CN111172704B - Washing control method and system of washing equipment - Google Patents

Washing control method and system of washing equipment Download PDF

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Publication number
CN111172704B
CN111172704B CN201811244840.7A CN201811244840A CN111172704B CN 111172704 B CN111172704 B CN 111172704B CN 201811244840 A CN201811244840 A CN 201811244840A CN 111172704 B CN111172704 B CN 111172704B
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washing
parameter
use frequency
program
equipment
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CN111172704A (en
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高秋英
田颖
才智
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Qingdao Haier Washing Machine Co Ltd
Haier Smart Home Co Ltd
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青岛海尔洗衣机有限公司
海尔智家股份有限公司
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Priority to CN201811244840.7A priority Critical patent/CN111172704B/en
Priority to JP2021522025A priority patent/JP7240491B2/en
Priority to PCT/CN2019/108274 priority patent/WO2020082980A1/en
Publication of CN111172704A publication Critical patent/CN111172704A/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/46Devices for the automatic control of the different phases of cleaning ; Controlling devices
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F33/00Control of operations performed in washing machines or washer-dryers 
    • D06F33/30Control of washing machines characterised by the purpose or target of the control 

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Control Of Washing Machine And Dryer (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention relates to the technical field of washing equipment, in particular to a washing control method and a washing control system of the washing equipment, and aims to simplify the operation steps of the washing equipment. The washing control method of the washing equipment comprises the following steps: acquiring the use frequency of each washing program in the current washing equipment within a certain time; acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time; when the current washing equipment is started, sequentially displaying washing programs according to the sequence of the use frequency from high to low; and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter. The invention sequences the washing programs according to the historical washing data and sets the default values of the washing parameters, thereby facilitating the user to select the programs conforming to the use habits and greatly reducing the operation steps of the washing equipment.

Description

Washing control method and system of washing equipment
Technical Field
The invention relates to the technical field of washing equipment, in particular to a washing control method and a washing control system of the washing equipment.
Background
Modern people are busy in work and life, and washing equipment such as washing machines and dish-washing machines are widely used so as to help people reduce the time occupied by household work.
At present, when a user uses washing equipment, the user usually needs to press a program key or slide a program interface to select a program, and then sets the water quantity, the rinsing times, the washing time and the like, so that the operation steps are complicated. The programs cannot be sorted according to the preference of the user, and the parameters set by the user through programming cannot be stored, and the programs need to be reset after the equipment is restarted.
Disclosure of Invention
In order to solve the above problems in the prior art, the invention provides a washing control method and system for a washing device, which simplify the operation steps of the washing device and improve the user experience.
In one aspect of the present invention, a washing control method of a washing apparatus is provided, including:
acquiring the use frequency of each washing program in the current washing equipment within a certain time;
and when the current washing equipment is started, sequentially displaying the washing programs according to the sequence of the use frequency from high to low.
Preferably, the step of "acquiring the frequency of use of each washing program in the current washing device within a certain time" includes:
acquiring a first use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
alternatively, the first and second electrodes may be,
acquiring a second use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
acquiring a third use frequency of each washing program in specific washing equipment pre-stored in a remote server within the certain time;
calculating a weighted sum of the second use frequency and the third use frequency to obtain a fourth use frequency corresponding to each washing program in the current washing equipment;
wherein the specific washing apparatus comprises: the current washing equipment and the washing equipment with the same model as the current washing equipment.
Preferably, before the step of "sequentially displaying the washing courses in order from high to low according to the frequency of use when the current washing apparatus is started", the method further comprises:
acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time;
accordingly, after the step of "displaying the washing courses in order from high to low according to the frequency of use", the method further comprises:
and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter.
Preferably, the step of "obtaining the frequency of using the parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the current washing device" includes:
and analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the first parameter gear within the certain time according to the historical washing data.
Preferably, the step of "obtaining the frequency of using the parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the current washing device" includes:
analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the second parameter gear within the certain time according to the historical washing data;
acquiring the use frequency of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in the remote server in a third parameter gear within the certain time;
and calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
In another aspect of the present invention, a washing control system of a washing apparatus is provided, including: the program use frequency acquisition module and the sequencing display module;
the program usage frequency acquisition module is configured to: acquiring the use frequency of each washing program in the current washing equipment within a certain time;
the ranking display module is configured to: and when the current washing equipment is started, sequentially displaying the washing programs according to the sequence of the use frequency from high to low.
Preferably, the program usage frequency acquisition module includes: a first acquisition unit and/or a second acquisition unit;
the first acquisition unit is configured to: acquiring a first use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
the second acquisition unit comprises a first acquisition subunit, a second acquisition subunit and a third acquisition subunit;
the first acquisition subunit is configured to: acquiring a second use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
the second acquisition subunit is configured to: acquiring a third use frequency of each washing program in specific washing equipment pre-stored in a remote server within the certain time;
the third acquisition subunit is configured to: calculating a weighted sum of the second use frequency and the third use frequency to obtain a fourth use frequency corresponding to each washing program in the current washing equipment;
wherein the specific washing apparatus comprises: the current washing equipment and the washing equipment with the same model as the current washing equipment.
Preferably, the system further comprises: the system comprises a parameter gear use frequency acquisition module and a parameter gear display module; the parameter gear use frequency acquisition module is configured to: acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time;
the parameter gear display module is configured to: and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter.
Preferably, the parameter gear use frequency acquiring module includes: a third acquisition unit;
the third acquisition unit is configured to: and analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the first parameter gear within the certain time according to the historical washing data.
Preferably, the parameter gear use frequency acquiring module includes: a fourth acquisition unit comprising a fourth acquisition subunit, a fifth acquisition subunit, and a sixth acquisition subunit;
the fourth acquisition subunit is configured to: analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the second parameter gear within the certain time according to the historical washing data;
the fifth obtaining subunit is configured to: acquiring the use frequency of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in the remote server in a third parameter gear within the certain time;
the sixth acquisition subunit is configured to: and calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
Compared with the closest prior art, the invention has the following beneficial effects:
the invention provides a washing control method of washing equipment, which comprises the following steps of firstly, obtaining the use frequency of each washing program according to historical washing data stored in the washing equipment, and the use frequency of each parameter gear of each washing parameter in each washing program; then, the washing programs are sorted from high to low according to the use frequency of the washing programs, so that a user can preferentially select the washing programs used by the user, and the washing parameters of the currently selected washing program are set to default values according to the use frequency of each parameter gear.
Considering the condition that only a small amount of washing data or no washing data is possibly stored in the current washing equipment, the invention can also respectively obtain the use frequency corresponding to the locally stored historical washing data and the historical washing data of the washing equipment of the same model stored in the remote server, then obtain a comprehensive use frequency by a method of calculating weighted sum, and carry out the sequencing of the washing program and the setting of the washing parameter default value according to the comprehensive use frequency.
According to the washing method and the washing system, the washing programs are sequenced according to historical washing data, and the default values of all washing parameters in the washing programs are set, so that a user can conveniently select the programs which accord with the use habits, the operation steps of washing equipment are greatly reduced, and the user experience is improved.
Drawings
FIG. 1 is a schematic diagram of the main steps of an embodiment of a washing control method of a washing apparatus according to the present invention;
FIG. 2 is a schematic diagram of the main steps of another embodiment of a washing control method of a washing apparatus according to the present invention;
FIG. 3 is a schematic view of a main structure of an embodiment of a washing control system of a washing apparatus according to the present invention;
fig. 4 is a schematic view of the main structure of another embodiment of the washing control system of the washing apparatus according to the present invention.
Detailed Description
Preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only for explaining the technical principle of the present invention, and are not intended to limit the scope of the present invention.
It should be noted that the terms "first," "second," "third," and the like in the description of the present invention are used for convenience of description only and do not indicate or imply relative importance of the devices, elements, or parameters, and therefore, the present invention should not be construed as limited.
The invention utilizes the washing data stored in the current washing equipment on one hand, and collects and excavates big data on the other hand, automatically judges the preference degree of the user to the program through self-learning, thereby arranging the priority of various washing programs, and can further learn the washing parameters set by self-programming, such as time, water level and the like, and display the time, water level and the like with the highest use frequency by default.
Some washing devices are specially provided with a self-programming function which is parallel to washing programs such as 'standard' and 'big objects', and the self-programming function allows a user to freely set various washing parameters; some washing devices do not have the option of self-programming, but the washing parameters in the "standard", "big", etc. programs can be modified by the user. The "historical washing data" referred to in the present invention includes: the user selects which washing program (e.g., standard, large, soft, quick, self-programming, etc.) and specific washing parameters set when the selected program is self-programmed (e.g., washing time adjusted to the fourth gear, water level set to the fourth gear, rinsing number set to the fourth gear, etc.), and these historical washing data are collected and saved locally while the washing apparatus is running and uploaded to a remote server. The "self-programming" mentioned in the following embodiments includes both setting of washing parameters in the self-programming function and parameter adjustment of programs such as "standard", "large article", etc.
The "specific washing apparatus" mentioned in the following examples includes: the current washing equipment and other washing equipment with the same model as the current washing equipment; the "remote server" can be a traditional server or a cloud server; the "certain time" may be preset, for example, within one month, within half a year, within one year, etc. from the current time.
FIG. 1 is a schematic diagram of the main steps of an embodiment of a washing control method of a washing apparatus according to the present invention. As shown in FIG. 1, the washing control method of the present embodiment includes steps A10-A20:
step A10, obtaining the frequency of each washing program in the current washing equipment in a certain time.
If only the historical washing data stored in the current washing machine is analyzed, step A10 may proceed to the next sorting step after the first usage frequency is obtained, specifically according to the method of step A11 described below.
Step A11, obtaining a first usage frequency of each washing program according to historical washing data of each washing program stored in advance in the current washing equipment in a certain time.
When a user newly purchases a washing apparatus, the locally stored historical washing data may be little or even completely absent, and the method according to step a11 may not recommend a suitable washing program to the user, and it may be considered to analyze how other users are configured when using the same model of washing apparatus through big data, and then recommend the washing program to the current user. Therefore, in a preferred embodiment, the historical washing data of the current washing device and the historical washing data of other washing devices of the same model can be analyzed in a comprehensive manner, in which case, the step a10 can specifically obtain the fourth usage frequency according to the method of the following steps a12-a14 and then enter the following sorting step.
Step A12, obtaining a second frequency of use of each washing program according to historical washing data of each washing program pre-stored in current washing equipment within a certain time;
step A13, obtaining a third usage frequency of each washing program in a specific washing device pre-stored in a remote server within a certain time;
and A14, calculating a weighted sum of the second frequency of use and the third frequency of use to obtain a fourth frequency of use corresponding to each washing program in the current washing equipment.
If the locally stored historical wash data is sufficient, then the latter ranking is attempted based on the locally stored historical data, so that the weight of the second frequency of use is greater than the weight of the third frequency of use when the weighted sum is calculated here.
And step A20, when the current washing equipment is started, displaying the washing programs in sequence according to the sequence of the use frequency from high to low.
In this embodiment, the historical washing data in the current washing apparatus may be stored in a memory or storage device having a power-down saving function. The memory may include: flash, EEPROM, FRAM, or the like; the storage device may include: SD card, USB memory device, hard disk, or RAM used in cooperation with a battery. And classifying and storing the historical washing data in the remote server according to different models of the washing equipment, and carrying out frequency statistics.
Fig. 2 is a schematic view of main steps of another embodiment of a washing control method of a washing apparatus according to the present invention. As shown in FIG. 2, the washing control method of the present embodiment includes steps B10-B40:
and step B10, acquiring the use frequency of each washing program in the current washing equipment within a certain time. The specific content of this step is identical to step a10 in fig. 1, and is not described here again.
And step B20, acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time.
If only the historical wash data stored in the current washing machine is analyzed, step B20 may proceed to the next sequencing step after the first parameter gear usage frequency is obtained, specifically according to the method of step B21 described below.
And step B21, analyzing the frequency of using the first parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the corresponding washing program according to the historical washing data.
In a preferred embodiment, the historical washing data of the current washing device and the historical washing data of other washing devices of the same model can be analyzed in a comprehensive manner, in which case, the step B20 can specifically obtain the fourth usage frequency according to the method of the following steps B22-B24 and then enter the following sorting step.
Step B22, analyzing the frequency of using a second parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the corresponding washing program according to historical washing data;
step B23, acquiring the use frequency of a third parameter gear within a certain time of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in the remote server;
and step B24, calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
And the weight of the use frequency of the second parameter gear is greater than that of the use frequency of the third parameter gear.
And step B30, when the current washing equipment is started, displaying the washing programs in sequence according to the sequence from high frequency to low frequency of use.
And step B40, acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter. That is, a default value of each washing parameter is set to a parameter step that is used the most frequently for a washing course selected by a current user.
Although the foregoing embodiments describe the steps in the above sequential order, those skilled in the art will understand that, in order to achieve the effect of the present embodiments, the steps may not be executed in such an order, and may be executed simultaneously (in parallel) or in an inverse order, and these simple variations are within the scope of the present invention.
Based on the same technical concept as the method embodiment, the invention also provides a washing control system embodiment of the washing equipment, which is specifically described below.
FIG. 3 is a schematic diagram of the main structure of an embodiment of a washing control system of a washing apparatus according to the present invention. As shown in fig. 3, the washing control system 10 of the washing apparatus in the present embodiment includes: the program uses a frequency acquisition module 11 and a ranking display module 12.
The program use frequency acquiring module 11 is configured to: acquiring the use frequency of each washing program in the current washing equipment within a certain time; the ranking display module 12 is configured to: when the current washing equipment is started, the washing programs are sequentially displayed according to the sequence of the use frequency from high to low.
The program use frequency acquisition module 11 includes: a first acquisition unit 111 and/or a second acquisition unit 112.
The first acquisition unit 111 is configured to: acquiring a first use frequency of each washing program according to historical washing data of each washing program pre-stored in current washing equipment within a certain time; the second acquisition unit 112 includes a first acquisition sub-unit 1121, a second acquisition sub-unit 1122, and a third acquisition sub-unit 1123. The first obtaining sub-unit 1121 is configured to: acquiring a second use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within a certain time; the second acquisition subunit 1122 is configured to: acquiring a third use frequency of each washing program in specific washing equipment pre-stored in a remote server within a certain time; the third obtaining subunit 1123 is configured to: and calculating a weighted sum of the second use frequency and the third use frequency to obtain a fourth use frequency corresponding to each washing program in the current washing equipment. The specific washing apparatus includes: the current washing equipment and other washing equipment with the same model as the current washing equipment.
Fig. 4 is a schematic view of the main structure of another embodiment of the washing control system of the washing apparatus according to the present invention. As shown in fig. 4, the washing control system 20 of the washing apparatus in the present embodiment includes: the system comprises a program use frequency acquisition module 21, a sequencing display module 22, a parameter gear use frequency acquisition module 23 and a parameter gear display module 24.
The program use frequency obtaining module 21 and the sorting display module 22 are respectively the same as the program use frequency obtaining module 11 and the sorting display module 12 in fig. 3, and are not described herein again; the parameter gear use frequency acquiring module 23 is configured to: acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time; the parameter gear display module 24 is configured to: and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter.
The parameter gear usage frequency obtaining module 23 may specifically include: a third acquisition unit 231 and/or a fourth acquisition unit 232. The third acquisition unit 231 is configured to: analyzing the use frequency of a first parameter gear within a certain time of each parameter gear corresponding to each washing parameter in a corresponding washing program according to historical washing data; the fourth acquiring unit 232 includes a fourth acquiring subunit 2321, a fifth acquiring subunit 2322 and a sixth acquiring subunit 2323.
Wherein the fourth obtaining subunit 2321 is configured to: analyzing the use frequency of a second parameter gear within a certain time of each parameter gear corresponding to each washing parameter in a corresponding washing program according to historical washing data; the fifth obtaining subunit 2322 is configured to: acquiring the use frequency of a third parameter gear within a certain time of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in a remote server; the sixth obtaining subunit 2323 is configured to: and calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
In the present application, the washing control system of the washing device is divided into modules, units and sub-units only for better understanding of the functions related to the technical solution of the present invention, and in practice, the functions corresponding to these modules may be loaded and executed by a single hardware.
Those of skill in the art will appreciate that the various illustrative method steps, modules, units, and sub-units described in connection with the embodiments disclosed herein may be implemented as electronic hardware, computer software, or combinations of both, and that the various illustrative components and steps have been described above generally in terms of their functionality in order to clearly illustrate the interchangeability of electronic hardware and software. Whether such functionality is implemented as electronic hardware or software depends upon the particular application and design constraints imposed on the solution. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present invention.
So far, the technical solutions of the present invention have been described in connection with the preferred embodiments shown in the drawings, but it is easily understood by those skilled in the art that the scope of the present invention is obviously not limited to these specific embodiments. Equivalent changes or substitutions of related technical features can be made by those skilled in the art without departing from the principle of the invention, and the technical scheme after the changes or substitutions can fall into the protection scope of the invention.

Claims (8)

1. A washing control method of a washing apparatus, characterized by comprising:
acquiring the use frequency of each washing program in the current washing equipment within a certain time;
when the current washing equipment is started, sequentially displaying the washing programs according to the sequence of the use frequency from high to low;
the step of acquiring the frequency of use of each washing program in the current washing equipment within a certain time includes:
acquiring a second use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
acquiring a third use frequency of each washing program in specific washing equipment pre-stored in a remote server within the certain time;
calculating a weighted sum of the second use frequency and the third use frequency to obtain a fourth use frequency corresponding to each washing program in the current washing equipment;
wherein the specific washing apparatus comprises: the current washing equipment and the washing equipment with the same model as the current washing equipment.
2. The washing control method of a washing appliance as claimed in claim 1, wherein before the step of sequentially displaying the washing courses in order of the use frequency from high to low when the current washing appliance is started, the method further comprises:
acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time;
accordingly, after the step of "displaying the washing courses in order from high to low according to the frequency of use", the method further comprises:
and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter.
3. The washing control method of washing equipment according to claim 2, wherein the step of obtaining the frequency of using the parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the current washing equipment comprises:
and analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the first parameter gear within the certain time according to the historical washing data.
4. The washing control method of washing equipment according to claim 2, wherein the step of obtaining the frequency of using the parameter gear within a certain time of each parameter gear corresponding to each washing parameter in the current washing equipment comprises:
analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the second parameter gear within the certain time according to the historical washing data;
acquiring the use frequency of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in the remote server in a third parameter gear within the certain time;
and calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
5. A washing control system of a washing apparatus, characterized by comprising: the program use frequency acquisition module and the sequencing display module;
the program usage frequency acquisition module is configured to: acquiring the use frequency of each washing program in the current washing equipment within a certain time;
the ranking display module is configured to: when the current washing equipment is started, sequentially displaying the washing programs according to the sequence of the use frequency from high to low;
wherein the program use frequency acquisition module comprises: a first acquisition unit and a second acquisition unit;
the first acquisition unit is configured to: acquiring a first use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
the second acquisition unit comprises a first acquisition subunit, a second acquisition subunit and a third acquisition subunit;
the first acquisition subunit is configured to: acquiring a second use frequency of each washing program according to historical washing data of each washing program pre-stored in the current washing equipment within the certain time;
the second acquisition subunit is configured to: acquiring a third use frequency of each washing program in specific washing equipment pre-stored in a remote server within the certain time;
the third acquisition subunit is configured to: calculating a weighted sum of the second use frequency and the third use frequency to obtain a fourth use frequency corresponding to each washing program in the current washing equipment;
wherein the specific washing apparatus comprises: the current washing equipment and the washing equipment with the same model as the current washing equipment.
6. A washing control system for a washing appliance according to claim 5, characterized in that the system further comprises: the system comprises a parameter gear use frequency acquisition module and a parameter gear display module; the parameter gear use frequency acquisition module is configured to: acquiring the use frequency of each parameter gear corresponding to each washing parameter in the current washing equipment within a certain time;
the parameter gear display module is configured to: and acquiring the use frequency of the parameter gear of each parameter gear corresponding to each washing parameter in the current washing program, and displaying the parameter gear with the highest use frequency of the parameter gear corresponding to each washing parameter.
7. The washing control system of washing equipment, as recited in claim 6, wherein the parameter gear usage frequency acquisition module comprises: a third acquisition unit;
the third acquisition unit is configured to: and analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the first parameter gear within the certain time according to the historical washing data.
8. The washing control system of washing equipment, as recited in claim 6, wherein the parameter gear usage frequency acquisition module comprises: a fourth acquisition unit;
the fourth acquisition unit comprises a fourth acquisition subunit, a fifth acquisition subunit and a sixth acquisition subunit;
the fourth acquisition subunit is configured to: analyzing the use frequency of each parameter gear corresponding to each washing parameter in the corresponding washing program in the second parameter gear within the certain time according to the historical washing data;
the fifth obtaining subunit is configured to: acquiring the use frequency of each parameter gear corresponding to each washing parameter of each washing program in specific washing equipment pre-stored in the remote server in a third parameter gear within the certain time;
the sixth acquisition subunit is configured to: and calculating a weighted sum of the use frequency of the second parameter gear and the use frequency of the third parameter gear to obtain the use frequency of the fourth parameter gear.
CN201811244840.7A 2018-10-24 2018-10-24 Washing control method and system of washing equipment Active CN111172704B (en)

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Application Number Priority Date Filing Date Title
CN201811244840.7A CN111172704B (en) 2018-10-24 2018-10-24 Washing control method and system of washing equipment
JP2021522025A JP7240491B2 (en) 2018-10-24 2019-09-26 Cleaning control method and system for cleaning equipment
PCT/CN2019/108274 WO2020082980A1 (en) 2018-10-24 2019-09-26 Washing control method and system for washing device

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Application Number Priority Date Filing Date Title
CN201811244840.7A CN111172704B (en) 2018-10-24 2018-10-24 Washing control method and system of washing equipment

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CN111172704B true CN111172704B (en) 2022-04-19

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