Laundry treating apparatus system and control method thereof

By separating the main unit and the safety protection module in the garment processing equipment and supplying them with independent power, and by using smart plugs and cloud servers to generate safety prompts, the problems of long-term wear and tear on electronic components and fire hazards in existing equipment are solved, resulting in a longer service life and higher safety.

CN113265840BActive Publication Date: 2025-11-28CHONGQING HAIER ROLLER WASHING MASCH CO LTD
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Patent Information

Application Number
CN202110368903.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-04-06
Publication Date
2025-11-28
Estimated Expiration
2041-04-06

AI Technical Summary

Technical Problem

Existing garment handling equipment suffers from long-term wear and tear on electronic components and poses a fire hazard when children or pets are kept away.

Method used

The main unit and safety protection module of the garment processing equipment are separated and powered independently. Data is collected through the sound acquisition module and communication module on the smart plug. Safety prompts are generated by the cloud server and sent to the control terminal, so that the safety protection function can operate independently without being affected by the power status of the main unit.

Benefits of technology

It extends the lifespan of the host unit, eliminates fire hazards, and improves the security and reliability of remote start-up.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of smart home, and particularly relates to a clothes processing equipment IoT system and a control method thereof. The clothes processing equipment IoT system of the present application is independent of a host of clothes processing equipment, a control module, a communication module and a sound collecting module are arranged on a smart plug, the electronic devices of the host for realizing clothes processing functions and the electronic devices for realizing safety protection functions are separately arranged and independently powered, so that long-term acquisition of safety protection data can be realized in combination with the constant plug demand of the smart plug without wasting the electronic devices of the host, a safety prompt can be generated based on the collected sound data through a cloud server, and the safety prompt can be sent to a control terminal which can be viewed and operated by a user at any time, so that whether the host is powered off or not will not affect the execution state of the safety protection function, the execution reliability of the protection function is ensured, the overall working life of the host is prolonged, and the fire hazard caused by the long-term operation and heating of the electronic devices of the host is eliminated.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of smart home, and particularly relates to a clothes processing equipment object system and a control method thereof. BACKGROUND

[0002] In order to improve the use convenience of users, the intelligence of various household appliances is greatly improved at present, such as intelligent washing machines, intelligent clothes dryers and other high intelligent clothes processing equipment. When using such clothes processing equipment, users can interact with the clothes processing equipment through a mobile phone or other control terminal to remotely control the clothes processing equipment to run, check the working state of the clothes processing equipment and the like without being close to the clothes processing equipment.

[0003] When the user has the demand of remotely controlling the clothes processing equipment to run, it is necessary to ensure that the clothes processing equipment is in a safe environment that can be started, such as no children or pets close to or accidentally enter the clothes processing equipment. The existing clothes processing equipment is usually provided with an image acquisition module to monitor whether children or pets stay near the clothes processing equipment, and to start the door locking function of the clothes processing equipment when children or pets are close according to the monitoring condition to prevent children or pets from entering the inside of the clothes processing equipment. However, the disadvantage of the above setting is that the image acquisition module not only has the risk of privacy leakage, but also makes the clothes processing equipment need to be powered for a long time, so that the circuit board and other electronic devices of the clothes processing equipment are always in use, which excessively consumes the service life of the electronic devices, shortens the overall working life of the clothes processing equipment, and there is a fire hazard caused by the long-term heating of the electronic components.

[0004] Correspondingly, there is a need in the art for a new clothes processing equipment object system and a control method thereof to solve the above problems. SUMMARY

[0005] In order to solve the above problems in the prior art, that is, to solve the problems that the electronic devices of the existing clothes processing equipment are long-term damaged when the safety protection for children or pets is performed, the overall working life of the clothes processing equipment is reduced, and there is a fire safety hazard, the present application provides a clothes processing equipment thing system, which comprises a cloud server, a clothes processing equipment and a control terminal, the clothes processing equipment comprises a host and an intelligent plug connected with the host, the intelligent plug comprises a first power supply module, a second power supply module, a control module, a communication module and a sound collecting module, the first power supply module is used for transmitting the electric energy of an external power supply to the host, the second power supply module is used for transmitting the electric energy of the external power supply to the control module, the communication module and the sound collecting module respectively, the communication module is in communication connection with the cloud server and the control terminal respectively, the sound collecting module can collect sound data near the host and transmit the sound data to the control module, the control module can control the communication module to upload the sound data to the cloud server, and the cloud server can generate corresponding safety prompts according to the sound data and send the safety prompts to the control terminal

[0006] In the preferred technical scheme of the clothes processing equipment thing system, the cloud server comprises a storage unit and a sound data processing unit, the sound data processing unit is used for identifying the decibel amount and voiceprint type of the sound data, and the storage unit is used for storing the sound data and the mapping relationship between different decibel ranges, voiceprint types and corresponding warning prompts of different grades.

[0007] In the preferred technical scheme of the clothes processing equipment thing system, a voice control module is arranged on the host, and the sound collecting module is arranged in combination with the voice control module.

[0008] In the preferred technical scheme of the clothes processing equipment thing system, the clothes processing equipment further comprises a bridge module arranged on the intelligent plug, the bridge module is in communication with the second power supply module, the communication module is in communication connection with the cloud server through a wireless network, and the bridge module can bridge the communication module to the wireless network.

[0009] The application further provides a control method of a clothes processing device and object system, the clothes processing device and object system comprising a cloud server, clothes processing devices and a control terminal, the clothes processing devices comprising a main machine and a smart plug connected to the main machine, the smart plug comprising a first power supply module, a second power supply module, a control module, a communication module and a sound collection module, the first power supply module being used to deliver power of an external power supply to the main machine, the second power supply module being used to deliver power of the external power supply to the control module, the communication module and the sound collection module respectively, the sound collection module being capable of collecting sound data near the main machine, the control module being capable of controlling the communication module to upload the collected sound data to the cloud server, the control method comprising the following steps: collecting sound data near the main machine; uploading the sound data to the cloud server; generating a corresponding safety prompt by the cloud server according to the sound data; and sending the generated safety prompt to the control terminal by the cloud server.

[0010] In the preferred technical scheme of the control method, the step of "generating a corresponding safety prompt by the cloud server according to the sound data" specifically comprises the following steps: identifying the decibel level and the voiceprint type of the sound data by the cloud server; and generating a corresponding level of early warning prompt by the cloud server according to the decibel range where the decibel level of the sound data is located and the actual voiceprint type.

[0011] In the preferred technical scheme of the control method, the step of "generating a corresponding level of early warning prompt by the cloud server according to the decibel range where the decibel level of the sound data is located and the actual voiceprint type" specifically comprises the following steps: comparing the decibel level of the sound data with a set decibel level; generating a high-priority early warning prompt if the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is human voice; generating a medium-priority early warning prompt if the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is non-human voice; and generating a low-priority early warning prompt if the decibel level of the sound data does not reach the set decibel level.

[0012] In the preferred technical scheme of the control method, the control method further comprises the following steps: acquiring a running wake-up instruction by the control terminal in the case that the main machine is powered off and the control terminal receives the low-priority early warning prompt; and sending the running wake-up instruction to the communication module if the running wake-up instruction is acquired.

[0013] In the preferred technical scheme of the control method, the step of "generating a corresponding safety prompt by the cloud server according to the sound data" specifically comprises the following step: sending the sound data directly as the safety prompt to the control terminal by the cloud server.

[0014] In the preferred technical solution of the control method, the step of obtaining the sound data near the host machine specifically comprises: obtaining setting information of a sound collection period; if the setting information is obtained, collecting the sound data near the host machine in the set sound collection period; and if the setting information is not obtained, collecting the sound data near the host machine all day.

[0015] As can be understood by those skilled in the art, the laundry treatment equipment and object system of the present application is independent of the host machine of the laundry treatment equipment, and a control module, a communication module and a sound collection module are arranged on the smart plug of the laundry treatment equipment. The electronic devices for realizing the laundry treatment function and the electronic devices for realizing the safety protection function are separately arranged and independently powered, so that the smart plug can work independently when the host machine is powered off, collect sound data near the host machine as basic data for safety protection, realize long-term acquisition of safety protection data in combination with the requirement of the smart plug to be always plugged in without consuming the electronic devices of the host machine, generate a safety prompt based on the collected sound data through a cloud server, and send the safety prompt to a control terminal that can be viewed and operated by the user at any time, so that the user can determine whether there is a protected object (i.e. children, pets, etc.) near the host machine according to the received safety prompt before performing remote operation, and determine whether the host machine is in a safe environment before starting the host machine remotely. Through the above arrangement, the power supply state of the host machine cannot affect the working state of the electronic devices inside the smart plug, and whether the host machine is powered off or not will not affect the execution state of the safety protection function, thereby ensuring the execution reliability of the protection function. In addition, the electronic devices of the host machine will not be consumed by both laundry treatment and safety protection, and can be used for a longer time, thereby prolonging the overall working life of the host machine, eliminating the fire hazard caused by the long-term operation and heating of the electronic devices of the host machine, and optimizing the use safety of the laundry treatment equipment. BRIEF DESCRIPTION OF DRAWINGS

[0016] The preferred embodiments of the present application will be described below with reference to the accompanying drawings. The drawings are as follows:

[0017] Figure 1 is a system structure diagram of the laundry treatment equipment and object system of the present application;

[0018] Figure 2 is a structure diagram of the smart plug of the laundry treatment equipment of the laundry treatment equipment and object system of the present application;

[0019] Figure 3 is a step flowchart of the control method of the laundry treatment equipment and object system of the present application. DETAILED DESCRIPTION

[0020] Those skilled in the art should understand that, in the description of the present application, although the steps of the control method of the present application are described in a specific order in the present application, these orders are not limiting, and those skilled in the art can perform the steps in different orders without deviating from the basic principles of the present application.

[0021] Based on the problem that the existing clothes processing equipment pointed out in the background art is worn out for a long time when it is used for safety protection for children or pets, reduces the overall service life of the clothes processing equipment and has a safety hazard, the present application provides a clothes processing equipment object connection system and a control method thereof, which is designed to separate the host of the clothes processing equipment and the related modules for realizing safety protection and independently supply power, so that the execution of the safety protection function of the clothes processing equipment is not limited by the on-off power state of the host, and the cloud service and the control terminal are combined to send safety prompts to the user, so as to help the user to determine whether there is a protected object near or inside the host before remotely starting the host, and improve the use safety of the clothes processing equipment when it is remotely started.

[0022] First refer to Figure 1 and Figure 2 , Figure 1 is a system structure diagram of the clothes processing equipment object connection system of the present application, Figure 2 is a structure diagram of the intelligent plug of the clothes processing equipment of the clothes processing equipment object connection system of the present application. As Figure 1 and Figure 2As shown, the clothes processing device system of the present application comprises a cloud server, a clothes processing device and a control terminal. The clothes processing device comprises a main machine and a smart plug connected to the main machine. The main machine comprises a shell and a clothes processing part arranged in the shell. A user can put clothes into the clothes processing part to realize functions such as clothes cleaning, drying, ironing care or sterilization. The connection line of the smart plug is connected to the main machine to supply power to the power module (i.e. the module for driving the clothes processing part to operate) and the control display module of the main machine. Specifically, the smart plug comprises a first power supply module, a second power supply module, a control module, a communication module and a sound collection module. The first power supply module is used to transmit the power of an external power supply to the main machine to supply power to each functional module of the main machine. The second power supply module is used to transmit the power of the external power supply to the control module, the communication module and the sound collection module, so that the control module, the communication module and the sound collection module of the smart plug can work independently of the main machine, and their running state and functional requirements are not limited by the on-off state of the main machine. The communication module is in communication connection with the cloud server and the control terminal. The sound collection module can collect sound data near the main machine and transmit the collected sound data to the control module. The control module can control the communication module to upload the sound data to the cloud server. The cloud server can generate corresponding safety prompts according to the received sound data and send the generated safety prompts to the control terminal.

[0023] In the above embodiment, the first power supply module or the second power supply module is an electric energy transmission structure connected between the external power supply and the powered object (the main machine or the communication module, the control module and the sound collection module). It at least comprises a connection line connected between the external power supply and the powered object. According to the power transmission requirement, an on-off switch can be arranged on the connection line to control the first power supply module or the second power supply module to stop or start power supply according to the user's switch instruction in the case of long-term plug-in of the smart plug in combination with the automatic on-off requirement of the smart plug. In the power supply case, the smart plug is electrically connected with the main machine, so the remote control instruction can also be received by the communication module at the end of the smart plug and transmitted to the main machine for execution.

[0024] The connection mode of the communication module and the cloud server is preferably that the communication module communicates with the cloud server based on the local area network in the user's home, for example, the communication module is in communication connection with the WIFI wireless network or Zigbee network in the user's home and communicates with the cloud server through the WIFI wireless gateway or Zigbee gateway.

[0025] The sound collection module is any device capable of collecting sound information within a certain range. It can capture sound waves within a certain range and convert the vibration signals of the sound waves into transmissible digital signals based on signal conversion technology, such as a microphone and other sound collection equipment. In Figure 2In the shown example, the outer side of the plug body of the smart plug (i.e. the side away from the plug-in end) is provided with two microphones (i.e. Figure 2 In the case of the smart plug being connected to the power supply, the microphones are close to the host computer to collect the sound waves near the host computer. Those skilled in the art can adjust the number and position of the microphones on the smart plug according to the setting requirements.

[0026] The control terminal is any kind of communication device that can communicate with the communication module and can realize remote control of the host computer by the user, such as a mobile terminal such as a mobile phone, a tablet computer, or a computer, a remote control device of a material system, etc.

[0027] Through the above setting, during daily use, if the user does not need to use the clothes treatment device and the host computer has no working requirement, the host computer can be turned off (the host computer is usually set to automatically turn off when not in use to reduce standby loss, and can be automatically powered on and off by the smart plug according to the working requirement of the host computer), so that the host computer does not need to be in a standby state of electronic device power supply for a long time, and only the sound collection module, the control module and the communication module on the smart plug are powered on, so that after the sound collection module collects sound data near the host computer, the collected sound data is uploaded to the cloud server based on the communication module, so as to cooperate with the cloud server to issue corresponding safety prompts to the control terminal, so as to monitor whether there is a sound of a protected object near the host computer, and the user can check the safety prompts through the control terminal to determine whether the host computer is in an environment that can be safely started before the user has a demand to use the host computer.

[0028] In one possible implementation, after the cloud server receives the sound data, the cloud server directly issues the sound data as a safety prompt to the control terminal, and the user can check the sound data received by the control terminal through the control terminal before starting the host computer, and determine whether there is a protected object near the host computer through the sound environment near the host computer.

[0029] In a preferred embodiment, the cloud server comprises a storage unit and a sound data processing unit. The sound data processing unit is configured to identify the decibel level and the voiceprint type of the sound data. The storage unit is configured to store the sound data uploaded by the communication module and the mapping relationship between different decibel ranges, voiceprint types and corresponding warning prompts. For example, a mapping relationship is established between a decibel range equal to or greater than a set decibel level and a high-priority warning prompt for human voice, a mapping relationship is established between a decibel range equal to or greater than the set decibel level and a medium-priority warning prompt for non-human voice, and a mapping relationship is established between a decibel range less than the set decibel level and a low-priority warning. The set decibel level is the minimum decibel level that can be collected by the sound collection module within the expected range near the host. If the actual decibel level of the sound data reaches (i.e., is greater than or equal to) the set decibel level, it indicates that there is a protected object near the host, and the protected object is located near or inside the host. If the actual decibel level of the sound data is less than the set decibel level, it indicates that the protected object has not entered the range near the host. The difference between the voiceprint types of human voice and non-human voice can determine whether the protected object is a child or a pet. After the cloud server identifies the actual decibel level and the voiceprint type of the sound data, it can determine whether the child or pet is close to or enters the range near the host, and retrieve the corresponding warning prompt of different levels and send it to the control terminal, so that the user can directly determine the approximate environment near the host through the control terminal, and decide whether to remotely control the host to operate. Of course, the processing method of the sound data and the form of the generated safety prompt are not limited to the above examples. For example, the approximate distance of the sound object from the host can also be estimated based on the set position of the sound collection module and the actual decibel level of the collected sound data, and the estimated distance and the sample information (such as the sound segment within a set period) of the sound data are sent to the control terminal as safety prompts, so that the user can determine whether the sound object is a protected object and understand the distance between the sound object and the host based on the received safety prompts.

[0030] Based on any one of the above laundry treatment equipment Internet of Things systems, preferably, a voice control module is arranged on the host computer, which can collect the sound emitted by the user to the host computer and analyze the voice instruction contained in the sound, so as to realize the voice control function of the host computer. The sound collection module and the voice control module are combined and arranged, and the sound collection unit of the voice control module is arranged as one. For example, a communication cable is arranged in the wiring between the smart plug and the host computer, and the sound collection module on the smart plug is connected to the voice control module (i.e. the voice instruction analysis unit and other hardware except the sound collection unit) inside the host computer through the communication cable. The sound collection module arranged on the smart plug can not only collect sound data near the host computer when the host computer is turned off, but also collect voice instructions emitted by the user when the host computer can receive operation instructions, realizing the multi-scene use of the voice collection module and simplifying the hardware arrangement structure of the host computer to a certain extent. Generally, the host computer is placed at the edge of the room, and the network signal is poor. Therefore, the laundry treatment equipment of the application further comprises a bridge module arranged on the smart plug. The bridge module is in communication with the second power supply module, and the bridge module can be powered together with the voice collection module, the control module and the communication module when the host computer is turned off. In the case that the communication module is in communication connection with the cloud server through a wireless network, the bridge module can receive the weak network signal of the wireless network and amplify the network signal before transmitting it again for the communication module to capture, so as to bridge the communication module to the wireless network. By arranging the bridge module, the laundry treatment equipment can overcome the weak network signal environment and communicate with the cloud server or the control terminal through the wireless network, so that the Internet of Things function of the laundry treatment equipment is not limited by the strength of the network signal in the placement environment.

[0031] Continuing to refer to Figure 3 , Figure 3 is a step flow chart of the control method of the laundry treatment equipment Internet of Things system of the application. As Figure 3 shown, based on any one of the above laundry treatment equipment Internet of Things systems, the application further provides a control method of a laundry treatment equipment Internet of Things system, which comprises:

[0032] Step S1: acquiring sound data near the host computer;

[0033] Step S2: uploading the acquired sound data to the cloud server;

[0034] Step S3: generating a corresponding safety prompt by the cloud server according to the received sound data;

[0035] Step S4: sending the generated safety prompt to the control terminal by the cloud server.

[0036] Further, the above step S1 specifically comprises:

[0037] acquiring setting information of a sound collection period;

[0038] if the setting information of the sound collection period is acquired, collecting sound data near the host within the set sound collection period;

[0039] if the setting information of the sound collection period is not acquired, collecting sound data near the host all day.

[0040] In the above steps, the setting information of the sound collection period can be set by the control terminal or by the control panel of the host. In the case where the sound collection module collects sound data all day without setting the sound collection period, after the collected sound data is uploaded to the cloud server, the cloud server can group and store all the data according to the unit collection time (such as every hour), or can store the sound data in an overlapping manner at a set time interval, for example, the sound data collected in the current hour will overwrite the sound data collected in the last hour when the sound data is stored in the cloud server. Of course, the cloud server can also only store the sound data when it is determined that the decibel level of the collected sound data exceeds the set decibel level, otherwise it will be ignored.

[0041] Preferably, the above step S4 specifically includes:

[0042] The cloud server identifies the decibel level and the voiceprint type of the sound data;

[0043] According to the decibel range and the actual voiceprint type of the sound data, the cloud server generates a corresponding level of warning prompt.

[0044] Further, as a preferred example, the above step of "according to the decibel range and the actual voiceprint type of the sound data, the cloud server generates a corresponding level of warning prompt" specifically includes:

[0045] Comparing the decibel level of the sound data with the set decibel level;

[0046] If the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is human voice, a high-priority warning prompt is generated;

[0047] If the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is non-human voice, a medium-priority warning prompt is generated;

[0048] If the decibel level of the sound data does not reach the set decibel level, a low-priority warning prompt is generated.

[0049] Further, the control method of the clothes processing device and system of the present application further includes:

[0050] In the case that the host is powered off and the control terminal receives a low-priority warning prompt, the control terminal acquires a running wake-up instruction;

[0051] If the running wake-up instruction is acquired, the running wake-up instruction is sent to the communication module.

[0052] In the above step, the running wake-up instruction is an instruction input by the user to the control terminal for waking up the host from the powered-off state to an executable running instruction state (such as a standby state). For example, the running wake-up instruction is to control the first power supply module to run, to supply power to the host, and to control the host to be networked. In the case that the communication module receives the running wake-up instruction, the control module of the smart plug can control the first power supply module to supply power according to the running wake-up instruction, so that the host is changed from the powered-off state to the standby state which can be started by the clothes processing program.

[0053] Alternatively, the above step S4 specifically includes:

[0054] The cloud server directly sends the received sound data to the control terminal as a safety prompt.

[0055] In the embodiments of the present application, the clothes processing device can be any clothes processing device with similar safety protection needs (such as the need to prevent the host from being started by children or the inner cavity of the host from being drilled into by children or pets), such as a washing machine, a clothes dryer, a clothes care cabinet, a washing-drying integrated machine, etc.

[0056] So far, the technical solutions of the present application have been described in combination with the preferred embodiments shown in the drawings, but it is easy for those skilled in the art to understand that the protection scope of the present application is obviously not limited to these specific embodiments. Those skilled in the art can make equivalent changes or replacements to the related technical features without departing from the principles of the present application, and the technical solutions after the changes or replacements will all fall within the protection scope of the present application.

Claims

1. A clothing processing equipment IoT system, characterized in that, The IoT system for the garment processing equipment includes a cloud server, garment processing equipment, and a control terminal. The garment processing device includes a main unit and a smart plug connected to the main unit. The smart plug includes a first power supply module, a second power supply module, a control module, a communication module, and a sound acquisition module. The first power supply module is used to supply electrical energy from an external power source to the host, and the second power supply module is used to supply electrical energy from the external power source to the control module, the communication module and the sound acquisition module respectively. The communication module is communicatively connected to the cloud server and the control terminal respectively. The sound acquisition module can collect sound data near the host and transmit the sound data to the control module. The control module can control the communication module to upload the sound data to the cloud server. The cloud server can generate corresponding security prompts based on the sound data and send the security prompts to the control terminal, specifically: The cloud server is capable of: Identify the decibel level and voiceprint type of the sound data; Based on the decibel range of the sound data and the actual voiceprint type, the cloud server generates a warning alert of the corresponding level. The provision that "based on the decibel range of the sound data and the actual voiceprint type, the cloud server generates a corresponding level of warning alert" includes: Compare the decibel level of the sound data with a set decibel level; If the decibel level of the sound data does not reach the set decibel level, a low-priority warning prompt is generated; When the host is shut down and the control terminal receives the low-priority warning, the control terminal obtains a wake-up command. If the run wake-up command is received, the run wake-up command is sent to the communication module.

2. The IoT system for clothing processing equipment according to claim 1, characterized in that, The cloud server includes a storage unit and a sound data processing unit. The sound data processing unit is used to identify the decibel level and voiceprint type of the sound data. The storage unit is used to store the sound data and the mapping relationship between different decibel ranges, voiceprint types and corresponding warning prompts.

3. The IoT system for clothing processing equipment according to claim 1, wherein the host is provided with a voice control module, and the sound acquisition module and the voice control module are combined.

4. The IoT system for clothing processing equipment according to claim 1, wherein the clothing processing equipment further includes a bridging module disposed on the smart plug, the bridging module being connected to the second power supply module. The communication module communicates with the cloud server via a wireless network, and the bridging module enables the communication module to be bridged to the wireless network.

5. A control method for an IoT system for clothing processing equipment, characterized in that, The IoT system for the garment processing equipment includes a cloud server, garment processing equipment, and a control terminal. The garment processing device includes a main unit and a smart plug connected to the main unit. The smart plug includes a first power supply module, a second power supply module, a control module, a communication module, and a sound acquisition module. The first power supply module is used to supply electrical energy from an external power source to the main unit, and the second power supply module is used to supply electrical energy from the external power source to the control module, the communication module, and the sound acquisition module, respectively. The sound acquisition module can collect sound data near the host, and the control module can control the communication module to upload the collected sound data to the cloud server. The control method includes: Acquire sound data near the host; The audio data is uploaded to the cloud server; Based on the sound data, the cloud server generates a corresponding security prompt; The cloud server sends the generated security alert to the control terminal; The step of "generating a corresponding security prompt based on the sound data" specifically includes: The cloud server identifies the decibel level and voiceprint type of the sound data; Based on the decibel range of the sound data and the actual voiceprint type, the cloud server generates a warning alert of the corresponding level. The step of "generating a corresponding level of warning alert based on the decibel range of the sound data and the actual voiceprint type" specifically includes: Compare the decibel level of the sound data with a set decibel level; If the decibel level of the sound data does not reach the set decibel level, a low-priority warning prompt is generated; The control method further includes: When the host is shut down and the control terminal receives the low-priority warning, the control terminal obtains a wake-up command. If the run wake-up command is received, the run wake-up command is sent to the communication module.

6. The control method according to claim 5, characterized in that, The step of "generating a corresponding level of warning alert based on the decibel range of the sound data and the actual voiceprint type" further includes: Compare the decibel level of the sound data with a set decibel level; If the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is human voice, a high-priority warning prompt is generated. If the decibel level of the sound data reaches the set decibel level and the actual voiceprint type of the sound data is non-human voice, a medium-priority warning prompt will be generated.

7. The control method according to claim 5, characterized in that, The step of "generating a corresponding security prompt by the cloud server based on the sound data" specifically includes: The cloud server sends the sound data directly to the control terminal as the security prompt.

8. The control method according to claim 5, characterized in that, The steps of "acquiring sound data near the host" specifically include: Obtain the settings information for the sound acquisition period; If the setting information is obtained, sound data near the host will be collected during the set sound collection period. If the aforementioned settings information is not obtained, sound data from the vicinity of the host will be collected throughout the day.

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