WO2024008013A1 - 一种智能家居设备联动方案推荐方法及相关装置 - Google Patents

一种智能家居设备联动方案推荐方法及相关装置 Download PDF

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Publication number
WO2024008013A1
WO2024008013A1 PCT/CN2023/105168 CN2023105168W WO2024008013A1 WO 2024008013 A1 WO2024008013 A1 WO 2024008013A1 CN 2023105168 W CN2023105168 W CN 2023105168W WO 2024008013 A1 WO2024008013 A1 WO 2024008013A1
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Prior art keywords
smart home
home device
device linkage
central control
smart
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PCT/CN2023/105168
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English (en)
French (fr)
Inventor
朱蕾
郑亮
李昌婷
陈晓东
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华为技术有限公司
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Publication of WO2024008013A1 publication Critical patent/WO2024008013A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM]
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2642Domotique, domestic, home control, automation, smart house

Definitions

  • This application relates to the field of smart home technology, and in particular to a smart home device linkage solution recommendation method and related devices.
  • Smart home devices refer to intelligent devices that can exchange information through wireless communication technology and even learn independently. They can provide users with convenient and effective services and reduce the user's workload. How to optimize the smart home device linkage scheme requires further research.
  • This application provides a smart home device linkage solution recommendation method and related devices, which realizes automatic optimization of the smart home device linkage solution and improves the user experience.
  • this application provides a smart home device linkage scheme recommendation system.
  • the system includes a central control device; wherein the central control device is used to control one or more smart home devices based on the first smart home device linkage scheme. ;
  • the central control device is also used to obtain the usage data sent by one or more smart home devices; the central control device is also used to use the data if the usage data does not change within the first period of time, or the usage data is different from the first smart home device.
  • the similarity of the device linkage scheme is lower than the first threshold, an updated smart home device linkage scheme is obtained.
  • the updated smart home device linkage scheme includes one or more optimized smart home device linkage schemes; the central control device also Used to control one or more smart home devices based on an updated smart home device linkage solution; wherein the first smart home device linkage solution is different from one or more optimized smart home device linkage solutions.
  • the central control device can obtain an updated smart home device linkage solution, so that the user can experience different smart home device linkage solutions.
  • the central control device can obtain the updated smart home device linkage scheme, so that the updated smart home device linkage scheme is more in line with the user's needs behavioral habits.
  • the updated smart home device linkage solution includes a first optimized smart home device linkage solution; wherein the first optimized smart home device linkage solution includes smart home devices during the weekend time period.
  • the first optimized smart home device linkage solution includes smart home devices during the weekend time period.
  • the central control device can adopt different smart home device linkage solutions during weekends and non-weekends, which is more in line with the user's behavioral characteristics.
  • the system further includes a server; a central control device, specifically used to: determine that the usage data has not changed within the first period of time, or, the usage data is consistent with the first smart home
  • a first request is sent to the server.
  • the first request is used to instruct the server to update the smart home device linkage scheme; the server is used to obtain the updated smart home device linkage scheme in response to the first request. Smart home device linkage scheme; the server is also used to send the updated smart home device linkage scheme to the central control device.
  • the server is also configured to obtain the updated data when it is determined that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme is lower than the first threshold.
  • the smart home device linkage plan sends the updated smart home device linkage plan to the central control device.
  • the central control device can request the server to generate an updated Smart home device linkage plan, and send the updated smart home device linkage plan to the central control device.
  • the updated smart home device linkage solution is a smart home device linkage solution whose usage probability by the first user is higher than the first probability.
  • the server is specifically configured to: in response to the first request, determine based on one or more of usage data, environment changes, user changes, and smart home device type changes.
  • the updated smart home device linkage solution is a smart home device linkage solution with a first user probability higher than the first probability. In this way, the server can update the smart home device linkage scheme with reference to multiple factors.
  • the updated smart home device linkage solution is the smart home device linkage solution used by the first similar user.
  • the server is specifically used to: determine the first similar user based on the first smart home device linkage scheme and the second smart home device linkage scheme; the second smart home device linkage scheme
  • the solution is the smart home device linkage solution used by the first similar user;
  • the updated smart home device linkage solution is determined to be the third smart home device linkage solution used by the first similar user;
  • the third smart home device linkage solution is the second smart home device linkage solution Equipment linkage solutions are different.
  • the server can recommend smart home device linkage solutions used by similar users.
  • the behavioral habits of similar users are also similar, which can improve the accuracy of recommendations.
  • the system further includes a first electronic device; the updated smart home device linkage solution includes a first optimized smart home device linkage solution; and the first electronic device is used to obtain the After the first optimized smart home device linkage solution, the first prompt information is displayed, and the first prompt information is used to remind the first user that the smart home device linkage solution has been updated to the first optimized smart home device linkage solution.
  • the first electronic device can prompt the user that the smart home device linkage scheme has been updated to the first optimized smart home device linkage scheme, and prompt the user to accept this scheme or restore the previous scheme.
  • the updated smart home device linkage scheme also includes a second optimized smart home device linkage scheme, wherein the first optimized smart home device linkage scheme is related to the first user behavior.
  • the matching degree is higher than the matching degree between the second optimized smart home device linkage solution and the first user behavior.
  • the central control device can recommend a smart home device linkage solution with a higher score to improve the accuracy of the recommendation.
  • the first electronic device is also configured to display second prompt information after obtaining the updated smart home device linkage scheme, and the second prompt information is used to prompt the first user Choose an optimized smart home device linkage solution.
  • the first electronic device can display prompt information to prompt the user to view or select or modify the optimized smart home device linkage scheme.
  • the second prompt information includes the first option; the first electronic device is also configured to receive and respond to the first operation for the first option, display the first interface, and An interface includes details of the first optimized smart home device linkage solution corresponding to the first option.
  • the user can view the details of the first optimized smart home device linkage solution on the first electronic device.
  • the first interface includes a second option; a first electronic device, further configured to receive a second operation for the second option; and a central control device, specifically configured to operate based on the first
  • the optimized smart home device linkage solution controls one or more smart home devices.
  • the user can set the first optimized smart home device linkage solution as the smart home device linkage solution in this scenario.
  • the first interface further includes a third option; the first electronic device is further configured to receive and respond to the third operation for the third option, converting the first optimized smart The home device linkage solution is changed to the third optimized smart home device linkage solution; the central control device is specifically used to control one or more smart home devices based on the third optimized smart home device linkage solution.
  • the user can make modifications to the first optimized smart home device linkage solution, such as adding devices, reducing devices, modifying the working modes of certain devices, etc. wait.
  • this application provides a method for recommending a smart home device linkage scheme.
  • the method includes: the central control device controls one or more smart home devices based on the first smart home device linkage scheme; the central control device obtains one or more smart home device linkage solutions.
  • Usage data sent by multiple smart home devices when the central control device determines that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme is lower than the first threshold , obtain the updated smart home device linkage solution, which includes one or more optimized smart home device linkage solutions; the central control device controls one or more smart home devices based on the updated smart home device linkage solution. Control is performed; wherein the first smart home device linkage scheme is different from one or more optimized smart home device linkage schemes.
  • the updated smart home device linkage solution includes a first optimized smart home device linkage solution; wherein the first optimized smart home device linkage solution includes smart home devices during the weekend time period.
  • the central control device controls one or more smart home devices based on the updated smart home device linkage scheme, specifically including: During weekends, the central control device controls based on The smart home device linkage scheme during the weekend time period controls one or more smart home devices.
  • the central control device controls one or more smart home devices based on the smart home device linkage scheme during the non-weekend time period. control.
  • the central control device determines that the usage data has not changed within the first period of time, or that the similarity between the usage data and the first smart home device linkage scheme is lower than that of the first smart home device linkage scheme.
  • the updated smart home device linkage scheme is obtained, including: the central control device determines that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme If the value is lower than the first threshold, a first request is sent to the server. The first request is used to instruct the server to update the smart home device linkage scheme; the central control device receives the updated smart home device linkage scheme sent by the server.
  • the updated smart home device linkage solution is a smart home device linkage solution whose usage probability by the first user is higher than the first probability.
  • the updated smart home device linkage solution is the smart home device linkage solution used by the first similar user.
  • the updated smart home device linkage scheme includes the first optimized smart home device linkage scheme; after the central control device obtains the updated smart home device linkage scheme, the method further includes : The central control device displays the first prompt information through the first electronic device, and the first prompt information is used to prompt the first user to update the smart home device linkage scheme to the first optimized smart home device linkage scheme.
  • the updated smart home device linkage scheme also includes a second optimized smart home device linkage scheme, wherein the first optimized smart home device linkage scheme is related to the first user behavior.
  • the matching degree is higher than the matching degree between the second optimized smart home device linkage solution and the first user behavior.
  • the method further includes: the central control device displays the second prompt information through the first electronic device, and the second prompt The information is used to prompt the first user to select an optimized smart home device linkage solution.
  • the second prompt information includes a first option; wherein the first option is used to receive a first operation, causing the first electronic device to display a first interface, and the first interface includes a first Details of the first optimized smart home device linkage solution corresponding to one option.
  • the first interface includes a second option; the first option is used to receive the second operation and determine whether the smart home device linkage solution based on the first optimization is effective for one or more smart devices.
  • Home devices are controlled; the central control device controls one or more smart home devices based on the updated smart home device linkage scheme, which specifically includes: the central control device controls one or more smart home devices based on the first optimized smart home device linkage scheme. device to control.
  • the first interface includes a third option; the third option is used to receive a third operation, causing the first electronic device to change the first optimized smart home device linkage scheme to the third The third optimized smart home device linkage scheme; the central control device controls one or more smart home devices based on the updated smart home device linkage scheme, specifically including: the central control device controls one or more smart home devices based on the third optimized smart home device linkage scheme. Control multiple smart home devices.
  • this application provides a central control device.
  • the central control device includes: one or more processors, one or more memories; one or more memories coupled with one or more processors, one or more
  • the memory is used to store computer program code.
  • the computer program code includes computer instructions.
  • One or more processors call the computer instructions to cause the central control device to execute any of the above aspects.
  • a smart home device linkage solution provided in any possible implementation manner. Recommended method.
  • this application provides a computer-readable storage medium, including instructions.
  • the central control device When the instructions are run on a central control device, the central control device causes the central control device to execute an intelligence provided in any possible implementation of any of the above aspects. Recommended methods for home equipment linkage solutions.
  • this application provides a computer program product.
  • the computer program product When the computer program product is run on a central control device, it causes the central control device to execute a smart home device linkage provided in any possible implementation of any of the above aspects. Solution recommendation method.
  • Figure 1 is a system architecture diagram provided by an embodiment of the present application.
  • Figure 2 is a schematic structural diagram of a central control device provided by an embodiment of the present application.
  • Figures 3A-3K are schematic diagrams of a set of electronic devices 100 provided by an embodiment of the present application to receive user operations to set up a smart home device linkage solution in the home;
  • 4A to 4F are UI diagrams showing an optimized smart home device linkage solution for a group of electronic devices 100 provided by an embodiment of the present application;
  • Figure 5 is a schematic diagram of a smart home device linkage solution recommendation method provided by an embodiment of the present application.
  • Figure 6 is a schematic flowchart of a method for recommending a smart home device linkage solution provided by an embodiment of the present application.
  • first and second are used for descriptive purposes only and shall not be understood as implying or implying relative importance or implicitly specifying the quantity of indicated technical features. Therefore, the features defined as “first” and “second” may explicitly or implicitly include one or more of the features. In the description of the embodiments of this application, unless otherwise specified, “plurality” The meaning is two or more.
  • GUI graphical user interface
  • Scenes are customized, such as morning rising scenes, commuting scenes, leaving home scenes, returning home scenes, movie watching scenes, sleeping scenes, navigation scenes, taxi taking scenes, driving scenes, etc.
  • Scenarios include trigger conditions and correspond to one or more different smart home devices.
  • Linkage plan. Trigger conditions are used to identify scene categories and can trigger the execution of linkage plans for one or more different smart home devices.
  • the triggering conditions may include one or more conditions, and the triggering conditions may include but are not limited to time, location, equipment status, etc. When one or more of the time, location, device status, etc. meet the trigger conditions, the central control device can execute one or more linkage plans for different smart home devices.
  • the linkage solution for one or more different smart home devices can be to control one or more different smart home devices to turn on, one or more different smart home devices to turn off, one or more different smart home devices to switch working modes, etc. wait.
  • the central control device when the central control device recognizes that the current scene is a sleep scene, the central control device can control the smart speaker and large screen to enter the rest mode, and control the curtains to close at the same time.
  • the central control device when the central control device recognizes that the current scene is a home scene, the central control device can control the air conditioner in the home to turn on, the lights in the living room to turn on, the curtains in the living room to open, the air purifier in the living room to turn on, and so on.
  • the central control device can use one or more of models, rules and expert knowledge to analyze the data collected by the sensors under certain criteria to complete the scene recognition process.
  • the process of analyzing data collected by sensors includes a pre-fusion algorithm and a post-fusion algorithm.
  • the pre-fusion algorithm fuses the original sensor data together through the data collected by multiple sensors.
  • the post-fusion algorithm processes and analyzes the original sensor data and obtains the analysis results, which determines the specific scene category.
  • Common sensors include, but are not limited to, pressure sensors, gyroscope sensors, acceleration sensors, distance sensors, proximity light sensors, fingerprint sensors, temperature sensors, touch sensors, and ambient light sensors.
  • the central control device can perceive the user's current scene, such as working scene, driving scene, sleeping scene, movie viewing scene, etc., based on the sensor data obtained by the sensor and combined with time, location, device status and other information.
  • the central control device when the central control device detects that the large screen in the home is playing videos, the smart speakers are outputting audio, the curtains in the living room have been closed, and the lights in the living room have been turned off, then the central control device can determine that the user is in a movie-watching scene. .
  • the embodiment of the present application provides a smart home device linkage solution, so that the central control device can collect the usage data of each smart home device, the status of the smart home device, environmental changes, user changes, device type changes and other information, and transfer the information Uploaded to the server, the server can automatically optimize the linkage scheme of smart home equipment based on this information, and send the optimized linkage scheme of smart home equipment to the central control device, so that the central control equipment can be based on the optimized linkage scheme of smart home equipment. Control smart home devices to improve user experience.
  • the server can recommend an optimized smart home device linkage solution to the user based on the changed information. , and send the optimized smart home device linkage scheme to the central control device, so that the central control device can control smart home devices based on the optimized smart home device linkage scheme.
  • the server can recommend an optimized smart home device linkage solution to the user.
  • the optimized smart home device linkage solution is the same as the smart home device before optimization.
  • the device linkage solutions are different, so that users can try different smart home device linkage solutions.
  • Figure 1 schematically shows a system architecture diagram provided by an embodiment of the present application.
  • the system includes a server, a central control device and one or more smart home devices.
  • the central control device may also be a server, which is not limited in the embodiments of the present application.
  • the following embodiments of the present application take the central control device and the server as two different devices as an example for description.
  • the device type of the central control device can be a smart speaker, and the central control device can also be other device types, such as mobile phones, liquid crystal displays (LCD), gateway devices, and the central control device can also be able to control other surrounding devices.
  • the following embodiments of this application take the central control device as a smart speaker as an example. The embodiments of this application do not limit the type of equipment of the central control device. .
  • One or more smart home devices include but are not limited to smart air conditioners, smart air purifiers, smart desk lamps, smart body fat scales, smart curtains, smart water cups, smart treadmills, smart door locks, smart large screens, etc.
  • the smart home devices shown in Figure 1 are smart air conditioners, smart air purifiers and smart treadmills.
  • the central control device can control one or more smart home devices, such as controlling the opening/closing of smart air conditioners, etc.
  • the central control device can also control one or more smart home devices to work in a certain working mode, such as controlling the smart air conditioner to adjust the temperature from 26 degrees to 24 degrees.
  • the central control device can also obtain the usage data of the one or more smart home devices, and send the usage data of the one or more smart home devices to the server, so that the server can count the usage data of the one or more smart home devices, Analyze user behavior habits.
  • the server can receive the usage data of one or more smart home devices sent by the central control device, and summarize the usage data of one or more smart home devices to analyze the user's behavior habits.
  • the server can recommend optimizations to the user based on changes in usage data of the smart home devices, environmental changes, user changes, device types and other information.
  • the smart home device linkage plan is provided, and the optimized smart home device linkage plan is sent to the central control device.
  • the server can recommend an optimized smart home device linkage solution to the user.
  • the optimized smart home device linkage solution is the same as the smart home device before optimization.
  • the device linkage solutions are different, so that users can try different smart home device linkage solutions.
  • the server sends the optimized smart home device linkage plan to the central control device.
  • the central control device can obtain the optimized smart home device linkage plan sent by the server, and control one or more smart home devices in the home based on the optimized smart home device linkage plan.
  • Figure 2 exemplarily shows a schematic structural diagram of the central control device.
  • the central control device shown in FIG. 2 is only an example, and the central control device may have more or fewer components than those shown in FIG. 2 , two or more components may be combined, or may be Available in different component configurations.
  • the various components shown in Figure 2 may be implemented in hardware, software, or a combination of hardware and software including one or more signal processing and/or application specific integrated circuits.
  • the central control device may include a processor 201, a memory 202, a wireless communication module 203, a button 205, an antenna 204, an audio module 206, a speaker 207, an indicator 208 and a bus 209.
  • the processor 201, the memory 202, the wireless communication module 203, the buttons 205, the audio module 206 and the indicator 208 can be connected through the bus 209.
  • the processor 201 can be used to read and execute computer-readable instructions.
  • the processor 201 may mainly include a controller, arithmetic unit, and registers.
  • the controller is mainly responsible for decoding instructions and issuing control signals for operations corresponding to the instructions.
  • the arithmetic unit is mainly responsible for saving register operands and intermediate operation results temporarily stored during instruction execution.
  • the hardware architecture of the processor 201 may be an application specific integrated circuit (ASIC) architecture, a MIPS architecture, an ARM architecture, or an NP architecture, etc.
  • ASIC application specific integrated circuit
  • the processor 201 may also be provided with a memory for storing instructions and data.
  • the memory in processor 201 is cache memory. This memory may hold instructions or data that have just been used or are recycled by the processor 201 . If the processor 201 needs to use the instruction or data again, it can be called directly from the memory. Repeated access is avoided and the waiting time of the processor 201 is reduced, thus improving the efficiency of the system.
  • Memory 202 is coupled to processor 201 for storing various software programs and/or sets of instructions. Memory 202 may be used to store computer executable program code, which includes instructions.
  • the processor 201 executes instructions stored in the memory 202 to execute various functional applications and data processing of the central control device.
  • the memory 202 may include a program storage area and a data storage area. Among them, the stored program area can store an operating system, at least one application program required for a function (such as a sound playback function, an image playback function, etc.).
  • the storage data area can store data (such as audio frames) created during the use of the central control device.
  • the memory 202 may include high-speed random access memory, and may also include non-volatile memory, such as at least one disk storage device, flash memory device, universal flash storage (UFS), etc.
  • the wireless communication module 203 can provide wireless communication including wireless local area networks (WLAN) (such as wireless fidelity (Wi-Fi) network), Bluetooth (bluetooth, BT), etc. applied to the central control device. solution.
  • WLAN wireless local area networks
  • Wi-Fi wireless fidelity
  • Bluetooth bluetooth, BT
  • the wireless communication module 203 may include a Bluetooth (BT) communication module 203A, a WLAN communication module 203B.
  • BT Bluetooth
  • WLAN communication module 203B can monitor signals transmitted by other devices, such as detection requests, scanning signals, etc., and can send response signals, such as detection responses, scanning responses, etc. , so that other devices can discover the central control device, establish wireless communication connections with other devices, and communicate with other devices through one or more wireless communication technologies in Bluetooth or WLAN.
  • the Bluetooth (BT) communication module 203A can provide one or more Bluetooth communication solutions including classic Bluetooth (BR/EDR) or Bluetooth low energy (Bluetooth low energy, BLE).
  • the WLAN communication module 203B may include one or more WLAN communication solutions in Wi-Fi direct, Wi-Fi LAN or Wi-Fi softAP.
  • Antenna 204 may be used to transmit and receive electromagnetic wave signals. Antennas of different communication modules can be reused or independent of each other to improve antenna utilization.
  • the keys 205 may include one or more of a power key, a volume key, a previous song switching key, a next song switching key, a play/pause key, and the like.
  • the button 205 may be a mechanical button or a touch button.
  • the central control device can receive key input and generate key signal input related to function control of the central control device. For example, when the central control device is playing audio data broadcast by the electronic device 100, the central control device can receive the user's input for the play/pause key, and in response to the input, the central control device can establish a Wi-Fi connection with the electronic device 100. Fi direct connection sends a pause command to the electronic device 100, triggering the electronic device 100 to pause playing audio data to the central control device.
  • the central control device may also include a battery, a charging management module, and a power management module. Batteries can be used to power central control devices.
  • the charging management module is used to receive charging input from the charger. Among them, the charger can be a wireless charger or a wired charger. In some wired charging embodiments, the charging management module may receive the charging input of the wired charger through the USB interface. In some wireless charging embodiments, the charging management module may receive wireless charging input through the wireless charging coil of the central control device. While the charging management module charges the battery, it can also provide power to electronic devices through the power management module.
  • the power management module is used to connect the battery, the charging management module and the processor 201 .
  • the power management module receives input from the battery and/or charging management module and supplies power to the processor 201, memory 202, wireless communication module 203, etc.
  • the power management module can also be used to monitor battery capacity, battery cycle times, battery health status (leakage, impedance) and other parameters.
  • the power management module may also be provided in the processor 201.
  • the power management module and the charging management module can also be provided in the same device.
  • the audio module 206 may be used to convert digital audio information into an analog audio signal output, and may also be used to convert an analog audio input into a digital audio signal. Audio module 206 may also be used to encode and decode audio signals. In some embodiments, the audio module 206 may be provided in the processor 201 , or some functional modules of the audio module 206 may be provided in the processor 201 .
  • the speaker 207 can be connected to the audio module 206, and the speaker 207 can be used to convert audio electrical signals into sound signals.
  • the central control device may also include a microphone (not shown in Figure 2), which may be used to convert sound signals into electrical signals.
  • a microphone not shown in Figure 2
  • the user can speak close to the microphone through the human mouth and input the sound signal to the microphone.
  • the indicator 208 may be an indicator light, which may be used to indicate charging status, power changes, or may be used to indicate messages, notifications, etc.
  • users can set up a smart home device linkage plan at home.
  • 3A-3K exemplarily illustrate a schematic diagram of the electronic device 100 receiving user operations to set up a smart home device linkage scheme in the home.
  • Scenario modes may include but are not limited to "go home”, “leave home”, “sleep”, “watch movies”, “receive guests”, etc.
  • the smart home device linkage solution in the "go home” scenario mode can be “turn on the air conditioner in the living room, turn on the air purifier in the living room, and open the curtains in the living room.”
  • the smart home device linkage solution in the "leaving home” scenario mode can be "turn off the air conditioner in the living room, turn off the air purifier in the living room, close the curtains in the living room, and the sweeping robot starts working.”
  • smart home devices in the home can work in different working modes.
  • the electronic device 100 can display the user interface 310 of a smart home device control application (such as a smart life APP).
  • User interface 310 may include smart devices associated with the same family account.
  • the number of smart devices can be 8.
  • a smart speaker in the living room a smart large screen in the living room, a smart desk lamp in bedroom one, a smart air purifier in the bedroom, a smart camera in the living room, a smart air conditioner in the living room, a tablet, smart curtains in the living room, and a smart air conditioner in bedroom one.
  • the user interface 310 exemplarily shows that the smart speaker in the living room is offline, the smart large screen in the living room is offline, the smart desk lamp in the bedroom is offline, the smart air purifier in the bedroom is offline, and the smart camera in the living room is offline. , the smart air conditioner in the living room is offline, the tablet is offline, the smart curtains in the living room are offline and the smart air conditioner in bedroom one is offline.
  • the electronic device 100 receives an input operation (eg, click) for the “scene” icon in the user interface 310 , and in response to the user’s input operation, the electronic device 100 displays the “scene” settings shown in FIG. 3B for the user. Interface 320.
  • an input operation eg, click
  • the electronic device 100 displays the “scene” settings shown in FIG. 3B for the user. Interface 320.
  • User interface 320 may include cards 301 and add controls 302 for scenes that the user has created. Among them, the key scene of the card 301 is "sleep".
  • the electronic device 100 can receive input operations (such as clicks) on the card 301. In response to the user's input operations, the electronic device 100 will control the associated settings in the "sleep" scene mode.
  • the smart home device enters the "sleep" working state.
  • the electronic device 100 can also receive the user's input operation on the add control 302. In response to the user's input operation, the electronic device 100 can add other scene modes and add cards of other scene modes in the user interface 320.
  • the electronic device 100 can receive the user's input operation on the add control 302 , and in response to the user's input operation, the electronic device 100 displays a prompt bar as shown in FIG. 3C 303.
  • the prompt bar 303 is used to prompt the user to create a scenario.
  • the electronic device 100 can receive the user's input operation on the prompt bar 303 , and in response to the user's input operation, the electronic device 100 displays the user interface 330 as shown in FIG. 3D .
  • the user interface 330 includes an add condition control 304 and an add task control 305.
  • the user interface 330 may also include a name input area for adding a scenario mode, a return control, a confirmation control, and so on.
  • the electronic device 100 can receive a user's input operation on the add condition control 304, and in response to the user's input operation, the electronic device 100 can receive a user's operation to add a trigger condition for the scenario mode. After the user adds the trigger condition of the scenario mode, the electronic device 100 can receive the user's input operation for adding task control 305. In response to the user's input operation, the electronic device 100 can receive the user's operation to add one or more items associated with the scenario mode. smart home devices, and the The working mode of one or more smart home devices in this context mode. In this way, through the above method, users can add smart home device linkage solutions in different scene modes.
  • the electronic device 100 may receive a user's input operation on the add condition control 304 , and in response to the user's input operation, the electronic device 100 displays a user interface 340 as shown in FIG. 3E .
  • One or more add condition controls are included in the user interface 340 .
  • the user interface 340 may also include the validity conditions of the above-mentioned trigger conditions, such as setting the validity time and number of times the above-mentioned trigger conditions are valid.
  • the electronic device 100 can receive the user's input operation on the "voice control" control 306, and in response to the user's input operation, the electronic device 100 displays User interface 350 as shown in Figure 3F.
  • the user can enter voice commands in user interface 350.
  • the user inputs the voice command "Xiaoyi Xiaoyi, I'm going home" in the voice command input area 307 in the user interface 350.
  • the electronic device 100 receives the input operation for the control 308, and the electronic device 100 will enter the adding task.
  • the user interface for example, displays the user interface 360 shown in Figure 3G.
  • the user interface 360 includes one or more added task controls, such as a "smart device” control 309, a “system function” control, a “voice skill” control, a “voice playback” control, a “my application” control, and so on.
  • the electronic device 100 can receive input operations for the "smart device” control 309 and set the smart home devices that need to be controlled.
  • the electronic device 100 may receive a user's input operation on the "smart device" control 309 , and in response to the user's input operation, the electronic device 100 displays a user interface 370 as shown in FIG. 3H .
  • the user interface 370 displays smart home devices in the home.
  • the smart home devices included in the user interface 370 include smart air conditioners in the living room, smart air purifiers in the living room, smart curtains in the living room, smart large screens in the living room, smart speakers in the living room, smart lights in the living room, and so on. More other smart home devices may also be included, which are not shown in Figure 3H. Users can set one or more of the above smart home devices to turn on the corresponding working mode. When the trigger conditions are met, the smart home device will be in the corresponding working mode.
  • the electronic device 100 can receive the user's input operation on the control 311 and respond to the user's input operation. , the electronic device 100 will display the setting user interface 380 of the smart air conditioner in the living room as shown in FIG. 3I.
  • the user interface 380 may include a turning on control 312, a turning on energy saving mode control 313, a remote turning on control 314, a remote turning off control 315, a temperature adjustment area 316, a timing control 317 and a countdown control 318.
  • the user can set the working mode of the smart air conditioner in the living room on the user interface 380 .
  • set the opening conditions of the smart air conditioner in the living room (remote control or non-remote control opening), set the opening temperature of the smart air conditioner in the living room, set the opening time of the smart air conditioner in the living room, etc.
  • the electronic device 100 can receive the user's input operation for turning on the control 312. Then, after the central control device recognizes the above voice command, the central control device will control the smart air conditioner in the living room to turn on.
  • the electronic device 100 can receive the user's input operation for turning on the energy-saving mode control 313. Then, after the central control device recognizes the above voice command, the central control device will control the smart air conditioner in the living room to turn on in the energy-saving mode.
  • the energy-saving mode can be understood as the smart air conditioner in the living room can intelligently adjust the temperature of the air conditioner according to the current temperature, or the smart air conditioner in the living room can also intelligently adjust the opening time of the air conditioner according to the current temperature. When the temperature is suitable, it can prompt the user whether Smart air conditioners need to be turned off to achieve energy saving.
  • the electronic device 100 can receive the user's input operation on the remote control on control 314 or the remote control off control 315. Then, after the central control device recognizes the voice command, the central control device will not control the smart air conditioner in the living room to turn on or off. Only the user can control the smart air conditioner in the living room to turn on or off by operating the air conditioner remote control.
  • the electronic device 100 may receive a user's input operation on the temperature adjustment area 316 to adjust the temperature at which the temperature is turned on.
  • the central control device recognizes the voice command to turn on, the central control device can control the smart air conditioner in the living room to turn on, and the temperature of the smart air conditioner is 26°C.
  • the electronic device 100 can receive the user's input operation on the timing control 317, and the electronic device 100 can be set to turn on the smart air conditioner in the living room after a certain time.
  • the central control device can control the smart air conditioner in the living room to turn on after 5 minutes or 10 minutes.
  • the time here can be user-defined.
  • the electronic device 100 can receive the user's input operation on the timing control 317, and the electronic device 100 can be set to automatically turn off the smart air conditioner after a certain period of time after the smart air conditioner in the living room is turned on.
  • the central control device can control the smart air conditioner in the living room to automatically turn off after 3 hours or 4 minutes.
  • the time can be user-defined.
  • the electronic device 100 will display the user interface 3100 as shown in FIG. 3J.
  • the user interface 3100 may include the name of the scenario mode created by the user ("for example, go home"), and the trigger condition may include "when this scenario card is clicked” or "when the voice command "Xiaoyi Xiaoyi, I'm going home” is spoken. hour”.
  • the tasks performed may include "turn on the smart air conditioner in the living room and adjust it to 26°C", “turn on the smart air purifier in the living room” and “turn on the guest room”. Smart lights in the hall and adjusted to warm white.”
  • control 3101 can receive the user's input operation (such as a click operation), and the electronic device 100 saves the smart home device linkage scheme in the "go home” mode. Afterwards, the electronic device 100 will display the user interface 3200 as shown in Figure 3K.
  • the user interface 3200 includes a card 301 of a created scene (eg, "sleep"), and the user interface 3200 also includes a card 3201 of a newly created scene (eg, "go home”).
  • a card 301 of a created scene eg, "sleep”
  • a card 3201 of a newly created scene eg, "go home”
  • the smart life APP can also include a linkage solution for one or more smart home devices in a certain scenario.
  • the user can directly choose to set the linkage solution for one or more smart home devices in this scenario. Users are required to set the working mode of each smart home device at one time, saving users' operations.
  • the central control device can control each smart home device to work in a preset working mode.
  • the smart home device can periodically send the usage data on the local device to the central control device, and the central control device reports the usage data of the smart home device to the server.
  • the server can aggregate usage data from different smart home devices over a period of time.
  • the usage data of smart home devices includes but is not limited to: the usage time of smart home devices, the working mode of smart home devices, the identity of the user of smart home devices, the duration of use of smart home devices, etc.
  • the working mode of smart home equipment can refer to the working status of smart home equipment, such as the turning on temperature of smart air conditioners, the turning on volume of smart large screens, etc.
  • a smart air conditioner can send usage data to a central control device
  • a smart treadmill can send usage data to a central control device
  • a smart air purifier can send usage data to a central control device.
  • the central control device then sends the usage data of the smart air conditioner, the smart treadmill, and the smart air purifier to the server.
  • the smart home device may periodically send the usage data to the central control device. For example, after the smart home device works five times, the smart home device sends the usage data of the five times to the central control device. Smart home devices can also send the usage data to the central control device after each work is completed.
  • Table 1 exemplarily shows the situation where there is only the first user in the home within a week and the first user's usage data for each smart home device.
  • the types of smart home devices used by the first user include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the smart home devices in the living room The smart air conditioner turns on automatically and the temperature is 23 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turns on, and the movie channel is broadcast.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the types of smart home devices used by the first user included smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the smart air conditioner in the living room automatically turned on, and the temperature was 23 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turns on, and the movie channel is broadcast.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the types of smart home devices used by the first user include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the smart air conditioner in the living room automatically turns on, and the temperature is 23 degrees Celsius.
  • the smart lights in the living room automatically turn on.
  • the large smart screen in the living room automatically turns on and broadcasts the movie channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the smart home device linkage scheme in the family will also change.
  • Table 2 shows the usage of each smart home device by the first user and the second user after the users in the home change, that is, there are a first user and a second user in the home.
  • the types of smart home devices used by the first user and the second user include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • 14:30 the smart air conditioner in the living room turns on automatically, and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turns on, broadcasting the news channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the types of smart home devices used by the first user and the second user include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the living room The smart air conditioner turns on automatically and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turned on, broadcasting the news channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • Table 3 exemplarily shows the first user's usage of each smart home device after the type of smart home devices in the home changes.
  • the type of smart home devices used by the first user includes the smart home device in the living room.
  • Air conditioner smart large screen in the living room, smart lights in the living room and smart air purifier in the living room.
  • the smart air conditioner in the living room turns on automatically and the temperature is 23 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart air purifier in the living room automatically turns on.
  • the smart large screen in the living room automatically turns on, and the movie channel is broadcast.
  • the smart air conditioner in the living room is turned off, the smart lights in the living room are turned off, the smart large screen in the living room is turned off, and the smart air purifier in the living room is turned off.
  • the types of smart home devices used by the first user include smart air conditioners in the living room, smart large screens in the living room, smart lights in the living room, and smart air purifiers in the living room.
  • the living room The smart air conditioner turns on automatically and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart air purifier in the living room automatically turns on.
  • the smart large screen in the living room automatically turns on, and the movie channel is broadcast.
  • the smart air conditioner in the living room is turned off, the smart lights in the living room are turned off, the smart large screen in the living room is turned off, and the smart air purifier in the living room is turned off.
  • the types of smart home devices used by the first user include smart air conditioners in the living room, smart large screens in the living room, smart lights in the living room, and smart air purifiers in the living room.
  • the smart air conditioner in the living room turns on automatically, and the temperature is 23 degrees Celsius.
  • the smart air purifier in the living room automatically turns on.
  • the smart lights in the living room automatically turn on.
  • the smart large screen in the living room automatically turns on and broadcasts the movie channel.
  • the smart air conditioner in the living room is turned off, the smart lights in the living room are turned off, the smart large screen in the living room is turned off, and the smart air purifier in the living room is turned off.
  • the server After receiving the usage data of the smart device, the server analyzes the usage data of the smart device, and links the smart home device based on one or more of changes in the usage data of the smart home device, environmental changes, user changes, and device type changes.
  • the plan is optimized.
  • changes in usage data of smart home devices include but are not limited to changes in usage time of smart home devices, changes in usage duration of smart home devices, changes in working modes of smart home devices, changes in the identity of users of smart home devices, etc.
  • Environmental changes include but are not limited to temperature changes, humidity changes, light intensity changes, day and night changes, etc.
  • User changes include but are not limited to changes in user identity.
  • User identities include users of different genders, users of different ages, etc.
  • Changes in device types include an increase in the types of smart home devices in the home, a decrease in the types of smart home devices, an increase in the number of smart home devices, and a decrease in the number of smart home devices.
  • Method 1 Identify changes in people in the home through the number of devices connected to the home's wireless network or Bluetooth.
  • Smart home devices in your home such as routers, determine how many and what types of devices are connected to them.
  • the router determines that the number of devices connected to the router has increased, and the added devices have established connections with the router within a certain period of time (such as within a week), then the router can determine that the number of people in the home has increased.
  • the added number of personnel is the number of new equipment.
  • the router can determine that the people in the family have changed and two new users have been added.
  • the router can send the new number of people to the central control device, so that the central control device can obtain the information about the changes in people in the home.
  • Method 2 Use the number of face images or fingerprint images collected by the smart door lock to identify changes in people in the home.
  • the smart door lock recognizes the number of people through the installed smart camera or fingerprint reader. During a certain period of time, the smart door lock determines through the smart camera or fingerprint reader that the number of face images or fingerprint images has increased, and there are new face images or fingerprint images within a certain period of time (such as within a week) , then the smart door lock can determine that the number of people in the home has increased, and the number of added people is the number of new face images or fingerprint images.
  • the smart door lock will save the face image or fingerprint image. If the smart door lock recognizes the face image or fingerprint image of the parents within a certain period of time, the smart door lock can determine that the people in the family have changed and two new users have been added. The smart door lock can send the number of new people to the central control device, so that the central control device can obtain the information about the changes in people in the home.
  • Method 3 Changes in the family members associated with the family account.
  • the same family account can be bound to one or more family members, and different family members can use the same family account to control smart home devices in the family.
  • the user can add new members to the family account. After the central control device determines that the number of members in the family account has increased, it determines that the people in the family have changed.
  • parents come to the house.
  • the user adds a new parent to the family account, and the central control device determines that the new person in the family is the parent.
  • the above-mentioned methods one, two and three exemplarily illustrate several ways in which the central control device determines the increase in the number of people in the home.
  • the central control device can also determine the increase in the number of people in the home based on other methods. This application implements This example does not limit this.
  • the specific implementation of how the central control device determines the decrease in the number of people in the home is similar to the implementation of how the central control device determines the increase in the number of people in the home, and will not be described again in the embodiments of this application.
  • the central control device After the central control device obtains the usage data of one or more smart home devices, the central control device sends the usage data of one or more smart home devices to the server.
  • the central control device can analyze the usage frequency of one or more smart home devices based on the usage data of one or more smart home devices within a certain period of time (for example, within a month), and the central control device determines the previous smart home device linkage If the usage frequency of the solution is lower than the preset value (for example, 60%), the central control device can apply to the server to obtain the optimized smart home device linkage solution.
  • the server can generate an optimized smart home device linkage plan based on the usage data of one or more smart home devices, and send the optimized smart home device linkage plan to the central control device.
  • the central control device sends the usage data of one or more smart home devices to the server.
  • the server can determine the usage frequency of one or more smart home devices based on the usage data of one or more smart home devices within a certain period of time (such as within a month).
  • the server determines that the usage frequency of the previous smart home device linkage solution is lower than the preset value (for example, 60%).
  • the server can generate an optimized smart home based on the usage data of one or more smart home devices. Device linkage plan, and send the optimized smart home device linkage plan to the central control device.
  • the server can analyze the user's behavioral habits based on one or more of changes in the usage data of the smart home device, environmental changes, user changes, and device type changes, and determine How often users use each smart home device.
  • the frequency of use of smart home devices by users that is, when and in what working mode users use smart home devices.
  • the server can analyze the usage frequency of each working mode of the smart home device based on one or more of changes in usage data of the smart home device, environmental changes, user changes, and device type changes. Based on the usage frequency of each working mode of the smart home device being greater than the preset frequency, an optimized smart home device linkage scheme is generated.
  • the working modes of smart air conditioners in homes include action mode one, working mode two and working mode three.
  • the usage frequency of working mode one is 50%
  • the usage frequency of working mode two is 75%
  • the usage frequency of working mode three is 87%.
  • the working modes of a smart air purifier in the home include action mode one, working mode two and working mode three.
  • the usage frequency of working mode one is 52%
  • the usage frequency of working mode two is 77%
  • the usage frequency of working mode three is 90%.
  • the working modes of a smart sweeping robot in the home include action mode one and working mode two.
  • the usage frequency of working mode one is 32%
  • the usage frequency of working mode two is 40%.
  • the server can generate different optimized smart home device linkage solutions based on the frequency of use of each working mode of the smart air conditioner and the frequency of use of each working mode of the smart air purifier.
  • the working mode of a smart air conditioner can refer to the opening/closing time of the smart air conditioner, the opening temperature of the smart air conditioner, the working time of the smart air conditioner, etc.
  • the working mode of a smart air purifier can refer to the opening/closing time of the smart air purifier, the working time of the smart air purifier, etc.
  • the working mode of the intelligent sweeping robot can refer to the opening/closing time of the intelligent sweeping robot, the working time of the intelligent sweeping robot, etc.
  • the working mode 1 of the smart air conditioner is different from the working mode 1 of the smart air purifier and the working mode 1 of the smart sweeping robot.
  • the optimized smart home device linkage solution one includes: the working mode of the smart air conditioner in the home is working mode three, and the working mode of the smart air purifier in the home is working mode three.
  • the optimized smart home device linkage solution 2 includes: the working mode of the smart air conditioner in the home is working mode 2, and the working mode of the smart air purifier in the home is working mode 2.
  • the server can generate an optimized smart home device linkage solution. Includes new smart home devices.
  • the server may not consider the usage frequency of the new smart home devices when generating the optimized smart home device linkage solution. In this way, users can increase the frequency of use of newly added smart home devices and prevent new smart home devices from being idle.
  • the server when the server generates an optimized smart home device linkage plan, the device types included in the optimized smart home device linkage plan may not include the smart home device.
  • Equipment for example, the smart home equipment involved in the smart home equipment linkage plan one and the smart home equipment linkage plan two does not include smart sweeping robots.
  • the score of the optimized smart home device linkage plan 1 is greater than the score of the optimized smart home device linkage plan 2.
  • the score of the smart home device linkage solution can be understood as the degree of matching between the smart home device linkage solution and user behavior habits.
  • the score of the optimized smart home device linkage plan one is greater than the score of the optimized smart home device linkage plan two. It can be understood that the matching degree between the optimized smart home device linkage plan one and the user's behavior habits is greater than that of the optimized smart home device.
  • Matching degree of linkage plan 2 with user behavior habits The higher the match between the smart home device linkage solution and the user's behavioral habits, the higher the possibility that the user will use the smart home device linkage solution.
  • the server can also obtain an optimized smart home device linkage solution based on other methods, which is not limited in the embodiments of this application.
  • Table 4 shows several smart home device linkage solutions generated by the server when the types of smart home devices in the home do not change.
  • the types of smart home devices involved in optimization plan 1 include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the smart home device linkage scheme in Optimization Plan 1 is specifically: non-weekend time: 14:30, the smart air conditioner in the living room automatically turns on, and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turns on, broadcasting What comes out is the news channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the types of smart home devices involved in optimization plan two include smart air conditioners in the living room, smart large screens in the living room, and smart lights in the living room.
  • the smart home device linkage plan in optimization plan two is specifically: non-weekend time: 10:30, the smart air conditioner in the living room automatically turns on, and the temperature is 25 degrees Celsius. At 17:00, the smart lights in the living room turn on automatically. At 16:30, the smart large screen in the living room automatically turns on, broadcasting the news channel. After 22:00, the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • Weekend time At 10:00 in the morning, the smart air conditioner in the living room automatically turns on, and the temperature is 24 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart large screen in the living room automatically turns on, broadcasting the news channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • the probability that the user uses optimization plan one is greater than the probability that the user uses optimization plan two.
  • Table 5 shows several smart home device linkage solutions generated by the server when the types of smart home devices in the home increase (for example, a new smart air purifier in the living room is added).
  • the types of smart home devices involved in optimization plan 1 include smart air conditioners in the living room, smart large screens in the living room, smart lights in the living room, and smart air purifiers in the living room.
  • the smart home device linkage plan in Optimization Plan 1 is specifically: non-weekend time: 18:30, the smart air conditioner in the living room automatically turns on, and the temperature is 23 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart air purifier in the living room automatically turns on.
  • the smart large screen in the living room automatically turns on, and the movie channel is broadcast.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room turns off.
  • Weekend time At 10:00 in the morning, the smart air conditioner in the living room automatically turns on, and the temperature is 23 degrees Celsius.
  • the smart air purifier in the living room automatically turns on.
  • the smart lights in the living room At 18:00 in the evening, the smart lights in the living room automatically turn on.
  • the smart large screen in the living room automatically turns on and broadcasts the movie channel.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, and the smart large screen in the living room automatically turns off.
  • the types of smart home devices involved in optimization plan two include smart air conditioners in the living room, smart large screens in the living room, smart lights in the living room, and smart air purifiers in the living room.
  • the smart home device linkage plan in optimization plan two is specifically: non-weekend time: 19:30, the smart air conditioner in the living room automatically turns on, and the temperature is 25 degrees Celsius. At 19:30, the smart lights in the living room turn on automatically. At 19:30, the smart air purifier in the living room automatically turns on. At 21:10, the smart large screen in the living room automatically turns on and broadcasts the TV channel.
  • the smart air conditioner in the living room is turned off, the smart lights in the living room are turned off, the smart large screen in the living room is turned off, and the smart air purifier in the living room is turned off.
  • Weekend time At 08:00 in the morning, the smart air conditioner in the living room automatically turns on, and the temperature is 23 degrees Celsius. At 08:00 in the morning, the smart air purifier in the living room automatically turns on. At 18:00 in the evening, the smart lights in the living room automatically turn on. At 17:00 in the evening, the large smart screen in the living room automatically turns on and broadcasts TV channels.
  • the smart air conditioner in the living room turns off, the smart lights in the living room turn off, the smart large screen in the living room, and the smart air purifier in the living room automatically turn off.
  • Table 6 shows several smart home device linkage solutions generated by the server when the types of smart home devices in the home are reduced (for example, the number of smart large screens in the living room is reduced).
  • the types of smart home devices involved in optimization plan 1 include smart air conditioners and smart lights in the living room.
  • the smart home device linkage scheme in Optimization Plan 1 is specifically: non-weekend time: 14:30, the smart air conditioner in the living room automatically turns on, and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart air conditioner in the living room turns off and the smart lights in the living room turn off.
  • Weekend time At 10:00 in the morning, the smart air conditioner in the living room automatically turns on, and the temperature is 26 degrees Celsius.
  • the smart lights in the living room turn on automatically.
  • the smart air conditioner in the living room turns off and the smart lights in the living room turn off.
  • the types of smart home devices involved in optimization plan two include smart air conditioners in the living room and smart lights in the living room.
  • the smart home device linkage plan in optimization plan two is specifically: non-weekend time: 10:30, the smart air conditioner in the living room automatically turns on, and the temperature is 25 degrees Celsius. At 17:00, the smart lights in the living room turn on automatically. After 22:00, the smart air conditioner in the living room turns off and the smart lights in the living room turn off. Weekend hours: 10:00 am, The smart air conditioner in the living room turns on automatically and the temperature is 24 degrees Celsius. At 19:00, the smart lights in the living room turn on automatically. After 23:00, the smart air conditioner in the living room turns off and the smart lights in the living room turn off.
  • Table 4 Table 5 and Table 6 are only illustrative examples of smart home device linkage solutions generated by the server under different circumstances.
  • the server can also generate other smart home device linkage solutions, which are not limited in the embodiments of this application.
  • the server can generate different smart home device linkage solutions based on weekends and non-weekends. Users' behavioral habits on weekends and non-weekends may be different, which is more in line with users' behavioral habits at different times and improves user experience.
  • the server may not generate different smart home device linkage solutions according to weekend and non-weekend hours, and the embodiments of this application do not limit this.
  • the server can adjust the user's behavior habits based on one or more of changes in the usage data of the smart home device, environmental changes, user changes, and device type changes. Conduct analysis to determine how frequently users use each smart home device. That is, after the user's behavioral habits change, the server generates a smart home device linkage plan for the user that serves the user's behavioral habits.
  • the server may also monitor that the usage data of the smart home device has not changed within a certain period of time (such as one month), and the server may recommend recommendations to the user.
  • the optimized smart home device linkage solution allows users to try the optimized smart home device linkage solution and experience different daily lives.
  • the central control device sends the usage data of one or more smart home devices to the server. If the central control device determines that the usage data of one or more smart home devices has not changed within a certain period of time (for example, within a month), the central control device can apply to the server to obtain an optimized smart home device linkage solution. The server can recommend optimized smart home device linkage solutions to the central control device.
  • the central control device sends the usage data of one or more smart home devices to the server.
  • the server obtains the usage data of one or more smart home devices, and the server determines that the usage data of one or more smart home devices has not changed within a certain period of time (for example, within a month)
  • the server can recommend optimized smart home devices. Device linkage plan, and send the optimized smart home device linkage plan to the central control device.
  • the optimized smart home device linkage solution may be a smart home device linkage solution where the user usage probability summarized in the server is greater than the preset probability.
  • the smart home device linkage scheme saved in the server can come from the following aspects:
  • Aspect 1 The preset scenes in the server and the smart home device linkage scheme in each scene.
  • the smart home device linkage solutions that users may use at home include speakers playing music, smart curtains opening, etc.
  • users may use services such as playing movies on a large screen, closing curtains, turning off lights, etc.
  • Aspect 2 The user's usage records are synchronized to the server, and the server obtains the smart home device linkage solutions used by different users in different scenarios.
  • the user can choose whether the central control device is capable of synchronizing the usage data of each smart home device to the server. That is, the electronic device 100 can display prompt information, and the prompt information is used to prompt the user whether to agree to the central control device synchronizing the usage data of each smart home device to the server. If the user refuses, the central control device will not synchronize the usage data of each smart home device to the server. If the user agrees, the central control device can periodically synchronize the usage data of each smart home device to the server. In this way, the electronic device respects the user's privacy by asking for the user's permission and then synchronizing the usage data of each smart home device to the server.
  • the smart home device sends the usage record to the central control device, and the central control device then sends the usage record to the server.
  • different users may use different smart home device linkage solutions.
  • user A likes to listen to music.
  • the smart home device linkage solution used by user A in the morning wake-up scene can be that the speaker plays music and the smart curtains open.
  • User B does not like to exercise, so the smart home device linkage solution used by User B in the morning scene can be to open smart curtains.
  • User C likes to exercise, so the smart home device linkage solution used by user C in the morning scene can be to turn on the smart treadmill and open the smart curtains.
  • the server After obtaining the usage records of different users, the server summarizes the usage records of different users and obtains the smart home device linkage scheme that the user may use in each scenario. For example, after the server obtains the usage records uploaded by User A, User B and User C, it summarizes the usage records of User A, User B and User C to obtain the linkage of smart home devices that the user may use in the morning wake-up scenario.
  • the solution is for the speakers to play music, the smart treadmill to turn on, and the smart curtains to open.
  • Aspect 3 Smart home device linkage solutions shared by users for use in preset scenarios.
  • Users can manually edit the smart home device linkage scheme used in the scenario the user wants in the application (such as smart life). Later, when the user thinks that the setting effect is good, the user can share the scene he set and the smart home device linkage scheme under the scene in the sharing interface of the application, and other users can log in to the same application (such as smart life). ), other users can see the scenes shared by other users and the smart home device linkage solutions in the scenes in the sharing interface. And refer to the scenes in the interface interface and the smart home device linkage plan under the scene to set up the smart home device linkage plan under the scene for yourself.
  • the electronic device After the user shares the scene set by himself and the smart home device linkage plan under the scene in the sharing interface of the application, the electronic device will synchronize the scene set by the user and the smart home device linkage plan under the scene to the server, and the server You can obtain the scenes set by the user and the smart home device linkage plan under the scene.
  • the server can also collect user data through other methods.
  • the server can also obtain user data by analyzing test data.
  • Test data can be that developers can analyze and summarize the usage records of different users (also called testers) within a certain period of time to obtain smart home device linkage solutions used by different users in preset scenarios and obtain user data.
  • the server can also collect user data through other methods, which is not limited in the embodiments of this application.
  • the server After the server obtains the preset smart home device linkage scheme in each scenario, it can determine that the user's usage frequency in each scenario is greater than the predetermined frequency based on other users' usage frequencies of different smart home device linkage schemes in each scenario. Set the frequency of smart home device linkage plan, and send the smart home device linkage plan whose user frequency is greater than the preset frequency in this scenario to the central control device.
  • the number of smart home device linkage solutions whose usage frequency is greater than the preset frequency can be one or more.
  • the scores of the multiple smart home device linkage solutions are different.
  • the scores of the smart home device linkage solutions are The higher the value, the higher the matching degree with the user's behavioral habits, and the greater the user's probability of use. This is not limited in the embodiment of the present application.
  • optimized smart home device linkage solutions can also be smart home device linkage solutions used by similar users.
  • the server may also match smart home device linkage solutions used by similar users based on the smart home device linkage solutions used by the first user in each scenario. In this way, similar users have similar behavioral habits, and the server recommends smart home device linkage solutions used by similar users to the central control device, which can improve the accuracy of recommendations.
  • the central control devices in different users' homes periodically send smart home device linkage plans to the server.
  • the smart home device linkage solution refers to the working modes of smart home devices in different scenarios (which can also be understood as different times, locations and device states).
  • smart home device linkage solutions include but are not limited to: turning on the smart air conditioner in the living room, and the starting temperature is 26 degrees Celsius.
  • the smart air purifier in the living room is turned on.
  • the smart door light in the living room is turned on.
  • smart home device linkage solutions include but are not limited to: closing smart curtains in the bedroom, closing smart air conditioners in the living room, closing smart air purifiers in the living room, etc.
  • the central control device in user A's home periodically sends smart home device linkage plans for different scenarios in user A's home to the server.
  • the central control device in user B's home periodically sends smart home device linkage plans in different scenarios in user B's home to the server.
  • the central control device in user C's home periodically sends smart home device linkage plans in different scenarios in user C's home to the server.
  • the server receives smart home device linkage plans in different families uploaded by different central control devices. For example, the server receives smart home device linkage plans in different scenarios sent by the central control device in the home of user A. The server receives smart home device linkage solutions in different scenarios sent by the central control device in user B's home. The server receives smart home device linkage solutions in different scenarios sent by the central control device in the home of user C.
  • the server After the server receives smart home device linkage plans in different scenarios uploaded by different central control devices, the server will classify and summarize the smart home device linkage plans used by different users to obtain the smart home device linkage plans used by different users in the same scenario. Equipment linkage plan. Afterwards, the server will calculate the similarity of the smart home device linkage solutions used by different users in the same scenario.
  • the first user uses the smart home device linkage solution 1 in the home scene
  • user A uses the smart home device linkage solution A1 in the home scene
  • user B uses the smart home device in the home scene
  • Linkage plan B1 uses smart home device linkage plan C1 in the home scene.
  • the server can respectively calculate the similarity between smart home device linkage plan 1 and smart home device linkage plan A1, smart home device linkage plan B1, and smart home device linkage plan C1. And determine similar users whose similarity is greater than a preset value (for example, 70%).
  • a preset value for example, 70%
  • the server determines that similar users of the first user are user B and user C.
  • the server can recommend other smart home device linkage solutions used by similar users.
  • Other smart home device linkage solutions used by similar users are different from the smart home device linkage solution used by the first user.
  • the similarity between other smart home device linkage solutions used by similar users and the smart home device linkage solution previously used by the first user is lower than a preset value.
  • the server determines that the similar users of the first user are user B and user C
  • the server determines that user B uses the smart home device linkage solution B2 in the home scene
  • user C uses the smart home device linkage solution B2 in the home scene.
  • the smart home device linkage plan C2 is sent to the central control device, so that the central control device can recommend the smart home device linkage plan B2 and the smart home device linkage plan C2 to the first user.
  • smart home device linkage plan 1 is not used with smart home device linkage plan B2 and smart home device linkage plan C2.
  • the similarity between smart home device linkage plan 1, smart home device linkage plan B2, and smart home device linkage plan C2 is not lower than the preset value.
  • smart home device linkage plan B2 has a higher score than smart home device linkage plan C2, that is, the matching degree between smart home device linkage plan B2 and the first user's behavior is higher than that of smart home device linkage plan C2 and the first user's behavior. Matching habits.
  • the server can recommend to the user smart home device linkage solutions used by similar users, thereby improving the accuracy of the smart home device linkage solutions recommended by the server.
  • the central control device After the central control device receives the optimized smart home device linkage scheme sent by the server, the central control device can display the optimized smart home device linkage scheme to the first user for viewing through the electronic device 100 .
  • the number of optimized smart home device linkage solutions can include one or more for the user to choose.
  • the number of optimized smart home device linkage solutions is 3, among which the score of the optimized smart home device linkage solution 1 is higher than the score of the optimized smart home device linkage solution 2, and the score of the optimized smart home device linkage solution 2 is higher.
  • the score is higher than the score of the optimized smart home device linkage solution three, and the score of the optimized smart home device linkage solution three is higher than the preset value.
  • 4A to 4F exemplarily illustrate a UI diagram of an electronic device 100 displaying an optimized smart home device linkage solution.
  • FIG. 4A shows a schematic diagram of the electronic device 100 displaying an optimized smart home device linkage solution.
  • the central control device After the central control device obtains the optimized smart home device linkage scheme sent by the server, the central control device can display the optimized smart home device linkage scheme through the electronic device 100 to prompt the user whether the smart home device linkage scheme needs to be updated.
  • the electronic device 100 can display a prompt bar 401 suspended above the main interface.
  • the prompt bar 401 includes prompt information "Does the smart home device linkage solution need to be updated?".
  • the prompt bar 401 is used to prompt the user whether to view and update the smart home device linkage solution in the corresponding scenario.
  • the prompt bar 401 includes options 402, 403 and 404.
  • the electronic device 100 can receive the user's input operation (such as click) for option 402, and in response to the user's input operation, the electronic device 100 can display the details of the solution one (or the optimized smart home device linkage solution one). .
  • the electronic device 100 may also receive a user's input operation (such as a click) on option 403.
  • the electronic device 100 may display the details of the second solution (or the optimized smart home device linkage solution two).
  • the electronic device 100 may also receive a user's input operation (such as a click) on option 404.
  • the electronic device 100 may display the details of the third solution (or the optimized smart home device linkage solution three).
  • FIG. 4A shows a schematic diagram of another electronic device 100 showing an optimized smart home device linkage solution.
  • the electronic device 100 can display a prompt bar 401 in the main interface of the smart life application.
  • the prompt bar 401 is used to prompt the user whether to view and update. Smart home device linkage solutions in corresponding scenarios.
  • the prompt bar 401 please refer to the description in FIG. 4A. The embodiments of the present application will not be described in detail here.
  • FIG. 4C shows a schematic diagram of yet another electronic device 100 displaying an optimized smart home device linkage solution.
  • the electronic device 100 can display prompt information 405 in the drop-down notification bar.
  • the prompt information 405 is used to prompt the user whether to view and update the smart home device linkage solution in the corresponding scenario.
  • the electronic device 100 can receive the user's input operation (such as click) on the prompt information 405 .
  • the electronic device 100 can display the prompt bar 401 as shown in FIG. 4A or the prompt bar 401 as shown in FIG. 4B .
  • the prompt bar 401 is displayed.
  • the electronic device 100 shown in FIG. 4A, FIG. 4B and FIG. 4C is not limited to displaying prompt information to prompt the user whether to view and update the smart home device linkage solution in the corresponding scenario.
  • the electronic device 100 can also prompt the user in other ways whether to view and update the smart home device linkage solution in the corresponding scenario. The embodiments of this application will not be repeated here.
  • the electronic device 100 can view the details of the optimized smart home device linkage solution and choose to change some of the optimized smart home device linkage solutions. Settings, or updating the smart home device linkage scheme based on the optimized smart home device linkage scheme.
  • the electronic device 100 can receive the user's input operation for option 402 , and in response to the user's input operation, the electronic device 100 can display the prompt shown in FIG. 4E Information 406, the prompt information 406 displays the details of the solution one (or the optimized smart home device linkage solution one).
  • the optimized smart home device linkage solution 1 includes the following: the air conditioner in the living room has been turned on, and the temperature has been adjusted to 26 degrees Celsius.
  • the air purifier in the living room is turned on.
  • the lights in the living room are on. In this way, by displaying the smart home device linkage solution through pictures, users can vividly and intuitively observe the details of the optimized smart home device linkage solution 1.
  • the prompt information 406 also includes a control 407 and a control 408.
  • the electronic device 100 can receive the user's input operation (such as click) on the control 407, and in response to the user's input operation, the electronic device 100 can set the optimized smart home device linkage solution 1 as the smart home device in the "go home" scenario. Home equipment linkage solution.
  • the electronic device 100 can also receive a user's input operation (such as a click) on the control 408. In response to the user's input operation, the electronic device 100 can change the working mode of some smart home devices in the optimized smart home device linkage solution one. Either add smart home devices, or reduce smart home devices. For example, the user can change the temperature of the air conditioner in the living room to 24°C in the optimized smart home device linkage solution 1. Users can set the modified and optimized smart home device linkage solution 1 as the smart home device linkage solution in the "go home" scenario.
  • a user's input operation such as a click
  • the electronic device 100 may first update the smart home device linkage solution in the "going home" scenario based on the optimized smart home device linkage solution. Afterwards, a pop-up window prompts the user whether to accept the optimized smart home device linkage solution and whether the previous smart home device linkage solution needs to be restored.
  • the electronic device 100 can select one solution from multiple solutions and update the smart home device linkage solution based on the selected solution. For example, each of the multiple schemes has a different score.
  • the highest-rated scheme can be selected from the multiple schemes, and the smart home device linkage scheme can be updated based on the highest-rated scheme. It is understandable that the solution with the highest score has the highest matching degree with the user's behavioral habits, so the user is more likely to use it. In this way, the accuracy of recommendations can be improved.
  • the electronic device 100 selects the highest-rated solution from multiple solutions as the optimized smart home device linkage solution one, and updates the smart home device linkage solution based on the optimized smart home device linkage solution one. Finally, the electronic device 100 can display prompt information 409, which is used to prompt the user that the smart home device linkage scheme has been updated and whether to view the details or restore the previous settings.
  • the prompt information 409 includes options 410 and 411.
  • the electronic device 100 may receive a user's input operation (such as a click) on option 410, and in response to the user's input operation, the electronic device 100 may display prompt information 406 as shown in FIG. 4E, so that the user can view optimized intelligence. Details of the home device linkage plan one, or the user can modify the optimized smart home device linkage plan one, and update the smart home device linkage plan based on the modified and optimized smart home device linkage plan one.
  • the electronic device 100 can also receive the user's input operation (such as click) for option 411, and in response to the user's input operation, the electronic device 100 can cancel the update, that is, return to the optimization-based smart home device linkage.
  • Solution 1 updates the previous smart home device linkage solution.
  • Figure 5 shows a schematic diagram of a smart home device linkage solution recommendation method provided by an embodiment of the present application.
  • one or more smart home devices send usage data to the central control device.
  • the central control device controls one or more smart home devices based on the smart home device linkage scheme.
  • the home of the first user includes one or more smart home devices. Due to changes in the user's behavioral habits, changes in the number of people in the home, changes in the type and/or number of smart home devices, changes in the environment and other factors, The working mode of one or more smart home devices will also change, so the actual usage data of one or more smart home devices may be different from the smart home device linkage solution 1.
  • One or more smart home devices can periodically send usage data on the local device to the central control device so that the server can analyze the user's behavior based on the usage data.
  • the central control device After receiving the usage data of one or more smart home devices, the central control device determines whether the similarity between the usage data and the smart home device linkage solution one is lower than the first threshold, or the usage data is within the first time period. Has nothing changed?
  • the central control device After receiving the usage data of one or more smart home devices, the central control device will also send the usage data to the server so that the server can analyze the user's behavioral habits based on the usage data.
  • the central control device also needs to determine whether the similarity between the usage data and the smart home device linkage solution is lower than the first threshold, or whether the usage data has not changed within the first period of time. If any one of the above is satisfied, the central control device executes S503. Otherwise, the central control device executes S502.
  • the central control device sends the first request to the server.
  • the server generates an updated smart home device linkage solution.
  • the first request is used to instruct the server to generate an updated smart home device linkage scheme and send the updated smart home device linkage scheme to the central control device.
  • the updated smart home device linkage solution includes one or more optimized smart home device linkage solutions.
  • the updated smart home device linkage solution may be a smart home device linkage solution whose user usage probability is higher than the first probability.
  • the new smart home device linkage solution can also be the smart home device linkage solution used by the first similar user.
  • the central control device does not need to execute S502 and S503.
  • S502 and S503 can be replaced with S502 as follows.
  • S502 After receiving the usage data of one or more smart home devices, the server determines whether the similarity between the usage data and smart home device linkage solution one is lower than the first threshold, or whether the usage data is within the first period of time. No changes?
  • the server After receiving the usage data of one or more smart home devices, the server can analyze the user's behavior habits based on the usage data.
  • the server After the server determines that the similarity between the usage data and the smart home device linkage plan is lower than the first threshold, or the usage data does not change within the first period of time, the server generates an updated smart home device linkage plan.
  • the server sends the updated smart home device linkage scheme to the central control device.
  • the central control device obtains the updated smart home device linkage scheme.
  • the central control device After the central control device obtains the updated smart home device linkage scheme sent by the server, if the updated smart home device linkage scheme only includes one smart home device linkage scheme, then the central control device can directly replace the one smart home device linkage scheme. It is a smart home device linkage solution, and one or more smart home devices are controlled based on the smart home device linkage solution.
  • the central control device can select one smart home device linkage solution from the two or more smart home device linkage solutions.
  • the device linkage solution is the smart home device linkage solution that best matches the user’s behavioral habits.
  • S507 and S508 can be executed.
  • the central control device sends the first notification to the electronic device 100.
  • the electronic device 100 After receiving the first notification, the electronic device 100 displays the prompt information.
  • the central control device After the central control device updates the smart home device linkage scheme, the central control device sends a first notification to the electronic device 100.
  • the first notification instructs the electronic device 100 to display prompt information.
  • the prompt information is used to prompt the user that the smart home device linkage scheme has been updated. , whether you need to view details or restore previous settings.
  • the central control device can execute Lines S507 and S508.
  • the central control device After the central control device obtains the updated smart home device linkage scheme sent by the server, the central control device sends a first notification to the electronic device 100, and the first notification user instructs the electronic device 100 to display prompt information, and the prompt information is used to The user selects and views the updated smart home device linkage solution, and replaces it with the smart home device linkage solution 1 based on the updated smart home device linkage solution.
  • the electronic device 100 After the electronic device 100 displays the prompt information and receives the user's selection operation, the electronic device 100 sends the updated smart home device linkage plan selected by the user to the central control device, so that the central control device can be based on the updated smart home device selected by the user.
  • the device linkage solution controls one or more smart home devices.
  • Figure 6 is a schematic flowchart of a method for recommending a smart home device linkage solution provided by an embodiment of the present application.
  • the central control device controls one or more smart home devices based on the first smart home device linkage solution.
  • the first smart home device linkage solution may be the smart home device linkage solution 1 described in the previous embodiment.
  • the central control device obtains usage data sent by one or more smart home devices.
  • the central control device determines that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme is lower than the first threshold, obtain the updated smart home device.
  • Linkage scheme the updated smart home equipment linkage scheme includes one or more optimized smart home equipment linkage schemes.
  • the user's home includes one or more smart home devices. Due to changes in the user's behavioral habits, changes in the number of people in the home, changes in the type and/or number of smart home devices, changes in the environment and other factors, one or more The working modes of multiple smart home devices will also change, so the actual usage data of one or more smart home devices may be different from the first smart home device linkage solution.
  • One or more smart home devices can periodically send usage data on the local device to the central control device so that the server can analyze the user's behavior based on the usage data.
  • the central control device determines that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme is lower than the first threshold
  • Obtaining an updated smart home device linkage plan specifically including: the central control device determines that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage plan is lower than the first threshold
  • a first request is sent to the server, and the first request is used to instruct the server to update the smart home device linkage scheme; the central control device receives the updated smart home device linkage scheme sent by the server.
  • the server is also configured to obtain the updated data when it is determined that the usage data has not changed within the first period of time, or the similarity between the usage data and the first smart home device linkage scheme is lower than the first threshold.
  • the smart home device linkage plan sends the updated smart home device linkage plan to the central control device.
  • the central control device can request the server to generate an updated Smart home device linkage plan, and send the updated smart home device linkage plan to the central control device.
  • the central control device controls one or more smart home devices based on the updated smart home device linkage scheme; wherein the first smart home device linkage scheme is different from the one or more optimized smart home device linkage schemes.
  • the updated smart home device linkage solution includes a first optimized smart home device linkage solution; wherein the first optimized smart home device linkage solution includes a smart home device linkage solution during the weekend time period and Smart home device linkage scheme during non-weekend time periods; the central control device controls one or more smart home devices based on the updated smart home device linkage scheme, specifically including: During weekends, the central control device controls one or more smart home devices based on the weekend time period. The smart home device linkage scheme controls one or more smart home devices. During non-weekend time, the central control device controls one or more smart home devices based on the smart home device linkage scheme during the non-weekend time period.
  • the central control device can adopt different smart home device linkage solutions during weekends and non-weekends, which is more in line with the user's behavioral characteristics.
  • the updated smart home device linkage solution is a smart home device linkage solution whose usage probability by the first user is higher than the first probability.
  • the server is specifically configured to: in response to the first request, determine an updated smart home based on one or more of usage data, environmental changes, user changes, and smart home device type changes.
  • the device linkage solution is a smart home device linkage solution whose usage probability by the first user is higher than the first probability. In this way, the server can update the smart home device linkage scheme with reference to multiple factors.
  • the updated smart home device linkage solution is the smart home device linkage solution used by the first similar user.
  • the server is specifically configured to: determine the first similar user based on the first smart home device linkage scheme and the second smart home device linkage scheme; the second smart home device linkage scheme is the first similar user.
  • the smart home device linkage plan used by the user; the updated smart home device linkage plan is determined to be the third smart home device linkage plan used by the first similar user; the third smart home device linkage plan is different from the second smart home device linkage plan.
  • the server can recommend smart home device linkage solutions used by similar users.
  • the behavioral habits of similar users are also similar, which can improve the accuracy of recommendations.
  • the updated smart home device linkage scheme includes the first optimized smart home device linkage scheme; after the central control device obtains the updated smart home device linkage scheme, the method further includes: the central control device obtains the updated smart home device linkage scheme through The first electronic device displays the first prompt information, and the first prompt information is used to prompt the first user to update the smart home device linkage solution to the first optimized smart home device linkage solution.
  • the first prompt information may be the prompt information 409 shown in Figure 4F.
  • the first electronic device can prompt the user that the smart home device linkage scheme has been updated to the first optimized smart home device linkage scheme, and prompt the user to accept this scheme or restore the previous scheme.
  • the updated smart home device linkage scheme also includes a second optimized smart home device linkage scheme, wherein the matching degree between the first optimized smart home device linkage scheme and the first user behavior is higher than that of the first optimized smart home device linkage scheme.
  • the degree of matching between the second optimized smart home device linkage solution and the first user behavior is higher than that of the first optimized smart home device linkage scheme.
  • the first optimized smart home device linkage solution may be the smart home device linkage solution 1 shown in Figure 4F.
  • the central control device can recommend a smart home device linkage solution with a higher score to improve the accuracy of the recommendation.
  • the method also includes: the central control device displays second prompt information through the first electronic device, and the second prompt information is used to prompt the first user to select the optimized smart home device linkage. plan.
  • the first electronic device may be the electronic device 100 described in the previous embodiment.
  • the second prompt information may be the prompt bar 401 shown in Figure 4A or Figure 4B.
  • the second prompt information may also be prompt information 405 shown in Figure 4C.
  • the first electronic device can display prompt information to prompt the user to view or select or modify the optimized smart home device linkage scheme.
  • the second prompt information includes a first option; wherein the first option is used to receive a first operation, causing the first electronic device to display a first interface, and the first interface includes a third option corresponding to the first option. Details of an optimized smart home device linkage solution.
  • the first option may be option 402 shown in Figure 4D.
  • the first interface may be the prompt information 406 shown in Figure 4E.
  • the user can view the details of the first optimized smart home device linkage solution on the first electronic device.
  • the first interface includes a second option; the first option is used to receive the second operation and determine to control one or more smart home devices based on the first optimized smart home device linkage solution;
  • the central control device controls one or more smart home devices based on the updated smart home device linkage scheme, which specifically includes: the central control device controls one or more smart home devices based on the first optimized smart home device linkage scheme.
  • the second option may be the control 407 shown in Figure 4E.
  • the user can set the first optimized smart home device linkage solution as the smart home device linkage solution in this scenario.
  • the first interface also includes a third option; the first electronic device is also configured to receive and respond to the third operation for the third option, changing the first optimized smart home device linkage scheme It is the third optimized smart home device linkage solution; the central control device is specifically used to control one or more smart home devices based on the third optimized smart home device linkage solution.
  • the third option may be the control 408 shown in Figure 4E.
  • the user can make modifications to the first optimized smart home device linkage solution, such as adding devices, reducing devices, modifying the working modes of certain devices, etc. wait.
  • the computer program product includes one or more computer instructions.
  • the computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device.
  • the computer instructions may be stored in or transmitted from one computer-readable storage medium to another, e.g., the computer instructions may be transferred from a website, computer, server, or data center Transmission to another website, computer, server or data center through wired (such as coaxial cable, optical fiber, digital subscriber line) or wireless (such as infrared, wireless, microwave, etc.) means.
  • the computer-readable storage medium may be any available medium that can be accessed by a computer or a data storage device such as a server, data center, etc. that contains one or more available media integrated.
  • the available media may be magnetic media (eg, floppy disk, hard disk, tape), optical media (eg, DVD), or semiconductor media (eg, solid state disk (SSD)), etc.

Abstract

本申请提供了一种智能家居设备联动方案推荐方法及相关装置。中枢控制设备可以获取各个智能家居设备的使用数据。在使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,中枢控制设备可以获取到优化的智能家居设备联动方案,并基于优化的智能家居设备联动方案对智能家居设备进行控制,提升用户的使用体验。

Description

一种智能家居设备联动方案推荐方法及相关装置
本申请要求于2022年07月06日提交中国专利局、申请号为202210790660.9、申请名称为“一种智能家居设备联动方案推荐方法及相关装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及智能家居技术领域,尤其涉及一种智能家居设备联动方案推荐方法及相关装置。
背景技术
随着终端技术的发展,越来越多的智能家居设备进入用户的生活。智能家居设备是指能够通过无线通信技术实现信息交换、甚至能够自主学习的智能化设备,能够为用户提供方便有效的服务,减少用户的劳动量。如何优化智能家居设备联动方案,有待进一步研究。
发明内容
本申请提供了一种智能家居设备联动方案推荐方法及相关装置,实现了自动对智能家居设备联动方案进行优化,提升用户的使用体验。
第一方面,本申请提供了一种智能家居设备联动方案推荐系统,系统包括中枢控制设备;其中,中枢控制设备,用于基于第一智能家居设备联动方案对一个或多个智能家居设备进行控制;中枢控制设备,还用于获取到一个或多个智能家居设备发送的使用数据;中枢控制设备,还用于在使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案;中枢控制设备,还用于基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制;其中,第一智能家居设备联动方案和一个或多个优化的智能家居设备联动方案不同。
在使用数据在第一时长内没有发生变化时,中枢控制设备可以获取到更新的智能家居设备联动方案,以使得用户可以体验不同的智能家居设备联动方案。
在使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,中枢控制设备可以获取到更新的智能家居设备联动方案,以使得更新的智能家居设备联动方案更符合用户的行为习惯。
通过第一方面的方法,实现了可以自动对智能家居设备联动方案进行优化,提升用户的使用体验。
结合第一方面,在一种可能的实现方式中,更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;其中,第一优化的智能家居设备联动方案包括周末时间段内的智能家居设备联动方案和非周末时间段内的智能家居设备联动方案;中枢控制设备,具体用于:在周末时间,基于周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制,在非周末时间,基于非周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制。
这样,用户在周末时间和非周末时间的行为习惯不同,中枢控制设备可以在周末时间和非周末时间采用不同的智能家居设备联动方案,更符合用户的行为特征。
结合第一方面,在一种可能的实现方式中,系统还包括服务器;中枢控制设备,具体用于:在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,向服务器发送第一请求,第一请求用于指示服务器更新智能家居设备联动方案;服务器,用于响应于第一请求,获取到更新的智能家居设备联动方案;服务器,还用于将更新的智能家居设备联动方案发送至中枢控制设备。
可选的,服务器还用于在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案将更新的智能家居设备联动方案发送至中枢控制设备。
这样,在监测到使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,中枢控制设备可以请求服务器获生成更新的智能家居设备联动方案,并将更新的智能家居设备联动方案发送至中枢控制设备。
结合第一方面,在一种可能的实现方式中,更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
结合第一方面,在一种可能的实现方式中,服务器,具体用于:响应于第一请求,基于使用数据、环境变化、用户变化、智能家居设备类型变化中的一种或多种,确定出更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。这样,服务器可以参考多种因素更新智能家居设备联动方案。
结合第一方面,在一种可能的实现方式中,更新的智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案。
结合第一方面,在一种可能的实现方式中,服务器,具体用于:基于第一智能家居设备联动方案和第二智能家居设备联动方案,确定出第一相似用户;第二智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案;确定出更新的智能家居设备联动方案为第一相似用户使用的第三智能家居设备联动方案;第三智能家居设备联动方案与第二智能家居设备联动方案不同。
这样,服务器可以推荐出相似用户使用的智能家居设备联动方案。相似用户之间的行为习惯也类型,可以提高推荐的准确性。
结合第一方面,在一种可能的实现方式中,系统还包括第一电子设备;更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;第一电子设备,用于在获取到第一优化的智能家居设备联动方案后,显示第一提示信息,第一提示信息用于提示第一用户已将智能家居设备联动方案更新为第一优化的智能家居设备联动方案。
这样,第一电子设备可以提示用户已将智能家居设备联动方案更新为第一优化的智能家居设备联动方案,并提示用户接受此方案或者恢复之前的方案。
结合第一方面,在一种可能的实现方式中,更新的智能家居设备联动方案还包括第二优化的智能家居设备联动方案,其中,第一优化的智能家居设备联动方案与第一用户行为的匹配度高于第二优化的智能家居设备联动方案与第一用户行为的匹配度。
这样,在更新的智能家居设备联动方案包括多个方案的情况下,中枢控制设备可以推荐出评分更高的一个智能家居设备联动方案,以提高推荐的准确性。
结合第一方面,在一种可能的实现方式中,第一电子设备,还用于在获取到更新的智能家居设备联动方案后,显示第二提示信息,第二提示信息用于提示第一用户选择优化的智能家居设备联动方案。
这样,在中枢控制设备获取到更新的智能家居设备联动方案后,第一电子设备可以显示提示信息,以提示用户查看或者选择或者修改优化的智能家居设备联动方案。
结合第一方面,在一种可能的实现方式中,第二提示信息包括第一选项;第一电子设备,还用于接收并响应于针对第一选项的第一操作,显示第一界面,第一界面包括第一选项对应的第一优化的智能家居设备联动方案的详情内容。
这样,用户可以在第一电子设备上查看第一优化的智能家居设备联动方案的详情内容。
结合第一方面,在一种可能的实现方式中,第一界面包括第二选项;第一电子设备,还用于接收针对第二选项的第二操作;中枢控制设备,具体用于基于第一优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
这样,用户在查看完第一优化的智能家居设备联动方案的详情内容后,可以将第一优化的智能家居设备联动方案设置为该场景下的智能家居设备联动方案。
结合第一方面,在一种可能的实现方式中,第一界面还包括第三选项;第一电子设备,还用于接收并响应于针对第三选项的第三操作,将第一优化的智能家居设备联动方案更改为第三优化的智能家居设备联动方案;中枢控制设备,具体用于基于第三优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
这样,用户在查看完第一优化的智能家居设备联动方案的详情内容的同时,可以对第一优化的智能家居设备联动方案进行修改,例如增加设备、减少设备、修改某些设备的工作模式等等。
第二方面,本申请提供了一种智能家居设备联动方案推荐方法,方法包括:中枢控制设备基于第一智能家居设备联动方案对一个或多个智能家居设备进行控制;中枢控制设备获取到一个或多个智能家居设备发送的使用数据;中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制;其中,第一智能家居设备联动方案和一个或多个优化的智能家居设备联动方案不同。
结合第二方面,在一种可能的实现方式中,更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;其中,第一优化的智能家居设备联动方案包括周末时间段内的智能家居设备联动方案和非周末时间段内的智能家居设备联动方案;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制,具体包括:在周末时间,中枢控制设备基于周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制,在非周末时间,中枢控制设备基于非周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制。
结合第二方面,在一种可能的实现方式中,中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,具体包括:中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,向服务器发送第一请求,第一请求用于指示服务器更新智能家居设备联动方案;中枢控制设备接收服务器发送的更新的智能家居设备联动方案。
结合第二方面,在一种可能的实现方式中,更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
结合第二方面,在一种可能的实现方式中,更新的智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案。
结合第二方面,在一种可能的实现方式中,更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;在中枢控制设备获取到更新的智能家居设备联动方案之后,方法还包括:中枢控制设备通过第一电子设备显示第一提示信息,第一提示信息用于提示第一用户已将智能家居设备联动方案更新为第一优化的智能家居设备联动方案。
结合第二方面,在一种可能的实现方式中,更新的智能家居设备联动方案还包括第二优化的智能家居设备联动方案,其中,第一优化的智能家居设备联动方案与第一用户行为的匹配度高于第二优化的智能家居设备联动方案与第一用户行为的匹配度。
结合第二方面,在一种可能的实现方式中,在中枢控制设备获取到更新的智能家居设备联动方案之后,方法还包括:中枢控制设备通过第一电子设备显示第二提示信息,第二提示信息用于提示第一用户选择优化的智能家居设备联动方案。
结合第二方面,在一种可能的实现方式中,第二提示信息包括第一选项;其中,第一选项用于接收第一操作,使得第一电子设备显示第一界面,第一界面包括第一选项对应的第一优化的智能家居设备联动方案的详情内容。
结合第二方面,在一种可能的实现方式中,第一界面包括第二选项;第一选项用于接收第二操作,确定出基于第一优化的智能家居设备联动方案对一个或多个智能家居设备进行控制;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制,具体包括:中枢控制设备基于第一优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
结合第二方面,在一种可能的实现方式中,第一界面包括第三选项;第三选项用于接收第三操作,使得第一电子设备将第一优化的智能家居设备联动方案更改为第三优化的智能家居设备联动方案;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制,具体包括:中枢控制设备基于第三优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
第三方面,本申请提供了一种中枢控制设备,中枢控制设备包括:一个或多个处理器、一个或多个存储器;一个或多个存储器与一个或多个处理器耦合,一个或多个存储器用于存储计算机程序代码,计算机程序代码包括计算机指令,一个或多个处理器调用计算机指令以使得中枢控制设备执行上述任一方面任一可能的实现方式中提供的一种智能家居设备联动方案推荐方法。
第四方面,本申请提供了一种计算机可读存储介质,包括指令,当指令在中枢控制设备上运行时,使得中枢控制设备执行上述任一方面任一可能的实现方式中提供的一种智能家居设备联动方案推荐方法。
第五方面,本申请提供了一种计算机程序产品,当计算机程序产品在中枢控制设备上运行时,使得中枢控制设备执行上述任一方面任一可能的实现方式中提供的一种智能家居设备联动方案推荐方法。
对于第二方面至第五方面的有益效果,可以参考第一方面中有益效果的描述,本申请实施例在此不再赘述。
附图说明
图1为本申请实施例提供的一种系统架构图;
图2为本申请实施例提供的一种中枢控制设备的结构示意图;
图3A-图3K为本申请实施例提供的一组电子设备100接收用户操作设置家庭里的智能家居设备联动方案的示意图;
图4A-图4F为本申请实施例提供的一组电子设备100显示优化的智能家居设备联动方案的UI图;
图5为本申请实施例提供的一种智能家居设备联动方案推荐方法的示意图;
图6为本申请实施例提供的一种智能家居设备联动方案推荐方法的方法流程示意图。
具体实施方式
下面将结合附图对本申请实施例中的技术方案进行清楚、详尽地描述。其中,在本申请实施例的描述中,除非另有说明,“/”表示或的意思,例如,A/B可以表示A或B;文本中的“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况,另外,在本申请实施例的描述中,“多个”是指两个或多于两个。
以下,术语“第一”、“第二”仅用于描述目的,而不能理解为暗示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征,在本申请实施例的描述中,除非另有说明,“多个”的含义是两个或两个以上。
本申请以下实施例中的术语“用户界面(user interface,UI)”,是应用程序或操作系统与用户之间进行交互和信息交换的介质接口,它实现信息的内部形式与用户可以接受形式之间的转换。用户界面常用的表现形式是图形用户界面(graphic user interface,GUI),是指采用图形方式显示的与计算机操作相关的用户界面。它可以是在电子设备的显示屏中显示的文本、图标、按钮、菜单、选项卡、文本框、对话框、状态栏、导航栏、Widget等可视的界面元素。
首先对本申请实施例涉及的技术术语进行解释。
1、场景:场景是自定义的,例如晨起场景、通勤场景、离家场景、回家场景、观影场景、睡眠场景、导航场景、打车场景、驾驶场景等等。场景包括触发条件,场景对应有一个或多个不同的智能家居设备的 联动方案。触发条件用于识别到场景类别,并可以触发执行一个或多个不同的智能家居设备的联动方案。触发条件可以包括一条或多条,触发条件可包括但不仅限于时间、地点、设备状态等。当时间、地点、设备状态等一项或多项满足触发条件时,中枢控制设备可执行一个或多个不同的智能家居设备的联动方案。
一个或多个不同的智能家居设备的联动方案可以是控制一个或多个不同的智能家居设备开启、一个或多个不同的智能家居设备关闭、一个或多个不同的智能家居设备切换工作模式等等。
示例性的,当中枢控制设备识别到当前场景为睡眠场景,中枢控制设备可以控制智能音箱和大屏进入休息模式,同时控制窗帘关闭。
示例性的,当中枢控制设备识别到当前场景为回家场景,中枢控制设备可以控制家庭里的空调开启、客厅的电灯开启、客厅的窗帘开启、客厅的空气净化器开启等等。
2、场景识别:中枢控制设备可以基于不同传感器采集的数据,在一定准则下,利用模型、规则和专家知识中的一种或多种,对传感器采集的数据进行分析,以完成场景的识别过程。对传感器采集的数据进行分析的过程包括前融合算法和后融合算法,前融合算法通过多个传感器采集的数据,将原始的传感器数据融合在一起。后融合算法对原始的传感器数据进行处理和分析,得到分析结果,即确定出具体的场景类别。常见的传感器包括但不仅限于压力传感器、陀螺仪传感器、加速度传感器、距离传感器、接近光传感器、指纹传感器、温度传感器、触摸传感器和环境光传感器等。中枢控制设备可以根据传感器获取到的传感器数据,并结合时间、地点、设备状态等信息感知用户当前所处的场景,如工作场景、驾驶场景、睡眠场景、观影场景等。
示例性的,当中枢控制设备检测到家庭里的大屏正在播放视频,智能音箱正在输出音频,客厅的窗帘已关闭,客厅的灯也已关闭,那么中枢控制设备可以判断出用户处于观影场景。
本申请实施例提供了一种智能家居设备联动方案,使得中枢控制设备可以手机各个智能家居设备的使用数据、智能家居设备的状态、环境变化、用户变化、设备类型的变化等信息,并将信息上传至服务器,服务器可以基于该信息自动地对智能家居设备的联动方案进行优化,并将优化的智能家居设备联动方案发送至中枢控制设备,以使得中枢控制设备可以基于优化的智能家居设备联动方案对智能家居设备进行控制,提升用户的使用体验。
具体的,在一些实施例中,在服务器监测到智能家居设备的使用数据变化、环境变化、用户变化、设备类型等信息变化后,服务器可以基于变化的信息为用户推荐优化的智能家居设备联动方案,并将优化的智能家居设备联动方案发送至中枢控制设备,以使得中枢控制设备可以基于优化的智能家居设备联动方案对智能家居设备进行控制。
在其他实施例中,在服务器监测到智能家居设备的使用数据超过一定时间内没有变化后,服务器可以为用户推荐优化的智能家居设备联动方案,优化的智能家居设备联动方案与优化之前的智能家居设备联动方案不同,以使得用户可以尝试使用不同的智能家居设备联动方案。
图1示例性示出了本申请实施例提供的一种系统架构图。
该系统包括服务器、中枢控制设备和一个或多个智能家居设备。
在一些实施例中,中枢控制设备也可以为服务器,本申请实施例对此不做限定,本申请以下实施例以中枢控制设备和服务器为不同的两个设备为例进行说明。
中枢控制设备的设备类型可以为智能音箱,中枢控制设备还可以为其他的设备类型,例如手机、液晶显屏(liquid crystal display,LCD)、网关设备,中枢控制设备还可以是能够对周围其他的智能家居设备进行控制或者为周围其他的智能家居设备传输数据的设备等,本申请以下实施例以中枢控制设备为智能音箱为例进行说明,本申请实施例对于中枢控制设备的设备类型不做限定。
一个或多个智能家居设备包括但不仅限于智能空调、智能空气净化器、智能台灯、智能体脂称、智能窗帘、智能水杯、智能跑步机、智能门锁、智能大屏等。图1示出的智能家居设备为智能空调、智能空气净化器和智能跑步机。
其中,中枢控制设备可以对该一个或多个智能家居设备进行控制,例如控制智能空调开启/关闭等多个。中枢控制设备还可以控制该一个或多个智能家居设备以一定的工作模式工作,例如控制智能空调将温度从26度调整至24度。中枢控制设备还可以获取该一个或多个智能家居设备的使用数据,将该一个或多个智能家居设备的使用数据发送至服务器,以使得服务器可以统计一个或多个智能家居设备的使用数据,对用户的行为习惯进行分析。
服务器可以接收中枢控制设备发送的一个或多个智能家居设备的使用数据,并汇总一个或多个智能家居设备的使用数据,对用户的行为习惯进行分析。
在一些实施例中,服务器可以在监测到一个或多个智能家居设备的使用数据发生变化后,服务器可以基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型等信息为用户推荐优化的智能家居设备联动方案,并将优化的智能家居设备联动方案发送至中枢控制设备。
在其他实施例中,服务器在监测到智能家居设备的使用数据超过一定时间内没有变化后,服务器可以为用户推荐优化的智能家居设备联动方案,优化的智能家居设备联动方案与优化之前的智能家居设备联动方案不同,以使得用户可以尝试使用不同的智能家居设备联动方案。服务器将优化的智能家居设备联动方案发送至中枢控制设备。
中枢控制设备可以获取到服务器发送的优化的智能家居设备联动方案,并基于优化的智能家居设备联动方案对家庭里的一个或多个智能家居设备进行控制。
对于服务器怎么得到优化的智能家居设备联动方案的,将在后续实施例中详细介绍,本申请实施例在此不再赘述。
图2示例性示出了中枢控制设备的结构示意图。
需要说明的是,图2所示中枢控制设备仅是一个范例,并且中枢控制设备可以具有比图2中所示的更多或更少的部件,可以组合两个或多个的部件,或者可以具有不同的部件配置。图2中所示出的各种部件可以在包括一个或多个信号处理和/或专用集成电路在内的硬件、软件、或硬件和软件的组合中实现。
如图2所示,中枢控制设备可以包括处理器201、存储器202、无线通信模块203、按键205、天线204、音频模块206、扬声器207、指示器208和总线209。其中,处理器201、存储器202、无线通信模块203、按键205、音频模块206和指示器208可以通过总线209连接。
其中,处理器201可用于读取和执行计算机可读指令。具体实现中,处理器201可主要包括控制器、运算器和寄存器。其中,控制器主要负责指令译码,并为指令对应的操作发出控制信号。运算器主要负责保存指令执行过程中临时存放的寄存器操作数和中间操作结果等。具体实现中,处理器201的硬件架构可以是专用集成电路(ASIC)架构、MIPS架构、ARM架构或者NP架构等等。
处理器201中还可以设置存储器,用于存储指令和数据。在一些实施例中,处理器201中的存储器为高速缓冲存储器。该存储器可以保存处理器201刚用过或循环使用的指令或数据。如果处理器201需要再次使用该指令或数据,可从所述存储器中直接调用。避免了重复存取,减少了处理器201的等待时间,因而提高了系统的效率。
存储器202与处理器201耦合,用于存储各种软件程序和/或多组指令。存储器202可以用于存储计算机可执行程序代码,所述可执行程序代码包括指令。处理器201通过运行存储在存储器202的指令,从而执行中枢控制设备的各种功能应用以及数据处理。存储器202可以包括存储程序区和存储数据区。其中,存储程序区可存储操作系统,至少一个功能所需的应用程序(比如声音播放功能,图像播放功能等)等。存储数据区可存储中枢控制设备使用过程中所创建的数据(比如音频帧)等。此外,存储器202可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件,闪存器件,通用闪存存储器(universal flash storage,UFS)等。
无线通信模块203可以提供应用在中枢控制设备上的包括无线局域网(wireless local area networks,WLAN)(如无线保真(wireless fidelity,Wi-Fi)网络),蓝牙(bluetooth,BT)等无线通信的解决方案。
在一些实施例中,无线通信模块203可以包括蓝牙(BT)通信模块203A、WLAN通信模块203B。蓝牙(BT)通信模块203A、WLAN通信模块203B中的一项或多项可以监听到其他设备发射的信号,如探测请求、扫描信号等等,并可以发送响应信号,如探测响应、扫描响应等,使得其他设备可以发现中枢控制设备,并与其他设备建立无线通信连接,通过蓝牙或WLAN中的一种或多种无线通信技术与其他设备进行通信。其中,蓝牙(BT)通信模块203A可以提供包括经典蓝牙(BR/EDR)或蓝牙低功耗(Bluetooth low energy,BLE)中一项或多项蓝牙通信的解决方案。WLAN通信模块203B可以包括Wi-Fi direct、Wi-Fi LAN或Wi-Fi softAP中一项或多项WLAN通信的解决方案。
天线204可用于发射和接收电磁波信号。不同通信模块的天线可以复用,也可以相互独立,以提高天线的利用率。
按键205可以包括开机键、音量键、上一首切换键、下一首切换键、播放/暂停键等等中的一个或多个。按键205可以是机械按键,也可以是触摸式按键。中枢控制设备可以接收按键输入,产生与中枢控制设备的功能控制有关的按键信号输入。例如,当中枢控制设备在播放电子设备100播发的音频数据时,中枢控制设备可以接收到用户针对播放/暂停键的输入,响应于该输入,中枢控制设备可以通过与电子设备100建立的Wi-Fi直连,发送暂停指令给电子设备100,触发电子设备100暂停播发音频数据给中枢控制设备。
在一些实施例中,该中枢控制设备还可以包括电池、充电管理模块、电源管理模块。电池可以用于为中枢控制设备提供电源。充电管理模块用于从充电器接收充电输入。其中,充电器可以是无线充电器,也可以是有线充电器。在一些有线充电的实施例中,充电管理模块可以通过USB接口接收有线充电器的充电输入。在一些无线充电的实施例中,充电管理模块可以通过中枢控制设备的无线充电线圈接收无线充电输入。充电管理模块为电池充电的同时,还可以通过电源管理模块为电子设备供电。电源管理模块用于连接电池,充电管理模块与处理器201。电源管理模块接收电池和/或充电管理模块的输入,为处理器201,存储器202,无线通信模块203等供电。电源管理模块还可以用于监测电池容量,电池循环次数,电池健康状态(漏电,阻抗)等参数。在其他一些实施例中,电源管理模块也可以设置于处理器201中。在另一些实施例中,电源管理模块和充电管理模块也可以设置于同一个器件中。
音频模块206可用于将数字音频信息转换成模拟音频信号输出,也用于将模拟音频输入转换为数字音频信号。音频模块206还可以用于对音频信号编码和解码。在一些实施例中,音频模块206可以设置于处理器201中,或将音频模块206的部分功能模块设置于处理器201中。
扬声器207可以与音频模块206相连接,该扬声器207,可用于将音频电信号转换为声音信号。
可选的,中枢控制设备还可以包括麦克风(图2中未示出),麦克风可用于将声音信号转换为电信号。当用户通过语音指令控制中枢控制设备时,用户可以通过人嘴靠近麦克风发声,将声音信号输入到麦克风。
指示器208可以是指示灯,可以用于指示充电状态、电量变化,也可以用于指示消息、通知等。
首先介绍服务器怎么基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型等信息,确定出优化的智能家居设备联动方案的。
首先,用户可以设置家庭里的智能家居设备联动方案。
图3A-图3K示例性示出了电子设备100接收用户操作设置家庭里的智能家居设备联动方案的示意图。
情景模式可以包括但不仅限于“回家”、“离家”、“睡眠”、“观影”和“会客”等等。示例性的,“回家”情景模式下的智能家居设备联动方案可以是“开启客厅的空调、开启客厅的空气净化器、开启客厅的窗帘”。“离家”情景模式下的智能家居设备联动方案可以是“关闭客厅的空调、关闭客厅的空气净化器、关闭客厅的窗帘,扫地机器人开始工作”。在不同的情景模式下,家庭里的智能家居设备可以工作于不同的工作模式。
如图3A所述,电子设备100(例如手机)可以显示智能家居设备控制类应用(例如智慧生活APP)的用户界面310。用户界面310可包括关联了同一个家庭账号的智能设备。例如,智能设备的数量可以为8个。例如,客厅的智能音箱,客厅的智能大屏,卧室一的智能台灯,卧室的智能空气净化器,客厅的智能摄像头,客厅的智能空调,平板,客厅的智能窗帘和卧室一的智能空调。用户界面310示例性示出了客厅的智能音箱处于离线状态,客厅的智能大屏处于离线状态,卧室的智能台灯处于离线状态,卧室的智能空气净化器处于离线状态,客厅的智能摄像头处于离线状态,客厅的智能空调处于离线状态,平板处于离线状态,客厅的智能窗帘处于离线状态和卧室一的智能空调处于离线状态。
如图3A所示,电子设备100接收针对用户界面310中“场景”图标的输入操作(例如单击),响应于用户的输入操作,电子设备100显示如图3B所示的“场景”设置用户界面320。
用户界面320可以包括用户已创建的场景的卡片301和添加控件302。其中,卡片301关键的场景为“睡眠”,电子设备100可以接收针对卡片301的输入操作(例如单击),响应于用户的输入操作,电子设备100将控制该“睡眠”情景模式下关联的智能家居设备进入“睡眠”工作状态。电子设备100也可以接收用户针对添加控件302的输入操作,响应于用户的输入操作,电子设备100可以添加其他的情景模式,并将其他情景模式的卡片添加在用户界面320中。
当用户想要创建其他的情景模式时,如图3B所示,电子设备100可以接收用户针对添加控件302的输入操作,响应于用户的输入操作,电子设备100显示如图3C所示的提示栏303。提示栏303用于提示用户创建情景。
如图3C所示,电子设备100可以接收用户针对提示栏303的输入操作,响应于用户的输入操作,电子设备100显示如图3D所示的用户界面330。
用户界面330包括添加条件控件304和添加任务控件305,用户界面330还可以包括添加情景模式的名称输入区域、返回控件和确定控件等等。其中,电子设备100可以接收用户针对添加条件控件304的输入操作,响应于用户的输入操作,电子设备100可以接收用户操作添加该情景模式的触发条件。在用户添加了情景模式的触发条件之后,电子设备100可以接收用户针对添加任务控件305的输入操作,响应于用户的输入操作,电子设备100可以接收用户操作添加该情景模式关联的一个或多个智能家居设备,以及该 一个或多个智能家居设备的在该情景模式下的工作模式。这样,通过上述方法,用户可以添加不同情景模式下的智能家居设备联动方案。
示例性的,如图3D所示,电子设备100可以接收用户针对添加条件控件304的输入操作,响应于用户的输入操作,电子设备100显示如图3E所示的用户界面340。
用户界面340中包括一个或多个添加条件控件。例如“手动点击”控件、“语音控制”控件306、“指定时间”控件、“指定位置”控件、“智能设备”控件等等。用户界面340还可以包括上述触发条件的生效条件,例如设置上述触发条件的生效时间和生效次数。
示例性的,如图3E所示,当用户想要添加语音控制为触发条件时,电子设备100可以接收用户针对“语音控制”控件306的输入操作,响应于用户的输入操作,电子设备100显示如图3F所示的用户界面350。用户可以在用户界面350中输入语音指令。例如,用户在用户界面350中的语音指令输入区域307中输入语音指令“小艺小艺,我回家了”,之后,电子设备100接收针对控件308的输入操作,电子设备100将进入添加任务的用户界面,例如显示如图3G所示的用户界面360。
用户界面360中包括一个或多个添加任务控件,例如“智能设备”控件309、“系统功能”控件、“语音技能”控件、“语音播放”控件、“我的应用”控件等等。其中,电子设备100可以接收针对“智能设备”控件309的输入操作,设置需控制的智能家居设备。
示例性的,如图3G所示,电子设备100可以接收用户针对“智能设备”控件309的输入操作,响应于用户的输入操作,电子设备100显示如图3H所示的用户界面370。其中,用户界面370中显示有家庭里的智能家居设备。示例性的,用户界面370中包括的智能家居设备有客厅的智能空调、客厅的智能空气净化器、客厅的智能窗帘、客厅的智能大屏、客厅的智能音箱、客厅的智能电灯等等。还可以包括其他更多的智能家居设备,在图3H中没有表示出来。用户可以设置上述一个或多个智能家居设备开启对应的工作模式。当满足触发条件时,该智能家居设备将处于对应的工作模式。
示例性的,当用户将客厅的智能空调添加并作为该情景模式下关联的智能家居设备时,如图3H所示,电子设备100可以接收用户针对控件311的输入操作,响应于用户的输入操作,电子设备100将显示如图3I所示的客厅的智能空调的设置用户界面380。用户界面380可包括开启控件312、开启节能模式控件313、遥控开启控件314、遥控关闭控件315、温度调节区域316、定时控件317和倒计时控件318。
用户可以在用户界面380设置客厅的智能空调的工作模式。例如,设置客厅的智能空调的开启条件(遥控开启或者非遥控开启),设置客厅的智能空调的开启温度,设置客厅的智能空调的开启的时间等等。
示例性的,电子设备100可接收用户针对开启控件312的输入操作,那么在中枢控制设备识别到上述语音指令后,中枢控制设备将控制客厅的智能空调开启。
示例性的,电子设备100可以接收用户针对开启节能模式控件313的输入操作,那么在中枢控制设备识别到上述语音指令后,中枢控制设备将控制客厅的智能空调以节能模式开启。节能模式可以理解为,客厅的智能空调可以根据当前的温度智能的调节空调的温度,或者客厅的智能空调也可以根据当前的温度智能的调节空调的开启时间,在温度适宜时,可以提示用户是否需要关闭智能空调等,达到节能的目的。
示例性的,电子设备100可以接收用户针对遥控开启控件314或者遥控关闭控件315的输入操作,那么在中枢控制设备识别到语音指令后,中枢控制设备不会控制客厅的智能空调开启或关闭。只有用户操作空调遥控器才能控制客厅的智能空调开启或关闭。
示例性的,电子设备100可以接收用户针对温度调节区域316的输入操作,调节温度开启的温度。当在中枢控制设备识别到开启语音指令时,中枢控制设备可以控制客厅的智能空调开启,并且智能空调的温度为26℃。
示例性的,电子设备100可以接收用户针对定时控件317的输入操作,电子设备100可以设置在一定时间后开启客厅的智能空调。例如,当在中枢控制设备识别到上述语音指令时,中枢控制设备可以控制客厅的智能空调在5分钟或者10分钟后开启。这里的时间可以是用户自定义的。
示例性的,电子设备100可以接收用户针对定时控件317的输入操作,电子设备100可以设置在客厅的智能空调开启后,在一定时间后自动关闭智能空调。例如,当在中枢控制设备识别到上述语音指令时,中枢控制设备可以控制客厅的智能空调在3小时或者4分钟后自动关闭。这里的时间可以是用户自定义的。
示例性的,当用户设置好该情景模式下的触发条件和执行的任务之后,电子设备100将显示如图3J示的用户界面3100。用户界面3100可以包括用户创建的情景模式的名称(“例如回家”),触发条件可以包括“当点击此情景卡片时”或者“当说出语音指令“小艺小艺,我回家了”时”。当满足该触发条件时,执行的任务可以包括“打开客厅的智能空调,并调节至26℃”、“打开客厅的智能空气净化器”和“打开客 厅的智能电灯,并调节至暖白”。
如图3J示,确定控件3101可以接收用户的输入操作(例如单击操作),电子设备100将“回家”模式下的智能家居设备联动方案保存。之后,电子设备100将显示如图3K所示的用户界面3200。
用户界面3200包括已创建的场景(例如“睡眠”)的卡片301,用户界面3200还包括新建的场景(例如“回家”)的卡片3201。
不仅限于通过图3A-图3J所示的方式创建智能家居设备联动方案。在一些实施例中,智慧生活APP中也可以包括某个场景下,一个或多个智能家居设备的联动方案,用户可以直接选择设置为该场景下一个或多个智能家居设备的联动方案,不需要用户在一个的去设置每个智能家居设备的工作模式,节省用户的操作。
在智能家居设备联动方案设置好之后,在确定出时间、地点、用户指令满足场景的触发条件后,中枢控制设备可以控制各个智能家居设备以预设的工作模式工作。
在智能家居设备可以周期性地将本地设备上的使用数据发送至中枢控制设备,中枢控制设备将智能家居设备的使用数据上报中服务器。这样,服务器可以汇总不同的智能家居设备在一段时间内的使用数据。
其中,智能家居设备的使用数据包括但不仅限于:智能家居设备的使用时间、智能家居设备的工作模式、智能家居设备的使用用户的身份、智能家居设备的使用时长等。智能家居设备的工作模式可以指的是智能家居设备的工作状态,例如智能空调的开启温度、智能大屏的开启音量等等。
例如,智能空调可以将使用数据发送至中枢控制设备、智能跑步机可以将使用数据发送至中枢控制设备、智能空气净化器可以将使用数据发送至中枢控制设备。中枢控制设备再将智能空调的使用数据、智能跑步机的使用数据、智能空气净化器的使用数据发送至服务器。
可选的,智能家居设备可以是周期性地将使用数据发送至中枢控制设备的,例如智能家居设备在工作五次之后,将该五次的使用数据发送至中枢控制设备。智能家居设备也可以在每次工作完之后,将该一次的使用数据发送至中枢控制设备。
表1

表1示例性示出了一周内,家庭里只有第一用户,第一用户针对各个智能家居设备的使用数据的情况。例如,在“回家”场景中,星期一至星期四,第一用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏和客厅的智能电灯,其中,晚上18:30,客厅的智能空调自动开启,且温度在23摄氏度。18:30,客厅的智能电灯自动开启。20:30,客厅的智能大屏自动开启,播出的是电影频道。22:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。星期五,第一用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏和客厅的智能电灯,其中,18:30,客厅的智能空调自动开启,且温度在23摄氏度。18:30,客厅的智能电灯自动开启。20:30,客厅的智能大屏自动开启,播出的是电影频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。星期六至星期天,第一用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏和客厅的智能电灯,其中,早上10:00,客厅的智能空调自动开启,且温度在23摄氏度。晚上18:00,客厅的智能电灯自动开启。晚上17:00,客厅的智能大屏自动开启,播出的是电影频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。
若在某些时间段,家庭里的人员变化(也可以说是用户变化)、家庭里的智能家居设备类型变化、那么家庭里的智能家居设备联动方案也会发生变化。
表2

表2示出了在家庭里的用户变化之后,即家里有第一用户和第二用户,第一用户和第二用户针对各个智能家居设备的使用情况。例如,在“回家”场景中,星期一至星期五,第一用户和第二用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏和客厅的智能电灯,其中,14:30,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。17:30,客厅的智能大屏自动开启,播出的是新闻频道。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。在“回家”场景中,星期六至星期天,第一用户和第二用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏和客厅的智能电灯,其中,早上10:00,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。17:30,客厅的智能大屏自动开启,播出的是新闻频道。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。
从表2和表1可以看出,家庭里的人员变化后,各个智能家居设备的使用情况也发生了变化。
表3

表3示例性示出了在家庭里的智能家居设备的类型发生变化后,第一用户针对各个智能家居设备的使用情况。例如,在“回家”场景中,星期一至星期四,第一用户使用的智能家居设备类型包括客厅的智能 空调、客厅的智能大屏、客厅的智能电灯和客厅的智能空气净化器,其中,18:30,客厅的智能空调自动开启,且温度在23摄氏度。18:30,客厅的智能电灯自动开启。18:30,客厅的智能空气净化器自动开启。20:30,客厅的智能大屏自动开启,播出的是电影频道。22:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭、客厅的智能空气净化器关闭。在“回家”场景中,星期五,第一用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯和客厅的智能空气净化器,其中,18:30,客厅的智能空调自动开启,且温度在26摄氏度。18:30,客厅的智能电灯自动开启。18:30,客厅的智能空气净化器自动开启。20:30,客厅的智能大屏自动开启,播出的是电影频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭、客厅的智能空气净化器关闭。在“回家”场景中,星期六至星期天,第一用户使用的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯和客厅的智能空气净化器,其中,早上10:00,客厅的智能空调自动开启,且温度在23摄氏度。早上10:00,客厅的智能空气净化器自动开启。晚上18:00,客厅的智能电灯自动开启。晚上17:00,客厅的智能大屏自动开启,播出的是电影频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭、客厅的智能空气净化器关闭。
需要说明的是,上述描述的用户变化、智能家居设备的类型变化后,各个智能家居设备的使用数据也发生变化,还可以是其他的因素变化导致各个智能家居设备的使用数据发生变化,本申请实施例对此不做限定。
服务器在接收到智能设备的使用数据后,对智能设备的使用数据进行分析,基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型变化中的一种或多种对智能家居设备联动方案进行优化。
其中,智能家居设备的使用数据变化包括但不仅限于智能家居设备的使用时间变化、智能家居设备的使用时长变化、智能家居设备的工作模式变化、智能家居设备的使用用户的身份变化等。
环境变化包括但不仅限于温度变化、湿度变化、光照强度变化、日夜变化等等。
用户变化包括但不仅限于用户身份变化,用户身份包括不同的性别用户、不同的年龄用户等。
设备类型变化包括家庭里的智能家居设备的类型增加、智能家居设备的类型减少、智能家居设备的数量增加、智能家居设备的数量减少等。
其中,用户变化可以基于以下任意一种或多种方式得到。
方式一:通过连接上家庭里的无线网或或者蓝牙的设备数量识别到家庭里的人员变化。
一般一个用户使用一个设备。家庭里的智能家居设备(例如路由器)确定出与之连接的设备数量以及设备类型。在某个时间段,路由器确定出连接上路由器的设备数量增多,且增加的设备在一定时间内(例如一个星期内)均与路由器建立了连接,那么路由器可以确定出家庭里的人员增加了,增加的人员数量为新增的设备数量。
例如,父母的手机连接上了家庭里的路由器,且在一周内均与家庭里的路由器建立过连接,那么路由器可以确定出家庭里的人员变化了,新增了两个用户。路由器可以将新增的人员数量发送至中枢控制设备,以使得中枢控制设备获取到家庭的人员变化信息。
方式二:通过智能门锁采集的人脸图像数量或者指纹图像数量识别带家庭里的人员变化。
智能门锁通过安装的智能摄像头或者指纹识别器识别到人员数量。在某个时间段,智能门锁通过智能摄像头或者指纹识别器确定出人脸图像或者指纹图像的数量增多,且在一定时间内(例如一个星期内)均有新增的人脸图像或者指纹图像,那么智能门锁可以确定出家庭里的人员增加了,增加的人员数量为新增的人脸图像数量或者指纹图像数量。
例如,父母通过人脸识别或者指纹识别开门,智能门锁会保存的人脸图像或者指纹图像。若在一定时间内智能门锁均识别到父母的人脸图像或者指纹图像,那么智能门锁可以确定出家庭里的人员变化了,新增了两个用户。智能门锁可以将新增的人员数量发送至中枢控制设备,以使得中枢控制设备获取到家庭的人员变化信息。
方式三:家庭账户里关联的家庭成员变化。
同一个家庭账号可以绑定一个或多个家庭成员,不同的家庭成员可以使用该同一个家庭账号对家庭里的智能家居设备进行控制。
用户可以在家庭账号里增加新成员,中枢控制设备确定出家庭账号里的成员数量增加后,确定出家庭里的人员发生了变化。
例如,父母来家。用户在家庭账号里新增了父母,那么中枢控制设备确定出家庭里新增的人员为父母。
上述方式一、方式二和方式三示例性示出了中枢控制设备如何确定出家庭里的人员增加的几种方式,中枢控制设备还可以基于其他的方式确定出家庭里的人员增加,本申请实施例对此不做限定。
需要说明的是,中枢控制设备如何确定出家庭里的人员减少的具体实现,和中枢控制设备如何确定出家庭里的人员增加的实现方式类似,本申请实施例在此不再赘述。
接下来介绍服务器如何基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型变化中的一种或多种对智能家居设备联动方案进行优化的。
在中枢控制设备在获取到一个或多个智能家居设备的使用数据后,中枢控制设备将一个或多个智能家居设备的使用数据发送至服务器。中枢控制设备可以基于一定时间(例如一个月内)内的一个或多个智能家居设备的使用数据对一个或多个智能家居设备的使用频率进行分析,中枢控制设备确定出之前的智能家居设备联动方案的使用频率低于预设值(例如百分之六十),则中枢控制设备可以向服务器申请获取优化的智能家居设备联动方案。服务器可以基于一个或多个智能家居设备的使用数据,生成优化后的智能家居设备联动方案,并将优化后的智能家居设备联动方案发送至中枢控制设备。
可选的,在中枢控制设备获取到一个或多个智能家居设备的使用数据后,中枢控制设备将一个或多个智能家居设备的使用数据发送至服务器。服务器在获取到一个或多个智能家居设备的使用数据后,服务器可以基于一定时间(例如一个月内)内的一个或多个智能家居设备的使用数据对一个或多个智能家居设备的使用频率进行分析,服务器确定出之前的智能家居设备联动方案的使用频率低于预设值(例如百分之六十),服务器可以基于一个或多个智能家居设备的使用数据,生成优化后的智能家居设备联动方案,并将优化后的智能家居设备联动方案发送至中枢控制设备。
服务器在获取到智能家居设备的使用数据后,服务器可以基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型变化中的一种或多种,对用户的行为习惯进行分析,确定出用户对各个智能家居设备的使用频率。用户对智能家居设备的使用频率,即用户在什么时间以什么工作模式使用智能家居设备的。
在一种可能的实现方式中,服务器可以基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型变化中的一种或多种,对智能家居设备各个工作模式的使用频率进行分析,基于智能家居设备各个工作模式的使用频率大于预设频率的使用频率,生成优化后的智能家居设备联动方案。
例如,家庭里的智能空调的工作模式包括动作模式一、工作模式二和工作模式三。其中,工作模式一的使用频率为50%,工作模式二的使用频率为75%,工作模式三的使用频率为87%。
再例如,家庭里的智能空气净化器的工作模式包括动作模式一、工作模式二和工作模式三。其中,工作模式一的使用频率为52%,工作模式二的使用频率为77%,工作模式三的使用频率为90%。
再例如,家庭里的智能扫地机器人的工作模式包括动作模式一和工作模式二。其中,工作模式一的使用频率为32%,工作模式二的使用频率为40%。
预设频率为60%,则服务器可以基于智能空调的各个工作模式的使用频率和智能空气净化器的各个工作模式的使用频率,生成不同的优化后的智能家居设备联动方案。
需要说明的是,上述不同的智能家居设备,工作模式各不相同。例如智能空调的工作模式可以指的智能空调的开启/关闭时间、智能空调的开启温度、智能空调的工作时间等等。智能空气净化器的工作模式可以指的智能空气净化器开启/关闭时间、智能空气净化器的工作时间等等。智能扫地机器人的工作模式可以指的智能扫地机器人开启/关闭时间、智能扫地机器人的工作时间等等。也就是说,智能空调的工作模式一与智能空气净化器的工作模式一和智能扫地机器人的工作模式一各不相同。
其中,优化后的智能家居设备联动方案一包括:家庭里的智能空调的工作模式为工作模式三,家庭里的智能空气净化器的工作模式为工作模式三。
优化后的智能家居设备联动方案二包括:家庭里的智能空调的工作模式为工作模式二,家庭里的智能空气净化器的工作模式为工作模式二。
可选的,若家庭里有新增的智能家居设备,则在服务器生成优化后的智能家居设备联动方案中,可以 包括新增的智能家居设备。在一些实施例中,若有新增的智能家居设备,则服务器在生成优化后的智能家居设备联动方案时,可以不考虑该新增的智能家居设备的使用频率。这样,可以提高用户针对新增的智能家居设备的使用频率,避免新增的智能家居设备闲置。
可选的,若某些智能家居设备的使用频率低于预设频率,则服务器在生成优化的智能家居设备联动方案时,优化的智能家居设备联动方案中包括的设备类型可以不包括该智能家居设备,例如在智能家居设备联动方案一和智能家居设备联动方案二中涉及的智能家居设备不包括智能扫地机器人。
其中,优化后的智能家居设备联动方案一的评分大于优化后的智能家居设备联动方案二的评分。智能家居设备联动方案的评分可以理解为智能家居设备联动方案与用户行为习惯的匹配度。优化后的智能家居设备联动方案一的评分大于优化后的智能家居设备联动方案二的评分,可以理解为优化后的智能家居设备联动方案一与用户行为习惯的匹配度大于优化后的智能家居设备联动方案二与用户行为习惯的匹配度。智能家居设备联动方案与用户的行为习惯的匹配度越高,说明用户使用该智能家居设备联动方案的可能性越高。
需要说明的是,服务器还可以基于其他的方式得到优化后的智能家居设备联动方案,本申请实施例对此不做限定。
表4
表4示出了在家庭里的智能家居设备类型没有变化的情况下,服务器生成的几种智能家居设备联动方案。
例如,在“回家”场景中,优化方案一涉及的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯。优化方案一中智能家居设备联动方案具体为:非周末时间:14:30,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。17:30,客厅的智能大屏自动开启,播 出的是新闻频道。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。周末时间:早上10:00,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。17:30,客厅的智能大屏自动开启,播出的是新闻频道。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。
优化方案二涉及的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯。优化方案二中智能家居设备联动方案具体为:非周末时间:10:30,客厅的智能空调自动开启,且温度在25摄氏度。17:00,客厅的智能电灯自动开启。16:30,客厅的智能大屏自动开启,播出的是新闻频道。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。周末时间:早上10:00,客厅的智能空调自动开启,且温度在24摄氏度。19:00,客厅的智能电灯自动开启。18:00,客厅的智能大屏自动开启,播出的是新闻频道。23:00之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。
可选的,用户使用优化方案一的概率大于用户使用优化方案二的概率。
表5
表5示出了在家庭里的智能家居设备类型增加(例如新增客厅的智能空气净化器)的情况下,服务器生成的几种智能家居设备联动方案。
例如,在“回家”场景中,优化方案一涉及的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯和客厅的智能空气净化器。优化方案一中智能家居设备联动方案具体为:非周末时间:18:30,客厅的智能空调自动开启,且温度在23摄氏度。18:30,客厅的智能电灯自动开启。18:30,客厅的智能空气净化器自动开启。20:30,客厅的智能大屏自动开启,播出的是电影频道。22:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭。周末时间:早上10:00,客厅的智能空调自动开启,且温度在23摄氏度。早上10:00,客厅的智能空气净化器自动开启。晚上18:00,客厅的智能电灯自动开启。晚上17:00,客厅的智能大屏自动开启,播出的是电影频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏自动关闭。
优化方案二涉及的智能家居设备类型包括客厅的智能空调、客厅的智能大屏、客厅的智能电灯和客厅的智能空气净化器。优化方案二中智能家居设备联动方案具体为:非周末时间:19:30,客厅的智能空调自动开启,且温度在25摄氏度。19:30,客厅的智能电灯自动开启。19:30,客厅的智能空气净化器自动开启。21:10,客厅的智能大屏自动开启,播出的是电视频道。23:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏关闭、客厅的智能空气净化器关闭。周末时间:早上08:00,客厅的智能空调自动开启,且温度在23摄氏度。早上08:00,客厅的智能空气净化器自动开启。晚上18:00,客厅的智能电灯自动开启。晚上17:00,客厅的智能大屏自动开启,播出的是电视频道。01:30之后,客厅的智能空调关闭、客厅的智能电灯关闭、客厅的智能大屏、客厅的智能空气净化器自动关闭。
表6
表6示出了在家庭里的智能家居设备类型减少(例如减少客厅的智能大屏)的情况下,服务器生成的几种智能家居设备联动方案。
例如,在“回家”场景中,优化方案一涉及的智能家居设备类型包括客厅的智能空调、客厅的智能电灯。优化方案一中智能家居设备联动方案具体为:非周末时间:14:30,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭。周末时间:早上10:00,客厅的智能空调自动开启,且温度在26摄氏度。17:30,客厅的智能电灯自动开启。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭。
优化方案二涉及的智能家居设备类型包括客厅的智能空调、客厅的智能电灯。优化方案二中智能家居设备联动方案具体为:非周末时间:10:30,客厅的智能空调自动开启,且温度在25摄氏度。17:00,客厅的智能电灯自动开启。22:00之后,客厅的智能空调关闭、客厅的智能电灯关闭。周末时间:早上10:00, 客厅的智能空调自动开启,且温度在24摄氏度。19:00,客厅的智能电灯自动开启。23:00之后,客厅的智能空调关闭、客厅的智能电灯关闭。
需要说明的是,表4、表5和表6仅是示例性说明了服务器在不同情况下,生成的智能家居设备联动方案。在其他实施例中,服务器还可以生成其他的智能家居设备联动方案,本申请实施例对此不做限定。
这样,服务器可以基于周末和非周末时间生成不同的智能家居设备联动方案,用户在周末和非周末的行为习惯可能不同,更符合用户在不同时间的行为习惯,提高了用户体验。
在其他实施例中,服务器也可以不按照周末和非周末时间生成不同的智能家居设备联动方案,本申请实施例对此不做限定。
前述实施例介绍了服务器在获取到智能家居设备的使用数据后,服务器可以基于智能家居设备的使用数据变化、环境变化、用户变化、设备类型变化中的一种或多种,对用户的行为习惯进行分析,确定出用户对各个智能家居设备的使用频率。也即用户股的行为习惯变化后,服务器为用户生成服务用户行为习惯的智能家居设备联动方案。
在一些实施例中,服务器在获取到智能家居设备的使用数据后,服务器也可以在监测到在一定时间(例如一个月)内,智能家居设备的使用数据没有发生变化,则服务器可以向用户推荐优化的智能家居设备联动方案,以使得用户尝试优化的智能家居设备联动方案,体验不同的日常生活。
可选的,在中枢控制设备在获取到一个或多个智能家居设备的使用数据后,中枢控制设备将一个或多个智能家居设备的使用数据发送至服务器。中枢控制设备确定出一定时间(例如一个月内)内的一个或多个智能家居设备的使用数据没有发生变化,则中枢控制设备可以向服务器申请获取优化的智能家居设备联动方案。服务器可以向中枢控制设备推荐优化的智能家居设备联动方案。
可选的,在中枢控制设备获取到一个或多个智能家居设备的使用数据后,中枢控制设备将一个或多个智能家居设备的使用数据发送至服务器。服务器在获取到一个或多个智能家居设备的使用数据后,服务器确定出一定时间(例如一个月内)内一个或多个智能家居设备的使用数据没有发生变化,则服务器可以推荐优化的智能家居设备联动方案,并将优化的智能家居设备联动方案发送至中枢控制设备。
可选的,优化的智能家居设备联动方案,可以是服务器中汇总的用户使用概率大于预设概率的智能家居设备联动方案。
服务器中的保存的智能家居设备联动方案,可以来源于以下方面:
方面一:服务器中预设的场景以及每个场景下的智能家居设备联动方案。
也就是说,开发者基于经验和分析,预设好了场景下用户可能会使用的智能家居设备联动方案。例如,在晨起场景中,用户在家可能会的智能家居设备联动方案为音箱播放音乐、智能窗帘开启等。在观影场景中,用户可能使用的服务是大屏播放电影、窗帘关闭和电灯关闭等等。
方面二:用户的使用记录同步到服务器,服务器获取到不同的用户在不同的场景下使用的智能家居设备联动方案。
可选的,用户可以选择是否中枢控制设备是够将各个智能家居设备的使用数据同步至服务器。即电子设备100可以显示提示信息,提示信息用于提示用户是否同意中枢控制设备将各个智能家居设备的使用数据同步至服务器。若用户拒绝,则中枢控制设备不会将各个智能家居设备的使用数据同步至服务器。若用户同意,则中枢控制设备可以周期性地将各个智能家居设备的使用数据同步至服务器。这样,电子设备通过征求用户的权限,再将各个智能家居设备的使用数据同步至服务器,尊重了用户的隐私。
也就是说,用户在使用完智能家居设备之后,智能家居设备将使用记录发送至中枢控制设备,中枢控制设备再将使用记录发送至服务器。可以理解的是,在同一个场景下,不同的用户使用的智能家居设备联动方案可能不同。例如,在晨起场景中,用户A喜欢听歌,那么用户A在晨起场景中使用的智能家居设备联动方案可以是音箱播放音乐、智能窗帘打开。用户B不喜欢运动,那么用户B在晨起场景中使用的智能家居设备联动方案可以是智能窗帘打开。用户C喜欢运动,那么用户C在晨起场景中使用的智能家居设备联动方案可以是智能跑步机开启、智能窗帘打开。
服务器在获取到不同的用户的使用记录后,将不同的用户的使用记录进行汇总,得到在每一个场景下,用户可能使用的智能家居设备联动方案。例如,服务器在获取到用户A、用户B和用户C上传的使用记录后,将用户A、用户B和用户C的使用记录进行汇总,得到在晨起场景中,用户可能使用的智能家居设备联动方案为音箱播放音乐、智能跑步机开启、智能窗帘打开。
方面三:用户共享的在预设场景下使用的智能家居设备联动方案。
用户可以在应用(例如智慧生活)中手动编辑用户想要的场景中,使用的智能家居设备联动方案。之后,当用户认为该设定的效果较好时,用户可以将自己设定的场景以及场景下的智能家居设备联动方案共享在该应用的共享界面中,其他用户登录相同的应用(例如智慧生活)后,其他用户可以在共享界面中看到其他用户共享的场景以及场景下的智能家居设备联动方案。并参考共界面面中的场景以及场景下的智能家居设备联动方案为自己设定场景下的智能家居设备联动方案合。
用户在将自己设定的场景以及场景下的智能家居设备联动方案共享在该应用的共享界面中后,电子设备会将用户设定的场景以及场景下的智能家居设备联动方案同步至服务器,服务器可以获取到用户设定的场景以及场景下的智能家居设备联动方案。
不限于上述列举的几种获取用户数据的方式,在一些实施例中,服务器还可以通过其他方式来采集用户数据,例如还可以通过对测试数据进行分析得到用户数据。测试数据可以是开发者可以在一定时间内,通过不同用户(也可以称为测试者)的使用记录进行分析汇总、得到预设场景下的不同用户使用的智能家居设备联动方案,得到用户数据。服务器还可以通过其他方式来采集用户数据,本申请实施例对此不做限定。
服务器在获取到每个场景下预设的智能家居设备联动方案后,可以基于其他用户针对每个场景下不同的智能家居设备联动方案的使用频率,确定出每个场景下用户的使用频率大于预设频率的智能家居设备联动方案,并将该场景下用户使用频率大于预设频率的智能家居设备联动方案发送至中枢控制设备。
可选的,每个场景下用户的使用频率大于预设频率的智能家居设备联动方案的数量可以是一个或多个,该多个智能家居设备联动方案的评分不同,智能家居设备联动方案的评分越高,与用户的行为习惯的匹配度越高,用户的使用概率越大,本申请实施例对此不做限定。
可选的,优化的智能家居设备联动方案,也可以是相似用户使用的智能家居设备联动方案。
在其他实施例中,服务器也可以基于第一用户在每个场景下使用的智能家居设备联动方案,匹配到相似用户使用的智能家居设备联动方案。这样,相似用户的行为习惯也类似,服务器向中枢控制设备推荐相似用户使用的智能家居设备联动方案,可以提高推荐的准确性。
具体的,不同用户家里里的中枢控制设备周期性的将智能家居设备联动方案发送至服务器。其中,智能家居设备联动方案指的是:不同的场景中(也可以理解为不同的时间、地点和设备状态下),智能家居设备的工作模式。示例性的,在回家场景中,智能家居设备联动方案包括但不仅限于:客厅的智能空调开启,且开启温度在26摄氏度。客厅的智能空气净化器开启。客厅的智能门灯开启。在睡眠场景中,智能家居设备联动方案包括但不仅限于:卧室的智能窗帘关闭、客厅的智能空调关闭、客厅的智能空气净化器关闭等。
例如,用户A所在的家庭里的中枢控制设备周期性地将用户A所在的家庭里里不同场景下智能家居设备联动方案的发送至服务器。用户B所在的家庭里的中枢控制设备周期性地将用户B所在的家庭里里不同场景下智能家居设备联动方案的发送至服务器。用户C所在的家庭里的中枢控制设备周期性地将用户C所在的家庭里里不同场景下智能家居设备联动方案的发送至服务器。
服务器接收不同的中枢控制设备上传的不同家庭里的智能家居设备联动方案。例如,服务器接收用户A所在的家庭里的中枢控制设备发送的不同场景下的智能家居设备联动方案。服务器接收用户B所在的家庭里的中枢控制设备发送的不同场景下的智能家居设备联动方案。服务器接收用户C所在的家庭里的中枢控制设备发送的不同场景下的智能家居设备联动方案。
服务器在接收到不同的中枢控制设备上传的不同场景下智能家居设备联动方案后,服务器将对不同用户使用的智能家居设备联动方案进行分类和汇总,得到同一个场景下,不同用户使用的智能家居设备联动方案。之后,服务器将计算同一个场景下,不同用户使用的智能家居设备联动方案的相似度。
例如,第一用户在回家场景中使用的是智能家居设备联动方案一,用户A在回家场景中使用的是智能家居设备联动方案A1,用户B在回家场景中使用的是智能家居设备联动方案B1,用户C在回家场景中使用的是智能家居设备联动方案C1。
服务器可以分别计算智能家居设备联动方案一和智能家居设备联动方案A1、智能家居设备联动方案B1、智能家居设备联动方案C1的相似度。并确定出相似度大于预设值(例如70%)的相似用户。
示例性的,服务器确定出第一用户的相似用户为用户B和用户C。
在确定出相似用户之后,服务器可以推荐出相似用户使用的其他智能家居设备联动方案。相似用户使用的其他智能家居设备联动方案与之前第一用户使用的智能家居设备联动方案不同。
可选的,相似用户使用的其他智能家居设备联动方案与之前第一用户使用的智能家居设备联动方案之间的相似度低于预设值。
示例性的,在服务器确定出第一用户的相似用户为用户B和用户C之后,服务器将用户B在回家场景中使用的是智能家居设备联动方案B2,用户C在回家场景中使用的是智能家居设备联动方案C2发送至中枢控制设备,以使得中枢控制设备可以将智能家居设备联动方案B2和智能家居设备联动方案C2推荐给第一用户。
其中,智能家居设备联动方案一与智能家居设备联动方案B2、智能家居设备联动方案C2不用。
可选的,智能家居设备联动方案一与智能家居设备联动方案B2、智能家居设备联动方案C2不用之间的相似度低于预设值。
可选的,智能家居设备联动方案B2比智能家居设备联动方案C2的评分高,即智能家居设备联动方案B2与第一用户行为习惯的匹配度高于智能家居设备联动方案C2与第一用户行为习惯的匹配度。
这样,服务器可以向用户推荐相似用户使用的智能家居设备联动方案,提高服务器推荐的智能家居设备联动方案的准确性。
接下来结合UI图介绍电子设备100如何显示优化的智能家居设备联动方案的。
在中枢控制设备接收到服务器发送的优化的智能家居设备联动方案后,中枢控制设备可以将优化的智能家居设备联动方案通过电子设备100显示给第一用户查看。
可选的,优化的智能家居设备联动方案的数量可以包括一个或多个,以供用户选择。
示例性地,优化的智能家居设备联动方案数量为3个,其中,优化的智能家居设备联动方案一的评分高于优化的智能家居设备联动方案二的评分,优化的智能家居设备联动方案二的评分高于优化的智能家居设备联动方案三的评分,优化的智能家居设备联动方案三的评分高于预设值。
图4A-图4F示例性示出了一种电子设备100显示优化的智能家居设备联动方案的UI图。
其中,图4A示出了电子设备100显示优化的智能家居设备联动方案的示意图。
在中枢控制设备获取到服务器发送的优化的智能家居设备联动方案后,中枢控制设备可以通过电子设备100显示优化的智能家居设备联动方案,以提示用户是否需更新智能家居设备联动方案。
如图4A所示,电子设备100可以在主界面的上方悬浮显示提示栏401,提示栏401内包括提示信息“是否需更新智能家居设备联动方案?”。该提示栏401用于提示用户是否查看并更新对应场景下的智能家居设备联动方案。
其中,提示栏401中包括选项402、选项403和选项404。其中,电子设备100可以接收用户针对选项402的输入操作(例如单击),响应于用户的输入操作,电子设备100可以显示方案一(或者称为优化的智能家居设备联动方案一)的详情内容。电子设备100也可以接收用户针对选项403的输入操作(例如单击),响应于用户的输入操作,电子设备100可以显示方案二(或者称为优化的智能家居设备联动方案二)的详情内容。电子设备100也可以接收用户针对选项404的输入操作(例如单击),响应于用户的输入操作,电子设备100可以显示方案三(或者称为优化的智能家居设备联动方案三)的详情内容。
图4A示出了另一种电子设备100显示优化的智能家居设备联动方案的示意图。
如图4B所示,在电子设备100接收用户操作显示智慧生活应用的主界面后,电子设备100可以在智慧生活应用的主界面中显示提示栏401,提示栏401用于提示用户是否查看并更新对应场景下的智能家居设备联动方案。对于提示栏401的具体描述,可以参考图4A中的描述。本申请实施例在此不再赘述。
图4C示出了又一种电子设备100显示优化的智能家居设备联动方案的示意图。
如图4C所示,电子设备100可以在下拉通知栏中显示提示信息405,提示信息405用于提示用户是否查看并更新对应场景下的智能家居设备联动方案。如图4C所示,电子设备100可以接收用户针对提示信息405的输入操作(例如单击),响应于用户的输入操作,电子设备100可以显示如图4A所示的提示栏401或者图4B所示的提示栏401。
不仅限于图4A、图4B和图4C所示的电子设备100显示提示信息以提示用户是否查看并更新对应场景下的智能家居设备联动方案。电子设备100还可以通过其他的方式提示用户是否查看并更新对应场景下的智能家居设备联动方案,本申请实施例在此不再赘述。
在电子设备100显示图4A或者图4B或者图4C所示的提示信息后,电子设备100可以查看优化的智能家居设备联动方案的详情内容,并选择更改优化的智能家居设备联动方案中的某些设置,或者基于优化的智能家居设备联动方案更新智能家居设备联动方案。
如图4D所示,电子设备100在主界面上显示提示栏401之后,电子设备100可以接收用户针对选项402的输入操作,响应于用户的输入操作,电子设备100可以显示图4E所示的提示信息406,提示信息406中显示了方案一(或者称为优化的智能家居设备联动方案一)的详情内容。
如图4E所示,优化的智能家居设备联动方案一包括以下内容:客厅的空调已打开,且温度已调节至26摄氏度。客厅的空气净化器已开启。客厅的电灯已开启。这样,通过图片的方式显示智能家居设备联动方案,用户可以生动直观地观察到优化的智能家居设备联动方案一的详情内容。
提示信息406中还包括控件407和控件408。其中,电子设备100可以接收用户针对控件407的输入操作(例如单击),响应于用户的输入操作,电子设备100可以将优化的智能家居设备联动方案一设置为“回家”场景下的智能家居设备联动方案。
电子设备100也可以接收用户针对控件408的输入操作(例如单击),响应于用户的输入操作,电子设备100可以将更改优化的智能家居设备联动方案一中某些智能家居设备的工作模式,或者添加智能家居设备,或者减少智能家居设备。示例性的,用户可以将优化的智能家居设备联动方案一中客厅的空调的温度更改为24℃。用户可以将更改后的优化的智能家居设备联动方案一设置为“回家”场景下的智能家居设备联动方案。
前述图4A-图4E实施例示出了电子设备100在接收到中枢控制设备发送的优化的智能家居设备联动方案后,电子设备100先弹窗提示用户查看优化的智能家居设备联动方案后再更新“回家”场景下的智能家居设备联动方案。
在一些实施例中,电子设备100也可以在接收到中枢控制设备发送的优化的智能家居设备联动方案后,先基于优化的智能家居设备联动方案更新“回家”场景下的智能家居设备联动方案后,再弹窗提示用户是否接受优化的智能家居设备联动方案挥着是否需恢复之前的智能家居设备联动方案。
可选的,若电子设备100在接收到中枢控制设备发送的优化的智能家居设备联动方案后,若优化的智能家居设备联动方案包括多个方案,例如包括优化的智能家居设备联动方案一、优化的智能家居设备联动方案二和优化的智能家居设备联动方案三,那么电子设备100可以从多个方案中筛选出一个方案,并基于筛选出的方案更新智能家居设备联动方案。示例性的,该多个方案中每个方案的评分不同,可以从多个方案中筛选出评分最高的一个方案,并基于评分最高的一个方案更新智能家居设备联动方案。可以理解的是,评分最高的一个方案,与用户的行为习惯的匹配度也最高,那么用户的使用概率也更大。这样,可以提高推荐的准确性。
如图4F所示,电子设备100从多个方案中筛选出评分最高的一个方案为优化的智能家居设备联动方案一,在电子设备100基于优化的智能家居设备联动方案一更新智能家居设备联动方案后,电子设备100可以显示提示信息409,提示信息409用于提示用户智能家居设备联动方案已更新,是否查看详情内容或者恢复之前的设置。
提示信息409中包括选项410和选项411。其中,电子设备100可以接收用户针对选项410的输入操作(例如单击),响应于用户的输入操作,电子设备100可以显示如图4E所示的提示信息406,以使得用户可以查看优化的智能家居设备联动方案一的详情内容,或者用户也可以修改优化的智能家居设备联动方案一,并基于修改后的优化的智能家居设备联动方案一更新智能家居设备联动方案。
电子设备100也可以接收用户针对选项411的输入操作(例如单击),响应于用户的输入操作,响应于用户的输入操作,电子设备100可以取消更新,即恢复至基于优化的智能家居设备联动方案一更新之前的智能家居设备联动方案。
图5示出了本申请实施例提供的一种智能家居设备联动方案推荐方法的示意图。
S501、一个或多个智能家居设备将使用数据发送至中枢控制设备。
中枢控制设备基于智能家居设备联动方案一对一个或多个智能家居设备进行控制。
第一用户所在的家庭里包括一个或多个智能家居设备,由于用户的行为习惯发生变化、家庭里的人员数量发生变化、智能家居设备的类型和/或数量发生变化、环境变化等因素,导致一个或多个智能家居设备的工作模式也会发生变化,那么一个或多个智能家居设备实际的使用数据可能与智能家居设备联动方案一产生了差异。一个或多个智能家居设备可以周期性地将本地设备上的使用数据发送至中枢控制设备,以使得服务器可以基于使用数据对用户的行为进行分析。
S502、中枢控制设备在接收到一个或多个智能家居设备的使用数据后,确定出使用数据与智能家居设备联动方案一之间的相似度是否低于第一阈值,或者使用数据在第一时长内是否没有发生变化?
中枢控制设备在接收到一个或多个智能家居设备的使用数据后,也会把使用数据发送至服务器,以使得服务器可以基于使用数据对用户的行为习惯进行分析。
中枢控制设备还需确定出使用数据与智能家居设备联动方案一之间的相似度是否低于第一阈值,或者使用数据在第一时长内是否没有发生变化。若满足其中任意一项,中枢控制设备执行S503。否则,中枢控制设备执行S502。
S503、中枢控制设备向服务器发送第一请求。
S504、服务器生成更新的智能家居设备联动方案。
第一请求用于指示服务器生成更新的智能家居设备联动方案,并将更新的智能家居设备联动方案发送至中枢控制设备。更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案。
其中,更新的智能家居设备联动方案可以是一用户使用概率高于第一概率的智能家居设备联动方案。
新的智能家居设备联动方案也可以是第一相似用户使用的智能家居设备联动方案。
对于服务器怎么生成更新的智能家居设备联动方案的,可以参考前述实施例的描述,本申请实施例在此不再赘述。
可选的,中枢控制设备也可以不执行S502和S503。S502和S503可以被替换为如下的S502。
S502:服务器在接收到一个或多个智能家居设备的使用数据后,确定出使用数据与智能家居设备联动方案一之间的相似度是否低于第一阈值,或者使用数据在第一时长内是否没有发生变化?
服务器在接收到一个或多个智能家居设备的使用数据后,可以基于使用数据对用户的行为习惯进行分析。
在服务器确定出使用数据与智能家居设备联动方案一之间的相似度低于第一阈值,或者使用数据在第一时长内没有发生变化,则服务器生成更新的智能家居设备联动方案。
S505、服务器将更新的智能家居设备联动方案发送至中枢控制设备。
S506、中枢控制设备获取到更新的智能家居设备联动方案。
在中枢控制设备获取到服务器发送的更新的智能家居设备联动方案后,若更新的智能家居设备联动方案只包括一个智能家居设备联动方案,那么中枢控制设备可以直接将该一个智能家居设备联动方案替换为智能家居设备联动方案一,并基于该一个智能家居设备联动方案对一个或多个智能家居设备进行控制。
若更新的智能家居设备联动方案只包括两个及以上智能家居设备联动方案,那么中枢控制设备可以从两个及以上智能家居设备联动方案中筛选得到一个智能家居设备联动方案,其中该一个智能家居设备联动方案为与用户的行为习惯匹配度最高的一个智能家居设备联动方案。
在中枢控制设备更新智能家居设备联动方案后,可以执行S507和S508。
S507、中枢控制设备向电子设备100发送第一通知。
S508、电子设备100在接收到第一通知后,显示提示信息。
在中枢控制设备更新智能家居设备联动方案后,中枢控制设备向电子设备100发送第一通知,第一通知用户指示电子设备100显示提示信息,该提示信息用于提示用户智能家居设备联动方案已更新,是否需查看详情或者恢复之前的设置。
可选的,在中枢控制设备获取到服务器发送的更新的智能家居设备联动方案后,中枢控制设备可以执 行S507和S508。
具体的,在中枢控制设备获取到服务器发送的更新的智能家居设备联动方案后,中枢控制设备向电子设备100发送第一通知,第一通知用户指示电子设备100显示提示信息,该提示信息用于用户选择并查看更新的智能家居设备联动方案,并基于更新的智能家居设备联动方案替换为智能家居设备联动方案一。
在电子设备100显示提示信息,并接收用户的选择操作后,电子设备100将用户选择的更新的智能家居设备联动方案发送至中枢控制设备,以使得中枢控制设备可以基于用户选择的更新的智能家居设备联动方案对一个或多个智能家居设备进行控制。
具体的,可以参考图4A-图4F实施例中的描述,本申请实施例在此不再赘述。
图6为本申请实施例提供的一种智能家居设备联动方案推荐方法的方法流程示意图。
S601、中枢控制设备基于第一智能家居设备联动方案对一个或多个智能家居设备进行控制。
第一智能家居设备联动方案可以是前述实施例所述的智能家居设备联动方案一。
S602、中枢控制设备获取到一个或多个智能家居设备发送的使用数据。
S603、中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案。
用户所在的家庭里包括一个或多个智能家居设备,由于用户的行为习惯发生变化、家庭里的人员数量发生变化、智能家居设备的类型和/或数量发生变化、环境变化等因素,导致一个或多个智能家居设备的工作模式也会发生变化,那么一个或多个智能家居设备实际的使用数据可能与第一智能家居设备联动方案产生了差异。一个或多个智能家居设备可以周期性地将本地设备上的使用数据发送至中枢控制设备,以使得服务器可以基于使用数据对用户的行为进行分析。
在一种可能的实现方式中,中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,具体包括:中枢控制设备在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,向服务器发送第一请求,第一请求用于指示服务器更新智能家居设备联动方案;中枢控制设备接收服务器发送的更新的智能家居设备联动方案。
可选的,服务器还用于在确定出使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案将更新的智能家居设备联动方案发送至中枢控制设备。
这样,在监测到使用数据在第一时长内没有发生变化,或者,使用数据与第一智能家居设备联动方案的相似度低于第一阈值的情况下,中枢控制设备可以请求服务器获生成更新的智能家居设备联动方案,并将更新的智能家居设备联动方案发送至中枢控制设备。
S604、中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制;其中,第一智能家居设备联动方案和一个或多个优化的智能家居设备联动方案不同。
在一种可能的实现方式中,更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;其中,第一优化的智能家居设备联动方案包括周末时间段内的智能家居设备联动方案和非周末时间段内的智能家居设备联动方案;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制,具体包括:在周末时间,中枢控制设备基于周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制,在非周末时间,中枢控制设备基于非周末时间段内的智能家居设备联动方案对一个或多个智能家居设备进行控制。
这样,用户在周末时间和非周末时间的行为习惯不同,中枢控制设备可以在周末时间和非周末时间采用不同的智能家居设备联动方案,更符合用户的行为特征。
在一种可能的实现方式中,更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
在一种可能的实现方式中,服务器,具体用于:响应于第一请求,基于使用数据、环境变化、用户变化、智能家居设备类型变化中的一种或多种,确定出更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。这样,服务器可以参考多种因素更新智能家居设备联动方案。
在一种可能的实现方式中,更新的智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案。
在一种可能的实现方式中,服务器,具体用于:基于第一智能家居设备联动方案和第二智能家居设备联动方案,确定出第一相似用户;第二智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案;确定出更新的智能家居设备联动方案为第一相似用户使用的第三智能家居设备联动方案;第三智能家居设备联动方案与第二智能家居设备联动方案不同。
这样,服务器可以推荐出相似用户使用的智能家居设备联动方案。相似用户之间的行为习惯也类型,可以提高推荐的准确性。
在一种可能的实现方式中,更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;在中枢控制设备获取到更新的智能家居设备联动方案之后,方法还包括:中枢控制设备通过第一电子设备显示第一提示信息,第一提示信息用于提示第一用户已将智能家居设备联动方案更新为第一优化的智能家居设备联动方案。
其中,第一提示信息可以是图4F所示的提示信息409。
这样,第一电子设备可以提示用户已将智能家居设备联动方案更新为第一优化的智能家居设备联动方案,并提示用户接受此方案或者恢复之前的方案。
在一种可能的实现方式中,更新的智能家居设备联动方案还包括第二优化的智能家居设备联动方案,其中,第一优化的智能家居设备联动方案与第一用户行为的匹配度高于第二优化的智能家居设备联动方案与第一用户行为的匹配度。
其中,第一优化的智能家居设备联动方案可以是图4F所示的智能家居设备联动方案一。
这样,在更新的智能家居设备联动方案包括多个方案的情况下,中枢控制设备可以推荐出评分更高的一个智能家居设备联动方案,以提高推荐的准确性。
在中枢控制设备获取到更新的智能家居设备联动方案之后,方法还包括:中枢控制设备通过第一电子设备显示第二提示信息,第二提示信息用于提示第一用户选择优化的智能家居设备联动方案。
其中,第一电子设备可以是前述实施例描述的电子设备100。
第二提示信息可以是图4A或者图4B所示的提示栏401。第二提示信息还可以是图4C所示的提示信息405。
这样,在中枢控制设备获取到更新的智能家居设备联动方案后,第一电子设备可以显示提示信息,以提示用户查看或者选择或者修改优化的智能家居设备联动方案。
在一种可能的实现方式中,第二提示信息包括第一选项;其中,第一选项用于接收第一操作,使得第一电子设备显示第一界面,第一界面包括第一选项对应的第一优化的智能家居设备联动方案的详情内容。
其中,第一选项可以是图4D所示的选项402。
第一界面可以是图4E所示的提示信息406。
这样,用户可以在第一电子设备上查看第一优化的智能家居设备联动方案的详情内容。
在一种可能的实现方式中,第一界面包括第二选项;第一选项用于接收第二操作,确定出基于第一优化的智能家居设备联动方案对一个或多个智能家居设备进行控制;中枢控制设备基于更新的智能家居设备联动方案对一个或多个智能家居设备进行控制,具体包括:中枢控制设备基于第一优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
其中,第二选项可以是图4E所示的控件407。
这样,用户在查看完第一优化的智能家居设备联动方案的详情内容后,可以将第一优化的智能家居设备联动方案设置为该场景下的智能家居设备联动方案。
在一种可能的实现方式中,第一界面还包括第三选项;第一电子设备,还用于接收并响应于针对第三选项的第三操作,将第一优化的智能家居设备联动方案更改为第三优化的智能家居设备联动方案;中枢控制设备,具体用于基于第三优化的智能家居设备联动方案对一个或多个智能家居设备进行控制。
其中,第三选项可以是图4E所示的控件408。
这样,用户在查看完第一优化的智能家居设备联动方案的详情内容的同时,可以对第一优化的智能家居设备联动方案进行修改,例如增加设备、减少设备、修改某些设备的工作模式等等。
本申请的各实施方式可以任意进行组合,以实现不同的技术效果。
在上述实施例中,可以全部或部分地通过软件、硬件、固件或者其任意组合来实现。当使用软件实现时,可以全部或部分地以计算机程序产品的形式实现。所述计算机程序产品包括一个或多个计算机指令。在计算机上加载和执行所述计算机程序指令时,全部或部分地产生按照本申请所述的流程或功能。所述计算机可以是通用计算机、专用计算机、计算机网络、或者其他可编程装置。所述计算机指令可以存储在计算机可读存储介质中,或者从一个计算机可读存储介质向另一个计算机可读存储介质传输,例如,所述计算机指令可以从一个网站站点、计算机、服务器或数据中心通过有线(例如同轴电缆、光纤、数字用户线)或无线(例如红外、无线、微波等)方式向另一个网站站点、计算机、服务器或数据中心进行传输。所述计算机可读存储介质可以是计算机能够存取的任何可用介质或者是包含一个或多个可用介质集成的服务器、数据中心等数据存储设备。所述可用介质可以是磁性介质,(例如,软盘、硬盘、磁带)、光介质(例如,DVD)、或者半导体介质(例如固态硬盘(solid state disk,SSD))等。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,该流程可以由计算机程序来指令相关的硬件完成,该程序可存储于计算机可读取存储介质中,该程序在执行时,可包括如上述各方法实施例的流程。而前述的存储介质包括:ROM或随机存储记忆体RAM、磁碟或者光盘等各种可存储程序代码的介质。
总之,以上所述仅为本发明技术方案的实施例而已,并非用于限定本发明的保护范围。凡根据本发明的揭露,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (27)

  1. 一种智能家居设备联动方案推荐系统,其特征在于,所述系统包括中枢控制设备;其中,
    所述中枢控制设备,用于基于第一智能家居设备联动方案对所述一个或多个智能家居设备进行控制;
    所述中枢控制设备,还用于获取到一个或多个智能家居设备发送的使用数据;
    所述中枢控制设备,还用于在所述使用数据在第一时长内没有发生变化,或者,所述使用数据与所述第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,所述更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案;
    所述中枢控制设备,还用于基于所述更新的智能家居设备联动方案对所述一个或多个智能家居设备进行控制;
    其中,所述第一智能家居设备联动方案和所述一个或多个优化的智能家居设备联动方案不同。
  2. 根据权利要求1所述的系统,其特征在于,所述更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;其中,所述第一优化的智能家居设备联动方案包括周末时间段内的智能家居设备联动方案和非周末时间段内的智能家居设备联动方案;
    所述中枢控制设备,具体用于:在周末时间,基于所述周末时间段内的智能家居设备联动方案对所述一个或多个智能家居设备进行控制,在非周末时间,基于所述非周末时间段内的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  3. 根据权利要求1或2所述的系统,其特征在于,所述系统还包括服务器;所述中枢控制设备,具体用于:在确定出所述使用数据在所述第一时长内没有发生变化,或者,所述使用数据与所述第一智能家居设备联动方案的相似度低于所述第一阈值的情况下,向所述服务器发送第一请求,所述第一请求用于指示所述服务器更新智能家居设备联动方案;
    所述服务器,用于响应于所述第一请求,获取到所述更新的智能家居设备联动方案;
    所述服务器,还用于将所述更新的智能家居设备联动方案发送至中枢控制设备。
  4. 根据权利要求1-3任一项所述的系统,其特征在于,所述更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
  5. 根据权利要求3所述的系统,其特征在于,所述服务器,具体用于:响应于所述第一请求,基于所述使用数据、环境变化、用户变化、智能家居设备类型变化中的一种或多种,确定出所述更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
  6. 根据权利要求1-3任一项所述的系统,其特征在于,所述更新的智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案。
  7. 根据权利要求6所述的系统,其特征在于,所述服务器,具体用于:基于所述第一智能家居设备联动方案和第二智能家居设备联动方案,确定出第一相似用户;所述第二智能家居设备联动方案为所述第一相似用户使用的智能家居设备联动方案;
    确定出所述更新的智能家居设备联动方案为所述第一相似用户使用的第三智能家居设备联动方案;所述第三智能家居设备联动方案与所述第二智能家居设备联动方案不同。
  8. 根据权利要求1-7任一项所述的系统,其特征在于,所述系统还包括第一电子设备;所述更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;
    所述第一电子设备,用于在获取到第一优化的智能家居设备联动方案后,显示第一提示信息,所述第一提示信息用于提示第一用户已将智能家居设备联动方案更新为所述第一优化的智能家居设备联动方案。
  9. 根据权利要求8所述的系统,其特征在于,所述更新的智能家居设备联动方案还包括第二优化的智能家居设备联动方案,其中,所述第一优化的智能家居设备联动方案与第一用户行为的匹配度高于所述第二优化的智能家居设备联动方案与第一用户行为的匹配度。
  10. 根据权利要求1-7任一项所述的系统,其特征在于,所述第一电子设备,还用于在获取到所述更新的智能家居设备联动方案后,显示第二提示信息,所述第二提示信息用于提示第一用户选择优化的智能家居设备联动方案。
  11. 根据权利要求10所述的系统,其特征在于,所述第二提示信息包括第一选项;所述第一电子设备,还用于接收并响应于针对所述第一选项的第一操作,显示第一界面,所述第一界面包括所述第一选项对应的第一优化的智能家居设备联动方案的详情内容。
  12. 根据权利要求11所述的系统,其特征在于,所述第一界面包括第二选项;
    所述第一电子设备,还用于接收针对所述第二选项的第二操作;
    所述中枢控制设备,具体用于基于所述第一优化的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  13. 根据权利要求11所述的系统,其特征在于,所述第一界面还包括第三选项;
    所述第一电子设备,还用于接收并响应于针对所述第三选项的第三操作,将所述第一优化的智能家居设备联动方案更改为第三优化的智能家居设备联动方案;
    所述中枢控制设备,具体用于基于所述第三优化的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  14. 一种智能家居设备联动方案推荐方法,其特征在于,所述方法包括:
    中枢控制设备基于第一智能家居设备联动方案对所述一个或多个智能家居设备进行控制;
    所述中枢控制设备获取到一个或多个智能家居设备发送的使用数据;
    所述中枢控制设备在确定出所述使用数据在第一时长内没有发生变化,或者,所述使用数据与所述第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,所述更新的智能家居设备联动方案包括一个或多个优化的智能家居设备联动方案;
    所述中枢控制设备基于所述更新的智能家居设备联动方案对所述一个或多个智能家居设备进行控制;
    其中,所述第一智能家居设备联动方案和所述一个或多个优化的智能家居设备联动方案不同。
  15. 根据权利要求14所述的方法,其特征在于,所述更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;其中,所述第一优化的智能家居设备联动方案包括周末时间段内的智能家居设备联动方案和非周末时间段内的智能家居设备联动方案;
    所述中枢控制设备基于所述更新的智能家居设备联动方案对所述一个或多个智能家居设备进行控制,具体包括:
    在周末时间,所述中枢控制设备基于所述周末时间段内的智能家居设备联动方案对所述一个或多个智能家居设备进行控制,在非周末时间,所述中枢控制设备基于所述非周末时间段内的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  16. 根据权利要求14或15所述的方法,其特征在于,所述中枢控制设备在确定出所述使用数据在第一时长内没有发生变化,或者,所述使用数据与所述第一智能家居设备联动方案的相似度低于第一阈值的情况下,获取到更新的智能家居设备联动方案,具体包括:
    所述中枢控制设备在确定出所述使用数据在第一时长内没有发生变化,或者,所述使用数据与所述第一智能家居设备联动方案的相似度低于第一阈值的情况下,向所述服务器发送第一请求,所述第一请求用于指示所述服务器更新智能家居设备联动方案;
    所述中枢控制设备接收所述服务器发送的所述更新的智能家居设备联动方案。
  17. 根据权利要求14-16任一项所述的方法,其特征在于,所述更新的智能家居设备联动方案为第一用户使用概率高于第一概率的智能家居设备联动方案。
  18. 根据权利要求14-16任一项所述的方法,其特征在于,所述更新的智能家居设备联动方案为第一相似用户使用的智能家居设备联动方案。
  19. 根据权利要求14-16任一项所述的方法,其特征在于,所述更新的智能家居设备联动方案包括第一优化的智能家居设备联动方案;在所述中枢控制设备获取到更新的智能家居设备联动方案之后,所述方法还包括:
    所述中枢控制设备通过第一电子设备显示第一提示信息,所述第一提示信息用于提示第一用户已将智能家居设备联动方案更新为所述第一优化的智能家居设备联动方案。
  20. 根据权利要求19所述的方法,其特征在于,所述更新的智能家居设备联动方案还包括第二优化的智能家居设备联动方案,其中,所述第一优化的智能家居设备联动方案与第一用户行为的匹配度高于所述第二优化的智能家居设备联动方案与第一用户行为的匹配度。
  21. 根据权利要求14-16任一项所述的方法,其特征在于,在所述中枢控制设备获取到更新的智能家居设备联动方案之后,所述方法还包括:所述中枢控制设备通过第一电子设备显示第二提示信息,所述第二提示信息用于提示第一用户选择优化的智能家居设备联动方案。
  22. 根据权利要求21所述的方法,其特征在于,所述第二提示信息包括第一选项;其中,所述第一选项用于接收第一操作,使得所述第一电子设备显示第一界面,所述第一界面包括所述第一选项对应的第一优化的智能家居设备联动方案的详情内容。
  23. 根据权利要求22所述的方法,其特征在于,所述第一界面包括第二选项;所述第一选项用于接收第二操作,确定出基于所述第一优化的智能家居设备联动方案对所述一个或多个智能家居设备进行控制;
    所述中枢控制设备基于所述更新的智能家居设备联动方案对所述一个或多个智能家居设备进行控制,具体包括:
    所述中枢控制设备基于所述第一优化的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  24. 根据权利要求22所述的方法,其特征在于,所述第一界面包括第三选项;所述第三选项用于接收第三操作,使得所述第一电子设备将所述第一优化的智能家居设备联动方案更改为第三优化的智能家居设备联动方案;
    所述中枢控制设备基于所述更新的智能家居设备联动方案对所述一个或多个智能家居设备进行控制,具体包括:
    所述中枢控制设备基于所述第三优化的智能家居设备联动方案对所述一个或多个智能家居设备进行控制。
  25. 一种中枢控制设备,其特征在于,所述中枢控制设备包括:一个或多个处理器、一个或多个存储器;所述一个或多个存储器与所述一个或多个处理器耦合,所述一个或多个存储器用于存储计算机程序代码,所述计算机程序代码包括计算机指令,所述一个或多个处理器调用所述计算机指令以使得所述中枢控制设备执行上述权利要求14-24中的任一项所述的方法。
  26. 一种计算机可读存储介质,包括指令,其特征在于,当所述指令在中枢控制设备上运行时,使得所述中枢控制设备执行如权利要求14-24中的任一项所述的方法。
  27. 一种计算机程序产品,其特征在于,当所述计算机程序产品在中枢控制设备上运行时,使得所述中枢控制设备执行如权利要求14-24中的任一项所述的方法。
PCT/CN2023/105168 2022-07-06 2023-06-30 一种智能家居设备联动方案推荐方法及相关装置 WO2024008013A1 (zh)

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