WO2021057452A1 - Procédé et dispositif pour présenter un service atomique - Google Patents

Procédé et dispositif pour présenter un service atomique Download PDF

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Publication number
WO2021057452A1
WO2021057452A1 PCT/CN2020/113603 CN2020113603W WO2021057452A1 WO 2021057452 A1 WO2021057452 A1 WO 2021057452A1 CN 2020113603 W CN2020113603 W CN 2020113603W WO 2021057452 A1 WO2021057452 A1 WO 2021057452A1
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WO
WIPO (PCT)
Prior art keywords
service
electronic device
time
user
control
Prior art date
Application number
PCT/CN2020/113603
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English (en)
Chinese (zh)
Inventor
张宇博
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华为技术有限公司
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Publication date
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Publication of WO2021057452A1 publication Critical patent/WO2021057452A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/7243User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
    • H04M1/72436User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages for text messaging, e.g. short messaging services [SMS] or e-mails
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72451User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to schedules, e.g. using calendar applications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72469User interfaces specially adapted for cordless or mobile telephones for operating the device by selecting functions from two or more displayed items, e.g. menus or icons
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

Definitions

  • This application relates to the field of electronic technology, and in particular to a method and device for presenting atomic services.
  • terminal devices can display corresponding services or service portals on the interactive interface according to the user's intention, so as to avoid the complicated operation process of the user to find the corresponding function in the application by himself, thereby presenting the matching user's intention interface.
  • the commonly used method is to use voice interaction technology, and users can quickly find corresponding services or service entrances by actively inputting voice commands to terminal devices through voice assistants, so that users can obtain services that meet their own intentions.
  • the final single service presented to the user is based on the terminal device recognizing the user’s voice command. Therefore, the user must first wake up the voice assistant of the terminal device, which will result in some non-voice interactions.
  • the usage rate among users with experience is not high.
  • scenes with higher requirements for environmental sound such as a quiet library
  • scenes with more complex sound conditions such as public communication
  • scenes that require privacy protection for the content of certain voice commands the above The method is not well implemented.
  • there is still a large room for improvement in the recognition accuracy of natural speech at present which may cause speech recognition errors and cause service presentations that do not conform to user intentions.
  • the present application provides a method and device for presenting atomic services, so that electronic devices can flexibly present services that match the user's intention.
  • this application provides a method for atomic services, which may include: the electronic device determines whether the current scene is a specific scene, or whether the current time is a specific time; the electronic device is a specific time in the current scene During the scene, at least one control of the atomic service corresponding to the specific scene is displayed on the display screen; the at least one atomic service corresponding to the specific scene is based on the statistics of each time that the atomic service arrives at the specific scene in the past period of time. It is determined by the user’s use of each service in the electronic device during the scene; or, when the current time is a specific time, the electronic device displays at least one atomic service corresponding to the specific time on the display screen.
  • the at least one atomic service corresponding to the specific time is determined based on statistics of the user's use of each service in the electronic device each time the specific time arrives in the past period of time; wherein, the atomic Service refers to the service that meets the user's intention.
  • the electronic device can flexibly present a service that matches the user's intention.
  • the at least one atomic service corresponding to the specific scene is determined based on statistics of the user's use of each service in the electronic device each time the specific scene is reached in the past period of time, It may include: the at least one atomic service corresponding to the specific scene is based on statistics of user information and event information obtained when the user uses each service in the electronic device every time the user arrives at the specific scene in the past period of time And the information collected by the sensor of the electronic device to determine the user's intention, and the user's intention is determined in the respective services; or, the at least one atomic service corresponding to the specific time is based on statistics of the past period
  • the determination of the user’s use of each service in the electronic device each time the specified time is reached within the specified time period may include: the at least one atomic service corresponding to the specified time is based on statistics for each time in the past period of time.
  • the electronic device can accurately determine the atomic service corresponding to the specific scene or the atomic service corresponding to the specific time, so that the electronic device can accurately display the atomic service that meets the user's intention.
  • the electronic device displays the control of at least one atomic service on the display screen.
  • the specific method may be: the electronic device displays the control corresponding to the dominant service and the control corresponding to the non-dominant service on the display screen.
  • the electronic device displays a plurality of controls corresponding to non-dominant services on the display screen; wherein the confidence of the dominant service is greater than that of the non-dominant service
  • the set multiple of the confidence; the confidence difference between any two non-dominant services is less than the set threshold; the confidence is determined according to the frequency with which the service is used, the higher the frequency with which the service is used, the higher the corresponding confidence Big.
  • users can independently select and browse atomic services, which can improve user experience.
  • the electronic device displays the control corresponding to the dominant service and the control corresponding to the non-dominant service on the display screen.
  • the specific method may be: the electronic device displays the control corresponding to the dominant service and the control corresponding to the non-dominant service on the display screen.
  • the display mode displays the control corresponding to the dominant service, and displays the control corresponding to the non-dominant service in a second display mode; wherein the display effect of the first display mode is higher than that of the second display mode Significantly.
  • the atomic service closest to the user's intention can be recommended to the user in a prominent way, which is beneficial for the user to directly access the service content quickly and efficiently.
  • the first display mode and the second display mode may include at least one of the following situations: the size of the control displayed in the first display mode is larger than the size of the control displayed in the second display mode.
  • the size of the control; or, the color of the control displayed in the first display mode is more prominent than the color of the control displayed in the second display mode; or, the control displayed in the first display mode is a blinking control, and the second display mode displays
  • the control is non-blinking control.
  • the effect of the first display mode can be achieved more prominently than the display effect of the second display mode.
  • the electronic device displays a plurality of controls corresponding to non-dominant services on the display screen.
  • the specific method may be: the electronic device controls the non-dominant services on the display screen. Multiple controls corresponding to dominant services are displayed side by side or side by side.
  • users can independently select and browse atomic services, which can improve user experience.
  • control of the atomic service is a capsule control or a card control.
  • the specific time is a specific time within a day, a specific time within a week, or a specific time within a set time period.
  • the embodiments of the present application also provide an electronic device, which has the function of realizing the behavior of the electronic device in the foregoing method example.
  • the electronic device may include a display screen, a processor, and a memory connected to each other.
  • the processor is used to read and execute the program instructions stored in the memory, and execute any one of the possible designs mentioned in the first aspect. And method.
  • the embodiments of the present application also provide a computer-readable storage medium.
  • the computer-readable storage medium stores computer-executable instructions.
  • the computer-executable instructions are used by the computer (or electronic device). When called, it is used to make the computer (or electronic device) execute the method mentioned in any possible design in the first aspect.
  • the embodiments of the present application also provide a machine program product containing instructions, which when run on a computer, causes the computer to execute the method mentioned in any possible design in the first aspect.
  • an embodiment of the present application also provides an electronic device, the electronic device may be a chip, and the chip is connected to a memory, and is used to read and execute the program instructions stored in the memory to implement the above-mentioned first One of the methods mentioned in any possible design.
  • Figure 1 is a structural diagram of an electronic device provided by this application.
  • FIG. 2 is a block diagram of the software structure of an electronic device provided by this application.
  • FIG. 3 is a schematic diagram of the presentation of an atomic service provided by this application.
  • Fig. 4 is a schematic diagram of a process for selecting an atomic service provided by this application.
  • Fig. 5 is a schematic diagram of another atomic service provided by this application.
  • Fig. 6 is a schematic diagram showing another atomic service provided by this application.
  • FIG. 7 is a schematic diagram of another atomic service provided by this application.
  • FIG. 8 is a schematic diagram of another process of selecting an atomic service provided by this application.
  • FIG. 9 is a schematic diagram of another atomic service provided by this application.
  • FIG. 10 is a schematic diagram of another process of selecting an atomic service provided by this application.
  • Figure 11 is a schematic presentation framework of an atomic service provided by this application.
  • Figure 12 is a schematic presentation framework of another atomic service provided by this application.
  • FIG. 13 is a schematic flowchart of an atomic service presentation method provided by this application.
  • FIG. 14 is a flowchart of an atomic service presentation method provided by this application.
  • FIG. 15 is a structural diagram of another electronic device provided by this application.
  • the embodiments of the present application provide a method and device for presenting atomic services, so that an electronic device can flexibly present services that match the user's intention on a display interface.
  • the method and device described in the present application are based on the same technical concept. Since the method and the device have similar principles for solving the problem, the implementation of the device and the method can be referred to each other, and the repetitive parts will not be repeated.
  • User intention refers to an intention of the user to achieve a certain purpose, which is an attempt or demand of the user but not acted upon.
  • Confidence refers to the accuracy of parameter estimation, that is, the probability that the estimated value and the overall parameter are within a certain allowable error.
  • Atomic service refers to the functional operation or information content extracted from the application program according to certain rules that can help users realize their intentions.
  • the electronic device can be a device with a display screen that can display atomic services.
  • the electronic device may be a terminal device, for example, the terminal device may be a mobile phone, a notebook computer, a tablet computer, a vehicle-mounted computer, a personal digital assistant (personal digital assistant, PDA), a smart watch, a personal computer (( personal computer, PC), television, etc.
  • PDA personal digital assistant
  • the electronic device is not limited to the terminal devices listed above, and this application does not limit it.
  • the electronic device can support a variety of applications, such as word processing applications, telephone applications, email applications, instant messaging applications, photo management applications, web browsing applications, digital music player applications, digital video Some or all of the applications in the player application, etc.
  • applications such as word processing applications, telephone applications, email applications, instant messaging applications, photo management applications, web browsing applications, digital music player applications, digital video Some or all of the applications in the player application, etc.
  • the application program (application, app) involved in the embodiments of the present application may be referred to as an application, which is a software program that can realize one or more specific functions.
  • an application which is a software program that can realize one or more specific functions.
  • multiple applications can be installed in an electronic device, for example, instant messaging applications, video applications, audio applications, image capturing applications, and so on.
  • instant messaging applications for example, may include short message applications, WeChat (WeChat), WhatsApp Messenger, Line, photo sharing (instagram), Kakao Talk, DingTalk, etc.
  • Image shooting applications for example, may include camera applications (system cameras or third-party camera applications).
  • Video applications such as Youtube, Twitter, Douyin, iQiyi, Tencent Video, etc.
  • Audio applications may include Kugou Music, Xiami, QQ Music, and so on.
  • the applications mentioned in the following embodiments may be applications that have been installed when the electronic device is shipped from the factory, or applications that the user downloads from the network or obtains from other electronic devices during the process of using the electronic device.
  • FIG. 1 shows an exemplary structure diagram of an electronic device.
  • the electronic device 100 may include: a processor 110, an external memory interface 120, an internal memory 121, a universal serial bus, USB) interface 130, charging management module 140, power management module 141, battery 142, antenna 1, antenna 2, mobile communication module 150, wireless communication module 160, audio module 170, speaker 170A, receiver 170B, microphone 170C, earphone interface 170D , A sensor module 180, a button 190, a motor 191, an indicator 192, a camera 193, a display screen 194, a subscriber identification module (SIM) card interface 195, and so on.
  • SIM subscriber identification module
  • the processor 110 may include one or more processing units.
  • the processor 110 may include an application processor (AP), a modem processor, a graphics processing unit (GPU), and an image signal processor. (image signal processor, ISP), controller, memory, video codec, digital signal processor (digital signal processor, DSP), baseband processor, and/or neural-network processing unit (NPU) Wait.
  • the different processing units may be independent devices or integrated in one or more processors.
  • the controller can be the nerve center and command center of the electronic device. The controller can generate operation control signals according to the instruction operation code and timing signals to complete the control of fetching and executing instructions.
  • a memory may also be provided in the processor 110 to store instructions and data.
  • the memory in the processor 110 is a cache memory.
  • the memory can store instructions or data that the processor 110 has just used or used cyclically. If the processor 110 needs to use the instruction or data again, it can be directly called from the memory. Repeated accesses are avoided, the waiting time of the processor 110 is reduced, and the efficiency of the system is improved.
  • the processor 110 may execute program instructions for implementing the atomic service presentation method of the embodiment of the present application, so as to control the flexible presentation of the atomic service on the display screen 194.
  • the USB interface 130 is an interface that complies with the USB standard specification, and specifically may be a Mini USB interface, a Micro USB interface, a USB Type C interface, and so on.
  • the USB interface 130 can be used to connect a charger to charge the electronic device, and can also be used to transfer data between the electronic device and the peripheral device.
  • the charging management module 140 is used to receive charging input from the charger.
  • the power management module 141 is used to connect the battery 142, the charging management module 140 and the processor 110.
  • the power management module 141 receives input from the battery 142 and/or the charge management module 140, and supplies power to the processor 110, the internal memory 121, the external memory, the display screen 194, the camera 193, and the wireless communication module 160.
  • the wireless communication function of the electronic device 100 can be implemented by the antenna 1, the antenna 2, the mobile communication module 150, the wireless communication module 160, the modem processor, and the baseband processor.
  • the antenna 1 and the antenna 2 are used to transmit and receive electromagnetic wave signals.
  • Each antenna in an electronic device can be used to cover a single or multiple communication frequency bands. Different antennas can also be reused to improve antenna utilization.
  • Antenna 1 can be multiplexed as a diversity antenna of a wireless local area network.
  • the antenna can be used in combination with a tuning switch.
  • the mobile communication module 150 may provide a solution for wireless communication including 2G/3G/4G/5G and the like applied to electronic devices.
  • the mobile communication module 150 may include at least one filter, switch, power amplifier, low noise amplifier (LNA), etc.
  • the mobile communication module 150 can receive electromagnetic waves by the antenna 1, and perform processing such as filtering, amplifying and transmitting the received electromagnetic waves to the modem processor for demodulation.
  • the mobile communication module 150 can also amplify the signal modulated by the modem processor, and convert it into electromagnetic wave radiation via the antenna 1.
  • at least part of the functional modules of the mobile communication module 150 may be provided in the processor 110.
  • at least part of the functional modules of the mobile communication module 150 and at least part of the modules of the processor 110 may be provided in the same device.
  • the wireless communication module 160 can provide applications on electronic devices including wireless local area networks (WLAN) (such as wireless fidelity (Wi-Fi) networks), bluetooth (BT), and global navigation satellite systems. (global navigation satellite system, GNSS), frequency modulation (FM), near field communication (NFC), infrared technology (infrared, IR) and other wireless communication solutions.
  • WLAN wireless local area networks
  • BT Bluetooth
  • GNSS global navigation satellite system
  • FM frequency modulation
  • NFC near field communication
  • IR infrared technology
  • the wireless communication module 160 may be one or more devices integrating at least one communication processing module.
  • the wireless communication module 160 receives electromagnetic waves via the antenna 2, frequency modulates and filters the electromagnetic wave signals, and sends the processed signals to the processor 110.
  • the wireless communication module 160 may also receive the signal to be sent from the processor 110, perform frequency modulation, amplify it, and convert it into electromagnetic waves to radiate through the antenna 2.
  • the antenna 1 of the electronic device 100 is coupled with the mobile communication module 150, and the antenna 2 is coupled with the wireless communication module 160, so that the electronic device 100 can communicate with the network and other devices through wireless communication technology.
  • the wireless communication technology may include global system for mobile communications (GSM), general packet radio service (GPRS), code division multiple access (CDMA), broadband Code division multiple access (wideband code division multiple access, WCDMA), time-division code division multiple access (TD-SCDMA), long term evolution (LTE), BT, GNSS, WLAN, NFC , FM, and/or IR technology, etc.
  • the GNSS may include global positioning system (GPS), global navigation satellite system (GLONASS), Beidou navigation satellite system (BDS), quasi-zenith satellite system (quasi -zenith satellite system, QZSS) and/or satellite-based augmentation systems (SBAS).
  • GPS global positioning system
  • GLONASS global navigation satellite system
  • BDS Beidou navigation satellite system
  • QZSS quasi-zenith satellite system
  • SBAS satellite-based augmentation systems
  • the display screen 194 is used to display a display interface of applications, images, videos, and the like.
  • the display screen 194 includes a display panel.
  • the display panel can use liquid crystal display (LCD), organic light-emitting diode (OLED), active matrix organic light-emitting diode or active-matrix organic light-emitting diode (active-matrix organic light-emitting diode).
  • LCD liquid crystal display
  • OLED organic light-emitting diode
  • active-matrix organic light-emitting diode active-matrix organic light-emitting diode
  • AMOLED flexible light-emitting diode (FLED), Miniled, MicroLed, Micro-oLed, quantum dot light-emitting diode (QLED), etc.
  • the electronic device may include one or N display screens 194, and N is a positive integer greater than one.
  • the display screen 194 can display atomic services.
  • the camera 193 is used to capture still images or videos.
  • the camera 193 may include at least one camera, for example, a front camera and a rear camera.
  • the internal memory 121 may be used to store computer executable program code, where the executable program code includes instructions.
  • the processor 110 executes various functional applications and data processing of the electronic device 100 by running instructions stored in the internal memory 121.
  • the internal memory 121 may include a storage program area and a storage data area.
  • the storage program area can store an operating system, and software codes of at least one application (for example, an iQiyi application, a WeChat application, etc.).
  • the storage data area can store data (such as images, videos, etc.) generated during the use of the electronic device 100.
  • the internal memory 121 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, a universal flash storage (UFS), and the like.
  • the internal memory 121 may store program instructions for implementing the atomic service presentation method of the embodiment of the present application, and the processor 110 may call the program instructions stored in the internal memory 121 to implement control on the display screen.
  • the external memory interface 120 may be used to connect an external memory card, such as a Micro SD card, to expand the storage capacity of the electronic device 100.
  • the external memory card communicates with the processor 110 through the external memory interface 120 to realize the data storage function. For example, save pictures, videos and other files in an external memory card.
  • the external memory card may store user information, for example, store the user's frequently used application account information and so on.
  • the electronic device 100 can implement audio functions through the audio module 170, the speaker 170A, the receiver 170B, the microphone 170C, the earphone interface 170D, and the application processor. For example, music playback, recording, etc.
  • the sensor module 180 may include a pressure sensor 180A, a gyroscope sensor 180B, an air pressure sensor 180C, a magnetic sensor 180D, an acceleration sensor 180E, a distance sensor 180F, a proximity light sensor 180G, a fingerprint sensor 180H, a temperature sensor 180J, a touch sensor 180K, and the environment Light sensor 180L, bone conduction sensor 180M, etc.
  • the pressure sensor 180A is used to sense the pressure signal and can convert the pressure signal into an electrical signal.
  • the pressure sensor 180A may be provided on the display screen 194.
  • the gyro sensor 180B may be used to determine the movement posture of the electronic device 100.
  • the angular velocity of the electronic device 100 around three axes ie, x, y, and z axes
  • the air pressure sensor 180C is used to measure air pressure.
  • the electronic device 100 calculates the altitude based on the air pressure value measured by the air pressure sensor 180C to assist positioning and navigation.
  • the magnetic sensor 180D includes a Hall sensor.
  • the electronic device 100 may use the magnetic sensor 180D to detect the opening and closing of the flip holster.
  • the electronic device 100 when the electronic device 100 is a flip machine, the electronic device 100 can detect the opening and closing of the flip according to the magnetic sensor 180D.
  • the acceleration sensor 180E can detect the magnitude of the acceleration of the electronic device 100 in various directions (generally three axes). When the electronic device 100 is stationary, the magnitude and direction of gravity can be detected. It can also be used to identify the posture of electronic devices, and be used in applications such as horizontal and vertical screen switching, pedometers and so on.
  • the electronic device 100 can measure the distance by infrared or laser. In some embodiments, when shooting a scene, the electronic device 100 may use the distance sensor 180F to measure the distance to achieve fast focusing.
  • the proximity light sensor 180G may include, for example, a light emitting diode (LED) and a light detector such as a photodiode.
  • the light emitting diode may be an infrared light emitting diode.
  • the electronic device emits infrared light to the outside through the light-emitting diode.
  • the electronic device 100 uses a photodiode to detect infrared reflected light from nearby objects. When sufficient reflected light is detected, it can be determined that there is an object near the electronic device 100.
  • the electronic device 100 can determine that there is no object near the electronic device 100.
  • the electronic device 100 can use the proximity light sensor 180G to detect that the user holds the electronic device close to the ear to talk, so as to automatically turn off the screen to save power.
  • the proximity light sensor 180G can also be used in leather case mode, and the pocket mode will automatically unlock and lock the screen.
  • the ambient light sensor 180L is used to sense the brightness of the ambient light.
  • the electronic device 100 can adaptively adjust the brightness of the display screen 194 according to the perceived brightness of the ambient light.
  • the ambient light sensor 180L can also be used to automatically adjust the white balance when taking pictures.
  • the ambient light sensor 180L can also cooperate with the proximity light sensor 180G to detect whether the electronic device 100 is in the pocket to prevent accidental touch.
  • the fingerprint sensor 180H is used to collect fingerprints.
  • the electronic device 100 can use the collected fingerprint characteristics to realize fingerprint unlocking, access application locks, fingerprint photographs, fingerprint answering calls, and so on.
  • the temperature sensor 180J is used to detect temperature.
  • the electronic device 100 uses the temperature detected by the temperature sensor 180J to execute a temperature processing strategy. For example, when the temperature reported by the temperature sensor 180J exceeds a threshold value, the electronic device executes to reduce the performance of the processor located near the temperature sensor 180J, so as to reduce power consumption and implement thermal protection.
  • the electronic device 100 when the temperature is lower than another threshold, the electronic device 100 heats the battery 142 to avoid abnormal shutdown of the electronic device 100 due to low temperature.
  • the electronic device 100 boosts the output voltage of the battery 142 to avoid abnormal shutdown caused by low temperature.
  • Touch sensor 180K also called “touch panel”.
  • the touch sensor 180K may be disposed on the display screen 194, and the touch screen is composed of the touch sensor 180K and the display screen 194, which is also called a “touch screen”.
  • the touch sensor 180K is used to detect touch operations acting on or near it.
  • the touch sensor can pass the detected touch operation to the application processor to determine the type of touch event.
  • the visual output related to the touch operation can be provided through the display screen 194.
  • the touch sensor 180K may also be disposed on the surface of the electronic device 100, which is different from the position of the display screen 194.
  • the bone conduction sensor 180M can acquire vibration signals.
  • the bone conduction sensor 180M can obtain the vibration signal of the vibrating bone mass of the human voice.
  • the bone conduction sensor 180M can also contact the human pulse and receive the blood pressure pulse signal.
  • the button 190 may include a power-on button, a volume button, and so on.
  • the button 190 may be a mechanical button. It can also be a touch button.
  • the electronic device 100 may receive key input, and generate key signal input related to user settings and function control of the electronic device 100.
  • the motor 191 can generate vibration prompts.
  • the motor 191 can be used for incoming call vibration notification, and can also be used for touch vibration feedback. For example, touch operations that act on different applications (such as photographing, audio playback, etc.) can correspond to different vibration feedback effects.
  • the indicator 192 may be an indicator light, which may be used to indicate the charging status, power change, or to indicate messages, missed calls, notifications, and so on.
  • the SIM card interface 195 is used to connect to the SIM card.
  • the SIM card can be inserted into the SIM card interface 195 or pulled out from the SIM card interface 195 to achieve contact and separation with the electronic device 100.
  • the structure illustrated in FIG. 1 of the embodiment of the present application does not constitute a specific limitation on the electronic device 100.
  • the electronic device 100 may include more or fewer components than shown, or combine certain components, or split certain components, or arrange different components.
  • the illustrated components can be implemented in hardware, software, or a combination of software and hardware.
  • FIG. 2 shows a software structure block diagram of an electronic device provided in an embodiment of the present application.
  • the software structure of an electronic device can be a layered architecture.
  • the layered architecture can divide the software into several layers, each with a clear role and division of labor. Communication between layers through software interface.
  • the Android system is divided into four layers, from top to bottom, the application layer, the application framework layer (framework, FWK), the Android runtime (Android runtime) and system libraries, and the kernel layer.
  • the application layer can include a series of application packages. As shown in Figure 2, the application layer may include cameras, settings, skin modules, user interfaces (UI), third-party applications, and so on. Among them, three-party applications can include WeChat, QQ, gallery, calendar, call, map, navigation, WLAN, Bluetooth, music, video, SMS, etc.
  • UI user interfaces
  • three-party applications can include WeChat, QQ, gallery, calendar, call, map, navigation, WLAN, Bluetooth, music, video, SMS, etc.
  • the application framework layer provides an application programming interface (application programming interface, API) and a programming framework for applications in the application layer.
  • the application framework layer can include some predefined functions.
  • the application framework layer can include a window manager, a content provider, a view system, a phone manager, a resource manager, and a notification manager.
  • the window manager is used to manage window programs.
  • the window manager can obtain the size of the display, determine whether there is a status bar, lock the screen, take a screenshot, etc.
  • the content provider is used to store and retrieve data and make these data accessible to applications.
  • the data may include videos, images, audios, phone calls made and received, browsing history and bookmarks, phone book, etc.
  • the view system includes visual controls, such as controls that display text, controls that display pictures, and so on.
  • the view system can be used to build applications.
  • the display interface can be composed of one or more views.
  • a display interface that includes a short message notification icon may include a view that displays text and a view that displays pictures.
  • the phone manager is used to provide the communication function of the electronic device 100. For example, the management of the call status (including connecting, hanging up, etc.).
  • the resource manager provides various resources for the application, such as localized strings, icons, pictures, layout files, video files, and so on.
  • the notification manager enables the application to display notification information in the status bar, which can be used to convey notification-type messages, and it can disappear automatically after a short stay without user interaction. For example, the notification manager is used to notify download completion, message reminders, and so on.
  • the notification manager can also be a notification that appears in the status bar at the top of the system in the form of a chart or a scroll bar text, such as a notification of an application running in the background, or a notification that appears on the screen in the form of a dialog window. For example, text messages are prompted in the status bar, prompt sounds, electronic devices vibrate, and indicator lights flash.
  • the system library includes the Android runtime, and the Android runtime includes the core library and the virtual machine.
  • Android runtime is responsible for the scheduling and management of the Android system.
  • the core library consists of two parts: one part is the function functions that the java language needs to call, and the other part is the core library of Android.
  • the application layer and the application framework layer run in a virtual machine.
  • the virtual machine executes the java files of the application layer and the application framework layer as binary files.
  • the virtual machine is used to perform functions such as object life cycle management, stack management, thread management, security and exception management, and garbage collection.
  • the system library can also include multiple functional modules. For example: surface manager (surface manager), media library (media libraries), 3D graphics processing library (for example: OpenGL ES), 2D graphics engine (for example: SGL), etc.
  • the surface manager is used to manage the display subsystem and provides a combination of 2D and 3D layers for multiple applications.
  • the media library supports playback and recording of a variety of commonly used audio and video formats, as well as still image files.
  • the media library can support a variety of audio and video encoding formats, such as: MPEG4, H.264, MP3, AAC, AMR, JPG, PNG, etc.
  • the 3D graphics processing library is used to realize 3D graphics drawing, image rendering, synthesis, and layer processing.
  • the 2D graphics engine is a drawing engine for 2D drawing.
  • the kernel layer is the layer between hardware and software.
  • the kernel layer contains at least display driver, camera driver, audio driver, and sensor driver. Exemplarily, after the display driver is called, the display driver displays the corresponding interface on the display screen.
  • the hardware layer may include various sensors, such as acceleration sensors, gyroscope sensors, touch sensors, and so on.
  • the following uses the electronic device 100 as an example to describe in detail the presenting method of the atomic service provided by the embodiment of the present application.
  • the electronic device 100 determines that only one atomic service is available, the electronic device 100 displays the atomic service on the display screen of the electronic device 100 Only a capsule control containing one operation is displayed on 194, which can appear on other pages in a floating state. For example, a capsule control for turning on the driving mode is displayed on the lock screen interface, as shown in Figure 3(a).
  • the electronic device 100 determines that the user usually needs to listen to music or use navigation services (such as navigating home) after the electronic device 100 is connected to the car’s Bluetooth based on the user’s historical habits and portrait data, then the electronic device 100 is connected to the car’s Bluetooth At this time, a capsule control including three operations can be displayed on the display screen 194. Specifically, in one case, when the electronic device 100 determines that the confidence of turning on the driving mode is significantly higher than the confidence of listening to music and navigating home, at this time, it can be considered that turning on the driving mode is the dominant service, then the The electronic device 100 presents three capsule controls with dominant services on the display screen 194, for example, as shown in FIG. 3(b).
  • the capsule controls of the three atomic services are displayed side by side in the same size to highlight that the three atomic services have basically the same level of demand for users.
  • the user can choose an atomic service according to his actual needs. It should be understood that, besides displaying a larger size as described above, highlighting a certain capsule control can also be highlighted in other ways, such as using a prominent color display or flashing display, which is not limited in this application.
  • FIG. 4 shows a schematic flow diagram of a user selecting an atomic service in a scenario where the electronic device 100 is connected to the car Bluetooth.
  • the smart assistant of the electronic device 100 actively pops up a reminder, that is, after the display interface shown in Figure 3(b) is presented on the display screen 194 of the electronic device 100, when the user chooses to turn on
  • the interface in the display 194 of the electronic device 100 is switched to the driving mode interface, such as the interface shown in (a) in FIG. 4; or, when the user chooses to listen to music, the electronic device 100 turns on the music player
  • the display screen 194 displays an interface for playing music, for example, as shown in FIG. 4(b).
  • the presentation form of the atomic service illustrated in FIG. 3 is only an example, and is not limited to the presentation form of this example.
  • the multiple capsule controls displayed side by side in Figure 3 (b) and Figure 3 (c) can be displayed in a vertical side by side manner.
  • (B) in Figure 3 can be replaced with (a) in Figure 5
  • (c) in Figure 3 can be replaced with (b) in Figure 5.
  • the three capsule controls in Figure 5 (a) can also be translated to the middle or right position of the display screen 194, etc.
  • the three capsule controls in Figure 5 (b) can also be translated to In the middle or right position of the display 194, etc.
  • there are other ways of presentation which will not be listed here.
  • the capsule control corresponding to the atomic service can also be displayed at any position on the display screen 194.
  • the capsule controls corresponding to multiple atomic services are displayed in a centralized area of the display screen 194, or all of them are displayed dispersedly, or some of them are collectively displayed and some of them are displayed separately.
  • the atomic services may be presented in a sliding form.
  • the display screen 194 first presents the interface shown in Figure 3 (b), and the user swipes to the left. After the two rows of capsule controls, the capsule controls for listening to music can be hidden, and the capsule controls for viewing the schedule are presented on the display screen 194, as shown in FIG. 6. It should be noted that you can also slide to the right to hide the capsule controls for navigating home, or in the case shown in Figure 5, you can also slide up and down to hide or newly display the capsule controls, which will not be shown here in this application. .
  • the shape of the capsule control in the above illustration is only an example, the shape of the capsule control is not limited to this, and can also be other shapes, for example, triangles, rectangles, diamonds, etc. conceivable to achieve atomic service presentation Any shape of, this application will not show them one by one.
  • the electronic device 100 in a scenario where a user conducts a text conversation based on the electronic device 100, such as a text message chat or WeChat chat, if the user activates the voice assistant, performs screenshot operations, or performs screen content recognition operations, the electronic device 100 will perform atomic service recommendation based on the recognition result of the text dialogue content of the current interface, and the display screen 194 will present the capsule control corresponding to the atomic service that the user may need. For example, when the electronic device 100 determines the atomic service that the user may need based on the text interaction content displayed on the interface in FIG. 7, if the electronic device 100 determines that only one atomic service is available, the electronic device 100 displays the atomic service when the electronic device 100 presents the atomic service.
  • the display 194 of the device 100 only displays the capsule control including one operation. For example, when the content of calling Li Hua appears on the current text interactive interface, the electronic device 100 may present a capsule control for Li Hua to call Li Hua in the current chat interface, as shown in (a) of FIG. 7. If the electronic device determines that the user may currently need to make a call, add a schedule or create a new reminder based on the content of the current chat interface, the display screen 194 of the electronic device 100 may display a capsule control containing three operations.
  • the electronic device 100 determines that the confidence of making a call is significantly higher than the confidence of adding a schedule and creating a new reminder, at this time, it can be considered that the call is the dominant service, and the electronic device 100
  • Three capsule controls with dominant services are presented on the display screen 194, for example, as shown in FIG. 7(b).
  • the capsule control for calling is obviously larger in size than the capsule control for adding schedules and new reminders, so that the atomic services that users may currently need most can be presented in a more prominent form. user.
  • the electronic device 100 determines that the confidence levels of the three atomic services of making a call, adding a schedule, and creating a new reminder are close, that is, the confidence levels are not much different, it can be considered that there is no dominant service at this time.
  • the electronic device 100 presents three capsule controls of non-dominant services on the display screen 194, for example, as shown in FIG. 7(c).
  • the capsule controls of the three atomic services are displayed side by side with the same size to highlight that the three atomic services have basically the same level of demand for users.
  • the user can choose an atomic service according to his actual needs.
  • highlighting a certain capsule control can also be highlighted in other ways, such as using a prominent color display or flashing display, which is not limited in this application.
  • FIG. 8 shows a schematic flow diagram of the user selecting an atomic service in a scenario where the user conducts a text conversation based on the electronic device 100.
  • the display interface shown in Figure 7(b) is presented on the display screen 194 of the electronic device 100
  • the user selects the capsule control to call Li Hua the electronic device 100 dials the phone
  • the interface on the display screen 194 of the electronic device 100 switches to the phone dialing interface, as shown in (a) in FIG. 8; or, when the user selects the capsule control to add the schedule, the display screen of the electronic device 100
  • the interface in 194 switches to the new schedule interface, for example, as shown in (b) in Figure 8.
  • a specific time scene for example, a morning scene (in a certain time period in the morning)
  • the electronic device 100 determines that only one atomic service for viewing road conditions is available according to the user's historical habits and other data
  • the display screen 194 of the electronic device 100 only displays a card-type control containing one item of content to present traffic content to the user.
  • a card-type control containing one item of content to present traffic content to the user.
  • FIG. 9(a) is displayed in a half-screen state for the user to view the road conditions of the route that the user frequently views.
  • the display 194 of the electronic device 100 may display three atomic services. Controls. Specifically, in a situation, when the electronic device 100 determines that the confidence level of checking road conditions is significantly higher than the confidence level of checking the weather and taking a taxi to the company, it can be considered that checking the road conditions is the dominant service at this time, then the electronic device 100 presents three controls of dominant services on the display screen 194, for example, as shown in (b) in FIG. 9.
  • Figure 9 (b) it can be seen that the content of viewing road conditions is displayed as a card-type control, while viewing the weather (today's weather) and taking a taxi to the company are displayed as a capsule control, and the card-type control is significantly larger than the capsule control.
  • Presenting the atomic services that users may need most at present to users in a more prominent form can enable users to view the content they most want to see.
  • the electronic device 100 determines that the confidence levels of the three atomic services of checking road conditions, checking the weather, and taking a taxi to the company are close, that is, the confidence levels are not much different, it can be considered that there is no dominant service at this time, then
  • the electronic device 100 presents three card-type controls of non-dominant services on the display screen 194, for example, as shown in (c) of FIG. 9.
  • the card-type controls of the three atomic services are displayed in the same size. Since the card-type controls are in a half-screen state, the multi-card-type controls can support up and down scrolling or sliding operations. After the atomic service is presented to the user through the above method, the user can choose an atomic service according to his actual needs.
  • FIG. 10 shows a schematic flowchart of a user selecting an atomic service in a morning scene.
  • the interface in the display screen 194 of the electronic device 100 switches to the map application The road condition interface in Figure 10 (a); or when the user selects to view the weather, the interface on the display 194 of the electronic device 100 switches to the weather display interface of the weather application, as shown in Figure 10 ( b) as shown.
  • the problem of only recommending a single service that does not match the user's actual intention can be effectively solved, and at the same time, when there are multiple atomic service recommendations, the dominant service recommendation interface will make higher-confidence atomic services more obvious, More prominent control forms are presented, which is conducive for users to directly access service content quickly and efficiently.
  • the non-dominant service recommendation interface arranges multiple atomic service controls side by side, which is conducive to users' independent selection and browsing .
  • a schematic presentation framework for presenting atomic services can be obtained.
  • the atomic service is an operation type
  • a single (unique) operation type control can be presented in the form of a capsule control at the bottom of the display screen 194 of the electronic device 100;
  • the dominant operation type can be Controls are presented in the form of large-sized capsule controls in a prominent form on top of small-sized capsule controls of other non-dominant operation controls; when all atomic services are non-dominant services, they can be arranged and displayed in the form of capsule controls of the same specification. Exemplarily, it may be as shown in FIG. 11.
  • a single (unique) content-based control can appear in the form of a card at the bottom of the display 194 of the electronic device 100 to facilitate content display; when there are multiple content-based controls for dominant services, you can change Dominant services are presented on top of capsule controls (non-dominant content-based controls) of other non-dominant services in the form of large card controls (dominant content-based controls) in a prominent form; when all atomic services are non-dominant services, all Atomic services are presented in the scrollable card list area in the order of generation. For example, as shown in Figure 12.
  • the electronic device 100 determines whether the current scene is a specific scene or a specific time. When the current scene is a specific scene or the current time is a specific time, the electronic device 100 can determine whether the current scene is a specific scene or the current time is a specific time. Information, information collected by one or more sensors in the sensor module 180, and other information determine the user's intention, and then combine the user's intention to use the electronic device 100 every time the user arrives at the specific scene or specific time in the past period of time. Each service in determines the atomic service required by the user, that is, determines the atomic service that meets the user's intention.
  • the information collected by the sensor may include information collected by the fingerprint sensor 180H, the ambient light sensor 180L, the touch sensor 180K, etc.; the user information may include user-related information saved by the electronic device 100, such as the user’s frequently used applications
  • the user portrait can be understood as the user’s characteristic description constructed by the electronic device through the saved user personal information;
  • the event information can include the user’s historical operation events saved by the electronic device 100, and the user’s current Operation events of the electronic device 100 and so on.
  • the specific scenario may be the scenario where the electronic device 100 is connected to the car Bluetooth, the scenario where the electronic device 100 conducts a text conversation, or other specific scenarios, which are not listed here in this application;
  • the specific time may be a certain time period in the morning involved in the above embodiment.
  • the specific time may be a specific time within a day, a specific time within a week, or a specific time within a set time period, etc. .
  • the electronic device 100 determines the user's intention and then determines the atomic service that meets the user's intention, the following three parameters can be determined: First, the number of atomic services.
  • the atomic service can include the system that comes with the electronic device 100 when it leaves the factory.
  • the service in the application and the third-party service where the third-party service is the service in the application that the user downloads from the network or obtains from other electronic devices while using the electronic device 100; the number of atomic services is denoted as N here, and N is greater than Or an integer equal to 0.
  • the threshold p 0 that is, p i ⁇ p 0 .
  • the confidence level is determined based on the frequency with which the service is used. The higher the frequency with which the service is used, the greater the corresponding confidence.
  • the electronic device 100 calculates the initial confidence p k of a certain atomic service based on user information, event information, and information collected by one or more sensors in the sensor module 180. With the actual use of the user, the user The behavior data will reversely correct the probability value determined by the electronic device 100 (ie, the confidence level). For example, after the system recommends a certain atomic service k, the user does not use the atomic service k.
  • ⁇ p 1 and ⁇ p 2 are preset probability change values, which can be set according to the size of p k , ⁇ p 1 and ⁇ p 2 can be a certain proportion of the probability value of p k, or based on other algorithms or The rule is based on the probability value obtained by p k , which is not limited in this application.
  • the electronic device 100 determines the availability of the atomic service according to the determined number of atomic services, the identifier of the atomic service, and the confidence of the atomic service, and then configures different forms of interactive controls (which may also be referred to as service controls in this application,
  • the display form of the service control can be the capsule control in the above embodiment or the card control, of course, it can also be other forms of control, etc.), so that the display screen 194 displays the configured interactive control to achieve the purpose of presenting the atomic service.
  • the electronic device 100 determines that there are multiple atomic services available, that is, N ⁇ 2, that is, multiple available atomic services are atomic service S 1 , atomic service S 2 , ..., atomic service S N , and multiple There is a dominant service in atomic services, that is, the confidence of an atomic service is significantly greater than that of any other atomic service.
  • the mathematical expression is Such that p i >M*p j , j ⁇ i, where M is a predefined constant.
  • the display screen 194 of the electronic device 100 presents multi-service controls with dominant services, that is, the electronic device 100 displays the controls corresponding to the dominant service and the controls corresponding to the non-dominant service on the display screen 194, specifically displaying
  • the manner can refer to the above-mentioned embodiment.
  • the meaning of the above-described mathematical expression are: the presence of a service S i atom confidence is greater than M times p i p j confidence atomic S j of service, i.e.
  • the confidence level of S j where the atomic service S i is any one of the N atomic services, and the atomic service S j is any one of the N atomic services except the atomic service S i .
  • the atomic service S is considered i is the dominant service, and other atomic services are non-dominant atomic services.
  • the electronic device 100 determines that there are multiple atomic services available, that is, N ⁇ 2, that is, multiple available atomic services are atomic service S 1 , atomic service S 2 , ..., atomic service S N , and multiple atomic services There is no dominant service in atomic services, that is, they are all non-dominant atomic services, that is, the difference between the confidence of any two atomic services is not greater than the specified threshold, and the mathematical expression is j ⁇ i, there
  • the display screen 194 of the electronic device 100 presents multi-service controls for non-dominant services, that is, the electronic device 100 displays multiple controls corresponding to non-dominant services on the display screen 194.
  • the specific display mode can be referred to the above Examples.
  • the meaning of the above mathematical expression is: the difference between the confidence levels p i and p j of the atomic service S i and the atomic service S j in the N atomic services is not greater than the set threshold, where the atomic service S i and the atomic service S j is any two different atomic services in the N-direction atomic service. At this time, it is considered that there is no dominant atomic service, and both are non-dominant atomic services.
  • the foregoing processing procedure of the electronic device 100 may be as shown in the flowchart shown in FIG. 13.
  • the presentation forms of atomic services may be different, that is, the forms of service controls are different.
  • the type of the atomic service is an operation type
  • the atomic service may be presented in the form of a capsule control
  • the atomic service may be presented in the form of a card control.
  • the above-mentioned capsule control and card-type control are used for description, but it should be understood that there may be other forms, which are not limited in this application.
  • the present application also provides a method for presenting atomic services, which can be applied to an electronic device with a display screen.
  • a method for presenting atomic services which can be applied to an electronic device with a display screen.
  • the electronic device 100 is taken as an example for description.
  • the specific process of the method may include the following steps:
  • Step 1401 The electronic device 100 determines whether the current scene is a specific scene, or determines whether the current time is a specific time.
  • Step 1402 When the current scene is a specific scene, the electronic device 100 displays at least one atomic service control corresponding to the specific scene on the display screen 194; or, when the current time is a specific time, the electronic device 100 , Displaying at least one control of the atomic service corresponding to the specific time on the display screen 194.
  • the at least one atomic service corresponding to the specific scene is determined based on statistics of the user's use of each service in the electronic device 100 each time the specific scene is reached in the past period of time; or, the At least one atomic service corresponding to the specific time is determined based on statistics of the user's use of each service in the electronic device 100 each time the specific time arrives in the past period of time.
  • the atomic service refers to a service that meets the user's intention.
  • the specific scenario may be the scenario in which the electronic device 100 is connected to the car Bluetooth in the foregoing embodiment, the scenario in which the user conducts a text conversation based on the electronic device 100, and other specific scenarios, which are not mentioned here in this application.
  • An example; the specific time may be a certain time period in the morning involved in the foregoing embodiment, etc., of course, the specific time may be a specific time within a day, a specific time within a week, or other set duration Specific time and so on.
  • the at least one atomic service corresponding to the specific scene is based on statistics of each service in the electronic device 100 when the user arrives at the specific scene in the past period of time. If the situation is determined, it may be: the at least one atomic service corresponding to the specific scene is based on statistics obtained when the user uses each service in the electronic device 100 every time the user arrives at the specific scene in the past period of time.
  • the user information, event information, and information collected by the sensor of the electronic device 100 determine the user's intention, and are determined in the respective services in combination with the user's intention.
  • the at least one atomic service corresponding to the specific time is based on statistics of the user's use of each service in the electronic device each time the specific time arrives in the past period of time It may be determined that: the at least one atomic service corresponding to the specific time is based on statistics of users obtained when the user uses each service in the electronic device 100 each time the user arrives at the specific time in the past period of time.
  • the information, event information, and information collected by the sensor of the electronic device 100 determine the user's intention, and determine the user's intention in the respective services in combination with the user's intention.
  • the electronic device 100 displays at least one atomic service control on the display screen 194.
  • the specific method may be: the electronic device 100 displays the dominant service on the display screen 194 Corresponding controls and controls corresponding to non-dominant services; or, the electronic device 100 displays a plurality of controls respectively corresponding to non-dominant services on the display screen 194;
  • the confidence of the dominant service is greater than a set multiple of the confidence of the non-dominant service; the confidence difference of any two non-dominant services is less than a set threshold; the confidence is based on the service being The frequency of use is determined. The higher the frequency of service being used, the greater the corresponding confidence.
  • the electronic device 100 displays the controls corresponding to the dominant service and the controls corresponding to the non-dominant service on the display screen 194.
  • the specific method may be as follows: The display mode displays the control corresponding to the dominant service, and displays the control corresponding to the non-dominant service in a second display mode; wherein the display effect of the first display mode is higher than that of the second display mode Significantly.
  • the display of controls corresponding to dominant services and controls corresponding to non-dominant services shown in Figure 3 (b), Figure 7 (b), and Figure 9 (b)
  • the size of the control displayed in the first display mode is larger than the size of the control displayed in the second display mode.
  • the size of the control corresponding to the dominant service shown in Figure 3 (b), Figure 7 (b), and Figure 9 (b) is significantly larger than the size of the control corresponding to the non-dominant service .
  • Case a3 The control displayed in the first display mode is a blinking control, and the control displayed in the second display mode is a non-blinking control.
  • first display mode and the second display mode may also have many other cases, which are not listed here in this application.
  • the electronic device 100 displays a plurality of controls corresponding to non-dominant services on the display screen 194.
  • the specific method may be: the electronic device 100 displays on the display screen 194.
  • the multiple controls corresponding to the non-dominant services are displayed side by side or side by side on the screen 194.
  • the multiple controls shown in Figure 3 (c) and Figure 7 (c) are displayed side by side; for another example, in the above embodiment, the controls shown in Figure 5 (b) and Figure 9 (c) are displayed side by side.
  • the multiple controls shown are displayed side by side.
  • control of the atomic service is a capsule-type control or a card-type control, which can be specifically described in the foregoing embodiment, and will not be described in detail here.
  • the electronic device can flexibly display the atomic service matching the user's intention on the display interface.
  • the electronic device 1500 may include: a display screen 1501, a processor 1502, and a memory 1503.
  • the processor 1502 may be a central processing unit (CPU), a network processor (network processor, NP) or a combination of CPU and NP, etc.
  • the processor 1502 may further include a hardware chip.
  • the aforementioned hardware chip may be an application-specific integrated circuit (ASIC), a programmable logic device (PLD), or a combination thereof.
  • the above-mentioned PLD may be a complex programmable logic device (CPLD), a field-programmable gate array (FPGA), a generic array logic (GAL), or any combination thereof.
  • CPLD complex programmable logic device
  • FPGA field-programmable gate array
  • GAL generic array logic
  • the display screen 1501, the processor 1502, and the memory 1503 are connected to each other.
  • the display screen 1501, the processor 1502, and the memory 1503 are connected to each other through a bus 1504;
  • the bus 1504 may be a Peripheral Component Interconnect (PCI) bus or an extended industry standard Structure (Extended Industry Standard Architecture, EISA) bus, etc.
  • PCI Peripheral Component Interconnect
  • EISA Extended Industry Standard Architecture
  • the bus can be divided into address bus, data bus, control bus and so on. For ease of presentation, only one thick line is used in FIG. 15 to represent it, but it does not mean that there is only one bus or one type of bus.
  • the memory 1503 is coupled with the processor 1502, and is used to store necessary programs of the electronic device 1500 and the like.
  • the program may include program code, and the program code includes computer operation instructions.
  • the memory 1503 may include RAM, or may also include non-volatile memory, such as at least one disk memory.
  • the processor 1502 executes the application program stored in the memory 1503 to implement the function of the electronic device 1500.
  • the electronic device 1500 shown in FIG. 15 described above may refer to the corresponding process in the foregoing method embodiment when implementing the atomic service presentation method provided by the embodiment of the present application. Go into details again. For a more detailed structure and function of the electronic device 1500, reference may be made to the detailed description of the electronic device in the embodiment shown in FIG. 1.
  • the present application also provides a computer-readable storage medium in which a computer program is stored.
  • the computer program When the computer program is executed by a computer, the computer executes the above method embodiments. .
  • the embodiments of the present application also provide a computer program product, including instructions, which when run on a computer, cause the computer to execute the above method embodiments.
  • this application can be provided as methods, systems, or computer program products. Therefore, this application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, this application may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
  • computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device.
  • the device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
  • These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment.
  • the instructions provide steps for implementing the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.

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Abstract

L'invention concerne un procédé et un dispositif pour présenter un service atomique, qui sont utilisés de manière à ce qu'un dispositif électronique puisse présenter de manière adaptée un service qui correspond à l'intention d'un utilisateur. Le procédé comprend les étapes suivantes : un dispositif électronique détermine si un scénario actuel est un scénario spécifique, ou détermine si un temps actuel est un temps spécifique ; lorsque le scénario courant est le scénario spécifique, le dispositif électronique affiche sur un écran d'affichage une commande d'au moins un service atomique correspondant au scénario spécifique, ledit service atomique correspondant au scénario spécifique étant déterminé sur la base de la compilation des conditions d'un utilisateur à l'aide de chaque service dans le dispositif électronique chaque fois que le scénario spécifique est arrivé au cours d'une période de temps passée ; ou lorsque le temps actuel est le temps spécifique, le dispositif électronique affiche sur l'écran d'affichage une commande d'au moins un service atomique correspondant au temps spécifique, ledit service atomique correspondant au temps spécifique étant déterminé sur la base de la compilation des conditions de l'utilisateur à l'aide de chaque service dans le dispositif électronique chaque fois que le temps spécifique est arrivé à une période de temps passée. Un service atomique se réfère à un service qui se conforme à l'intention d'un utilisateur.
PCT/CN2020/113603 2019-09-23 2020-09-04 Procédé et dispositif pour présenter un service atomique WO2021057452A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201910898549.X 2019-09-23
CN201910898549.XA CN110855826A (zh) 2019-09-23 2019-09-23 一种原子服务的呈现方法及装置

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