WO2020063748A1 - 一种控制方法和电子设备 - Google Patents

一种控制方法和电子设备 Download PDF

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Publication number
WO2020063748A1
WO2020063748A1 PCT/CN2019/108159 CN2019108159W WO2020063748A1 WO 2020063748 A1 WO2020063748 A1 WO 2020063748A1 CN 2019108159 W CN2019108159 W CN 2019108159W WO 2020063748 A1 WO2020063748 A1 WO 2020063748A1
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WO
WIPO (PCT)
Prior art keywords
light
control
information
control unit
control signal
Prior art date
Application number
PCT/CN2019/108159
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English (en)
French (fr)
Inventor
高营
王智虎
Original Assignee
联想(北京)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 联想(北京)有限公司 filed Critical 联想(北京)有限公司
Priority to US17/280,200 priority Critical patent/US11778714B2/en
Publication of WO2020063748A1 publication Critical patent/WO2020063748A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/155Coordinated control of two or more light sources
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/10Controlling the intensity of the light
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/10Human or animal bodies, e.g. vehicle occupants or pedestrians; Body parts, e.g. hands
    • G06V40/12Fingerprints or palmprints
    • G06V40/13Sensors therefor
    • G06V40/1318Sensors therefor using electro-optical elements or layers, e.g. electroluminescent sensing
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/10Human or animal bodies, e.g. vehicle occupants or pedestrians; Body parts, e.g. hands
    • G06V40/12Fingerprints or palmprints
    • G06V40/1365Matching; Classification
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/165Controlling the light source following a pre-assigned programmed sequence; Logic control [LC]
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/20Responsive to malfunctions or to light source life; for protection
    • H05B47/29Circuits providing for substitution of the light source in case of its failure

Definitions

  • the present application relates to the field of electronic devices, and more particularly, to a control method and an electronic device.
  • a fingerprint module with a fingerprint collection function and an electronic device with on and off can be integrated.
  • the function switch modules are integrated together to realize the fingerprint collection and the opening or closing of the electronic device respectively based on the integrated structure.
  • the corresponding indicators of different function modules integrated together are set in the same area, and the indicators of different function modules are controlled by different controllers, which will cause conflicts in the behavior of the lamps.
  • this application provides a control method, and this application provides the following technical solutions:
  • a control method including:
  • the first control signal is generated when a first control unit meets a first condition, and the first light effect is used to prompt that the first condition is satisfied;
  • the second control signal is generated when a second control unit meets a second condition, and the second light effect is used to prompt that the second condition is satisfied.
  • the first light effect and the second light effect are generated by the same light emitting device, and the light emission is controlled according to a control rule, the first control signal, and the second control signal.
  • the light effects of the device include:
  • the light-emitting device is controlled to generate a third light effect according to the first control signal and the second control signal.
  • the light effect obtained by superimposing the first light effect and the second light effect is the same as the first light effect.
  • the three light effects are different.
  • the first light effect and the second light effect are generated by different light-emitting devices, and the different light-emitting devices emit light through a preset optical component, causing a user to perceive the different light-emitting devices. If the light effect is in the same area, controlling the light effect of the light emitting device according to the control rule, the first control signal, and the second control signal includes:
  • a first control signal with a high priority level is selected to control a corresponding light emitting device to generate a first light effect, and the second control signal is ignored.
  • the determining the first control signal of the first control unit includes at least one of the following:
  • Determining first information of a first control unit where the first information is control information received by the first control unit, the control information is used to control an operating state of the first control unit, and the first information is used to Controlling the light emitting device to generate a first sub-light effect;
  • Determining second information of the first control unit where the second information represents a state of an information processing result of the first control unit, and the second information is used to control the light emitting device to generate a second sub-light effect;
  • Determining third information of the first control unit where the third information is first category information obtained by the first control unit classifying the first information and the second information, and the third information is used to control the light emitting device to generate The third sub-light effect.
  • the first control unit includes a control unit corresponding to a switch module
  • the first information includes information indicating that the electronic device is in a working state, or that the electronic device enters from a non-working state.
  • the first control unit includes a control unit corresponding to the fingerprint module, and the first information includes information indicating that the fingerprint module is in a working state, or that the fingerprint module is in a non-working state. information;
  • the second information includes information indicative of successful fingerprint recognition obtained by the fingerprint module, or information indicative of failed fingerprint recognition obtained by the fingerprint module, or information indicative of fingerprint input indication obtained by the fingerprint module, or characteristic fingerprint The information that the module failed to collect fingerprints, or the information that characterizes the successful fingerprint acquisition obtained by the fingerprint module;
  • the third information includes first type information, and information of the same type is used to control the light emitting device to generate the same light effect.
  • An electronic device includes:
  • a controller for determining a first control signal of a first control unit, the first control signal for controlling a light emitting device to generate a first light effect; determining a second control signal of a second control unit, the second control signal Configured to control the light emitting device to generate a second light effect; and control the light effect of the light emitting device according to a control rule, the first control signal, and the second control signal.
  • the first light effect is generated by a first light emitting device, and the second light effect is generated by a second light emitting device;
  • the electronic device further includes: an optical component
  • the different light emitting devices emit light through the optical component, so that a user perceives that the light effects of different light emitting devices are in the same area.
  • the method further includes:
  • the first control unit includes a control unit corresponding to the switch module, and is configured to control the light emitting device based on the operating state of the electronic device;
  • the first control unit includes a control unit corresponding to the fingerprint module, for identifying a fingerprint, and controlling the light-emitting device according to the running status of the first control unit and the status of the information processing result of the first control unit;
  • the first control unit includes a control unit corresponding to the fingerprint module, for identifying a fingerprint, and controlling light emission according to the first classification information obtained by classifying the operating status of the first control unit and the status of the information processing result of the first control unit.
  • a control unit corresponding to the fingerprint module for identifying a fingerprint, and controlling light emission according to the first classification information obtained by classifying the operating status of the first control unit and the status of the information processing result of the first control unit.
  • this application provides a control method and an electronic device.
  • the method includes: determining a first control signal of a first control unit, where the first control signal is used to control The light emitting device generates a first light effect; determines a second control signal of a second control unit, and the second control signal is used to control the light emitting device to generate a second light effect; according to a control rule, the first control signal and all The second control signal controls a light effect of the light emitting device.
  • the control signals of the multiple control units can be combined to control the light effects of the lights according to preset control rules and coordinate multiple controls.
  • the various units control the behavior of the lights to avoid conflicts in the behaviors of the lights and ensure that the user can know the corresponding state of the control unit in the current device directly based on the light effect of the lighting device.
  • FIG. 1 is a structural diagram of an implementation manner of an integrated device in an electronic device according to an embodiment of the present application
  • FIG. 2 is a simplified cross-sectional view of an implementation manner of an integrated device according to an embodiment of the present application
  • FIG. 3 is a top view of an implementation manner of an integrated device in an electronic device according to an embodiment of the present application.
  • FIG. 4 is a structural diagram of another implementation manner of an electronic device according to an embodiment of the present application.
  • FIG. 5 is a flowchart of an implementation manner of a control method according to an embodiment of the present application.
  • the control method provided in the embodiment of the present application may be applied to an electronic device, and the electronic device may include at least two function modules (the control unit mentioned in the embodiment of the application may be integrated with the corresponding function module, or, the embodiment of the application
  • the mentioned control units include corresponding function modules, or the control units mentioned in the embodiments of the present application are the corresponding function modules), and the indicators corresponding to the at least two function modules are set at
  • the electronic devices in the same area for example, the electronic device may be a computer, or, a laptop computer, or, a smart phone, or a terminal device such as a PAD.
  • FIG. 1 it is a structural diagram of an implementation manner of an integrated device in an electronic device according to an embodiment of the present application.
  • An integrated device integrated by at least two functional modules includes a fingerprint module 11, a processor 12, a smart identity authentication device 13, a switch module 14, and at least one light emitting device 15.
  • the intelligent identity authentication device 13 and the fingerprint module 11 may be the same device or independent devices; optionally, the fingerprint module 11, the processor 12, and the intelligent identity authentication device 13 may be the same device. It may also be an independent device.
  • the processor 12 may be a CPU (Central Processing Unit, Central Processing Unit), and / or, the switch module 14 may be included in an EC (Embed Controller, embedded controller) or a processor independent of the EC; And / or, the smart identity authentication device 13 may store a program corresponding to Windows Hello; and / or, the fingerprint module 11 may include an MCU (Microcontroller Unit).
  • the processor 12 may be a CPU (Central Processing Unit, Central Processing Unit), and / or, the switch module 14 may be included in an EC (Embed Controller, embedded controller) or a processor independent of the EC;
  • the smart identity authentication device 13 may store a program corresponding to Windows Hello; and / or, the fingerprint module 11 may include an MCU (Microcontroller Unit).
  • MCU Microcontroller Unit
  • the switch module 14 or the fingerprint module 11 and the light-emitting device 15 are connected through a GPIO (General Purpose Input / Output).
  • the processor 12 and the fingerprint module 11 are connected through a USB (Universal Serial Bus).
  • the fingerprint module 11 is configured to collect a fingerprint of the operating body 10 that touches the fingerprint module.
  • FIG. 2 a simplified cross-sectional view of an implementation manner of an integrated device according to an embodiment of the present application is shown.
  • the user can place the operating body 10 on the stressed surface of the fingerprint module 11.
  • the fingerprint module 11 or the intelligent identity authentication device 13 detects that the touch operation of the fingerprint module meets the first touch condition, the fingerprint module 11 is activated, so that the fingerprint module 11 is in a working state.
  • the touch operation may include: touch duration, and / or, touch strength;
  • the first touch condition may include: touch duration is greater than or equal to the first preset duration, and / or, touch strength is greater than Or equal to the first preset velocity.
  • the fingerprint module 11 or the intelligent identity authentication device 13 may also control the fingerprint module to be turned off, so that the fingerprint module is in a non-working state.
  • the processor 12 is configured to transmit the fingerprint collected by the fingerprint module 11 to the smart identity authentication device 13.
  • the intelligent identity authentication device 13 is configured to compare the fingerprint collected by the fingerprint module 11 with a preset fingerprint to obtain a fingerprint recognition result.
  • the fingerprint recognition result can be a fingerprint recognition success or a fingerprint recognition failure.
  • the fingerprint recognition is successful; if the collected fingerprint does not match the preset fingerprint, the fingerprint recognition fails.
  • the smart identity authentication device 13 or the fingerprint module 11 or the processor 12 can also be used to identify whether the fingerprint collected by the fingerprint module 11 is valid. If the fingerprint collected is invalid, the smart identity authentication device 13 or the fingerprint module 11 The fingerprint input information can be generated again; if the collected fingerprint is valid, the intelligent identity authentication device 13 or the fingerprint module 11 or the processor 12 can generate information that the fingerprint collection is successful.
  • the user may use the electronic device for shopping or log in to the application, which may involve entering a fingerprint.
  • the smart identity authentication device 13 or the fingerprint module 11 may also generate a fingerprint input instruction at the corresponding time based on the application running on the electronic device. information.
  • the corresponding information includes but is not limited to: information indicating that the fingerprint module is in a working state, or information indicating that the fingerprint module is in a non-working state; or, characterizing a fingerprint Information that identifies success, or information that indicates fingerprint recognition failure, or information that indicates that fingerprints are re-entered, or information that indicates successful fingerprint collection, or information that indicates fingerprint input instructions.
  • the processor 12 is further configured to transmit the above information to the fingerprint module 11, or the processor 12 generates a corresponding control signal based on the above information.
  • the control signals corresponding to different information are different; optionally, various information can be classified, the control signals corresponding to different types of information are different, and the control signals corresponding to the same type of information are the same.
  • the characterization can be input into the fingerprint again.
  • the information and information indicative of fingerprint input indications are regarded as a type of information.
  • the fingerprint module 11 can also be used to generate different control signals based on different information, control the light emitting device 15 to generate different light effects based on different control signals, or control the light emitting device 15 to generate different light effects based on different control signals.
  • the light effect may include: color, and / or, blinking frequency, and / or, blinking frequency, and / or, blinking duration.
  • the switch module 14 is used for receiving a touch operation of the operating body 10.
  • the processor 12 or the switch module 14 detects that the touch operation of the touch switch module 14 by the operating body 10 satisfies the second touch condition, it is determined that the electronic device enters the working state from the non-working state, or The working state enters the non-working state.
  • the touch operation may include: touch duration, and / or, touch strength;
  • the second touch condition may include: touch duration is greater than or equal to a second preset duration, and / or, touch strength is greater than Or equal to the second preset velocity.
  • the processor 12 may detect whether the electronic device is in a sleep state.
  • the processor 12 and the switch module 14 may be the same device or independent devices.
  • the corresponding information includes, but is not limited to, information indicating that the electronic device enters the working state from the non-working state, or information indicating that the electronic device enters the non-working state from the working state.
  • the processor 12 may transmit the above information to the switch module 14, or the processor 12 may generate a corresponding control signal based on the above information and send the control signal to the switch module 14.
  • different information corresponds to different control signals; optionally, various information can be classified, different types of information correspond to different control signals, and the same type of information corresponds to the same control signal.
  • the electronic Information that a device enters a working state from a non-working state, and information that characterizes an electronic device entering a non-working state from a working state is a type of information.
  • the switch module 14 is configured to generate different control signals based on different information, and control the light emitting device 15 to generate different light effects based on different control signals; or control the light emitting device 15 to generate different light effects based on different control signals.
  • the switch module 14 can use the MCU it contains to generate different control signals based on different information, and control the light emitting device 15 to generate different light effects based on different control signals; or, control the light emitting device 15 to generate different light signals based on different control signals. Light effect.
  • the switch module 14 and the fingerprint module 11 can control the same light-emitting device, or the switch module 14 and the fingerprint module 11 can control different light-emitting devices, respectively.
  • one light-emitting device 15 may include one or more LED lights.
  • the light-emitting device 15 has a certain light-emitting angle, for example, it may be 360 degrees. Since the light-emitting device is placed on a bracket (such as the bracket for placing the light-emitting device 15 shown in FIG. 1), the maximum light-emitting angle of the light-emitting device is 180 (More than 180 ° range, there is a small amount of residual light), in addition, the light emitting device will also have some stray light.
  • the optical component 14 can be used to focus the light from the light emitting device, so that the light emitting angle of the light emitting device is 160 ° or 140 ° or 120 ° or 90 ° or 60 ° or 40 ° or 20 °.
  • the integrated device may further include: an optical component 14 (as shown in FIG. 2), and the optical component 14 may be used for converging the light emitted from the light emitting device 15 so that the light from the light emitting device 15 is collected as shown in FIG. 3 (for A top view of an implementation of an integrated device in an electronic device provided in the embodiments of the present application is shown between the fingerprint module 11 and the two rings of the optical component 14 shown in FIG.
  • the fingerprint module controls the light-emitting device to generate the corresponding light effect or the switch module controls the light-emitting device to generate the corresponding light effect, both are emitted through the optical component 14, causing the user to perceive that the light effect of the light-emitting device is in the same area. For example, between the two rings of the fingerprint module 11 and the optical component 14.
  • controllers corresponding to different functional modules are combined with different controllers (for example, the fingerprint module and the switch module include their own controls) (Controller), which will cause the behavior of the lamp to conflict.
  • Phenomena of conflicting behaviors of controlling lights include, but are not limited to, the following phenomena.
  • the light-emitting device receives at least two control signals at the same time, or the light-emitting device receives at least one control signal while generating light effects, resulting in which one is unknown.
  • the phenomenon of control signals is the same light-emitting device.
  • the fingerprint module and the switch module control the same light-emitting device. If the light-emitting device receives the control signal of the fingerprint module at the same time, and the control signal of the switch module, the light-emitting device may not respond to both control signals. Or, while the fingerprint module controls the light-emitting device to generate a corresponding light effect based on the control signal, the switch module also needs to control the light-emitting device based on the control signal, which leads to a phenomenon of which control signal is unknown.
  • the light-emitting devices controlled by different function modules are different light-emitting devices
  • different light-emitting devices receive corresponding control signals at the same time and generate corresponding light effects, or one light-emitting device emits light while the other emits light.
  • the device receives the control signal and generates a corresponding light effect in response to the control signal, resulting in a phenomenon of overlapping light effects.
  • the fingerprint module and the switch module control different light-emitting devices
  • the light-emitting devices controlled by the fingerprint module and the switch module have different light effects
  • the fingerprint module and the switch module simultaneously control the corresponding light-emitting devices to generate corresponding light-emitting devices.
  • Light effects or there is an overlap in the time of controlling the light effects generated by the corresponding light-emitting devices. Since the light-emitting devices corresponding to different functional modules are emitted through the optical component 14, the light effects perceived by the user are generated by the two light-emitting devices. The corresponding light effect is superimposed.
  • the light effect produced by the fingerprint module controlling the light emitting device is red light
  • the light effect produced by the switch module controlling the light emitting device is green light
  • the light effect perceived by the user is a mixture of red light and green light. Get the yellow light.
  • the light-emitting devices controlled by different functional modules are different light-emitting devices, in order to avoid overlapping light effects, turn off one light-emitting device to generate light effects, and then control the other light-emitting device to generate corresponding light effects, causing one light-emitting device to be turned off.
  • the light effect produced by the device is controlled after another period of time (for example, 1 s) before another light emitting device is controlled to generate the corresponding light effect, and the light effect is delayed.
  • the switch module is controlling one light-emitting device to generate the corresponding light effect based on the control signal.
  • the fingerprint module needs to control another light-emitting device to generate the corresponding light effect. You need to turn off the light-emitting device first in response to the control signal generated by the switch module. Light effect, and then the fingerprint module controls the corresponding light emitting device to generate the corresponding light effect.
  • different function modules control the corresponding light-emitting devices independently, different function modules cannot negotiate the behavior of controlling the light-emitting devices, which will cause the light effect of the light-emitting device to be turned off due to the response to the control signal of the switch module. After a period of time, another function module controls the corresponding light-emitting device to generate the corresponding light effect, and a delay phenomenon occurs.
  • an embodiment of the present application provides an electronic device, which can coordinate the behaviors of multiple function modules to control various light-emitting devices, thereby avoiding the foregoing phenomenon.
  • FIG. 4 it is a structural diagram of another implementation manner of an electronic device according to an embodiment of the present application.
  • the electronic device includes: a light emitting device 13 and a controller 41;
  • the controller 41 may be a control unit corresponding to any functional module, for example, an MCU included in the fingerprint module 11 or an EC integrated with the switch module 14; or, independent of any corresponding functional module Controller of the control unit.
  • the controller 41 is the first control unit corresponding to any function module, for example, the first control unit is the control unit corresponding to the fingerprint module 11, then the first control unit needs to be separately corresponding to the control unit corresponding to other function modules. For example, it is necessary to connect the control unit corresponding to the fingerprint module 11 and the control unit corresponding to the switch module 14 so that the control unit corresponding to the switch module can transmit its own control signal to the control unit corresponding to the fingerprint module (as shown in the figure). 4), so that the first control unit can obtain control signals from multiple control units, thereby coordinating various behaviors of controlling the light-emitting device.
  • the controller 41 is a second control unit corresponding to any function module, for example, the second control unit does not integrate the EC of the switch module 14, then the second control unit needs to be separately connected to the control units corresponding to other function modules.
  • the control unit corresponding to the fingerprint module 11 and the control unit corresponding to the switch module 14 need to be connected, so that the control unit corresponding to the fingerprint module 11 can transmit its own control signal to the control unit corresponding to the switch module 14 (As shown by the dashed arrows in FIG. 4), so that the second control unit can obtain control signals from multiple control units, thereby coordinating various behaviors of controlling the light emitting device.
  • the controller 41 is a controller independent of the control unit corresponding to any functional module, for example, a controller independent of the control unit corresponding to the fingerprint module 11 and the switch module 14, then the controller 41 needs to be separately associated with each
  • the control unit corresponding to the functional module and the light-emitting device 13 are connected, for example, the controller 41 needs to be connected to the fingerprint module 11, the switch module 14, and the light-emitting device 13, respectively; the control unit corresponding to the fingerprint module 11 needs to control its own
  • the signal is transmitted to the controller 41, and the control unit corresponding to the switch module needs to transmit its own control signal to the controller 41, and the controller 41 coordinates each control signal, that is, coordinates the behavior of controlling various light-emitting devices.
  • the controller 41 is configured to determine a first control signal of the first control unit, where the first control signal is used to control the light-emitting device to generate a first light effect; and to determine a second control signal of the second control unit, the The second control signal is used to control the light-emitting device to generate a second light effect; according to a control rule, the first control signal and the second control signal, control the light effect of the light-emitting device.
  • FIG. 5 it is a flowchart of an implementation manner of a control method according to an embodiment of the present application.
  • the method includes:
  • Step S501 Determine a first control signal of the first control unit, where the first control signal is used to control the light emitting device to generate a first light effect.
  • the first control unit may be a control unit corresponding to any function module, for example, a control unit corresponding to a fingerprint module, or a control unit corresponding to a switch module.
  • the first control signal is generated when a first control unit meets a first condition, and the first light effect is used to prompt that the first condition is satisfied.
  • the first condition may include, but is not limited to, the first control unit obtains one or more of the following information: information indicating that the fingerprint module is in a working state, or information indicating that the fingerprint module is in a non-working state; Or, information that indicates the success of fingerprint recognition, or, information that indicates the failure of fingerprint recognition, or, information that indicates the fingerprint is re-entered, or, information that indicates the success of fingerprint collection, or, information that indicates the fingerprint input indication, or, that characterizes an electronic device Information entering the non-working state from the non-working state, or information indicating that the electronic device enters the non-working state from the working state, or information indicating that the electronic device is in the working state, or information indicating that the electronic device is in the sleep state, or, characterizing Information that the electronic device is out of operation.
  • the first control signal may be generated by the first control unit, may be generated by the controller 41, or may be generated by the processor 16.
  • the first condition is different and the corresponding first light effect is different.
  • the first light effect is to remind the user that the first condition is currently met.
  • the light emitting device generates a light effect that continuously lights for 5 seconds to remind the user that the electronic device is out of work. Enter working status.
  • signals of the same type correspond to the same first condition; signals of different types correspond to different First condition.
  • the first light effects corresponding to the first conditions of different categories are different, and the first light effects corresponding to the first conditions of the same category are the same.
  • Step S502 Determine a second control signal of the second control unit, where the second control signal is used to control the light emitting device to generate a second light effect.
  • the second control unit may be a control unit corresponding to any function module, for example, a control unit corresponding to a fingerprint module, or a control unit corresponding to a switch module.
  • the second control signal is generated when a second control unit meets a second condition, and the second light effect is used to prompt that the second condition is satisfied.
  • the second condition may include, but is not limited to, the second controller obtains one or more of the following information: information indicating that the fingerprint module is in a working state, or information indicating that the fingerprint module is in a non-working state; or , Information that indicates the success of fingerprint recognition, or information that indicates the failure of fingerprint recognition, or, information that indicates the fingerprint is re-entered, or, information that indicates the success of fingerprint collection, or, information that indicates the fingerprint input indication, or, Information indicating that the non-working state enters the working state, or information indicating that the electronic device enters the non-working state from the working state, or information indicating that the electronic device is in the working state, or information indicating that the electronic device is in the sleep state, or Information that the device is not working.
  • the second control signal may be generated by the second control unit, may be generated by the controller 41, or may be generated by the processor 16.
  • the second condition is different and the corresponding second light effect is different.
  • the second light effect is to remind the user that the second condition is currently satisfied, for example, the light emitting device generates a flickering light effect to remind the user that the electronic device is in a sleep state.
  • different signals may be classified, and signals of the same type correspond to the same second condition; signals of different types correspond to different The second condition.
  • the second light effects corresponding to different types of the second conditions are different, and the second light effects corresponding to the second conditions of the same type are the same.
  • Step S503 Control the light effect of the light-emitting device according to a control rule, the first control signal, and the second control signal.
  • control units control different light-emitting devices, or different control units control the same light-emitting device.
  • control method provided in the embodiment of the present application may be applied to a first control unit, or a second control unit, or a processor independent of the first control unit or the second control unit.
  • control rule may be: a preset priority level or a preset processing rule.
  • the control rule is a preset priority level.
  • the first light effect and the second light effect are generated by the same light emitting device, the light of the light emitting device is controlled according to a control rule, the first control signal, and the second control signal. Effects include:
  • a first control signal with a high priority level is selected to control the light emitting device to generate a first light effect, and the second control signal is ignored.
  • the light-emitting devices are sequentially controlled to generate corresponding light effects based on control signals corresponding to the priority levels from high to low, respectively.
  • priority levels can be set for different control signals, for example, the priority level of the control signal corresponding to the fingerprint module is higher than the priority level of the control signal corresponding to the switch module.
  • a first control signal with a higher priority level is selected to control the light emitting device to generate a first light effect. , Ignore the second control signal.
  • the light-emitting device currently being controlled may be used to generate the first light effect.
  • the priority level of the first control signal of the light effect is determined to be the highest priority level, and the second control signal is ignored; or, if the priority level of the second control signal is higher than the first control signal, the control of the light-emitting device based on the first control signal is stopped.
  • control signal with the highest priority is used to control the light-emitting device to generate light effects, so there is no phenomenon of which control signal is unknown.
  • the first control signal of the first control unit and the second control signal of the second control unit are obtained at the same time, based on the preset priority level, the first control signal with the higher priority level is selected to control the light emitting device to generate the first light. After the execution of the first light effect is completed, the light-emitting device is controlled to generate a second light effect based on a second control signal having a priority lower than the first control signal.
  • the light-emitting device currently being controlled may be used to generate the first light effect.
  • the priority level of the first control signal of the light effect is determined to be the highest priority level.
  • control signals are sequentially executed based on the priority level, no light delay effect will occur.
  • controlling the light effect of the light emitting device according to the control rule, the first control signal, and the second control signal includes:
  • the corresponding light emitting devices are sequentially controlled to generate corresponding light effects based on control signals corresponding to the priority levels from high to low, respectively.
  • a light-emitting device is controlled to generate a first light effect based on a first control signal of the first control unit, and a second control signal of the second control unit is obtained
  • the light-emitting device currently being controlled may be used to generate the first light.
  • the priority level of the effective first control signal is determined to be the highest priority level, and the second control signal is ignored; or, if the priority level of the second control signal is higher than the first control signal, stopping the light emitting device from generating the first control signal based on the first control signal.
  • a light effect controlling another light-emitting device based on a second control signal having the highest priority, so that the light-emitting device generates a second light effect.
  • control units control different light-emitting devices, even if there are multiple control signals at the same time, only the control signal with the highest priority is used to control the corresponding light-emitting device to generate light effects, so there is no overlap of light effects.
  • the first control signal of the first control unit and the second control signal of the second control unit are obtained at the same time, based on the preset priority level, the first control signal with the higher priority level is selected to control the light emitting device to generate the first light. After the execution of the first light effect is completed, the light-emitting device is controlled to generate a second light effect based on a second control signal having a priority lower than the first control signal.
  • the light-emitting device currently being controlled may be used to generate the first light effect.
  • the priority level of the first control signal of the light effect is determined to be the highest priority level.
  • control signals are sequentially executed based on the priority level, no light delay effect will occur.
  • control rule is a preset processing rule.
  • first light effect and the second light effect are generated by the same light emitting device, the light of the light emitting device is controlled according to a control rule, the first control signal, and the second control signal. Effects include:
  • the light-emitting device is controlled to generate a third light effect according to the first control signal and the second control signal.
  • the light effect obtained by superimposing the first light effect and the second light effect is the same as the first light effect.
  • the three light effects are different.
  • a third control signal is obtained based on the first control signal and the second control signal; the light emitting unit may be controlled to generate a third light effect based on the third control signal.
  • the light emitting device includes at least a first pin and a second pin; the first pin is connected to the first control unit and the second pin is connected to the second control unit; it is assumed that only the first control unit passes the first pin
  • the first control signal is input to the light-emitting device
  • the light-emitting device can generate the first light effect.
  • Only the second control unit inputs the second control signal to the light-emitting device through the second pin, and the light-emitting device can generate the second light effect.
  • the control unit and the second control unit simultaneously input corresponding control signals to the light-emitting device, the light-emitting device can generate a third light effect.
  • the embodiment of the present application is equivalent to converting multiple control signals into one control signal, so behavior conflicts do not occur.
  • determining the first control signal of the first control unit includes at least one of the following:
  • Determining first information of a first control unit where the first information is control information received by the first control unit, the control information is used to control an operating state of the first control unit, and the first information is used to Controlling the light emitting device to generate a first sub-light effect;
  • Determining second information of the first control unit where the second information represents a state of an information processing result of the first control unit, and the second information is used to control the light emitting device to generate a second sub-light effect;
  • Determining third information of the first control unit where the third information is first category information obtained by the first control unit classifying the first information and the second information, and the third information is used to control the light emitting device to generate The third sub-light effect.
  • the first control unit includes a control unit corresponding to a switch module
  • the first information includes information indicating that the electronic device is in a working state, or information indicating that the electronic device is in a working state from a non-working state. Or, information indicating that the electronic device enters a non-working state from the working state, or information indicating that the electronic device is in a dormant state, or information indicating that the electronic device is in a non-working state.
  • the first control unit includes a control unit corresponding to the fingerprint module, and the first information includes information indicating that the fingerprint module is in a working state, or information indicating that the fingerprint module is in a non-working state;
  • the second information includes information indicating that the fingerprint recognition result obtained by the fingerprint module is successful, or information indicating that the fingerprint recognition result obtained by the fingerprint module has failed, or information indicating that the fingerprint recognition failure obtained by the fingerprint module has failed, or, characterizing the fingerprint
  • the third information includes first type information, and information of the same type is used to control the light emitting device to generate the same light effect.
  • the information indicating the fingerprint identification success obtained by the fingerprint module is divided into three categories.
  • the information indicating the success of the fingerprint recognition result obtained by the fingerprint module and the information indicating the success of the fingerprint collection obtained by the fingerprint module belong to a category; the information indicating the failure of the fingerprint recognition result obtained by the fingerprint module, and the characteristic of the fingerprint module
  • the information of the fingerprint collection failure obtained by the group belongs to another category; the information representing the fingerprint input indication obtained by the fingerprint module belongs to another category, wherein the first category information may be any one of the categories.
  • the foregoing grouping may be determined based on actual conditions.
  • the embodiments of the present application provide but are not limited to the foregoing classification manner.
  • the present application also provides an electronic device embodiment as shown in FIG. 4.
  • the first light effect is generated by a first light emitting device
  • the second light effect is generated by a second light emitting device
  • the electronic device further includes: an optical component
  • the different light emitting devices emit light through the optical component, so that a user perceives that the light effects of different light emitting devices are in the same area.
  • the electronic device further includes:
  • the first control unit includes a control unit corresponding to the switch module, and is configured to control the light emitting device based on the operating state of the electronic device;
  • the first control unit includes a control unit corresponding to the fingerprint module, for identifying a fingerprint, and controlling the light-emitting device according to the running status of the first control unit and the status of the information processing result of the first control unit;
  • the first control unit includes a control unit corresponding to the fingerprint module, for identifying a fingerprint, and controlling light emission according to the first classification information obtained by classifying the operating status of the first control unit and the status of the information processing result of the first control unit.
  • a control unit corresponding to the fingerprint module for identifying a fingerprint, and controlling light emission according to the first classification information obtained by classifying the operating status of the first control unit and the status of the information processing result of the first control unit.

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Abstract

一种控制方法及电子设备,该方法包括:确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效(S501);确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效(S502);根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效(S503)。采用该方法,当有多个控制单元分别控制生成不同的光效时,可以结合该多个控制单元的控制信号,依据预设的控制规则,对灯的光效进行控制,协调了多个控制单元的各种控制灯的行为,避免灯的行为出现冲突,保证用户直接根据发光装置的光效就可得知当前设备中的控制单元对应的状态。

Description

一种控制方法和电子设备 技术领域
本申请涉及电子设备领域,更具体的说,是涉及一种控制方法和电子设备。
背景技术
随着电子技术的发展,电子设备的集成度越来越高,例如,电子设备中不同功能模组可以集成在一起,例如,可以将具有指纹采集功能的指纹模组与具有开启和关闭电子设备功能的开关模组集成在一起,以基于该集成结构分别实现指纹采集和电子设备的开启或关闭。
目前集成在一起的不同功能模组对应的指示灯设置在同一区域,而不同功能模组对应的指示灯采用不同的控制器控制,会导致灯的行为出现冲突。
发明内容
有鉴于此,本申请提供了一种控制方法,本申请提供如下技术方案:
一种控制方法,包括:
确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效;
确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;
根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
在一可选实施例中,其中,所述第一控制信号在第一控制单元满足第一条件时产生的,所述第一光效用于提示所述第一条件满足;
所述第二控制信号在第二控制单元满足第二条件时产生的,所述第二光效用于提示所述第二条件满足。
在一可选实施例中,所述第一光效和第二光效由相同的发光装置生成,所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
根据预设的优先级别,选择优先级别高的第一控制信号控制所述发光装置生成第一光效,忽略所述第二控制信号;
或,
依据预设的处理规则,根据所述第一控制信号和第二控制信号控制所述发光装置生成第三光效,所述第一光效和第二光效叠加得到的光效与所述第三光效不同。
在一可选实施例中,所述第一光效和第二光效由不同的发光装置生成,所述不同的发光装置通过预设的光学组件出射,导致用户感知所述不同的发光装置的光效在同一区域,则所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
根据预设的优先级别,选择优先级别高的第一控制信号控制相应的发光装置生成第一光效,忽略所述第二控制信号。
在一可选实施例中,所述确定第一控制单元的第一控制信号,包括以下至少一种:
确定第一控制单元的第一信息,所述第一信息为第一控制单元接收到的控制信息,所述控制信息用于控制所述第一控制单元的运行状态,所述第一信息用于控制发光装置生成第一子光效;
或,
确定第一控制单元的第二信息,所述第二信息表征所述第一控制单元的信息处理结果状态,所述第二信息用于控制发光装置生成第二子光效;
或,
确定第一控制单元的第三信息,所述第三信息是所述第一控制单元对第一信息和第二信息进行分类得到的第一类别信息,所述第三信息用于控制发光装置生成第三子光效。
在一可选实施例中,所述第一控制单元包括开关模组对应的控制单元,则所述第一信息包括:表征电子设备处于工作状态的信息,或,表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于休眠状态的信息,或,表征电子设备处于非工作状态的信息。
在一可选实施例中,所述第一控制单元包括指纹模组对应的控制单元,所述第一信息包括表征指纹模组处于工作状态的信息,或,表征指纹模组处于非 工作状态的信息;
所述第二信息包括表征指纹模组得到的指纹识别成功的信息,或,表征指纹模组得到的指纹识别失败的信息,或,表征指纹模组得到的指纹输入指示的信息,或,表征指纹模组得到的采集指纹失败的信息,或,表征指纹模组得到的采集指纹成功的信息;
所述第三信息包括第一类别信息,相同类别的信息用于控制所述发光装置生成相同的光效。
一种电子设备,包括:
发光装置;
控制器,用于确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效;确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
在一可选实施例中,所述第一光效由第一发光装置生成,所述第二光效由第二发光装置生成;
则所述电子设备还包括:光学组件;
所述不同的发光装置通过所述光学组件出射,导致用户感知不同发光装置的光效在同一区域。
在一可选实施例中,还包括:
电源,用于对电子设备供电;
则所述第一控制单元包括开关模组对应的控制单元,用于基于电子设备的运行状态控制发光装置;
或,
所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态,得到的第一分类信息控制发光装置;
或,所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态分类得到的第一分类信息控制发光装置。
经由上述的技术方案可知,与现有技术相比,本申请提供了一种控制方法及电子设备,该方法包括:确定第一控制单元的第一控制信号,所述第一控制 信号用于控制发光装置生成第一光效;确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。采用该方法,当有多个控制单元分别控制生成不同的光效时,可以结合该多个控制单元的控制信号,依据预设的控制规则,对灯的光效进行控制,协调了多个控制单元的各种控制灯的行为,避免灯的行为出现冲突,保证用户直接根据发光装置的光效就可得知当前设备中的控制单元对应的状态。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图获得其他的附图。
图1为本申请实施例提供的电子设备中集成装置一种实现方式的结构图;
图2为本申请实施例提供的集成装置一种实现方式的剖面简化图;
图3为本申请实施例提供的电子设备中集成装置一种实现方式的俯视图;
图4为本申请实施例提供的电子设备的另一种实现方式的结构图;
图5为本申请实施例提供的控制方法的一种实现方式的流程图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例提供的控制方法可以应用于电子设备,电子设备可以包括至少将两个功能模组(本申请实施例提及的控制单元可以集成于相应的功能模组,或,本申请实施例提及的控制单元包含相应的功能模组,或者,本申请实施例提及的控制单元即为相应的功能模组)集成在一起,且所述至少两个功能模组对应的指示灯设置在同一区域的电子设备,例如,电子设备可以为计算机,或,笔记本电脑,或,智能手机,或,PAD等终端设备。
本申请实施例将至少两个功能模组集成在一起的装置称为集成装置,下面以将指纹模组与开关模组集成在一起对应集成装置为例,结合图1至图3对集成装置的结构进行说明,如图1所示,为本申请实施例提供的电子设备中集成装置一种实现方式的结构图。
由至少两个功能模组集成的集成装置包括:指纹模组11、处理器12、智能身份认证装置13、开关模组14以及至少一个发光装置15。
可选的,智能身份认证装置13与指纹模组11可以是同一装置,也可以是相互独立的装置;可选的,指纹模组11、处理器12、智能身份认证装置13可以为同一装置,也可以为相互独立的装置。
可选的,处理器12可以为CPU(中央处理器,Central Processing Unit),和/或,开关模组14可以包含于EC(Embed Controller,嵌入式控制器)或为独立于EC的处理器;和/或,智能身份认证装置13可以存储有Windows hello对应的程序;和/或,指纹模组11可以包括MCU(微控制单元,Microcontroller Unit)。
可选的,开关模组14或指纹模组11与发光装置15之间通过GPIO(General Purpose Input Output,通用输入/输出)相连。可选的,处理器12与指纹模组11之间通过USB(Universal Serial Bus,通用串行总线)相连。
各个模块之间的功能如下:
指纹模组11,用于采集触按指纹模组的操作体10的指纹。
如图2所示,为本申请实施例提供的集成装置一种实现方式的剖面简化图。用户可以将操作体10放置在指纹模组11的受力表面。
可选的,指纹模组11或智能身份认证装置13检测到触按指纹模组的触按操作满足第一触按条件时,启动指纹模组11,使得指纹模组11处于工作状态。
可选的,触按操作可以包括:触按时长,和/或,触按力度;第一触按条件可以包括:触按时长大于或等于第一预设时长,和/或,触按力度大于或等于第一预设力度。
可选的,指纹模组11或智能身份认证装置13还可以控制指纹模组关闭,使得指纹模组处于非工作状态。
可选的,处理器12用于将指纹模组11采集到的指纹传输至智能身份认证装置13。
智能身份认证装置13,用于将指纹模组11采集的指纹与预设指纹进行比对,得到指纹识别结果。指纹识别结果可以为指纹识别成功或指纹识别失败。
若采集的指纹与预设指纹相匹配,则指纹识别成功;若采集的指纹与预设指纹不匹配,则指纹识别失败。
可选的,智能身份认证装置13或指纹模组11或处理器12还可以用于识别指纹模组11采集到的指纹是否有效,若采集到指纹无效,智能身份认证装置13或指纹模组11可以生成再次输入指纹的信息;若采集到的指纹有效,智能身份认证装置13或指纹模组11或处理器12可以生成指纹采集成功的信息。
可选的,用户可以利用电子设备进行购物,或登录应用程序,可能涉及输入指纹,智能身份认证装置13或指纹模组11还可以基于电子设备中运行的应用程序,在相应时间生成指纹输入指示信息。
综上,可选的,针对指纹模组而言,其对应的信息包括但不限于:表征指纹模组处于工作状态的信息,或,表征指纹模组处于非工作状态的信息;或,表征指纹识别成功的信息,或,表征指纹识别失败的信息,或,表征再次输入指纹的信息,或,表征指纹采集成功的信息,或,表征指纹输入指示的信息。
可选的,若上述信息均是智能身份认证装置13获得的,则处理器12还用于将上述信息传输至指纹模组11,或者,处理器12基于上述信息生成相应的控制信号,可选的,不同信息对应的控制信号不同;可选的,可以将各种信息进行分类,不同类别的信息对应的控制信号不同,同一类别的信息对应的控制信号相同,例如,可以将表征再次输入指纹的信息和表征指纹输入指示的信息作为一类信息。
指纹模组11还可以用于:基于不同的信息生成不同的控制信号,基于不同的控制信号控制发光装置15生成不同的光效;或,基于不同控制信号控制发光装置15生成不同的光效。
可选的,光效可以包括:颜色,和/或,闪烁频率,和/或,闪烁频次,和/或,闪烁时长。
开关模组14,用于承受操作体10的触按操作。
可选的,处理器12或开关模组14检测到操作体10的触按开关模组14的触按操作满足第二触按条件时,确定电子设备从非工作状态进入工作状态,或,从工作状态进入非工作状态。
可选的,触按操作可以包括:触按时长,和/或,触按力度;第二触按条件可以包括:触按时长大于或等于第二预设时长,和/或,触按力度大于或等于第二预设力度。
可选的,在电子设备处于工作状态时,处理器12可以检测电子设备是否处于睡眠状态。
可选的,处理器12和开关模组14可以为同一装置,或,相互独立的装置。
综上,可选的,针对开关模组14而言,其对应的信息包括但不限于:表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于工作状态的信息,或,表征电子设备处于睡眠状态的信息,或,表征电子设备处于非工作状态的信息。
可选的,处理器12可以将上述信息传输至开关模组14,或,处理器12基于上述信息生成相应的控制信号,将控制信号发送至开关模组14。可选的,不同信息对应的控制信号不同;可选的,可以将各种信息进行分类,不同类别的信息对应的控制信号不同,同一类别的信息对应的控制信号相同,例如,可以将表征电子设备从非工作状态进入工作状态的信息,和,表征电子设备从工作状态进入非工作状态的信息作为一类信息。
开关模组14,用于基于不同信息生成不同控制信号,基于不同的控制信号控制发光装置15生成不同的光效;或,基于不同控制信号控制发光装置15生成不同的光效。
可选的,开关模组14可以利用其包含的MCU基于不同信息生成不同控制信号,基于不同的控制信号控制发光装置15生成不同的光效;或,基于不同控制信号控制发光装置15生成不同的光效。
可选的,开关模组14和指纹模组11可以控制同一发光装置,或,开关模组14和指纹模组11分别控制不同的发光装置。
可选的,一个发光装置15可以包括一个或多个LED灯。
可选的,发光装置15具有一定的发光角度,例如可能为360度,由于发光装置放置在支架上(例如图1所示的放置发光装置15的支架),所以发光装置的最大发光角度是180度(大于180°范围也有少量余光),另外发光装置还会有一些杂散光线,由于发光装置的光线比较散,利用光学组件14可以将发光装置的光线汇聚,使得发光装置的发光角度为160°或140°或120°或90°或60°或40°或20°等不同的发光角度。
可选的,集成装置还可以包括:光学组件14(如图2所示),光学组件14可以用于将发光装置15发出的光线进行汇聚,使得发光装置15的光线聚集在如图3(为本申请实施例提供的电子设备中集成装置一种实现方式的俯视图)所示的 指纹模组11和光学组件14的两个圆环之间。
可选的,无论是指纹模组控制发光装置产生相应的光效,还是开关模组控制发光装置产生相应的光效,都是通过光学组件14出射,导致用户感知发光装置的光效在同一区域,例如,在指纹模组11和光学组件14的两个圆环之间。
下面结合图1至图3对不同功能模组对应的指示灯(本申请实施例提及的发光装置为指示灯)采用不同的控制器(例如,指纹模组和开关模组中包含各自的控制器)控制,会导致灯的行为出现冲突进行详细说明。
控制灯的行为出现冲突的现象包括但不限于以下现象。
一、若不同功能模组分别控制的发光装置为同一发光装置,该发光装置同时接收到至少两个控制信号,或,发光装置在产生光效的同时接收到至少一个控制信号,导致不知响应哪个控制信号的现象。
例如,指纹模组和开关模组控制同一发光装置,若发光装置同时接收到指纹模组的控制信号,以及,开关模组的控制信号,发光装置可能两个控制信号均不能响应。或,指纹模组基于控制信号控制发光装置产生相应光效的同时,开关模组基于控制信号也需要控制发光装置,导致不知响应哪个控制信号的现象。
二、若不同功能模组分别控制的发光装置为不同发光装置,不同发光装置分别同时接收到相应的控制信号,同时产生相应的光效,或,一个发光装置在产生光效的同时另一发光装置接收到控制信号,并响应该控制信号产生相应的光效,导致光效重叠现象。
例如,若指纹模组和开关模组分别控制不同的发光装置,指纹模组和开关模组分别控制的发光装置产生的光效不同;指纹模组和开关模组同时控制相应的发光装置产生相应的光效,或,在控制相应发光装置产生的光效时间上有重叠,由于不同功能模组对应的发光装置都是通过光学组件14出射,导致用户感知的光效是两个发光装置产生的相应光效的叠加,例如,指纹模组控制发光装置产生的光效是红光,开关模组控制发光装置产生的光效是绿光,那么用户感知到的光效是红光和绿光混合得到的黄光。
三、若不同功能模组分别控制的发光装置为不同发光装置,为了避免光效重叠现象,关闭一个发光装置产生光效后,再控制另一个发光装置产生相应的光效,导致已经关闭一个发光装置产生的光效,间隔一段时间(例如,1s)后,才控制另一个发光装置产生相应的光效的,光效延迟现象。
例如,开关模组正在基于控制信号控制一个发光装置产生相应的光效,指纹模组需要控制另一发光装置产生相应的光效,则需要先关闭发光装置由于响应开关模组的控制信号产生的光效,然后指纹模组再控制相应的发光装置产生相应的光效。但是由于不同功能模组分别独立控制相应的发光装置,不同功能模组之间不能协商各自控制发光装置的行为,会导致已经关闭发光装置由于响应开关模组的控制信号产生的光效,在间隔一段时间后,另一功能模组才控制相应的发光装置产生相应的光效,出现延迟现象。
为了解决上述控制灯的行为出现冲突的现象,本申请实施例提供一种电子设备,该电子设备可以协调多个功能模组各种控制发光装置的行为,从而避免上述现象。
如图4所示,为本申请实施例提供的电子设备的另一种实现方式的结构图。电子设备包括:发光装置13以及控制器41;
可选的,控制器41可以为任一功能模组对应的控制单元,例如,指纹模组11包含的MCU,或,集成开关模组14的EC;或,独立于任一功能模组对应的控制单元的控制器。
若控制器41为任一功能模组对应的第一控制单元,例如,第一控制单元为指纹模组11对应的控制单元,那么,第一控制单元需要与其他功能模组对应的控制单元分别相连,例如,需要连接指纹模组11对应的控制单元和开关模组14对应的控制单元,使得开关模组对应的控制单元能够将自身的控制信号传输至指纹模组对应的控制单元(如图4中实线箭头所示),以使得,第一控制单元能够得到多个控制单元的控制信号,从而协调各种控制发光装置的行为。
若控制器41为为任一功能模组对应的第二控制单元,例如,第二控制单元未集成开关模组14的EC,那么,第二控制单元需要与其他功能模组对应的控制单元分别相连,例如,需要连接指纹模组11对应的控制单元和开关模组14对应的控制单元,使得指纹模组11对应的控制单元能够将自身的控制信号传输至指开关模组14对应的控制单元(如图4中虚线箭头所示),以使得第二控制单元能够得到多个控制单元的控制信号,从而协调各种控制发光装置的行为。
若控制器41为独立于任一功能模组对应的控制单元的控制器,例如,独立于指纹模组11和开关模组14对应的控制单元的控制器,那么,控制器41需要分别与各功能模组分别对应的控制单元以及发光装置13相连,例如,控制器41需要分别与指纹模组11、开关模组14以及发光装置13相连;指纹模组11对应的控 制单元需要将自身的控制信号传输至控制器41,开关模组对应的控制单元需要将自身的控制信号传输至控制器41,控制器41协调各控制信号,即协调各种控制发光装置的行为。
可选的,控制器41用于确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效;确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
结合图4对本申请实施例提供的控制方法进行说明。
如图5所示,为本申请实施例提供的控制方法的一种实现方式的流程图,该方法包括:
步骤S501:确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效。
可选的,第一控制单元可以为任一功能模组对应的控制单元,例如,指纹模组对应的控制单元,或,开关模组对应的控制单元。
可选的,所述第一控制信号在第一控制单元满足第一条件时产生的,所述第一光效用于提示所述第一条件满足。
可选的,第一条件可以包括但不限于:第一控制单元获得以下信息中的一个或多个:表征指纹模组处于工作状态的信息,或,表征指纹模组处于非工作状态的信息;或,表征指纹识别成功的信息,或,表征指纹识别失败的信息,或,表征再次输入指纹的信息,或,表征指纹采集成功的信息,或,表征指纹输入指示的信息,或,表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于工作状态的信息,或,表征电子设备处于睡眠状态的信息,或,表征电子设备处于非工作状态的信息。
可选的,第一控制信号可以是第一控制单元生成的,也可以是控制器41生成的,也可以是处理器16生成的。
可选的,第一条件不同,对应的第一光效不同,第一光效是为了提示用户当前满足第一条件,例如,发光装置产生持续亮5s的光效提示用户电子设备从非工作状态进入工作状态。
可选的,为了减少发光装置的数目,或,为了减少一个发光装置包含的LED 灯的数目,可以将不同信号进行归类,同一类别的信号对应同一第一条件;不同类别的信号对应不同的第一条件。不同类别的第一条件对应的第一光效不同,同一类别的第一条件对应的第一光效相同。
步骤S502:确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效。
可选的,第二控制单元可以为任一功能模组对应的控制单元,例如,指纹模组对应的控制单元,或,开关模组对应的控制单元。
可选的,所述第二控制信号在第二控制单元满足第二条件时产生的,所述第二光效用于提示所述第二条件满足。
可选的,第二条件可以包括但不限于:第二控制器获得以下信息中一个或多个:表征指纹模组处于工作状态的信息,或,表征指纹模组处于非工作状态的信息;或,表征指纹识别成功的信息,或,表征指纹识别失败的信息,或,表征再次输入指纹的信息,或,表征指纹采集成功的信息,或,表征指纹输入指示的信息,或,表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于工作状态的信息,或,表征电子设备处于睡眠状态的信息,或,表征电子设备处于非工作状态的信息。
可选的,第二控制信号可以是第二控制单元生成的,也可以是控制器41生成的,也可以是处理器16生成的。
可选的,第二条件不同,对应的第二光效不同,第二光效是为了提示用户当前满足第二条件,例如,发光装置产生闪烁的光效提示用户电子设备处于睡眠状态。
可选的,为了减少发光装置的数目,或,为了减少一个发光装置包含的LED灯的数目,可以将不同信号进行归类,同一类别的信号对应同一第二条件;不同类别的信号对应不同的第二条件。不同类别的第二条件对应的第二光效不同,同一类别的第二条件对应的第二光效相同。
步骤S503:根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
可选的,不同控制单元分别控制不同的发光装置,或,不同控制单元控制同一发光装置。
可选的,本申请实施例提供的控制方法可以应用于第一控制单元,或,第 二控制单元,或,与第一控制单元或第二控制单元独立的处理器。
可选的,控制规则可以为:预设优先级别或预设处理规则。
第一,若控制规则为预设优先级别。可选的,若所述第一光效和第二光效由相同的发光装置生成,所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
根据预设的优先级别,选择优先级别高的第一控制信号控制所述发光装置生成第一光效,忽略所述第二控制信号。
或,根据预设的优先级别,基于优先级别从高至低分别对应的控制信号依次控制所述发光装置生成相应的光效。
可选的,可以对不同控制信号设置优先级别,例如,指纹模组对应的控制信号的优先级别高于开关模组对应的控制信号的优先级别。
若同一时刻,获取到第一控制单元的第一控制信号以及第二控制单元的第二控制信号,则基于预设优先级别,选择优先级别高的第一控制信号控制发光装置生成第一光效,忽略第二控制信号。
若基于第一控制单元的第一控制信号控制相应的发光装置产生第一光效的同时,获取到第二控制单元的第二控制信号,可选的,可以将当前正在控制发光装置产生第一光效的第一控制信号的优先级别确定为最高优先级别,忽略第二控制信号;或者,若第二控制信号的优先级别高于第一控制信号,则停止基于第一控制信号控制发光装置产生第一光效;基于优先级别最高的第二控制信号控制发光装置,使得发光装置产生第二光效。
综上,由于同一时刻即使获取到不同控制单元分别对应的控制信号,只基于优先级别最高的控制信号控制发光装置产生光效,所以不会出现不知响应哪个控制信号的现象。
若同一时刻,获取到第一控制单元的第一控制信号以及第二控制单元的第二控制信号,则基于预设优先级别,先选择优先级别高的第一控制信号控制发光装置生成第一光效,在第一光效执行完毕后,再基于优先级别低于第一控制信号的第二控制信号控制发光装置生成第二光效。
若基于第一控制单元的第一控制信号控制相应的发光装置产生第一光效的同时,获取到第二控制单元的第二控制信号,可选的,可以将当前正在控制发光装置产生第一光效的第一控制信号的优先级别确定为最高优先级别,等待第一光效执行完毕后,再基于优先级别低于第一控制信号的第二控制信号控制发 光装置生成第二光效。
综上,由于控制信号基于优先级别依次执行,所以不会出现光效延迟现象。
第二、若控制规则为预设优先级别。可选的,若所述第一光效和第二光效由不同的发光装置生成,所述不同的发光装置通过预设的光学组件出射,导致用户感知所述不同的发光装置的光效在同一区域,所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
根据预设的优先级别,选择优先级别高的第一控制信号控制相应的发光装置生成第一光效,忽略所述第二控制信号;
或,根据预设的优先级别,基于优先级别从高至低分别对应的控制信号依次控制相应的发光装置生成相应的光效。
若基于第一控制单元的第一控制信号控制一发光装置产生第一光效的同时,获取到第二控制单元的第二控制信号,可选的,可以将当前正在控制发光装置产生第一光效的第一控制信号的优先级别确定为最高优先级别,忽略第二控制信号;或者,若第二控制信号的优先级别高于第一控制信号,则停止基于第一控制信号控制发光装置产生第一光效;基于优先级别最高的第二控制信号控制另一发光装置,使得该发光装置产生第二光效。
综上,若不同控制单元分别控制不同的发光装置,由于同一时刻即使有多个控制信号,只基于优先级别最高的控制信号控制相应发光装置产生光效,所以不会出现光效重叠现象。
若同一时刻,获取到第一控制单元的第一控制信号以及第二控制单元的第二控制信号,则基于预设优先级别,先选择优先级别高的第一控制信号控制发光装置生成第一光效,在第一光效执行完毕后,再基于优先级别低于第一控制信号的第二控制信号控制发光装置生成第二光效。
若基于第一控制单元的第一控制信号控制相应的发光装置产生第一光效的同时,获取到第二控制单元的第二控制信号,可选的,可以将当前正在控制发光装置产生第一光效的第一控制信号的优先级别确定为最高优先级别,等待第一光效执行完毕后,再基于优先级别低于第一控制信号的第二控制信号控制发光装置生成第二光效。
综上,由于控制信号基于优先级别依次执行,所以不会出现光效延迟现象。
第二,若控制规则为预设处理规则。可选的,若所述第一光效和第二光效由相同的发光装置生成,所述根据控制规则、所述第一控制信号和所述第二控 制信号,控制所述发光装置的光效包括:
依据预设的处理规则,根据所述第一控制信号和第二控制信号控制所述发光装置生成第三光效,所述第一光效和第二光效叠加得到的光效与所述第三光效不同。
可选的,基于第一控制信号以及第二控制信号得到第三控制信号;可以基于第三控制信号控制发光单元生成第三光效。
或者,发光装置至少包括第一引脚以及第二引脚;第一引脚与第一控制单元相连,第二引脚与第二控制单元相连;假设仅有第一控制单元通过第一引脚向发光装置输入第一控制信号,发光装置可以产生第一光效;仅有第二控制单元通过第二引脚向发光装置输入第二控制信号,发光装置可以产生第二光效;若第一控制单元和第二控制单元同时向发光装置输入相应的控制信号,则发光装置可以产生第三光效。
综上,本申请实施例相当于将多个控制信号转换成一个控制信号,因此不会出现行为冲突现象。
在另一可选实施例中,确定第一控制单元的第一控制信号,包括以下至少一种:
确定第一控制单元的第一信息,所述第一信息为第一控制单元接收到的控制信息,所述控制信息用于控制所述第一控制单元的运行状态,所述第一信息用于控制发光装置生成第一子光效;
或,
确定第一控制单元的第二信息,所述第二信息表征所述第一控制单元的信息处理结果状态,所述第二信息用于控制发光装置生成第二子光效;
或,
确定第一控制单元的第三信息,所述第三信息是所述第一控制单元对第一信息和第二信息进行分类得到的第一类别信息,所述第三信息用于控制发光装置生成第三子光效。
可选的,所述第一控制单元包括开关模组对应的控制单元,则所述第一信息包括:表征电子设备处于工作状态的信息,或,表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于休眠状态的信息,或,表征电子设备处于非工作状态的 信息。
可选的,所述第一控制单元包括指纹模组对应的控制单元,所述第一信息包括表征指纹模组处于工作状态的信息,或,表征指纹模组处于非工作状态的信息;
所述第二信息包括表征指纹模组得到的指纹识别结果成功,或,表征指纹模组得到的指纹识别结果失败的信息,或,表征指纹模组得到的指纹识别失败的信息,或,表征指纹模组得到的指纹识别成功的信息,或,表征指纹模组得到的指纹输入指示的信息;
所述第三信息包括第一类别信息,相同类别的信息用于控制所述发光装置生成相同的光效。
例如,将表征指纹模组得到的指纹识别成功的信息,表征指纹模组得到的指纹识别失败的信息,表征指纹模组得到的指纹输入指示的信息,表征指纹模组得到的采集指纹失败的信息,表征指纹模组得到的采集指纹成功的信息分为三个类别。
例如,表征指纹模组得到的指纹识别结果成功的信息,以及,表征指纹模组得到的采集指纹成功的信息属于一个类别;表征指纹模组得到的指纹识别结果失败的信息,以及,表征指纹模组得到的采集指纹失败的信息属于另一个类别;表征指纹模组得到的指纹输入指示的信息分属于又一类别,其中,第一类别信息可以为其中任一类别的信息。
上述分组可以基于实际情况而定,本申请实施例提供但不限于上述分类方式。
与上述本申请提供的一种控制方法实施例相对应的,本申请还提供了如图4所示的电子设备实施例。
图4所示的电子设备中,可选的,所述第一光效由第一发光装置生成,所述第二光效由第二发光装置生成;
则所述电子设备还包括:光学组件;
所述不同的发光装置通过所述光学组件出射,导致用户感知不同发光装置的光效在同一区域。
可选的,电子设备还包括:
电源,用于对电子设备供电;
则所述第一控制单元包括开关模组对应的控制单元,用于基于电子设备的运行状态控制发光装置;
或,
所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态,得到的第一分类信息控制发光装置;
或,所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态分类得到的第一分类信息控制发光装置。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。对于实施例提供的装置而言,由于其与实施例提供的方法相对应,所以描述的比较简单,相关之处参见方法部分说明即可。
对所提供的实施例的上述说明,使本领域专业技术人员能够实现或使用本申请。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本申请的精神或范围的情况下,在其它实施例中实现。因此,本申请将不会被限制于本文所示的这些实施例,而是要符合与本文所提供的原理和新颖特点相一致的最宽的范围。

Claims (10)

  1. 一种控制方法,包括:
    确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效;
    确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;
    根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
  2. 根据权利要求1所述的方法,其中,所述第一控制信号在第一控制单元满足第一条件时产生的,所述第一光效用于提示所述第一条件满足;
    所述第二控制信号在第二控制单元满足第二条件时产生的,所述第二光效用于提示所述第二条件满足。
  3. 根据权利要求1所述的方法,所述第一光效和第二光效由相同的发光装置生成,所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
    根据预设的优先级别,选择优先级别高的第一控制信号控制所述发光装置生成第一光效,忽略所述第二控制信号;
    或,
    依据预设的处理规则,根据所述第一控制信号和第二控制信号控制所述发光装置生成第三光效,所述第一光效和第二光效叠加得到的光效与所述第三光效不同。
  4. 根据权利要求1所述的方法,所述第一光效和第二光效由不同的发光装置生成,所述不同的发光装置通过预设的光学组件出射,导致用户感知所述不同的发光装置的光效在同一区域,则所述根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效包括:
    根据预设的优先级别,选择优先级别高的第一控制信号控制相应的发光装置生成第一光效,忽略所述第二控制信号。
  5. 根据权利要求2所述的方法,其中,所述确定第一控制单元的第一控制信号,包括以下至少一种:
    确定第一控制单元的第一信息,所述第一信息为第一控制单元接收到的控 制信息,所述控制信息用于控制所述第一控制单元的运行状态,所述第一信息用于控制发光装置生成第一子光效;
    或,
    确定第一控制单元的第二信息,所述第二信息表征所述第一控制单元的信息处理结果状态,所述第二信息用于控制发光装置生成第二子光效;
    或,
    确定第一控制单元的第三信息,所述第三信息是所述第一控制单元对第一信息和第二信息进行分类得到的第一类别信息,所述第三信息用于控制发光装置生成第三子光效。
  6. 根据权利要求5所述的方法,所述第一控制单元包括开关模组对应的控制单元,则所述第一信息包括:表征电子设备处于工作状态的信息,或,表征电子设备从非工作状态进入工作状态的信息,或,表征电子设备从工作状态进入非工作状态的信息,或,表征电子设备处于休眠状态的信息,或,表征电子设备处于非工作状态的信息。
  7. 根据权利要求5所述的方法,所述第一控制单元包括指纹模组对应的控制单元,所述第一信息包括表征指纹模组处于工作状态的信息,或,表征指纹模组处于非工作状态的信息;
    所述第二信息包括表征指纹模组得到的指纹识别成功的信息,或,表征指纹模组得到的指纹识别失败的信息,或,表征指纹模组得到的指纹输入指示的信息,或,表征指纹模组得到的采集指纹失败的信息,或,表征指纹模组得到的采集指纹成功的信息;
    所述第三信息包括第一类别信息,相同类别的信息用于控制所述发光装置生成相同的光效。
  8. 一种电子设备,包括:
    发光装置;
    控制器,用于确定第一控制单元的第一控制信号,所述第一控制信号用于控制发光装置生成第一光效;确定第二控制单元的第二控制信号,所述第二控制信号用于控制所述发光装置生成第二光效;根据控制规则、所述第一控制信号和所述第二控制信号,控制所述发光装置的光效。
  9. 根据权利要求8所述的电子设备,所述第一光效由第一发光装置生成,所述第二光效由第二发光装置生成;
    则所述电子设备还包括:光学组件;
    所述不同的发光装置通过所述光学组件出射,导致用户感知不同发光装置的光效在同一区域。
  10. 根据权利要求8所述的电子设备,还包括:
    电源,用于对电子设备供电;
    则所述第一控制单元包括开关模组对应的控制单元,用于基于电子设备的运行状态控制发光装置;
    或,
    所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态,得到的第一分类信息控制发光装置;
    或,所述第一控制单元包括指纹模组对应的控制单元,用于识别指纹,以及根据第一控制单元的运行状态、第一控制单元的信息处理结果状态分类得到的第一分类信息控制发光装置。
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