Charging control system for wireless charging game controller

By designing a charging control system for wireless charging gamepads, using signal reception, analysis and control modules, the shortcomings in the charging process abnormal detection and parameter adjustment in the prior art are solved, and a more efficient and stable charging effect is achieved.

CN119253877BActive Publication Date: 2025-05-09GUANGZHOU ZHONGTIANXIN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202411442438.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-05-09
Estimated Expiration
2044-10-16

AI Technical Summary

Technical Problem

The prior art fails to effectively determine whether there is an abnormality in the charging process based on the charging information of the handle, and does not adjust the operating parameters of the charging device when the charging process does not meet the standards, which affects the charging efficiency of the handle.

Method used

A charging control system for wireless charging gamepad is designed, including a signal receiving device, an analysis module and a control module. By obtaining the charging information of the handle, the system determines whether the charging process meets the standards, and adjusts the operating parameters of the charging device when it does not meet the standards, including the electromagnetic wave emission frequency, the angle and protrusion length of the support mechanism, and the output voltage of the charging device.

Benefits of technology

It improves the charging efficiency of the handle, ensures the stability and safety of the charging process, extends the service life of the handle, and improves the detection accuracy of the charging process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of charging game controllers, and in particular to a charging control system for a wireless charging game controller, comprising: a housing, a charging device, a supporting mechanism, a driving mechanism, a signal receiving device, an analyzing module and a control module. When the handle is placed on the supporting mechanism, the driving mechanism operates, the driving mechanism drives the supporting mechanism to operate to complete the fixation of the handle, the charging device charges the handle, the electromagnetic oscillation device adjusts its own electromagnetic wave emission frequency according to the instruction of the control module to adjust the charging current of the handle, and the signal receiving device obtains the charging information of the handle; the analyzing module determines whether the charging process of the charging device for the handle meets the standard based on the charging information, and the control module adjusts the operating parameters of the charging device when the charging process does not meet the standard, thereby improving the charging efficiency of the handle.
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Description

Technical Field

[0001] The present invention relates to the technical field of game controller charging, and in particular to a charging control system for a wireless charging game controller. Background Art

[0002] With the rapid development of the game industry, game consoles, game controllers, game bracelets and other game supporting equipment have been widely accepted by game players; wireless charging eliminates the constraints of wired connections on game controllers. Users do not need to plug and unplug cables when charging, reducing wear and damage caused by frequent plugging and unplugging of charging ports, avoiding the clutter of cables, and making the gaming area more tidy and beautiful, in line with modern consumers' pursuit of a simple and efficient lifestyle.

[0003] Chinese Patent Publication No.: CN112152292A, discloses a game controller charging base and a charging converter, the game controller charging base includes a shell and a main circuit board arranged in the shell, the shell is provided with two charging slots and a charging indication area, the bottom of the charging slots are provided with a limit column and four charging spring pins, the shape of the charging slot is adapted to the outer contour of the PS5 game controller, and the bottom of the charging slot is provided with four charging holes and a limit hole; the charging converter includes a conversion end and a charging end, the outer contour of the conversion end is adapted to the shape of the charging slot, and is provided with four charging holes and a limit hole the same as the PS5 game controller, the shape of the charging end is adapted to the outer contour of the PS4 game controller, and is provided with a limit column and a MicroUSB charging plug; it can be seen that the prior art has the following problems: it does not consider whether there is an abnormality in the charging process of the charging device according to the charging information of the handle, and does not consider adjusting the operating parameters of the charging device when the charging process does not meet the standards, which affects the charging efficiency of the handle. Summary of the invention

[0004] To this end, the present invention provides a charging control system for a wireless charging game controller, which is used to overcome the problem that the prior art does not consider whether there is an abnormality in the charging process of the charging device based on the charging information of the controller, and does not consider adjusting the operating parameters of the charging device when the charging process does not meet the standards, thereby affecting the charging efficiency of the controller.

[0005] To achieve the above object, the present invention provides a charging control system for a wireless charging game controller, comprising:

[0006] shell;

[0007] A charging device, which is arranged inside the housing and is used to charge the handle; the charging device is provided with a transmitting coil for wirelessly charging the handle and an electromagnetic oscillator connected to the transmitting coil to adjust the frequency of the electromagnetic wave in the transmitting coil;

[0008] A supporting mechanism, which is arranged on the shell and used to carry the handle, including a back plate for carrying the back of the handle and a baffle for supporting the bottom of the handle; the back plate is located at the top of the shell and is rotatably connected to the shell, so as to be closely fitted with the back of the handle by adjusting the angle with the horizontal plane, a driven gear is provided on the connecting shaft between the back plate and the shell, the baffle is arranged at one end of the back plate close to the connection and can be telescopically moved in a direction perpendicular to the back plate, and a rack is provided on the side of the baffle close to the inside of the shell; the transmitting coil is arranged on the inner wall of the back plate;

[0009] A driving mechanism, which is arranged inside the housing and connected to a corresponding component in the supporting mechanism, for adjusting the posture of the supporting mechanism;

[0010] A signal receiving device, which is disposed in the housing and is used to establish a connection with the handle during the charging process of the handle, and periodically obtain charging information of the handle based on the established connection, including power information and current information;

[0011] an analysis module connected to the signal receiving device, for determining whether the charging process of the charging device for the handle meets the standard based on the received charging information, and determining the reason why the charging process of the charging device for the handle does not meet the standard based on the accumulated charging time of the charging device for the handle;

[0012] A control module is respectively connected to the charging device, the driving mechanism and the analysis module, and is used to send corresponding control instructions based on the reasons determined by the analysis module to determine the operating parameters of the corresponding components, including the electromagnetic wave emission frequency of the electromagnetic oscillation device, the angle between the baffle and the horizontal plane, the extension length of the support plate and the voltage output by the charging device.

[0013] Furthermore, the driving mechanism comprises:

[0014] A first driving device is arranged in the housing and connected to the backing plate, and is used to drive the backing plate to rotate along the connecting shaft to adjust the angle between the backing plate and the horizontal plane to a corresponding value. The output shaft of the first driving device is provided with a turbine, and the turbine is meshed with the driven gear to adjust the rotation angle of the backing plate;

[0015] The second driving device is arranged on one side of the shell of the support plate and connected to the baffle to drive the baffle to move in the corresponding direction. A driving gear is provided at the output end of the second driving device, and the driving gear is meshed with the rack to adjust the extension distance of the baffle.

[0016] Further, the analysis module is used to obtain the power information of the handle transmitted by the signal receiving device, and determine whether the charging process of the handle by the charging device in a single charging cycle meets the standard based on the power change amount obtained according to the power information;

[0017] The analysis module is also used to record the angle between the backrest and the horizontal plane and the extension distance of the baffle when it is determined that the charging process meets the standards, and to determine the reason why the charging process does not meet the standards based on the accumulated charging time of the handle when it is determined that the charging process does not meet the standards.

[0018] Furthermore, the analysis module is also used to determine whether the charging process of the handle meets the standard based on the power change amount and the power information of the handle;

[0019] The analysis module is also used to redetermine the determination criterion for the amount of power change when it is determined that the charging process meets the standard, and to determine the reason why the charging process does not meet the standard based on the accumulated charging time of the handle when it is determined that the charging process does not meet the standard.

[0020] Furthermore, the analysis module is also used to reduce the power change standard to a corresponding value based on the power difference, and the power difference is proportional to the reduction range of the power change standard; wherein the power difference is the difference between the actual power in the handle and the preset power pre-stored in the analysis module.

[0021] Furthermore, the analysis module is further configured to select a corresponding processing method based on the determined reason when the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle, including:

[0022] If it is determined that the cause is incomplete contact between the handle and the backing plate, re-determining the angle between the backing plate and the horizontal plane based on the current information of the handle;

[0023] re-determining the electromagnetic wave frequency of the electromagnetic oscillation device based on the output voltage of the charging device when it is determined that the charging efficiency of the charging device does not meet the standard;

[0024] When it is determined that the power level of the handle is higher than a preset value, the power level change standard is re-determined based on the charging time difference, wherein the charging time difference is the difference between the accumulated charging time of the handle and the corresponding preset charging time.

[0025] Furthermore, the analysis module is also used to determine the reduction amplitude of the angle between the backrest and the horizontal plane based on the current information of the handle, and the current information is inversely proportional to the reduction amplitude of the angle; the control module is also used to control the first drive device based on the instructions output by the analysis module to adjust the angle between the backrest and the horizontal plane to a corresponding value.

[0026] Furthermore, the analysis module is also used to determine the extension amount of the baffle based on the angle between the back plate and the horizontal plane, and the extension amount of the baffle is proportional to the angle; the control module is also used to control the second drive device based on the instructions output by the analysis module to adjust the extension amount of the baffle to a corresponding value.

[0027] Furthermore, the analysis module is also used to determine the increase amplitude of the electromagnetic wave frequency of the electromagnetic oscillation device based on the output voltage of the charging device, and the voltage value is inversely proportional to the increase amplitude of the electromagnetic wave frequency; the control module is also used to control the electromagnetic oscillation device based on the instructions output by the analysis module so that the frequency of the electromagnetic wave of the electromagnetic oscillation device is adjusted to a corresponding value.

[0028] Furthermore, the analysis module is also used to reduce the corresponding power change standard to a corresponding value based on the charging time difference, and the charging time difference is proportional to the reduction range of the power change standard.

[0029] Compared with the prior art, the beneficial effect of the present invention lies in that when the handle is placed on the supporting mechanism, the driving mechanism operates, the driving mechanism drives the supporting mechanism to operate to fix the handle, the charging device charges the handle, and the electromagnetic oscillation device adjusts its own electromagnetic wave emission frequency according to the instructions of the control module to adjust the charging current of the handle, and the signal receiving device obtains the charging information of the handle; the analysis module determines whether the charging process of the charging device for the handle meets the standards based on the charging information, and the control module adjusts the operating parameters of the charging device when the charging process does not meet the standards, thereby improving the charging efficiency of the handle.

[0030] Furthermore, the charging process of the handle is monitored, and the specific situation of the charging abnormality is determined in time when the change in power is too low, and corresponding processing measures are taken in a targeted manner to ensure that the handle is stably charged, thereby increasing the service life of the handle. When the situation of the charging process cannot be determined only based on the change in power, the power information of the handle is obtained, so that when the power information is too large, it is determined that when the handle is almost fully charged, the speed of power change gradually slows down due to the charging protection mechanism and battery characteristics, resulting in a low current change in power. At this time, the judgment benchmark for the change in power is adjusted to adjust the judgment benchmark according to the specific situation of the handle, thereby effectively improving the detection accuracy of the charging process of the handle and further improving the charging efficiency of the handle.

[0031] Furthermore, when the charging process does not meet the standard, the operating parameters of the charging device are adjusted based on the cumulative charging time of the handle. When the cumulative charging time is short, it is in the initial stage of charging, and the support mechanism has initially completed the fixation of the handle. In this case, the change in power is too low. At this time, the angle of the support plate of the support mechanism is adjusted to solve the abnormal charging caused by poor contact between the handle and the back plate; when the charging time is in the middle of charging, in this case, the support mechanism has already completed the fixation of the handle in the previous charging cycle, but at this time there is still a low change in power. At this time, the abnormal operation of the transmitting coil causes the charging device to fail to meet the current charging requirements of the handle. At this time, the electromagnetic wave frequency of the electromagnetic oscillation device is adjusted to adjust the charging current of the transmitting coil for the handle, and the charging parameters are automatically adjusted according to the specific charging situation of the handle; if the charging time is long, in this case, the handle is about to be fully charged. At this time, the standard of the change in power is changed to further determine the current charging situation, while ensuring that the charging device charges the handle stably, effectively improving the charging efficiency of the handle. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 This is a schematic diagram of the structure of a charging control system of a wireless charging game controller according to an embodiment of the present invention;

[0033] Figure 2 This is a logic determination diagram of the analysis module of the embodiment of the present invention determining whether the charging process of the handle by the charging device in a single charging cycle meets the standard based on the amount of power change;

[0034] Figure 3 This is a logic determination diagram of the analysis module in the embodiment of the present invention determining whether the charging process of the handle meets the standard based on the power information of the handle;

[0035] Figure 4 This is a logic decision diagram of the analysis module in the embodiment of the present invention determining the reason why the charging process does not meet the standard based on the accumulated charging time of the handle;

[0036] In the figure: 1. housing; 21. transmitting coil; 22. electromagnetic oscillation device; 31. support plate; 32. baffle; 33. driven gear; 34. rack; 41. first drive device; 42. turbine; 43. second drive device; 5. signal receiving device; 6. analysis module; 7. control module. DETAILED DESCRIPTION

[0037] In order to make the objects and advantages of the present invention more clearly understood, the present invention is further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0038] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the protection scope of the present invention.

[0039] It should be noted that, in the description of the present invention, terms such as "up", "down", "left", "right", "inside" and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the drawings. This is merely for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present invention.

[0040] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0041] See also Figure 1 , Figure 2 , Figure 3 as well as Figure 4 As shown, they are respectively a structural schematic diagram of a charging control system of a wireless charging game controller according to an embodiment of the present invention, a logic determination diagram of an analysis module determining whether a charging process of a charging device for a controller meets the standard within a single charging cycle based on a change in power, a logic determination diagram of an analysis module determining whether a charging process of a controller meets the standard based on power information of the controller, and a logic determination diagram of an analysis module determining the reason why the charging process does not meet the standard based on the accumulated charging time of the controller; a charging control system of a wireless charging game controller according to an embodiment of the present invention comprises:

[0042] Shell 1;

[0043] A charging device, which is arranged inside the housing 1 and is used to charge the handle; the charging device is provided with a transmitting coil 21 for wirelessly charging the handle and an electromagnetic oscillating device 22 connected to the transmitting coil 21 to adjust the frequency of the electromagnetic wave in the transmitting coil 21;

[0044] A supporting mechanism, which is arranged on the shell 1 and is used to carry the handle, including a backing plate 31 for carrying the back of the handle and a baffle 32 for supporting the bottom of the handle; the backing plate 31 is located at the top of the shell 1 and is rotatably connected to the shell 1, so as to be closely fitted with the back of the handle by adjusting the angle with the horizontal plane, a driven gear 33 is provided on the connecting shaft between the backing plate 31 and the shell 1, the baffle 32 is arranged at one end of the backing plate 31 close to the connection and can be telescopically moved in a direction perpendicular to the backing plate 31, and a rack 34 is provided on one side of the baffle 32 close to the inside of the shell 1; the transmitting coil 21 is arranged on the inner wall of the backing plate 31;

[0045] A driving mechanism, which is arranged inside the housing 1 and connected to a corresponding component in the supporting mechanism, and is used to adjust the posture of the supporting mechanism;

[0046] A signal receiving device 5, which is disposed in the housing 1, and is used to establish a connection with the handle during the charging process of the handle, and periodically obtain charging information of the handle based on the established connection, including power information and current information;

[0047] An analysis module 6, connected to the signal receiving device 5, for determining whether the charging process of the charging device for the handle meets the standard based on the received charging information, and determining the reason why the charging process of the charging device for the handle does not meet the standard based on the accumulated charging time of the charging device for the handle;

[0048] The control module 7 is respectively connected to the charging device, the driving mechanism and the analysis module 6, and is used to send corresponding control instructions based on the reasons determined by the analysis module 6 to determine the operating parameters of the corresponding components, including the electromagnetic wave emission frequency of the electromagnetic oscillation device 22, the angle between the baffle 32 and the horizontal plane, the extension length of the support plate 31 and the voltage output by the charging device.

[0049] Specifically, when the handle is placed on the support mechanism, the driving mechanism operates, the first driving device 41 operates, and the turbine 42 of the output shaft of the first driving device 41 rotates to drive the driven gear 33 set on the connecting shaft between the back plate 31 and the housing 1 to rotate, thereby adjusting the rotation angle of the back plate 31; the second driving device 43 operates, and the driving gear set at the output end of the second driving device 43 rotates to drive the rack 34 set on the side of the baffle 32 close to the inside of the housing 1 to move, thereby adjusting the extension distance of the baffle 32, and the driving mechanism drives the baffle 32 and the back plate 31 of the supporting mechanism to complete the fixation of the handle. The transmitting coil 21 of the charging device charges the handle, and the electromagnetic oscillation device 22 adjusts its own electromagnetic wave transmission frequency according to the instruction of the control module 7 to adjust the charging current of the transmitting coil 21 to the handle. The signal receiving device 5, which is arranged inside the housing 1 and is connected to the handle during the charging process of the handle, obtains the charging information of the handle; the analysis module 6 determines whether the charging process of the charging device for the handle meets the standard based on the received charging information, and determines the reason why the charging process of the charging device for the handle does not meet the standard based on the accumulated charging time of the charging device for the handle. The control module 7 sends a corresponding control instruction based on the reason determined by the analysis module 6 to determine the operating parameters of the corresponding component.

[0050] Specifically, when the handle is placed on the supporting mechanism, the driving mechanism operates, and the driving mechanism drives the supporting mechanism to operate to fix the handle. The charging device charges the handle, and the electromagnetic oscillation device 22 adjusts its own electromagnetic wave emission frequency according to the instructions of the control module 7 to adjust the charging current of the handle. The signal receiving device 5 obtains the charging information of the handle; the analysis module 6 determines whether the charging process of the handle by the charging device meets the standards based on the charging information. When the charging process does not meet the standards, the control module 7 adjusts the operating parameters of the charging device, thereby improving the charging efficiency of the handle.

[0051] Specifically, the driving mechanism comprises:

[0052] A first driving device 41, which is disposed in the housing 1 and connected to the backing plate 31, is used to drive the backing plate 31 to rotate along the connecting shaft to adjust the angle between the backing plate 31 and the horizontal plane to a corresponding value. The output shaft of the first driving device 41 is provided with a turbine 42, which is meshed with the driven gear 33 to adjust the rotation angle of the backing plate 31;

[0053] The second driving device 43 is arranged on one side of the housing 1 of the support plate 31 and is connected to the baffle 32 to drive the baffle 32 to move in the corresponding direction. A driving gear (not shown in the figure) is provided at the output end of the second driving device 43, and the driving gear is engaged with the rack 34 to adjust the extension distance of the baffle 32.

[0054] Specifically, the analysis module 6 is used to obtain the power information of the handle transmitted by the signal receiving device 5, and, based on the power change obtained according to the power information, determine whether the charging process of the handle by the charging device in a single charging cycle meets the standard, including:

[0055] If the amount of change in power is less than or equal to the first amount of change standard, it is determined that the charging process does not meet the standard, and the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle;

[0056] If the amount of power change is less than or equal to the second amount of power change standard and greater than the first amount of power change standard, determining whether the charging process of the handle meets the standard based on the amount of power change and the power information of the handle;

[0057] If the amount of change in power is greater than the second amount of change in power standard, it is determined that the charging process meets the standard, and the angle between the back plate 31 and the horizontal plane and the extension distance of the baffle 32 are recorded.

[0058] Specifically, the first power change standard B1 is selected within the interval [0.52J0, 0.69J0], and the second power change standard B2 is selected within the interval [0.82J0, 0.88J0]. J0 is the average value of the power change of each handle in a single charging cycle in the historical detection data.

[0059] Specifically, the historical detection data is a data record of the charging information of each handle during the charging process obtained by the signal receiving device 5. There is no limit on the number of handles selected for obtaining the average value of each charge change. It can be understood that in order to ensure the division of the specific circumstances of the charging process of the handle, the number of handles selected is not less than 100, which will not be repeated here.

[0060] Specifically, the charging process of the handle is monitored, and the specific situation of the charging abnormality is determined in time when the change in power is too low, and corresponding processing measures are taken in a targeted manner to ensure that the handle is stably charged and the service life of the handle is increased. When the situation of the charging process cannot be determined only based on the change in power, the power information of the handle is obtained. When the power information is too large, it is determined that when the handle is almost fully charged, the speed of power change gradually slows down due to the charging protection mechanism and battery characteristics, resulting in a low current change in power. At this time, the judgment benchmark for the change in power is adjusted to adjust the judgment benchmark according to the specific situation of the handle, thereby effectively improving the detection accuracy of the handle charging process and further improving the charging efficiency of the handle.

[0061] Specifically, the analysis module 6 is further used to determine whether the charging process of the handle meets the standard based on the power change amount and the power information of the handle, including:

[0062] If the power information is less than or equal to the preset power information, it is determined that the charging process does not meet the standard, and the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle;

[0063] If the power information is greater than the preset power information, it is determined that the charging process meets the standard, and the determination criterion for the power change is re-determined.

[0064] Specifically, the preset power information Y0 is selected within the range of [75%, 82%].

[0065] Specifically, the analysis module 6 is also used to reduce the power change standard to a corresponding value based on the power difference, and the power difference is proportional to the reduction range of the power change standard; wherein the power difference is the difference between the actual power in the handle and the preset power pre-stored in the analysis module 6.

[0066] In this embodiment, optionally,

[0067] Compare the power difference L with a first preset power comparison threshold L1 and a second preset power comparison threshold L2;

[0068] If L≤L1, the second electric quantity change standard is adjusted to a corresponding value using the first preset reference adjustment coefficient, and B1'=0.53B1 is set;

[0069] If L1<L≤L2, the second preset reference adjustment coefficient is used to adjust the second electric quantity change standard to a corresponding value, and B1'=0.61B1 is set;

[0070] If L>L2, the second electric quantity change standard is adjusted to a corresponding value using the third preset reference adjustment coefficient, and B1'=0.82B1 is set;

[0071] Among them, B1' is the second electric quantity change standard after adjustment using the corresponding preset reference adjustment coefficient, L1 = 0.05Y0, L2 = 0.11Y0.

[0072] Specifically, the analysis module 6 determines whether the charging process of the handle of the charging device in a single charging cycle meets the standard based on the re-determined judgment standard for the charge change, after completing the condition of lowering the charge change standard to the corresponding value based on the charge difference. If the charge change is less than or equal to the adjusted second charge change standard, it is determined that the charging process does not meet the standard, and the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle; if the charge change is greater than the adjusted second charge change standard, it is determined that the charging process meets the standard, and the angle between the back plate 31 and the horizontal plane and the extension distance of the baffle 32 are recorded.

[0073] Specifically, the analysis module 6 is further configured to select a corresponding processing method based on the determined reason when the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle, including:

[0074] If the accumulated charging time is less than or equal to the first preset charging time, it is determined that the cause is incomplete contact between the handle and the backing plate 31, and the angle between the backing plate 31 and the horizontal plane is re-determined based on the current information of the handle;

[0075] If the accumulated charging time is less than or equal to the second preset charging time and greater than the first preset charging time, it is determined that the charging efficiency of the charging device does not meet the standard, and the electromagnetic wave frequency of the electromagnetic oscillation device 22 is re-determined based on the output voltage of the charging device;

[0076] If the cumulative charging time is greater than the second preset charging time, it is determined that the reason is that the power of the handle is higher than the preset value, and the power change standard is re-determined based on the charging time difference, where the charging time difference is the difference between the cumulative charging time of the handle and the corresponding preset charging time.

[0077] Specifically, the first preset charging time S1 is selected within the interval [0.08S0, 0.22S0], the second preset charging time S2 is selected within the interval [0.73S0, 0.78S0], and S0 is the average charging time required for each handle to complete charging in the historical detection data.

[0078] Specifically, when the charging process does not meet the standard, the operating parameters of the charging device are adjusted based on the cumulative charging time of the handle. When the cumulative charging time is short, it is in the initial stage of charging, and the support mechanism has initially completed the fixation of the handle. In this case, the change in power is too low. At this time, the angle of the support plate 31 of the support mechanism is adjusted to solve the abnormal charging caused by poor contact between the handle and the support plate 31; when the charging time is in the middle of charging, in this case, the support mechanism has already completed the fixation of the handle in the previous charging cycle, but at this time there is still a low change in power. At this time, the transmitting coil 21 operates abnormally, causing the charging device to fail to meet the current charging requirements of the handle. At this time, the electromagnetic wave frequency of the electromagnetic oscillation device 22 is adjusted to adjust the charging current of the transmitting coil 21 for the handle, and the charging parameters are automatically adjusted according to the specific charging situation of the handle; if the charging time is long, in this case, the handle is about to be fully charged. At this time, the standard for the change in power is changed to further determine the current charging situation, while ensuring that the charging device stably charges the handle, and effectively improves the charging efficiency of the handle.

[0079] Specifically, the analysis module 6 is also used to determine the reduction amplitude of the angle between the backrest 31 and the horizontal plane based on the current information of the handle, and the current information is inversely proportional to the reduction amplitude of the angle; the control module 7 is also used to control the first drive device 41 based on the instructions output by the analysis module 6 to adjust the angle between the backrest 31 and the horizontal plane to a corresponding value.

[0080] In this embodiment, optionally,

[0081] Compare the current information M with the first preset current information M1 and the second preset current information M2;

[0082] If M≤M1, the reduction amplitude of the angle between the back plate 31 and the horizontal plane is determined as the first reduction amplitude A1, and A1=0.23A0;

[0083] If M1<M≤M2, the reduction amplitude of the angle between the back plate 31 and the horizontal plane is determined as the second reduction amplitude A1, and A1=0.17A0;

[0084] If M>M2, the reduction range of the angle between the back plate 31 and the horizontal plane is determined as the third reduction range A1, and A3=0.12A0 is set;

[0085] Wherein, A0 is the current angle between the backing plate 31 and the horizontal plane, M1=180mA, and M2=350mA.

[0086] Specifically, the analysis module 6 is also used to determine the extension amount of the baffle 32 based on the angle between the back plate 31 and the horizontal plane, and the extension amount of the baffle 32 is proportional to the angle; the control module 7 is also used to control the second drive device 43 based on the instructions output by the analysis module 6 to adjust the extension amount of the baffle 32 to a corresponding value.

[0087] In this embodiment, optionally, the extension amount of the baffle 32 is determined by obtaining the sine value of the angle between the back plate 31 and the horizontal plane, and assigning the sine value to the coordination coefficient to obtain the extension amount of the baffle 32;

[0088] The coordination coefficient is selected in the interval [5, 8] and is assigned by multiplication.

[0089] Specifically, the analysis module 6 is also used to determine the increase amplitude of the electromagnetic wave frequency of the electromagnetic oscillation device 22 based on the output voltage of the charging device, and the voltage value is inversely proportional to the increase amplitude of the electromagnetic wave frequency; the control module 7 is also used to control the electromagnetic oscillation device 22 based on the instructions output by the analysis module 6 so that the frequency of the electromagnetic wave of the electromagnetic oscillation device 22 is adjusted to a corresponding value.

[0090] In this embodiment, optionally,

[0091] Compare the output voltage U with the first preset output voltage U1 and the second preset output voltage U2;

[0092] If U≤U1, the electromagnetic wave frequency of the electromagnetic oscillation device 22 is determined to be the first frequency T1, and T1=1.24T0;

[0093] If U1<U≤U2, the electromagnetic wave frequency of the electromagnetic oscillation device 22 is determined as the second frequency T2, and T1=1.17T0;

[0094] If U>U2, the electromagnetic wave frequency of the electromagnetic oscillation device 22 is determined to be the third frequency T3, and T3=1.11T0;

[0095] Wherein, T0 is the initial electromagnetic wave frequency of the electromagnetic oscillation device 22, U1=7V, U2=10V.

[0096] Specifically, the analysis module 6 is further configured to reduce the corresponding power change standard to a corresponding value based on the charging time difference, and the charging time difference is proportional to the reduction range of the power change standard.

[0097] In this embodiment, optionally,

[0098] The charging time difference is the difference between the accumulated charging time of the handle and the second preset charging time;

[0099] The charging time difference Z is compared with the first preset charging comparison threshold Z1 and the second preset charging comparison threshold Z2,

[0100] If Z≤Z1, the second electric quantity change standard is adjusted to the corresponding value using the first preset standard adjustment coefficient, and B1"=0.57B1 is set;

[0101] If Z1<Z≤Z2, the second preset standard adjustment coefficient is used to adjust the second electric quantity change standard to the corresponding value, and B1"=0.46B1 is set;

[0102] If Z>Z2, the second electric quantity change standard is adjusted to a corresponding value using the third preset standard adjustment coefficient, and B1"=0.37B1 is set;

[0103] Wherein, B1" is the second electric quantity change standard adjusted by using the corresponding preset standard adjustment coefficient, Z1 = 0.12S2, Z2 = 0.19S2.

[0104] Specifically, the analysis module 6 determines whether the charging process of the handle of the charging device in a single charging cycle meets the standard based on the re-determined judgment standard for the charge change, after completing the condition of reducing the corresponding charge change standard to the corresponding value based on the charging time difference. If the charge change is less than or equal to the adjusted second charge change standard, it is determined that the charging process does not meet the standard, and the electromagnetic wave frequency of the electromagnetic oscillation device 22 is re-determined based on the output voltage of the charging device; if the charge change is greater than the adjusted second charge change standard, it is determined that the charging process meets the standard, and the angle between the back plate 31 and the horizontal plane and the extension distance of the baffle 32 are recorded.

[0105] So far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.

[0106] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A charging control system for a wireless charging game controller, characterized in that: include: shell; A charging device, which is arranged inside the housing and is used to charge the handle; the charging device is provided with a transmitting coil for wirelessly charging the handle and an electromagnetic oscillator connected to the transmitting coil to adjust the frequency of the electromagnetic wave in the transmitting coil; A supporting mechanism, which is arranged on the housing and is used to support the handle, including a backing plate for supporting the back of the handle and a baffle for supporting the bottom of the handle; The backing plate is located at the top of the shell and is rotatably connected to the shell, so as to fit closely with the back of the handle by adjusting the angle with the horizontal plane. A driven gear is provided on the connecting shaft between the backing plate and the shell. The baffle is provided at one end of the backing plate close to the connection and can be telescopically moved in a direction perpendicular to the backing plate. A rack is provided on one side of the baffle close to the inside of the shell. The transmitting coil is provided on the inner wall of the backing plate. A driving mechanism, which is arranged inside the housing and connected to a corresponding component in the supporting mechanism, for adjusting the posture of the supporting mechanism; The driving mechanism comprises a first driving device and a second driving device; the first driving device is arranged in the housing and connected to the back plate, and is used to drive the back plate to rotate along the connecting shaft to adjust the angle between the back plate and the horizontal plane to a corresponding value, and the output shaft of the first driving device is provided with a turbine, which is meshed with the driven gear to adjust the rotation angle of the back plate; the second driving device is arranged on one side of the housing of the back plate and is connected to the baffle, and is used to drive the baffle to move in a corresponding direction, and the output end of the second driving device is provided with a driving gear, which is meshed with the rack to adjust the extension distance of the baffle; A signal receiving device, which is disposed in the housing and is used to establish a connection with the handle during the charging process of the handle, and periodically obtain charging information of the handle based on the established connection, including power information and current information; an analysis module connected to the signal receiving device, for determining whether the charging process of the charging device for the handle meets the standard based on the received charging information, and determining the reason why the charging process of the charging device for the handle does not meet the standard based on the accumulated charging time of the charging device for the handle; A control module is respectively connected to the charging device, the driving mechanism and the analysis module, and is used to send corresponding control instructions based on the reasons determined by the analysis module to determine the operating parameters of the corresponding components, including the electromagnetic wave emission frequency of the electromagnetic oscillation device, the angle between the baffle and the horizontal plane, the extension length of the support plate and the voltage output by the charging device.

2. The charging control system of the wireless charging game controller according to claim 1, characterized in that: The analysis module is used to obtain the power information of the handle transmitted by the signal receiving device, and determine whether the charging process of the handle by the charging device in a single charging cycle meets the standard based on the power change amount obtained according to the power information; The analysis module is also used to record the angle between the backrest and the horizontal plane and the extension distance of the baffle when it is determined that the charging process meets the standards, and to determine the reason why the charging process does not meet the standards based on the accumulated charging time of the handle when it is determined that the charging process does not meet the standards.

3. The charging control system of the wireless charging game controller according to claim 2, characterized in that: The analysis module is also used to determine whether the charging process of the handle meets the standard based on the power change amount and the power information of the handle; The analysis module is also used to redetermine the determination criterion for the amount of power change when it is determined that the charging process meets the standard, and to determine the reason why the charging process does not meet the standard based on the accumulated charging time of the handle when it is determined that the charging process does not meet the standard.

4. The charging control system of the wireless charging game controller according to claim 3, characterized in that: The analysis module is also used to reduce the power change standard to a corresponding value based on the power difference, and the power difference is proportional to the reduction of the power change standard; wherein the power difference is the difference between the actual power in the handle and the preset power pre-stored in the analysis module.

5. The charging control system of the wireless charging game controller according to claim 3, characterized in that: The analysis module is further configured to select a corresponding processing method based on the determined reason when the reason why the charging process does not meet the standard is determined based on the accumulated charging time of the handle, including: If it is determined that the cause is incomplete contact between the handle and the backing plate, re-determining the angle between the backing plate and the horizontal plane based on the current information of the handle; re-determining the electromagnetic wave frequency of the electromagnetic oscillation device based on the output voltage of the charging device when it is determined that the charging efficiency of the charging device does not meet the standard; When it is determined that the power level of the handle is higher than a preset value, the power level change standard is re-determined based on the charging time difference, wherein the charging time difference is the difference between the accumulated charging time of the handle and the corresponding preset charging time.

6. The charging control system of the wireless charging game controller according to claim 5, characterized in that: The analysis module is also used to determine the reduction amplitude of the angle between the backrest and the horizontal plane based on the current information of the handle, and the current information is inversely proportional to the reduction amplitude of the angle; the control module is also used to control the first drive device based on the instructions output by the analysis module to adjust the angle between the backrest and the horizontal plane to a corresponding value.

7. The charging control system of the wireless charging game controller according to claim 6, characterized in that: The analysis module is also used to determine the extension amount of the baffle based on the angle between the back plate and the horizontal plane, and the extension amount of the baffle is proportional to the angle; the control module is also used to control the second drive device based on the instructions output by the analysis module to adjust the extension amount of the baffle to a corresponding value.

8. The charging control system of the wireless charging game controller according to claim 5, characterized in that: The analysis module is also used to determine the increase amplitude of the electromagnetic wave frequency of the electromagnetic oscillation device based on the output voltage of the charging device, and the voltage value is inversely proportional to the increase amplitude of the electromagnetic wave frequency; the control module is also used to control the electromagnetic oscillation device based on the instructions output by the analysis module so that the frequency of the electromagnetic wave of the electromagnetic oscillation device is adjusted to a corresponding value.

9. The charging control system of the wireless charging game controller according to claim 8, characterized in that: The analysis module is further configured to reduce the corresponding power change standard to a corresponding value based on the charging time difference, and the charging time difference is proportional to the reduction range of the power change standard.

Citation Information

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