A shared laundry machine management system
By combining visual and pressure sensors with a clothing database and control module, the system automatically selects the washing mode and number of rinses, solving the problems of poor washing results and low efficiency in the management of shared washing machines, and improving the cleanliness, safety, and efficiency of clothing washing.
Patent Information
- Application Number
- CN202310725579.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2043-06-19
AI Technical Summary
The existing shared washing machine management model cannot automatically adjust the number of washes based on the amount of laundry to be done, resulting in poor washing results and an inability to allocate washing machine usage reasonably, leading to management chaos and low washing efficiency.
It uses visual and pressure sensors to acquire images and weight information of clothes, combines a clothes database and control module to automatically select the washing mode and number of rinses, ensures that the detergent content is within a safe range through a feedback module, and optimizes the washing machine usage sequence through a calculation and analysis module.
It enables precise control of detergent content, ensuring the cleanliness and safety of clothes, and improving the efficiency of washing machine use and cleaning.
Smart Images

Figure CN116770545B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of sharing management, and more particularly to a shared washing machine management system. BACKGROUND
[0002] With the development of the sharing concept in recent years, the development of shared bicycles and shared power banks at the beginning promotes the development of shared cars and shared washing machines. The concept of sharing is to benefit the public. The present application mainly aims at the pipeline of shared washing machines. The current shared washing machines are mainly used in apartment buildings or schools, and are selected for use by scanning codes or coins. However, the management mode of the existing shared washing machines is relatively single, the user selects the washing mode, and the number of cleaning cannot be automatically adjusted according to the amount of clothes to be washed, resulting in poor cleaning results, and the use of the washing machine cannot be reasonably distributed, resulting in low cleaning efficiency. Therefore, it is difficult to meet the information management control, so that the management of the shared washing machine is chaotic or cannot be efficiently managed. SUMMARY
[0003] In view of the deficiencies in the prior art, the purpose of the present application is to provide a shared washing machine management system which can automatically select the cleaning mode according to the amount of clothes to be washed and the weight of the clothes to be washed, thereby improving the cleaning efficiency and cleaning cleanliness.
[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme:
[0005] A shared washing machine management system comprises a plurality of washing machines and a controller for controlling each washing machine. Each washing machine comprises a visual sensor and a pressure sensor. The pressure sensor is located on the drum shaft. The controller comprises a clothes database. The clothes database comprises a plurality of different clothes management information. Each piece of clothes management information comprises clothes type information and cleaning mode information. The clothes type information reflects the type of clothes. The cleaning mode information reflects the type of clothes cleaning mode. The clothes type information and the cleaning mode information correspond one by one.
[0006] The controller further comprises a collection module, a processing module and a control module.
[0007] The collection module obtains the clothes type selected by the user as the clothes to be washed information, obtains the image of the drum taken by the visual sensor as the image to be analyzed, and obtains the overall weight value of the drum shaft detected by the pressure sensor.
[0008] The processing module obtains the image to be analyzed in the acquisition module, judges the mark line of the clothes in the drum as the specified line according to the image to be analyzed, obtains the washing liquid content value through the liquid adding strategy according to the specified line, obtains the washing frequency value through the flushing strategy according to the washing liquid content value, the specified line and the overall weight value, obtains the information of the laundry to be washed in the acquisition module, and indexes the corresponding cleaning mode information as the specified cleaning mode in the laundry management information according to the information of the laundry to be washed.
[0009] The control module adjusts and selects the washing machine according to the specified cleaning mode, adds the amount according to the washing liquid content, and flushes according to the washing frequency value.
[0010] Further, the liquid adding strategy includes step S1, obtaining the water passing line by offsetting the specified line downward by a calibration amount, and obtaining the overall volume value of the water injection cavity in the washing machine;
[0011] Step S2, calculating the overall height relationship ratio of the water passing line and the water injection cavity, and calculating the water injection volume value according to the relationship ratio and the overall volume value;
[0012] Step S3, calculating the washing liquid content value through the washing ratio according to the water injection volume value.
[0013] Further, the laundry database also has a relationship table preset therein, the relationship table includes washing liquid content information, flushing volume information, overall weight information and washing frequency information, and the flushing strategy includes step S1, obtaining the submerged line by offsetting the specified line upward by a submerged height, calculating the overall height ratio of the submerged line and the water injection cavity as the water injection ratio, and calculating the flushing water volume value according to the water injection ratio and the overall volume value;
[0014] Step S2, indexing the corresponding washing frequency information as the washing frequency value in the relationship table according to the washing liquid content, the overall weight value and the flushing water volume value.
[0015] Further, the washing machine further includes an extraction analyzer, and the acquisition module obtains the content value of the washing liquid in the water after flushing as the retention value according to the sampling water volume value obtained by the extraction analyzer;
[0016] The controller further includes a feedback module, the feedback module includes a safety value, the feedback module obtains the retention value in the acquisition module, compares the retention value with the safety value, if the retention value is greater than the safety value, sends a continue flushing instruction to the control module, and if the retention value is less than or equal to the safety value, sends an end instruction to the control module.
[0017] Further, the feedback module further comprises a feedback table, the feedback table comprising a plurality of proportion intervals and a plurality of times of re-flushing;
[0018] The processing module further comprises a processing submodule, the processing submodule obtaining a retention value in the feedback module, calculating a conversion value by taking a ratio of the retention value to a water injection volume value, calculating a proportion value by taking a ratio of the conversion value to a washing liquid content value, and taking a time of re-flushing corresponding to the proportion value in the feedback table as a to-be-flushed time value;
[0019] The control module controls the washing machine to flush based on a flushing water volume value according to the to-be-flushed time value.
[0020] Further, the collection module obtains a current washing time of each washing machine as a current washing time consumption value and obtains queuing information of the user.
[0021] The processing submodule obtains the current washing time consumption value in the collection module, sorts the current washing time consumption value to obtain a time consumption sequence, obtains the queuing information in the collection module, and matches the queuing information with the time consumption sequence to obtain a pre-ordered sequence.
[0022] Further, the processing submodule obtains the queuing information in the collection module, analyzes washing mode information of each user in the queue according to the queuing information, obtains an initial washing time consumption value according to the washing mode information, and sorts the initial washing time consumption value to obtain a pre-washing sequence.
[0023] The controller further comprises a calculation and analysis module, the calculation and analysis module obtaining the initial washing time consumption value and the time consumption sequence in the processing submodule, and obtaining an optimized sequence by a distribution strategy according to the pre-washing sequence and the time consumption sequence.
[0024] Further, the distribution strategy comprises the following steps.
[0025] Step S2: comparing the adjacent time consumption value with the waiting ideal time consumption value, if the adjacent time consumption value is greater than the waiting ideal time consumption value, comparing current washing time consumption values of the two washing machines with the smallest level in the time consumption sequence to obtain a current time consumption difference value, if the adjacent time consumption value is less than or equal to the waiting ideal time consumption value, taking the pre-ordered sequence as the optimized sequence.
[0026] Step S3, a reference difference value is preset, the current time-consuming difference value is compared with the adjacent time-consuming difference value to obtain an actual difference value, the actual difference value is compared with the reference difference value, if the actual difference value is greater than the reference difference value, the user of the minimum level of the initial cleaning time-consuming value in the pre-cleaning sequence is arranged to the first position to obtain a replacement sequence, the replacement sequence is matched with the time-consuming sequence to obtain an optimized sequence, if the actual difference value is less than or equal to the reference difference value, the pre-sequence is taken as the optimized sequence.
[0027] The beneficial effects of the present application are: 1. By automatically corresponding to the cleaning mode of the clothes to be washed according to the type of the clothes to be washed, the water injection volume value is obtained according to the mark line analysis of the clothes to be washed, and the content value of the washing liquid to be put in can be obtained according to the water injection volume value. Compared with the content of the washing liquid put in by the user himself, the automatic judgment mode of the present application can accurately control the content of the washing liquid, avoid too much or too little washing liquid, and ensure the cleanliness of the clothes after washing;
[0028] 2. The number of times of washing of the clothes is determined by the amount of clothes, the overall weight inside after water injection and the content of the washing liquid. Since the content of the washing liquid is different, the washing times are different, and the rotation speed of the drum is also different due to the difference between the internal washing water and the clothes. That is, the combination of the three determines the number of times of washing. Compared with the fixed washing times of the existing washing machine, the present application can ensure that the content of the washing liquid in the clothes after washing is within the control range, ensuring the safety of wearing. Further, through the feedback module, it can be analyzed whether the content of the washing liquid in the water after the last washing exceeds the safety value, and corresponding re-washing is performed according to the judgment result, further ensuring that the content of the washing liquid after washing the clothes reaches below the safety value.
[0029] 3. The current cleaning time of all washing machines is sorted, then the current queued users are analyzed, the pre-cleaning time of the queued users is sorted, and then the optimized sequence is calculated according to the corresponding distribution strategy, so as to ensure that each user can be reasonably distributed to the washing machine for cleaning. Compared with the user's own selection, the use efficiency of the washing machine is low, and the automatic distribution mode of the present application can improve the use efficiency of the washing machine. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 is the control flow chart of the present application;
[0031] Figure 2 is the overall structure diagram in the present application. DETAILED DESCRIPTION
[0032] The application will be described in further detail below with reference to the drawings and embodiments. Identical parts are denoted by identical reference numerals. It should be noted that the words "front", "back", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the words "bottom" and "top", "inner" and "outer" refer to the directions towards or away from the geometric center of a particular part.
[0033] Since the existing management mode of the shared washing machine is relatively single, the user selects the washing mode, and the number of cleaning cannot be automatically adjusted according to the amount of clothes to be washed, resulting in poor cleaning results, and the use of the washing machine cannot be reasonably allocated, resulting in low cleaning efficiency, so it is difficult to meet the information management control, and the management of the shared washing machine is chaotic or cannot be efficiently managed; therefore, the present application designs such a shared washing machine management system, as shown in Figure 1 and Figure 2 , comprising a plurality of washing machines and a controller for controlling each washing machine, each washing machine comprising a visual sensor and a pressure sensor, the pressure sensor being located on the drum shaft, the controller comprising a clothes database, the clothes database comprising a plurality of different clothes management information, each clothes management information comprising clothes type information and cleaning mode information, the clothes type information reflecting the type of clothes (the type of clothes including large, small, sweater, down jacket, coat or socks, etc.), the cleaning mode information reflecting the mode type of clothes cleaning (the mode type including soft washing, standard, strong, fast washing, dry cleaning or dehydration, etc.), and the clothes type information and the cleaning mode information corresponding one by one;
[0034] The controller further comprises an acquisition module, a processing module and a control module.
[0035] The acquisition module acquires the clothes type selected by the user as the clothes to be washed information, acquires the image of the drum inside obtained by the visual sensor as the image to be analyzed, the image to be analyzed mainly comprising the image of the clothes in the drum, and acquires the overall weight value of the drum shaft detected by the pressure sensor.
[0036] The processing module obtains the image to be analyzed in the acquisition module, and judges the mark line of the clothes in the drum as the specified line according to the image to be analyzed. Under normal circumstances, when the clothes are thrown into the drum of the washing machine, the clothes are accumulated, and the specified line is a nearly horizontal line. If the clothes are not accumulated flat, the specified line is an uneven line, but a roughly irregular line can be planned. The irregular line is evaluated to obtain a horizontal mean line. The washing liquid content value is obtained by the liquid adding strategy according to the specified line. The washing frequency value is obtained by the flushing strategy according to the washing liquid content value, the specified line and the overall weight value. The information of the clothes to be washed in the acquisition module is obtained. The corresponding cleaning mode information in the clothes management information is indexed as the specified cleaning mode according to the information of the clothes to be washed (for example, the user selects the clothes type at the control screen. If the clothes type is large, the corresponding cleaning mode of the large clothes is soft washing, that is, the processing module can automatically select soft washing as the specified cleaning mode).
[0037] The control module adjusts the washing machine according to the specified cleaning mode, adds the amount according to the washing liquid content, and flushes according to the washing frequency value.
[0038] The liquid adding strategy includes step S1. The water passing line is obtained by offsetting the specified line downward by a specified amount, for example, offsetting the specified line downward by one-third to obtain the water passing line. The overall volume value of the water injection cavity in the washing machine is obtained.
[0039] Step S2, the relationship ratio of the water passing line and the overall height in the water injection cavity is calculated. If the height of the water passing line is 15 cm and the overall height of the water injection cavity is 35 cm, the ratio of the two is 3:7. The water injection volume value is calculated according to the relationship ratio and the overall volume value. The overall volume value is 0.049 cubic meters, so the water injection volume value should be 0.021 cubic meters.
[0040] Step S3, the washing liquid content value is calculated according to the water injection volume value by the washing ratio. The ratio of the water injection volume to the washing liquid is 1:1000, and 0.021 cubic meters of water is 21 liters of water. The washing liquid content value is 21 milliliters.
[0041] According to the type of the clothes to be washed, the cleaning mode of the clothes is automatically selected. According to the mark line analysis of the clothes to be washed, the water injection volume value is obtained. According to the water injection volume value, the washing liquid content value to be put in is obtained. Compared with the existing user's own judgment of the washing liquid content, the automatic judgment mode of the present application can accurately control the washing liquid content, avoid too much or too little washing liquid content, and ensure the cleanliness of the clothes after cleaning.
[0042] The laundry database also has a preset relationship table, which includes washing liquid content information, flushing volume information, overall weight information, and flushing frequency information. The flushing strategy includes step S1. After washing, the washing water is discharged, and flushing water is added for flushing. The specified line is shifted upwards to the submergence height to obtain a submerged line. The ratio of the submerged line to the overall height in the water injection cavity is calculated as the water injection ratio. The flushing water volume value is calculated according to the water injection ratio and the overall volume value. It is assumed that the flushing water volume value is 23 liters of water.
[0043] Step S2, according to the washing liquid content, the overall weight value and the flushing water volume value, the flushing frequency information corresponding to the relationship table index is taken as the flushing frequency value.
[0044] The relationship table is as follows:
[0045] Wash liquor content information Flush volume information Overall weight information Flush count information 21 ml 23L 5 kg 2 21 ml 25L 5.35 kg 3 21 ml 28L 5.9 kg 3 10 ml 12L 3 kg 1 10 ml 13L 3.5 kg 2 10 ml 14L 3.7 kg 3
[0046] In the above table, it is assumed that the flushing water volume value is 23 liters of water, and the washing liquid content is 21 milliliters. The overall weight value needs to be obtained. According to the flushing frequency corresponding to the overall weight value in the relationship table, it is assumed that the overall weight value is between 5kg-5.35kg, then 5kg corresponding flushing 2 times is taken.
[0047] The washing machine also includes an extraction analyzer, which is a prior art that can sample and analyze the discharged water to analyze the washing liquid content in the sampled water. The collection module obtains the washing liquid content value in the water after flushing as the retention value according to the sampling water volume value obtained by the extraction analyzer;
[0048] The controller also includes a feedback module, which includes a safety value. The feedback module obtains the retention value in the collection module, compares the retention value with the safety value, and if the retention value is greater than the safety value, sends a continue flushing instruction to the control module, and if the retention value is less than or equal to the safety value, sends an end instruction to the control module. It is assumed that the safety value is that the washing liquid content in 1L water is within 0.1ml, the sampling water is 10ml, and the extraction analyzes the content of the retention value as 0.002ml. The retention value is converted to 0.2ml in 1L water, and the retention value is greater than the safety value, so the continue flushing instruction is sent.
[0049] The number of rinses required for each wash is determined by the amount of laundry, the overall weight of the garment after water filling, and the detergent content. Since the number of rinses varies depending on the detergent content, and the rotation speed of the drum also varies depending on the type of water and clothing, the combination of these three factors determines the number of rinses. Compared to the fixed number of rinses in existing washing machines, this invention ensures that the detergent content in the clothes remains within a controlled range after washing, guaranteeing wearability. Furthermore, the feedback module analyzes whether the detergent content in the water after the last rinse exceeds a safe value, and performs a second rinse based on the result, further ensuring that the detergent content in the clothes remains below a safe level after washing.
[0050] The feedback module also includes a feedback table, which contains several ratio ranges and the number of re-flush attempts.
[0051] The processing module also includes a processing submodule. The processing submodule obtains the retained value from the feedback module, calculates the converted value by the ratio of the sampled water volume value to the injected water volume value, calculates the ratio value by the ratio of the converted value to the detergent content value, and indexes the corresponding number of re-rinsing times in the feedback table as the number of times to be rinsed. In the above assumption, the result of the retained value sampling analysis is that 10 ml of sampled water contains 0.002 ml of detergent content, which is converted to 6 ml in 30 L of water. Therefore, the ratio of the converted value to the detergent content value is 1:5.
[0052] The control module controls the washing machine's rinsing based on the number of rinses to be performed and the volume of rinsing water.
[0053] The feedback form is as follows:
[0054] Proportion interval Refill count 0-1:8 1 1:8-1:7 2 1:7-1:5 3
[0055] The above assumptions suggest that the number of rinses should be 3. The washing machine can re-wash quickly. After water is added to the washing machine, the drum rotates forward and backward a certain number of times before draining and then performing the next re-rinse.
[0056] The data collection module obtains the washing time of each washing machine as the current washing time value and obtains the user's queuing information;
[0057] The processing submodule obtains the current cleaning time value from the acquisition module, sorts it according to the current cleaning time value to obtain the time sequence, obtains the queuing information from the acquisition module, and matches the queuing information with the time sequence to obtain the pre-sorted sequence.
[0058] Assume that there are four washing machines, A, B, C and D, all in use, and it is known that the current cleaning time value of A is 15 minutes, the current cleaning time value of B is 12 minutes, the current cleaning time value of C is 18 minutes, and the current cleaning time value of D is 24 minutes. According to the sorting sequence, the time sequence is B-A-C-D, the current number of people who make reservations for cleaning through the control screen is 4, and the queue information is A, B, C and D. The pre-sorting sequence is B-A, A-B, C-C, and D-D.
[0059] The processing submodule obtains the queue information in the collection module, analyzes the cleaning mode information of each queued user according to the queue information, obtains the initial cleaning time value (the initial cleaning time value is a planning time value in the early stage, which is obtained according to the type of clothes) according to the cleaning mode information, and sorts according to the initial cleaning time value to obtain a pre-cleaning sequence;
[0060] The controller further includes a calculation and analysis module, which obtains the initial cleaning time value and the time sequence in the processing submodule, and obtains an optimized sequence through a distribution strategy according to the pre-cleaning sequence and the time sequence.
[0061] The distribution strategy includes step S1, in which an ideal waiting time value is preset, and the initial cleaning time values of the two users with the smallest level in the pre-cleaning sequence are compared to obtain an adjacent time value;
[0062] Step S2, the adjacent time value is compared with the ideal waiting time value, if the adjacent time value is greater than the ideal waiting time value, the current cleaning time values of the two washing machines with the smallest level in the time sequence are compared to obtain a current time difference, if the adjacent time value is less than or equal to the ideal waiting time value, the pre-sorting sequence is taken as the optimized sequence;
[0063] Step S3, a reference difference is preset, the current time difference is compared with the adjacent time difference to obtain an actual difference, the actual difference is compared with the reference difference, if the actual difference is greater than the reference difference, the user with the smallest initial cleaning time value in the pre-cleaning sequence is arranged in the first position to obtain a replacement sequence, the replacement sequence is matched with the time sequence to obtain the optimized sequence, if the actual difference is less than or equal to the reference difference, the pre-sorting sequence is taken as the optimized sequence.
[0064] For example: the queue information is arranged in the order of A, B, C, D, the initial cleaning time value of A is 35 minutes, the initial cleaning time value of B is 10 minutes, the initial cleaning time value of C is 45 minutes, and the initial cleaning time value of D is 65 minutes, then the pre-cleaning sequence obtained according to the initial cleaning time value is B, A, C, D, the waiting ideal time value is 15 minutes, the adjacent time value is 35-10=25 minutes, the adjacent time value is greater than the waiting ideal time value, then the current time difference between A and B is calculated as 18-12=6 minutes, the actual difference value calculated by the adjacent time difference value and the current time difference value is 25-6=19 minutes, the reference difference value is 20 minutes, then the actual difference value is greater than the reference difference value, B is arranged corresponding to B, that is, the optimization sequence is: B-B, A-A, C-C, D-D.
[0065] By sorting the current cleaning time of all washing machines, then analyzing the current queued users, the pre-cleaning time of the queued users is sorted, and then the optimization sequence is further analyzed and calculated according to the corresponding distribution strategy, so that each user can be reasonably distributed to the washing machine for cleaning, compared with the current user's own selection, which leads to low efficiency of the washing machine, the automatic distribution mode of the present application can improve the efficiency of the washing machine.
[0066] The above is only the preferred embodiment of the present application, the protection scope of the present application is not limited to the above-mentioned embodiments, any technical solution belonging to the idea of the present application is within the protection scope of the present application. It should be noted that for ordinary skilled in the art, some improvements and decorations without departing from the principle of the present application, these improvements and decorations should also be considered as the protection scope of the present application.
Claims
1. A shared laundry machine management system comprising a plurality of laundry machines and a controller for controlling each of the laundry machines, characterized by: The washing machine comprises a visual sensor and a pressure sensor, the pressure sensor is arranged on a drum shaft, the controller comprises a clothes database, the clothes database comprises a plurality of different clothes management information, each of the clothes management information comprises clothes type information and cleaning mode information, the clothes type information reflects the type of clothes, and the cleaning mode information reflects the mode type of clothes cleaning, and the clothes type information and the cleaning mode information correspond to each other; The controller further comprises a collection module, a processing module and a control module; The collection module acquires clothes type selected by a user as clothes to be washed information, acquires an image of the drum taken by the visual sensor as an image to be analyzed, and acquires the overall weight value of the drum shaft detected by the pressure sensor; The processing module acquires the image to be analyzed in the collection module, judges the reticle of clothes in the drum as a specified line according to the image to be analyzed, obtains a washing liquid content value according to the specified line through a liquid adding strategy, obtains a rinsing frequency value according to the washing liquid content value, the specified line and the overall weight value through a rinsing strategy, acquires the clothes to be washed information in the collection module, and indexes the corresponding cleaning mode information in the clothes management information according to the clothes to be washed information as a specified cleaning mode; The control module adjusts and selects the washing machine according to the specified cleaning mode, adds the washing liquid according to the washing liquid content, and rinses according to the rinsing frequency value.
2. The shared laundry machine management system according to claim 1, wherein: The liquid adding strategy comprises the following steps: S1, obtaining a water passing line by offsetting the specified line downward by a calibration amount, and acquiring an overall volume value of a water injection cavity in the washing machine; S2, calculating a relationship ratio between the water passing line and the overall height in the water injection cavity, and calculating a water injection volume value according to the relationship ratio and the overall volume value; S3, calculating the washing liquid content value according to the water injection volume value through a washing ratio.
3. The shared laundry machine management system according to claim 2, wherein: The clothes database further comprises a relationship table, the relationship table comprises washing liquid content information, flushing volume information, overall weight information and rinsing frequency information, and the rinsing strategy comprises the following steps: S1, obtaining a submerged line by offsetting the specified line upward by a submerged height, calculating an injection ratio as a ratio between the submerged line and the overall height in the water injection cavity, and calculating a flushing water volume value according to the injection ratio and the overall volume value; S2, indexing the corresponding rinsing frequency information in the relationship table as the rinsing frequency value according to the washing liquid content value, the overall weight value and the flushing water volume value.
4. The shared laundry machine management system according to claim 3, wherein: The washing machine further comprises an extraction analyzer, the collection module acquires the content value of the washing liquid in the rinsed water as a retention value according to the sampling water volume value obtained by the extraction analyzer; The controller further comprises a feedback module, the feedback module comprises a safety value, the feedback module acquires the retention value in the collection module, compares the retention value with the safety value, and if the retention value is greater than the safety value, sends a continuous rinsing instruction to the control module, and if the retention value is less than or equal to the safety value, sends an end instruction to the control module.
5. The shared laundry machine management system according to claim 4, wherein: The feedback module further comprises a feedback table, and the feedback table comprises a plurality of proportion intervals and a plurality of times of reflushing; The processing module further comprises a processing submodule, which obtains a retention value in the feedback module, calculates a conversion value by taking a ratio of a sample water volume value and a water injection volume value, calculates a proportion value by taking a ratio of the conversion value and a washing liquid content value, and indexes a corresponding time of reflushing in the feedback table as a to-be-flushed time value; The control module controls the washing machine to flush based on a flushing water volume value according to the to-be-flushed time value.
6. The shared laundry machine management system according to claim 5, wherein: The collection module obtains a current washing time consumption value of each washing machine as a current washing time consumption value and obtains queuing information of the user; The processing submodule obtains the current washing time consumption value in the collection module, sorts the current washing time consumption value to obtain a time consumption sequence, obtains the queuing information in the collection module, and matches the queuing information and the time consumption sequence to obtain a pre-ordered sequence.
7. The shared laundry machine management system of claim 6, wherein: The processing submodule obtains the queuing information in the collection module, analyzes washing mode information of each user in the queue according to the queuing information, obtains an initial washing time consumption value according to the washing mode information, and sorts the initial washing time consumption value to obtain a pre-washing sequence. The controller further comprises a calculation and analysis module, which obtains the initial washing time consumption value and the time consumption sequence in the processing submodule, and obtains an optimized sequence by a distribution strategy according to the pre-washing sequence and the time consumption sequence.
8. The shared laundry machine management system of claim 7, wherein: The distribution strategy comprises the following steps. Step S2: comparing the adjacent time consumption value and the waiting ideal time consumption value, if the adjacent time consumption value is greater than the waiting ideal time consumption value, comparing current washing time consumption values of the two washing machines with the smallest level in the time consumption sequence to obtain a current time consumption difference value, if the adjacent time consumption value is less than or equal to the waiting ideal time consumption value, taking the pre-ordered sequence as the optimized sequence; Step S3: presetting a reference difference value, comparing the current time consumption difference value and the adjacent time consumption difference value to obtain an actual difference value, comparing the actual difference value and the reference difference value, if the actual difference value is greater than the reference difference value, arranging a user with the smallest initial washing time consumption value in the pre-washing sequence to the first position to obtain a replacement sequence, matching the replacement sequence and the time consumption sequence to obtain the optimized sequence, if the actual difference value is less than or equal to the reference difference value, taking the pre-ordered sequence as the optimized sequence.
Citation Information
Patent Citations
Intelligence sharing washing machine system
CN207567506U
Washing machine
EP2458058A1