Anti-noise control method and device for shared equipment, equipment and storage medium

By setting the operating parameters for shared clothing processing equipment in noise-proof mode, the noise problem when the equipment is working is solved, achieving the dual goals of reducing noise and optimizing cleaning effects, and improving the quality of life of users.

CN120630759APending Publication Date: 2025-09-12HAIER IOC ECOSYSTEM TECH (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202410282885.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-03-12
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

The noise generated by shared clothing processing equipment when in operation disturbs students' rest and study, affecting their quality of life.

Method used

By obtaining the user's clothing processing instructions, multiple processing stages are determined, and the operating parameters in the noise reduction mode are set for each stage, the device is controlled to operate according to these parameters in different stages to reduce noise.

Benefits of technology

It effectively reduces the noise level of shared clothing processing equipment, alleviates noise interference to student dormitory areas, and creates a quiet and comfortable living environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of intelligent household appliances, and particularly relates to an anti-noise control method and device for shared equipment, equipment and a storage medium. After a clothes processing instruction sent by a user is obtained, a plurality of to-be-processed stages with different execution time are determined according to a target clothes processing program contained in the clothes processing instruction, and then operation parameter information of each to-be-processed stage in an anti-noise mode is determined according to the plurality of to-be-processed stages; and finally, according to the execution opportunities of the plurality of to-be-processed stages, controlling the shared device to perform anti-noise processing according to the corresponding first operation parameter information in the plurality of to-be-processed stages. According to the method, the level of noise generated in the operation process of the shared clothes processing equipment is reduced, noise interference to student dormitory areas is further reduced, and a more quiet and comfortable living environment is created for users.
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Description

Technical Field

[0001] The present application belongs to the field of smart home appliances, and specifically relates to a noise prevention control method, device, equipment and storage medium for shared devices. Background Art

[0002] With the continuous expansion of educational resources and the growth of the student population, the demand for public school facilities is also increasing. As a key component of school infrastructure, public laundries are favored by students for their convenience and efficiency. In student dormitories, in particular, shared laundry facilities offer centralized laundry services, saving personal space and time, and have gradually become an indispensable part of students' daily lives.

[0003] While the use of shared laundry facilities has greatly improved students' daily lives, it also comes with a noise problem. Since public laundry rooms are often located adjacent to student dormitories, and dormitories generally lack sound insulation, the noise generated by multiple laundry facilities operating simultaneously during lunch breaks or late at night often disturbs students in nearby dormitories. This noise not only affects students' rest quality but can also negatively impact their studies and lives over the long term.

[0004] Therefore, how to effectively reduce the noise generated by shared clothing processing equipment during operation to ensure that students' rest environment is not disturbed is the problem that needs to be solved at present. Summary of the Invention

[0005] The present application provides a noise prevention control method, apparatus, device and storage medium for a shared device, which are used to solve the noise problem generated by a shared clothing processing device during operation.

[0006] In a first aspect, the present application provides a noise prevention control method for a shared device, comprising:

[0007] Acquiring a clothes processing instruction sent by a user, wherein the clothes processing instruction includes: a target clothes processing program;

[0008] Determining a plurality of to-be-processed stages according to the target laundry processing program, wherein the plurality of to-be-processed stages are executed at different times;

[0009] Determining first operating parameter information of each stage to be processed according to the multiple stages to be processed, where the first operating parameter information is a parameter in a noise prevention mode;

[0010] According to the execution timings of the multiple stages to be processed, the shared device is controlled to perform noise prevention processing according to the corresponding first operating parameter information in the multiple stages to be processed.

[0011] Optionally, obtaining a clothing processing instruction sent by a user includes:

[0012] Obtaining the startup time of the shared device, and determining whether the startup time is within a preset noise period;

[0013] When the start-up moment is within the preset noise period, the laundry processing instruction is obtained.

[0014] Optionally, the first operating parameter information includes: a first motor speed and a first working time, and determining the first operating parameter information of each stage to be processed according to the multiple stages to be processed includes:

[0015] Acquiring a weight of the laundry to be processed, where the laundry weight is used to indicate a dry weight of the laundry to be processed;

[0016] The plurality of first motor speeds and the plurality of first operating durations are determined according to the laundry weight and a preset weight.

[0017] Optionally, determining the plurality of first motor speeds and the plurality of first operating hours according to the laundry weight and a preset weight includes:

[0018] Acquire a parameter operation database, the parameter operation database including: the plurality of pending stages and a preset motor speed and a preset working time for each pending stage;

[0019] Determining whether the weight of the clothes is greater than a preset weight;

[0020] If so, the preset motor speed and the preset working time of each to-be-processed stage are adjusted and processed respectively according to the first processing rule to obtain the multiple first motor speeds and the multiple first working times.

[0021] Optionally, the method further includes:

[0022] When the startup time is not in the preset noise period, obtaining the running time of the shared device and determining whether the running time is in the preset noise period;

[0023] If so, obtaining the operating stage of the shared device, and determining second operating parameter information of the shared device according to the operating stage;

[0024] The shared device is controlled to perform noise prevention processing according to the second operating parameter information during the operating phase.

[0025] Optionally, determining the second operating parameter information of the shared device according to the operating stage includes:

[0026] Determining target operating parameters of the shared device according to the operating stage, the target operating parameters including: operating noise, operating speed, and remaining operating time;

[0027] The second operating parameter information is determined according to the operating noise, the operating speed, and the remaining operating time.

[0028] Optionally, the second operating parameter information includes: a second motor speed and a second operating time, and determining the second operating parameter information according to the operating noise, the operating speed, and the remaining operating time includes:

[0029] Determining whether the operating noise exceeds a preset noise;

[0030] When the operating noise exceeds the preset noise, the operating speed and the remaining operating time are adjusted according to a second processing rule to obtain the second motor speed and the second operating time;

[0031] The controlling the shared device to perform noise prevention processing according to the second operating parameter information during the operation phase includes:

[0032] The shared device is controlled to perform noise prevention processing according to the second motor speed and the second working time during the operation phase.

[0033] In a second aspect, the present application provides a noise prevention control device for a shared device, comprising:

[0034] an acquisition module, configured to acquire a clothes processing instruction sent by a user, wherein the clothes processing instruction includes: a target clothes processing program;

[0035] a determination module, configured to determine a plurality of to-be-processed stages according to the target laundry treatment program, wherein the plurality of to-be-processed stages are executed at different times;

[0036] The determining module is further configured to determine first operating parameter information of each stage to be processed based on the multiple stages to be processed, wherein the first operating parameter information is a parameter in a noise prevention mode;

[0037] The control module is used to control the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple processing stages according to the execution timing of the multiple processing stages.

[0038] Optionally, the acquisition module is further configured to acquire the startup time of the shared device;

[0039] The device further includes: a judgment module;

[0040] The judging module is configured to judge whether the start-up moment is within a preset noise period;

[0041] The acquisition module is further configured to acquire the clothing processing instruction when the startup moment is within the preset noise period.

[0042] Optionally, the acquisition module is further configured to acquire the weight of the clothes to be processed, where the weight of the clothes is used to indicate the dry weight of the clothes to be processed;

[0043] The determination module is specifically configured to determine the plurality of first motor speeds and the plurality of first operating durations according to the laundry weight and a preset weight.

[0044] Optionally, the acquisition module is further configured to acquire a parameter operation database, the parameter operation database including: the plurality of to-be-processed stages and a preset motor speed and a preset working time for each to-be-processed stage;

[0045] The judging module is further configured to judge whether the weight of the clothes is greater than a preset weight;

[0046] The device further comprises: a processing module;

[0047] The processing module is used to adjust the preset motor speed and preset working time of each processing stage according to the first processing rule when the weight of the clothes is greater than the preset weight, so as to obtain the multiple first motor speeds and the multiple first working times.

[0048] Optionally, the acquisition module is further configured to acquire the operating time of the shared device when the startup time is not within the preset noise period;

[0049] The judging module is further configured to judge whether the operating time is within the preset noise period;

[0050] The acquisition module is further configured to acquire the operation stage of the shared device when the operation time is within the preset noise period;

[0051] The determining module is further configured to determine second operating parameter information of the shared device according to the operating stage;

[0052] The control module is further configured to control the shared device to perform noise prevention processing according to the second operating parameter information during the operating phase.

[0053] Optionally, the determining module is specifically configured to determine target operating parameters of the shared device according to the operating stage, the target operating parameters including: operating noise, operating speed, and remaining operating time;

[0054] The determining module is specifically configured to determine the second operating parameter information according to the operating noise, the operating speed, and the remaining operating time.

[0055] Optionally, the judging module is further configured to judge whether the operating noise exceeds a preset noise;

[0056] The processing module is further configured to adjust the operating speed and the remaining operating time according to a second processing rule when the operating noise exceeds the preset noise, so as to obtain the second motor speed and the second operating time;

[0057] The controlling the shared device to perform noise prevention processing according to the second operating parameter information during the operation phase includes:

[0058] The control module is specifically used to control the shared device to perform noise prevention processing according to the second motor speed and the second working time during the operation phase.

[0059] In a third aspect, the present application provides a noise prevention control device for a shared device, comprising:

[0060] Memory;

[0061] processor;

[0062] wherein the memory stores computer-executable instructions;

[0063] The processor executes the computer-executable instructions stored in the memory to implement the noise prevention control method for a shared device as described in the first aspect and various possible implementations of the first aspect.

[0064] In a fourth aspect, the present application provides a computer storage medium having computer execution instructions stored thereon, wherein the computer execution instructions are executed by a processor to implement the noise prevention control method for a shared device as described in the first aspect and various possible implementations of the first aspect.

[0065] The noise prevention control method for shared devices provided in this application, after obtaining a clothing processing instruction sent by a user, first determines multiple pending processing stages with different execution timings based on the target clothing processing program contained in the clothing processing instruction. Then, based on the multiple pending processing stages, determines the operating parameter information of each pending processing stage in the noise prevention mode. Finally, based on the execution timing of the multiple pending processing stages, the shared device is controlled to perform noise prevention processing according to the corresponding first operating parameter information in the multiple pending processing stages. This method reduces the noise level generated by the shared clothing processing device during operation, thereby alleviating noise interference to student dormitories, thereby creating a more quiet and comfortable living environment for users. BRIEF DESCRIPTION OF THE DRAWINGS

[0066] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0067] Figure 1 The process of the noise control method for shared equipment provided in this application Figure 1 ;

[0068] Figure 2 The process of the noise control method for shared equipment provided in this application Figure 2 ;

[0069] Figure 3 The process of the noise control method for shared equipment provided in this application Figure 3 ;

[0070] Figure 4 This is a schematic diagram of the structure of the noise prevention control device for shared equipment provided by this application;

[0071] Figure 5 It is a structural diagram of the noise prevention control device of the shared device provided in this application.

[0072] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION

[0073] To make the objectives, technical solutions, and advantages of this application more clear, the technical solutions in this application will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0074] The terms "first," "second," "third," "fourth," and so forth (if any) in the description and claims of the present invention and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a particular order or sequential sequence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present invention described herein can, for example, be implemented in sequences other than those illustrated or described herein.

[0075] In the embodiments of this application, words such as "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "exemplary" or "for example" should not be construed as being preferred or advantageous over other embodiments or designs. Rather, the use of words such as "exemplary" or "for example" is intended to present the relevant concepts in a concrete manner.

[0076] With the continuous expansion of educational resources and the growth of student enrollment, schools have gradually expanded the construction of public facilities to meet the growing needs of students. Public laundries, as a key component of campus infrastructure, provide centralized laundry services. These shared laundry facilities typically include washing machines and dryers, located in student dormitories or other convenient locations. Because this centralized laundry method saves personal space and time, shared laundry facilities have become popular among students and have gradually become an indispensable part of their daily lives.

[0077] While shared laundry facilities have brought significant convenience and efficiency improvements to students' daily lives, they have also created some new problems. The primary issue is noise pollution. Public laundry rooms are typically located near student dormitories, and many dormitories lack sound insulation. This means the noise from multiple laundry facilities operating simultaneously can easily penetrate dormitory walls, disrupting students' rest and study. The noise problem is particularly acute during lunch breaks or during nighttime study time, affecting not only students' sleep quality but also their health, learning, and quality of life over the long term.

[0078] Therefore, how to effectively reduce the noise generated by shared clothing processing equipment during operation to ensure that students' rest environment is not disturbed is the problem that needs to be solved at present.

[0079] In response to the above problems, the present application provides a noise prevention control method for a shared device. After obtaining the clothing processing instruction sent by the user, the method first determines multiple pending stages with different execution timings based on the target clothing processing program contained in the clothing processing instruction. Then, based on the multiple pending stages, the operating parameter information of each pending stage in the noise prevention mode is determined. Finally, based on the execution timing of the multiple pending stages, the shared device is controlled to perform noise prevention processing in the multiple pending stages according to the corresponding first operating parameter information. This method reduces the noise level generated by the shared clothing processing device during operation, thereby reducing noise interference to the student dormitory area, thereby creating a more quiet and comfortable living environment for users.

[0080] The following specific embodiments describe in detail the technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0081] Figure 1 The process of the noise prevention control method for the shared device provided in this embodiment Figure 1 .like Figure 1 As shown, the noise prevention control method for a shared device provided in this embodiment includes:

[0082] S101: Acquire a clothing processing instruction sent by a user, where the clothing processing instruction includes a target clothing processing program.

[0083] Among them, by obtaining the clothing processing instructions sent by the user, it means that the user's specific requirements for clothing processing can be obtained, such as the washing program, water temperature, washing time, etc. that need to be executed, so as to adjust the various parameters of the shared equipment to complete the washing of the clothes.

[0084] It is understood that when a user sends laundry processing instructions to a shared device through some means (such as a mobile phone application or control panel), these instructions contain detailed laundry processing requirements of the user. These requirements may include the specific wash program desired (such as strong wash, gentle wash, or speed wash), the desired water temperature (such as cold water, warm water, or hot water), and the desired wash time.

[0085] Once the shared device receives these instructions, it will analyze them and automatically adjust its internal parameters accordingly, such as selecting the correct washing program, setting the appropriate water temperature and washing time. In this way, the shared device can wash clothes according to the user's instructions, ensuring that the clothes are properly treated, thus meeting the user's personalized needs.

[0086] The method of obtaining the clothing processing instruction sent by the user may be, for example, obtaining the instruction by the user operating a terminal device connected to the shared device, or obtaining the instruction by the user operating a control panel of the shared device. This application does not impose any special restrictions on this.

[0087] For example, if a user wants to wash a white cotton shirt, they can send a laundry instruction through the mobile app or the shared device's control panel, specifying a "gentle wash" cycle, a water temperature of 30°C, and a wash time of 30 minutes. Once the shared device receives this instruction, it intelligently adjusts the wash cycle and parameters based on the current operating time, ensuring the shirt is washed in an environment with minimal noise.

[0088] S102: Determine a plurality of to-be-processed stages according to the target laundry processing program, wherein the plurality of to-be-processed stages are executed at different times.

[0089] Among them, different target clothing processing programs have different sub-stages, and each sub-stage has different operating parameters and execution timing. Therefore, by determining multiple stages to be processed, the working order of multiple stages to be processed and the operating parameters of each stage to be processed can be determined.

[0090] As you can understand, since the target laundry treatment program includes different processing stages, each stage has its own specific operating parameters, such as motor speed, water intake, water temperature, and run time. These parameters are set based on the function of the stage and the laundry treatment requirements. Furthermore, each processing stage is executed at a different time, following a pre-set sequence to ensure that the laundry undergoes a complete treatment process.

[0091] Therefore, by determining multiple stages to be processed, not only the working order of these stages can be obtained, but also the operating parameters required for each stage to be processed can be clarified, so that the shared equipment can operate accurately according to the user's clothing processing instructions to achieve the best cleaning effect.

[0092] For example, suppose a user selects a laundry program called "Intensive Wash" to clean a heavily soiled garment. Based on this program, the shared device will determine the following processing stages: pre-wash, intensive main wash, rinse, and spin. During the pre-wash stage, the shared device will run the motor at 500 rpm for 3 minutes to initially moisten and loosen the stains on the garment and ensure that the stains are initially treated. After entering the intensive main wash stage, the shared device will increase the motor speed to 1200 rpm and run for 15 minutes to thoroughly clean the heavily soiled garment. Then, in the rinse stage, the shared device will reduce the motor speed to 600 rpm for 5 minutes to rinse the garment with clean water and remove detergent and residue. Finally, in the spin stage, the shared device will again run the motor at 1000 rpm for 8 minutes to remove excess water from the garment, completing the cleaning of the garment.

[0093] S103: Determine first operating parameter information of each stage to be processed according to the multiple stages to be processed, where the first operating parameter information is a parameter in a noise prevention mode.

[0094] Among them, in order to ensure that the clothes can achieve the ideal cleaning effect during the washing process and minimize the noise generated by the operation of the equipment, it is necessary to accurately set the operating parameters in the noise prevention mode according to the different characteristics of each stage to be processed.

[0095] It is understandable that, first of all, considering the user's need for a quiet environment, especially when using shared devices at night or in situations where low noise is required, the anti-noise mode can significantly reduce the noise level during device operation and improve the user experience.

[0096] Secondly, different processing stages play different roles in the laundry treatment process and their operating parameters will also vary. Determining the specific parameters for each stage in noise reduction mode can ensure that the effect and quality of laundry treatment are not affected while reducing noise.

[0097] Finally, by setting dedicated noise reduction mode parameters for each processing stage, shared equipment can achieve more refined noise control in different working stages, thereby further improving the intelligence and automation level of shared equipment.

[0098] Therefore, by setting special first operating parameter information for each processing stage, that is, the parameters in the noise prevention mode, it can not only meet the user's needs to use shared equipment in a low-noise environment, but also ensure that the efficiency and effect of clothing processing are not affected.

[0099] For example, assuming that the user selects the "powerful wash" clothing treatment program, then in the pre-wash stage, the shared device uses a lower motor speed and a moderate running time to initially moisten and loosen stains, ensuring that the stains are preliminarily treated while reducing noise. Entering the powerful main wash stage, the shared device increases the motor speed and extends the running time to deeply clean stubborn stains on the clothes, while maintaining the operating parameters in the anti-noise mode to reduce the impact of noise on users. Subsequently, the rinsing stage uses a lower motor speed and a moderate running time to effectively remove detergents and residues while maintaining a low noise state. Finally, in the dehydration stage, the device increases the motor speed again and extends the running time to efficiently throw out excess water in the clothes, also in the anti-noise mode, to ensure that the entire processing process is both efficient and quiet.

[0100] S104: According to the execution timings of the multiple pending stages, control the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple pending stages.

[0101] Among them, in order to ensure that clothes are cleaned efficiently and thoroughly while providing users with a quiet and comfortable use environment, it is necessary to accurately control the operating parameters of the shared equipment according to the characteristics and needs of each stage to be processed, so that it can operate in noise-proof mode to achieve dual optimization of cleaning effect and noise reduction effect.

[0102] It is understandable that, first of all, since different processing stages have different requirements for cleaning effects, by precisely controlling the operating parameters of the shared equipment, it can be ensured that the clothes are efficiently and thoroughly cleaned in each processing stage, so that the clothes can achieve the best cleaning effect.

[0103] Secondly, when shared devices operate in noise-proof mode, they can not only significantly reduce the noise level during device operation, but also create a quiet and comfortable environment for noise-sensitive users, thereby improving the user experience.

[0104] Finally, by making the shared equipment run in noise-proof mode, not only the dual optimization of cleaning effect and noise reduction effect is successfully achieved, but also the users' demand for clean clothes is met, thereby meeting their demand for a comfortable environment.

[0105] The noise prevention control method for a shared device provided in this embodiment first obtains a clothing processing instruction with a target clothing processing program sent by a user. Then, based on the selected clothing processing program, different processing stages with different execution timings are determined. Next, according to each processing stage, the first operating parameter information of each processing stage is determined. Finally, according to the execution timings of the multiple processing stages, the shared device is controlled to perform noise prevention processing in the multiple processing stages according to the corresponding first operating parameter information. This method reduces the noise level generated by the shared clothing processing device during operation, thereby reducing noise interference to the student dormitory area, thereby creating a more peaceful and comfortable living environment for users.

[0106] Figure 2 The process of the noise prevention control method for the shared device provided in this embodiment Figure 2 .like Figure 2 As shown, this embodiment is in Figure 1 Based on the embodiment, the noise prevention control method for a shared device is described in detail. The noise prevention control method for a shared device provided in this embodiment includes:

[0107] S201: Obtain the startup time of the shared device.

[0108] The startup time is used to indicate that the operation state of the shared device is the standby state.

[0109] Understandably, in standby mode, the shared device is powered on but has not yet started any washing program or function. It will usually display a standby indicator light, indicating that the washing machine is ready to receive user instructions and start working.

[0110] In addition, in standby mode, shared devices usually consume less power, waiting for the user to select a washing program, set parameters through the control panel, and start the shared device to begin the washing process.

[0111] The method of obtaining the startup time of the shared device may be, for example, to obtain the time by checking the application on the terminal device connected to the shared device, or to obtain the time by querying the log record of the shared device. This application does not impose any special restrictions on this.

[0112] S202: Determine whether the start-up time is within a preset noise period; if so, execute step S203; if not, execute step S201.

[0113] The preset noise periods indicate when the noise generated by shared devices is most likely to affect users. For example, the lunch break period, from 12:00 PM to 2:00 PM, is when many people take a nap or rest; and the nighttime period, from 10:00 PM to 7:00 AM, is when most people are resting and are more sensitive to noise.

[0114] The purpose of determining whether the startup time is within the preset noise period is to determine whether the noise generated when the shared device is running will affect the user.

[0115] If the startup time is during the preset noise period, it means that the noise generated by the shared equipment during operation will affect the user.

[0116] If the startup time is not within the preset noise period, it means that the noise generated by the shared equipment will not affect the user.

[0117] It is understandable that since the preset noise period is set according to the user's specific needs for rest or other quiet environment, before the shared device is ready to start, the system will determine in advance whether the current startup time falls within the preset noise-sensitive period, thereby determining whether the startup time of the shared device will affect the user's life.

[0118] For example, let's assume the preset noise period is from 10 pm to 7 am the next day. This is when most people rest and are more sensitive to noise. Therefore, if a shared device is turned on at 11 pm (which is within the preset noise period), the system will determine that the noise generated by the device at this time will affect the user's rest.

[0119] S203: Acquire a clothes processing instruction sent by a user, where the clothes processing instruction includes a target clothes processing program.

[0120] The explanation of step S203 is similar to that of the above-mentioned step S101 and will not be repeated here.

[0121] S204: Determine a plurality of to-be-processed stages according to the target laundry processing program, wherein the plurality of to-be-processed stages are executed at different times.

[0122] The explanation of step S204 is similar to that of the above-mentioned step S102 and will not be repeated here.

[0123] S205: Acquire the weight of the laundry to be processed, where the laundry weight is used to indicate the dry weight of the laundry to be processed.

[0124] The weight of the clothes to be processed refers to the weight of the clothes before they are wetted.

[0125] The weight of the laundry to be processed can be obtained manually by the user before the laundry is placed in the smart laundry processing device and uploaded to the smart laundry processing device, or it can be obtained by the smart laundry processing device using a pressure sensor or motor after the user places the laundry in the smart laundry processing device. This application is not limited to this.

[0126] It can be understood that when all the clothes to be processed are down jackets, the weight obtained by executing the weighing program in the intelligent clothes processing device is 9 kg, and the sum of the dry weights of all the clothes is 9 kg.

[0127] S206: Determine the plurality of first motor speeds and the plurality of first working hours according to the weight of the clothes and the preset weight, wherein the first operating parameter information includes: the first motor speed and the first working hour. The first operating parameter information is the parameter in the noise prevention mode.

[0128] The preset weight may be 8 kg, for example.

[0129] By taking into account the weight of the laundry and the preset weight, the shared device can accurately identify the weight range of the laundry and adjust key operating parameters such as motor speed and operating time accordingly. For lightweight laundry, the shared device may choose a lower motor speed and shorter operating time to avoid damage to the laundry or waste energy. For heavier laundry, the shared device will increase the motor speed and extend the operating time accordingly to ensure the laundry is thoroughly cleaned.

[0130] It can be understood that by adjusting the operating parameters of the shared equipment according to the weight of the clothes in the drum, it can be ensured that the shared equipment can provide appropriate cleaning strength and efficiency when processing clothes of different weights, and can reduce the noise generated during operation as much as possible, thereby providing users with a quieter and more comfortable use environment.

[0131] Optionally, the specific implementation process of determining the multiple first motor speeds and the multiple first working times based on the weight of the clothes and the preset weight can be, for example: obtaining a parameter operation database, the parameter operation database including: the multiple stages to be processed and the preset motor speeds and preset working times of each stage to be processed; judging whether the weight of the clothes is greater than the preset weight; if so, adjusting the preset motor speed and preset working time of each stage to be processed according to the first processing rule, to obtain the multiple first motor speeds and the multiple first working times.

[0132] Among them, by obtaining the parameter operation database, the parameter information corresponding to each processing stage set in advance according to factors such as the performance of the shared equipment, the type of clothing and cleaning requirements can be obtained, that is, the preset motor speed and preset working time, so as to ensure that the shared equipment can operate in the most optimized manner in different processing stages.

[0133] The purpose of determining whether the weight of the clothes to be processed is greater than the preset weight is to determine whether the load-bearing state of the clothes processing device is overweight. For example, the shared device is allowed to process 8kg of clothes, and the current weight of the clothes to be processed in the drum is 10kg.

[0134] If the weight of the clothes to be processed is greater than the preset weight, it indicates that the load-bearing state of the clothes processing equipment is overweight. At this time, the preset motor speed and preset working time of each processing stage can be adjusted according to the first processing rule to obtain multiple first motor speeds and multiple first working times.

[0135] If the weight of the clothes to be processed is not greater than the preset weight, it indicates that the load-bearing state of the clothes processing equipment is not overweight. At this time, the clothes to be processed can be cleaned according to multiple preset motor speeds and multiple preset working times pre-set by the shared device.

[0136] For example, suppose the maximum weight of laundry a shared machine can handle is 8 kg. Now, there are 10 kg of laundry in the drum. Therefore, the system adjusts the preset motor speed of 900 rpm during the wash cycle to 700 rpm, shortening the wash cycle from 20 minutes to 15 minutes. Similarly, the parameters for the rinse and spin cycles are adjusted accordingly.

[0137] S207: According to the execution timings of the multiple stages to be processed, control the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple stages to be processed.

[0138] The explanation of step S207 is similar to that of step S104 above, and will not be repeated here.

[0139] The noise prevention control method for a shared device provided in this embodiment, upon obtaining the startup time of the shared device and determining that the startup time is within a preset noise period, first obtains a clothing processing instruction with a target clothing processing program sent by the user, then determines multiple stages to be processed based on the target clothing processing program, and determines the first operating parameter information for each stage to be processed based on the weight of the clothes to be processed in the drum and the preset weight, and finally, based on the execution timing of the multiple stages to be processed, controls the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple stages to be processed. This method solves the noise problem generated when the shared device is operated during a preset noise period (such as at night or during lunch break), thereby reducing interference with the user's rest and improving the user's quality of life.

[0140] Figure 3 The process of the noise prevention control method for the shared device provided in this embodiment Figure 3 .like Figure 3 As shown, this embodiment is in Figure 2 Based on the embodiment, the specific implementation process of the startup moment not being in the preset noise period is described in detail. The noise prevention control method for a shared device provided in this embodiment includes:

[0141] S301: Obtain the running time of the shared device.

[0142] The purpose of this step is to accurately determine the specific time when the shared device is currently running.

[0143] It can be understood that by obtaining the running time of the shared device, it means that the corresponding working time when the shared device is in the working state can be obtained.

[0144] The method of obtaining the information in this step may be, for example, obtaining the information by viewing the work record of the shared device, or obtaining the information by viewing the terminal device connected to the shared device for communication. This application does not impose any special restrictions on this.

[0145] S302: Determine whether the operating time is within the preset noise period; if so, execute step S303; if not, execute step S304.

[0146] The purpose of judging whether the operation time is in a preset noise period is to determine whether the current operation time of the shared device is in a period that affects the user.

[0147] Understandably, shared devices (such as washing machines and dryers) may generate noise during operation, which can sometimes be disruptive to users, especially during their rest or work hours. Therefore, by comprehensively considering the shared device's operating time and the preset noise period, it is possible to determine whether the shared device's current operation time falls within a period that could impact users.

[0148] If the running time is in the preset noise period, it indicates that the current running time of the shared device is at a time that affects the user. At this moment, the running stage of the shared device can be obtained.

[0149] If the running time is not in the preset noise period, it indicates that the current running time of the shared device is at a time that has no impact on the user. At this moment, the running time of the shared device can be re-acquired.

[0150] S303: Obtain the operating stage of the shared device.

[0151] The purpose of this step is to obtain which clothing processing stage the shared device is currently executing.

[0152] Understandably, shared equipment (such as washing machines and dryers) go through multiple distinct operating phases during operation. For example, washing machines typically include wash, rinse, and spin stages, while dryers may include preheating, drying, and cooling stages. Therefore, each phase has its own specific operating characteristics and noise levels, and the impact on users varies.

[0153] Therefore, in order to accurately process the specific stage in which the noise is generated, it is necessary to obtain the operation stage at the current moment when it is determined that the operation moment is in the preset noise period.

[0154] The operation phase of the shared device can be obtained by, for example, viewing the terminal device connected to the shared device for communication, or by viewing the log record of the shared device. This application does not impose any special restrictions on this.

[0155] S304: Determine target operating parameters of the shared device according to the operating stage, where the target operating parameters include operating noise, operating speed, and remaining operating time.

[0156] Among them, by determining the target operating parameters of the shared device, the specific noise level generated by the device in the current operating stage, the motor speed achieved, and the remaining operating time can be obtained.

[0157] As you can understand, the noise level in the target operating parameters can be used to determine whether the device's operation will cause interference to the user, thereby determining whether to adjust the operating strategy or notify the user. Motor speed reflects the device's operating efficiency and status, helping to understand its performance. The remaining operating time provides accurate information on how long the device will take to complete its current task.

[0158] Therefore, by determining the target operating parameters of shared devices, it is not only possible to help shared devices understand their current operating status, but also to make adjustments based on these parameters to provide users with a quieter and more comfortable usage environment.

[0159] S305: Determine whether the operating noise exceeds a preset noise; if so, execute step S306; if not, execute step S307.

[0160] The purpose of judging whether the operating noise exceeds the preset noise is to determine whether the noise generated by the shared equipment during operation interferes with people's normal life.

[0161] This is understandable, as one of the primary goals of shared devices is to provide users with convenient and comfortable services. Excessive noise during operation will directly impact the user experience and may even lead to user dissatisfaction with the device. Therefore, by determining whether the operating noise exceeds a preset noise level, we can accurately assess the sound generated by the shared device during operation.

[0162] If the operating noise exceeds the preset noise, it indicates that the noise generated by the shared device during operation interferes with people's normal life. At this time, the operating speed and the remaining operating time can be adjusted according to the second processing rule to obtain the second motor speed and the second working time.

[0163] If the operating noise does not exceed the preset noise, it means that the noise generated by the shared equipment during operation does not interfere with people's normal life. At this time, the shared equipment can be controlled to continue to process clothes according to the target working parameters during the operation stage.

[0164] S306: According to the second processing rule, the operating speed and the remaining operating time are adjusted respectively to obtain the second motor speed and the second working time. The second operating parameter information includes: the second motor speed and the second working time.

[0165] When the noise level of a shared device exceeds a preset level, it means that the noise is disrupting people's daily lives. To address this, adjustments to the device's operating parameters, such as reducing motor speed or adjusting the remaining operating time, are necessary to reduce the noise level.

[0166] For example, if a shared laundry machine in a shared laundry room generates noise exceeding a preset noise level during the spin cycle, the system will reduce the motor speed of the shared machine and extend the spin cycle duration according to the second processing rule.

[0167] S307: Control the shared device to continue processing clothes according to the target working parameters during the operation phase.

[0168] Among them, when it is determined that the operating noise of the shared device does not exceed the preset noise, in order to ensure that the shared device can complete the clothing processing instructions issued by the user, it is necessary to control the shared device to continue to process clothing according to the target working parameters during the operation phase.

[0169] It can be understood that by controlling the shared equipment to process clothes according to the target working parameters, the system can clean clothes efficiently and thoroughly according to the user's expectations and requirements, thereby meeting the user's actual needs.

[0170] In addition, by controlling the target operating parameters of shared equipment, the operating efficiency and stability of the equipment can be improved, and the service life of the equipment can be extended, which in turn helps to reduce the maintenance cost and failure rate of the equipment, thereby improving the overall performance and reliability of the shared equipment.

[0171] S308: Control the shared device to perform noise prevention processing according to the second motor speed and the second working time during the operation phase.

[0172] The purpose of this step is to ensure that the shared device operates at a lower noise level in the subsequent operation stage. It is necessary to control the shared device to perform noise prevention processing according to the second motor speed and the second working time during the operation stage.

[0173] Understandably, excessive noise levels can disrupt users' daily lives and affect the comfort of their living environment. Therefore, adjusting the operating parameters of shared equipment can not only effectively reduce noise generation and ensure its normal operation, but also significantly reduce noise interference to surrounding users. This balance can be achieved while ensuring the operating efficiency of shared equipment, thereby providing users with a better user experience and creating a more harmonious living environment.

[0174] The noise prevention control method for a shared device provided in this embodiment, when the startup moment is not in the preset noise period, first obtains the running moment of the shared device, and when it is determined that the running moment is in the preset noise period, obtains the running stage of the shared device; then, according to the running stage, determines the running noise, running speed and remaining running time of the shared device; then, when it is determined that the running noise exceeds the preset noise, according to the second processing rule, adjusts the running speed and the remaining running time respectively to obtain the second motor speed and the second working time; finally, controls the shared device to perform noise prevention processing according to the second motor speed and the second working time during the running stage. The noise generated by the operation of the equipment in different time periods is effectively reduced, thereby creating a quieter and more comfortable living environment for users. This method reduces the noise level generated by the shared clothing processing equipment during operation, thereby reducing the noise interference to the student dormitory area, thereby creating a quieter and more comfortable living environment for users.

[0175] Figure 4 This is a schematic diagram of the structure of the noise control device for shared equipment provided by this application. Figure 4 As shown, the present application provides a noise prevention control device for a shared device, and the noise prevention control device 400 for a shared device includes:

[0176] The acquisition module 401 is used to acquire a clothes processing instruction sent by a user, wherein the clothes processing instruction includes: a target clothes processing program;

[0177] A determination module 402 is configured to determine, according to the target laundry treatment program, a plurality of to-be-processed stages, wherein the plurality of to-be-processed stages are executed at different times;

[0178] The determining module 402 is further configured to determine first operating parameter information of each stage to be processed based on the multiple stages to be processed, where the first operating parameter information is a parameter in a noise prevention mode;

[0179] The control module 403 is configured to control the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple pending stages according to the execution timings of the multiple pending stages.

[0180] Optionally, the acquisition module 401 is further configured to acquire the startup time of the shared device;

[0181] The apparatus further includes: a judgment module 404;

[0182] The judging module 404 is configured to judge whether the start-up moment is within a preset noise period;

[0183] The acquisition module 401 is further configured to acquire the clothing processing instruction when the startup moment is within the preset noise period.

[0184] Optionally, the acquisition module 401 is further configured to acquire the weight of the laundry to be processed, where the laundry weight is used to indicate the dry weight of the laundry to be processed;

[0185] The determining module 402 is specifically configured to determine the plurality of first motor speeds and the plurality of first operating durations according to the laundry weight and the preset weight.

[0186] Optionally, the acquisition module 401 is further configured to acquire a parameter operation database, the parameter operation database including: the plurality of to-be-processed stages and a preset motor speed and a preset working time for each to-be-processed stage;

[0187] The judging module 404 is further configured to judge whether the weight of the laundry is greater than a preset weight;

[0188] The apparatus further includes: a processing module 405;

[0189] The processing module 405 is used to adjust the preset motor speed and preset working time of each processing stage according to the first processing rule when the weight of the clothes is greater than the preset weight, so as to obtain the multiple first motor speeds and the multiple first working times.

[0190] Optionally, the acquisition module 401 is further configured to acquire the operating time of the shared device when the startup time is not within the preset noise period;

[0191] The judging module 404 is further configured to judge whether the running time is within the preset noise period;

[0192] The acquisition module 401 is further configured to acquire the operation stage of the shared device when the operation time is within the preset noise period;

[0193] The determining module 402 is further configured to determine second operating parameter information of the shared device according to the operating stage;

[0194] The control module 403 is further configured to control the shared device to perform noise prevention processing according to the second operating parameter information during the operating phase.

[0195] Optionally, the determining module 402 is specifically configured to determine target operating parameters of the shared device according to the operating stage, the target operating parameters including: operating noise, operating speed, and remaining operating time;

[0196] The determining module 402 is specifically configured to determine the second operating parameter information according to the operating noise, the operating speed, and the remaining operating time.

[0197] Optionally, the judgment module 404 is further configured to judge whether the operating noise exceeds a preset noise;

[0198] The processing module 405 is further configured to adjust the operating speed and the remaining operating time according to a second processing rule to obtain the second motor speed and the second operating time when the operating noise exceeds the preset noise;

[0199] The controlling the shared device to perform noise prevention processing according to the second operating parameter information during the operation phase includes:

[0200] The control module 403 is specifically configured to control the shared device to perform noise prevention processing according to the second motor speed and the second working duration during the operation phase.

[0201] Figure 5 This is a schematic diagram of the structure of the noise control device for the shared device provided in this application. Figure 5 As shown, the present application provides a noise prevention control device for a shared device. The noise prevention control device 500 for a shared device includes: a receiver 501 , a transmitter 502 , a processor 503 and a memory 504 .

[0202] Receiver 501, for receiving instructions and data;

[0203] Transmitter 502, used to send instructions and data;

[0204] Memory 504, for storing computer-executable instructions;

[0205] The processor 503 is configured to execute the computer-executable instructions stored in the memory 504 to implement the steps of the noise prevention control method for a shared device in the above embodiment. For details, please refer to the relevant description of the noise prevention control method embodiment for a shared device.

[0206] Optionally, the memory 504 may be independent or integrated with the processor 503 .

[0207] When the memory 504 is independently provided, the electronic device further includes a bus for connecting the memory 504 and the processor 503 .

[0208] The present application also provides a computer-readable storage medium, which stores computer-executable instructions. When a processor executes the computer-executable instructions, the noise prevention control method for a shared device as performed by the noise prevention control device of the shared device mentioned above is implemented.

[0209] It will be appreciated by those skilled in the art that all or some of the steps, systems, and functional modules / units in the methods disclosed above may be implemented as software, firmware, hardware, and appropriate combinations thereof. In hardware implementations, the division between the functional modules / units mentioned in the above description does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may be performed by several physical components in cooperation. Some or all physical components may be implemented as software executed by a processor, such as a central processing unit, a digital signal processor, or a microprocessor, or implemented as hardware, or implemented as an integrated circuit, such as an application-specific integrated circuit. Such software may be distributed on a computer-readable medium, which may include a computer storage medium (or non-transitory medium) and a communication medium (or temporary medium). As is well known to those skilled in the art, the term computer storage medium includes volatile and non-volatile, removable, and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, digital versatile disks (DVD) or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store the desired information and can be accessed by a computer. In addition, it is well known to those skilled in the art that communication media generally embodies computer-readable instructions, data structures, program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media.

[0210] So far, the technical solution of the present application has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the scope of protection of the present application is obviously not limited to these specific embodiments. The above embodiments are only used to illustrate the technical solution of the present application, rather than to limit it. Although the present application has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. However, these modifications or replacements do not cause the essence of the corresponding technical solution to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A noise control method for a shared device, characterized in that: The method comprises: Acquiring a clothes processing instruction sent by a user, wherein the clothes processing instruction includes: a target clothes processing program; Determining a plurality of to-be-processed stages according to the target laundry processing program, wherein the plurality of to-be-processed stages are executed at different times; Determining first operating parameter information of each stage to be processed according to the multiple stages to be processed, where the first operating parameter information is a parameter in a noise prevention mode; According to the execution timings of the multiple stages to be processed, the shared device is controlled to perform noise prevention processing according to the corresponding first operating parameter information in the multiple stages to be processed.

2. The method according to claim 1, characterized in that The obtaining of the clothing processing instruction sent by the user includes: Obtaining the startup time of the shared device, and determining whether the startup time is within a preset noise period; When the start-up moment is within the preset noise period, the laundry processing instruction is obtained.

3. The method according to claim 1, characterized in that The first operating parameter information includes: a first motor speed and a first working time. The determining of the first operating parameter information of each stage to be processed according to the multiple stages to be processed includes: Acquiring a weight of the laundry to be processed, where the laundry weight is used to indicate a dry weight of the laundry to be processed; The plurality of first motor speeds and the plurality of first operating durations are determined according to the laundry weight and a preset weight.

4. The method according to claim 3, characterized in that The determining the plurality of first motor speeds and the plurality of first operating durations according to the laundry weight and the preset weight includes: Acquire a parameter operation database, the parameter operation database including: the plurality of pending stages and a preset motor speed and a preset working time for each pending stage; Determining whether the weight of the clothes is greater than a preset weight; If so, the preset motor speed and the preset working time of each to-be-processed stage are adjusted and processed respectively according to the first processing rule to obtain the multiple first motor speeds and the multiple first working times.

5. The method according to claim 2, characterized in that The method further comprises: When the startup time is not in the preset noise period, obtaining the running time of the shared device and determining whether the running time is in the preset noise period; If so, obtaining the operating stage of the shared device, and determining second operating parameter information of the shared device according to the operating stage; The shared device is controlled to perform noise prevention processing according to the second operating parameter information during the operating phase.

6. The method according to claim 5, characterized in that The determining, according to the operating stage, second operating parameter information of the shared device includes: Determining target operating parameters of the shared device according to the operating stage, the target operating parameters including: operating noise, operating speed, and remaining operating time; The second operating parameter information is determined according to the operating noise, the operating speed, and the remaining operating time.

7. The method according to claim 6, characterized in that The second operating parameter information includes: a second motor speed and a second operating time. Determining the second operating parameter information according to the operating noise, the operating speed, and the remaining operating time includes: Determining whether the operating noise exceeds a preset noise; When the operating noise exceeds the preset noise, the operating speed and the remaining operating time are adjusted according to a second processing rule to obtain the second motor speed and the second operating time; The controlling the shared device to perform noise prevention processing according to the second operating parameter information during the operation phase includes: The shared device is controlled to perform noise prevention processing according to the second motor speed and the second working time during the operation phase.

8. A noise prevention control device for a shared device, characterized in that: include: an acquisition module, configured to acquire a clothes processing instruction sent by a user, wherein the clothes processing instruction includes: a target clothes processing program; a determination module, configured to determine a plurality of to-be-processed stages according to the target laundry treatment program, wherein the plurality of to-be-processed stages are executed at different times; The determining module is further configured to determine first operating parameter information of each stage to be processed based on the multiple stages to be processed, wherein the first operating parameter information is a parameter in a noise prevention mode; The control module is used to control the shared device to perform noise prevention processing according to the corresponding first operating parameter information in the multiple pending stages according to the execution timing of the multiple pending stages.

9. A noise control device for a shared device, characterized in that: include: Memory; processor; wherein the memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the noise prevention control method for a shared device according to any one of claims 1 to 7.

10. A computer storage medium, characterized in that The computer storage medium stores computer-executable instructions, which, when executed by a processor, are used to implement the noise prevention control method for a shared device according to any one of claims 1 to 7.