 has a larger size than that of the coil of the receiving pad 310, coupling characteristics with the receiving pad 310 may not change significantly even if the searching coil 111 is not located in the exact center of the receiving pad 310. The searching coil 111 may reduce an alignment error with the receiving pad 310 even if the searching coil 111 is not accurately aligned with the receiving pad 310.
[0055] As shown in
[0056] In addition, the transmitting pad 131 is the wireless charging apparatus 100 including that which is formed in the same size as the searching coil 111.
[0057]
[0058] The present disclosure may confirm the shape of the receiving pad 310 by determining the change in inductance of the searching coil 111 due to the difference in the coupling characteristics of the searching coil 111 and the wireless charging pad.
[0059] The controller 113 is electrically connected to the searching coil 111, and may measure the inductance of the searching coil 111. The controller 113 may include a power supply part Vdc capable of providing a predetermined voltage to the searching coil 111 by converting external power, a switching part Si turned on to provide the predetermined voltage to the searching coil 111 when a sensing signal is provided, and a protection part D1 protecting the searching coil 111 by preventing reverse current. The present disclosure is not limited thereto, and the controller 113 may provide or block the predetermined voltage to the searching coil 111 by joining or combining various components.
[0060] For example, as shown in
[0061] For example, BPP may have the highest current value among the receiving pads 310, and CP may have the lowest current value among the receiving pads 310. In addition, DDP may be lower than the current value of BPP and higher than the current value of CP among the receiving pads 310, and DDQP may be lower than the current value of DDP and higher than the current value of CP among the receiving pads 310.
[0062]
[0063] Referring to
[0064] The controller 113 may determine the shape of the receiving pad 310 using the metal detector 115. The controller 113 may sense the number of times the coil of the receiving pad 310 meets the search coil 111 while moving the searching coil 111 in the Y direction, which is a direction in which the electric vehicle 300 proceeds.
[0065] For example, as shown in
[0066] As described above, in the present disclosure, since the shape is different for each receiving pad 310, when moving the searching coil 111 in the y-axis, the number of times the coil of the receiving pad 310 and the searching coil 111 meet may be different. Therefore, the controller 113 may determine the shape of the receiving pad through the number of detections of the metal detector 115.
[0067]
[0068] Referring to
[0069] The detecting step S110 may be performed to detect a receiving pad 310 mounted on the electric vehicle 300 entering the wireless charging station. When the electric vehicle 300 enters the wireless charging station, a wireless charging apparatus 100 may generate a detecting signal or a sensing signal, and provide it to a controller 113. The controller 113 may provide a predetermined voltage to a searching coil 111 when the detecting signal or the sensing signal is provided.
[0070] The determining step S130 may be performed to determine the detected receiving pad 310. The wireless charging apparatus 100 may apply a pulse voltage to the searching coil 111 and sense a current flowing through the searching coil 111. That is, when a pulse of the same width is applied to the searching coil 111, the wireless charging apparatus 100 may measure or sense the different inductance of the searching coil 111 for each type of the receiving pad 310. The wireless charging apparatus 100 may easily determine the type of the receiving pad through the difference in the different inductances of the searching coil 111 or the maximum current values of the searching coil 111.
[0071] In addition, the wireless charging apparatus 100 may determine the receiving pad 310 using a metal detector. For example, the wireless charging apparatus 100 may sense the number of times the coil of the receiving pad 310 and the searching coil 111 meet for each receiving pad 310 when the search coil 111 is moved in the direction in which the electric vehicle 300 proceeds. That is, the wireless charging apparatus 100 may determine the shape of the receiving pad through the number of detections of the metal detector.
[0072] The selecting step S150 may be performed to select a transmitting pad 131 to correspond to the determined receiving pad 310. For example, the wireless charging apparatus 100 may select one of a plurality of transmitting pads 131 according to the determined receiving pad 310.
[0073] The transmitting step S160 may be performed to transmit charging power to the receiving pad 310 through the transmitting pad 131. The transmitting step S160 may be referred to as a charging step. The wireless charging apparatus 100 may transmit charging power only through the transmitting pad 131 without transmitting power to the receiving pad 310 through the searching coil 111.
[0074] As described above, the present disclosure can easily grasp or determine the shape of the receiving pad 310 by using the searching coil 111. The present disclosure can select the shape of the transmitting pad 131 capable of improving coupling performance with the receiving pad 310 by determining the shape of the receiving pad 310, and improve the coupling performance between the transmitting and receiving pads 131 and 310 in the pad determinor 110 such as controlling the current direction of the transmitting pad 131. This may have the advantage of increasing the efficiency of the wireless charging apparatus 100.
[0075] The above-described embodiments of the present disclosure may be embodied in other specific forms without departing from the essential characteristics of the present disclosure. Accordingly, the above-described description should not be construed as being limitative from all aspects, but should be construed as being illustrative. The scope of the present disclosure should be determined by reasonable analysis of the attached claims, and all changes within the equivalent range of the present disclosure are included in the scope of the present disclosure. In addition, claims that are not explicitly cited in the claims may be combined to form an embodiment, or may be included as new claims by amendment after filing.