An intelligent management system
Through an intelligent management system, the environment and towel parameters are collected and analyzed, and the cleaning frequency and duration are dynamically adjusted, which solves the impact of environmental changes on the cleanliness of towels and improves the cleaning effect of towels.
Patent Information
- Application Number
- CN202411436730.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2044-10-15
AI Technical Summary
The prior art fails to effectively consider the impact of environmental changes on the breeding of microorganisms on towels, resulting in insufficient cleanliness of towels and affecting the effectiveness of use.
An intelligent management system is designed, including an environmental parameter acquisition module, a towel parameter acquisition module, a data analysis module and a self-adjustment module. The system analyzes the impact of environmental changes on towels by collecting ambient temperature and humidity, the frequency of towel usage and microbial conditions, adjusts the cleaning frequency and duration, and ensures the cleanliness of towels.
By dynamically adjusting the cleaning frequency and duration of towels, the cleanliness of towels is improved according to the strength of environmental changes, and the risk of insufficient cleaning is avoided.
Smart Images

Figure CN119322468B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent management, and in particular to an intelligent management system. Background Art
[0002] Towel is an essential daily necessity in life, and its cleaning state will have a great impact on people. In the prior art, an intelligent towel rack is used to collect towel information regularly and heat and disinfect the towel regularly to improve user satisfaction. However, due to the diverse usage environments of towels, environmental parameters will affect the towel state. For example, the temperature and humidity in the shower room change greatly, and bacteria and microorganisms are likely to breed on the towel. If the towel is cleaned according to fixed cleaning parameters, the daily cleaning degree of the towel will be insufficient.
[0003] Chinese Patent Publication No.: CN117481540A discloses an intelligent electric towel rack, including: a housing and a control component arranged on the housing. The control component includes an intelligent control module, a power supply module, a timing module, a display module, a variable-frequency heating module, a network module, and a temperature sensing module connected by electrical connection. The intelligent control module is respectively connected to the power supply module, the timing module, the display module, the variable-frequency heating module, the network module, and the temperature sensing module. The intelligent control module is used to control the connection of the power supply module, the timing module, the display module, the variable-frequency heating module, the network module, and the temperature sensing module. The power supply module is used to supply power to the towel rack. The timing module is used to perform timing management on the towel rack. The display module is used to display towel rack information. The variable-frequency heating module is used to perform variable-frequency heating on the towel rack. The network module is used to connect to an electronic device through a network. It can provide users with a variety of usage scenarios and improve user satisfaction.
[0004] However, the prior art still has the following problems:
[0005] The influence of environmental changes on the growth of microorganisms on the towel is not considered, resulting in insufficient cleanliness of the towel and affecting the subsequent use effect of the towel. Summary of the Invention
[0006] Therefore, the present invention provides an intelligent management system to overcome the problem in the prior art that the influence of environmental changes on the growth of microorganisms on the towel is not considered, resulting in insufficient cleanliness of the towel and affecting the subsequent use effect of the towel.
[0007] To achieve the above object, the present invention provides an intelligent management system. The system includes:
[0008] An environmental parameter acquisition module, which includes an environmental temperature acquisition unit and an environmental humidity acquisition unit for acquiring environmental parameters of the towel placement environment;
[0009] A towel parameter acquisition module, which includes a recording unit for acquiring the usage frequency of the towel and a monitoring unit for acquiring the microbial situation on the towel;
[0010] A data analysis module, which is connected to the environmental parameter acquisition module and the towel parameter acquisition module, and is used to construct an environmental parameter time-domain curve according to the acquired towel placement environmental parameters, determine the cleaning frequency of the towel according to the towel placement environmental parameters, calculate the time-domain discreteness of the environmental parameters at each acquisition time node in the environmental parameter time-domain curve, calculate an environmental change interference characterization value for the towel based on the calculated time-domain discreteness of the environmental parameters, and determine the environmental change interference category of the towel according to the environmental change interference characterization value;
[0011] A self-adjustment module, which is connected to the data analysis module and is used to determine the subsequent processing parameters of the towel according to the environmental change interference category of the towel, including:
[0012] Calculate the mean value of the slopes of each acquisition time node of the environmental parameter time-domain curve, increase the cleaning frequency of the towel according to the mean value of the slopes, and correct the single cleaning duration of the towel according to the usage frequency of the towel,
[0013] Or, maintain the initial towel cleaning frequency;
[0014] The data analysis module determines the environmental change interference category of the towel according to the environmental change interference characterization value, including;
[0015] If the environmental change interference characterization value is greater than or equal to the preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel is in the strong environmental change interference category;
[0016] If the environmental change interference characterization value is less than the preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel is in the weak environmental change interference category;
[0017] The self-adjustment module determines the subsequent processing parameters of the towel according to the environmental change interference category of the towel, including:
[0018] If the towel is in the strong environmental change interference category, the self-adjustment module calculates the mean value of the slopes of each acquisition time node of the environmental parameter time-domain curve, adjusts the cleaning frequency of the towel according to the mean value of the slopes, and corrects the single cleaning duration of the towel according to the usage frequency of the towel;
[0019] If the towel is in the weak environmental change interference category, the self-adjustment module maintains the initial towel cleaning frequency;
[0020] A cleaning module, which is connected to the self-regulating module and is used to display the cleaning parameters for cleaning the towel according to the towel cleaning parameters determined by the self-regulating module. The cleaning parameters include cleaning frequency and cleaning duration;
[0021] A reminder module, which is connected to the towel parameter acquisition module and is used to analyze whether to send a signal to replace the towel according to the change in the number of microorganisms on the towel.
[0022] Further, the data analysis module determines the cleaning frequency of the towel according to the towel placement environment parameters, including:
[0023] Obtain the temperature of the towel placement environment within a predetermined period,
[0024] Calculate the temperature mean value at each acquisition time node,
[0025] If the temperature mean value is greater than or equal to the preset temperature mean standard threshold, the data analysis module determines that the cleaning frequency of the towel is the first-level cleaning frequency;
[0026] If the temperature mean value is less than the preset temperature mean standard threshold, the data analysis module determines that the cleaning frequency of the towel is the second-level cleaning frequency.
[0027] Further, calculating the time-domain dispersion of the environmental parameters at each acquisition time node in the environmental parameter time-domain curve includes:
[0028] Obtain the environmental temperature values at each acquisition time node in the environmental parameter time-domain curve,
[0029] Calculate the temperature variance of each environmental temperature value,
[0030] Obtain the environmental humidity at each acquisition time node in the environmental parameter time-domain curve,
[0031] Calculate the humidity variance of each environmental humidity value.
[0032] Further, the data analysis module calculates the environmental change interference characterization value for the towel based on the calculated time-domain dispersion of the environmental parameters, including:
[0033] Solve the ratio of the temperature variance to the preset temperature variance standard threshold to obtain the first temperature change characteristic,
[0034] Solve the ratio of the humidity variance to the preset humidity variance standard threshold to obtain the second humidity change characteristic,
[0035] Weighted sum the first temperature change characteristic and the second humidity change characteristic to obtain the environmental change interference characterization value.
[0036] Further, the self - adjusting module calculates the mean slope of each acquisition time node of the time - domain curve of the environmental parameters, including:
[0037] Calculate the slope of each acquisition time node in the time - domain curve of the temperature of the towel - placing environment to obtain the first characteristic slope.
[0038] Calculate the slope of each acquisition time node in the time - domain curve of the humidity of the towel - placing environment to obtain the second characteristic slope.
[0039] Calculate the mean slope of the first characteristic slope and the second characteristic slope.
[0040] Further, the self - adjusting module increases the cleaning frequency of the towel according to the mean slope, where
[0041] The increase in the cleaning frequency of the towel is positively correlated with the mean slope.
[0042] Further, the self - adjusting module corrects the single - time cleaning duration of the towel according to the usage frequency of the towel, where
[0043] The increase in the single - time cleaning duration is positively correlated with the usage frequency of the towel.
[0044] Further, the reminder module analyzes whether to send a towel - replacement signal according to the change in the number of microorganisms on the towel, including:
[0045] The reminder module draws a quantity - time curve based on the number of microorganisms on the towel monitored by the monitoring module.
[0046] Calculate the quantity change slope of each time node of the quantity - time curve.
[0047] Calculate the mean value of the quantity change slopes of each time node.
[0048] If the mean value of the quantity change slopes is greater than or equal to the preset standard threshold of the quantity change slope mean value, the reminder module determines to send a towel - replacement signal;
[0049] If the mean value of the quantity change slopes is less than the preset standard threshold of the quantity change slope mean value, the reminder module determines that there is no need to replace the towel.
[0050] Compared with the prior art, the beneficial effects of the present invention are as follows. In the present invention, the cleaning frequency of the towel is initially determined according to the temperature and humidity of the environment. Considering that the high frequency of temperature and humidity changes in the towel storage environment (such as in a shower room) will accelerate the growth rate of microorganisms on the towel, the variances of the environmental temperature and humidity within the calculation period are calculated to analyze the impact of the environmental temperature and humidity changes on the growth of microorganisms on the towel, and further adjust the cleaning degree of the towel according to the degree of environmental impact on the towel.
[0051] Further, in the present invention, an environmental parameter time-domain curve is plotted based on the temperature and humidity parameters of the collected environment. Taking a shower room as an example, if the shower time in the shower room is longer, the time for the temperature and humidity of the environment to increase is longer, and the time for the curve in the environmental parameter time-domain curve to show an upward trend is longer, then the time for the environmental temperature and humidity to change is longer, and the greater the impact of the environmental temperature and humidity change on the growth of microorganisms on the towel, the more times the towel needs to be cleaned. Therefore, the cleaning frequency of the towel is increased according to the slope of the environmental parameter time-domain curve to ensure the cleaning degree of the towel.
[0052] Further, in the present invention, considering that the longer the towel is used, the more difficult it is to ensure the cleanliness, and the faster the growth rate of microorganisms, the microorganisms on the towel are monitored regularly. When the growth rate of microorganisms is too fast, it is determined that the towel no longer meets the standard for continued use, and a signal to replace the towel is sent, so as to ensure the cleaning degree of the towel and avoid the impact of towels with insufficient cleaning degree on the use effect. Description of the Drawings
[0053] Figure 1 is a structural block diagram of the intelligent management system of the present invention;
[0054] Figure 2 is a decision flow chart for determining the cleaning frequency of the towel according to the towel placement environment parameters;
[0055] Figure 3 is a decision flow chart for determining the interference category of the towel's environmental change;
[0056] Figure 4 is a decision flow chart for determining the subsequent treatment parameters of the towel. Detailed Embodiments
[0057] In order to make the objectives and advantages of the present invention clearer and more understandable, the present invention will be further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0058] It should be noted that the data in this embodiment are obtained through comprehensive analysis and evaluation of the historical data in the 6 months before this determination by the system of the present invention and the corresponding historical determination results. The system of the present invention determines the values of various preset parameter standards for this determination based on the comprehensive evaluation values of 42,383 retrieval results accumulated in the previous three months before this detection. Those skilled in the art can understand that the determination method of the system of the present invention for a single above-mentioned parameter can be to select the value with the highest proportion according to the data distribution as the preset standard parameter, use weighted summation to take the obtained value as the preset standard parameter, substitute each historical data into a specific formula and take the value obtained by using this formula as the preset standard parameter or other selection methods, as long as it satisfies that the system of the present invention can clearly define different specific situations in a single determination process through the obtained values.
[0059] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principle of the present invention and do not limit the protection scope of the present invention.
[0060] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "upper", "lower", "left", "right", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention.
[0061] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0062] Please refer to Figure 1 as shown, which is the structural block diagram of the intelligent management system of the present invention.
[0063] An embodiment of the present invention provides an intelligent management system, including:
[0064] An environmental parameter acquisition module, which includes an environmental temperature acquisition unit and an environmental humidity acquisition unit for acquiring towel placement environmental parameters;
[0065] A towel parameter acquisition module, which includes a recording unit for acquiring the usage frequency of towels and a monitoring unit for acquiring the microbial situation on towels;
[0066] A data analysis module, which is connected to the environmental parameter acquisition module and the towel parameter acquisition module, is used to construct an environmental parameter time-domain curve according to the collected environmental parameters of the towel placement environment, determine the cleaning frequency of the towel according to the environmental parameters of the towel placement environment, calculate the time-domain discreteness of the environmental parameters at each acquisition time node in the environmental parameter time-domain curve, calculate an environmental change interference characterization value for the towel based on the calculated time-domain discreteness of the environmental parameters, and determine the environmental change interference category of the towel according to the environmental change interference characterization value;
[0067] A self-regulation module, which is connected to the data analysis module, is used to determine subsequent towel treatment parameters according to the environmental change interference category of the towel, including:
[0068] Calculating the average slope of each acquisition time node of the environmental parameter time-domain curve, increasing the cleaning frequency of the towel according to the average slope, and correcting the single cleaning duration of the towel according to the towel usage frequency,
[0069] Or, maintaining the initial towel cleaning frequency;
[0070] A cleaning module, which is connected to the self-regulation module, is used to display the cleaning parameters for cleaning the towel according to the towel cleaning parameters determined by the self-regulation module. The cleaning parameters include cleaning frequency and cleaning duration;
[0071] A reminder module, which is connected to the towel parameter acquisition module, is used to analyze whether to send a signal to replace the towel according to the change in the number of microorganisms on the towel.
[0072] Specifically, the present invention does not limit the specific structure of the environmental parameter acquisition module, as long as it can collect the environmental temperature and environmental humidity. It can be a temperature sensor, a humidity sensor, etc., which will not be elaborated here.
[0073] Specifically, in the embodiment of the present invention, when the growth rate of microorganisms on the towel is too fast, the reminder module determines that there is a risk to the user's skin health condition.
[0074] Please refer to Figure 2 As shown, it is a decision flow chart for determining the cleaning frequency of the towel according to the environmental parameters of the towel placement environment.
[0075] Specifically, the data analysis module determines the cleaning frequency of the towel according to the environmental parameters of the towel placement environment, including:
[0076] Obtaining the temperature of the towel placement environment within a predetermined period,
[0077] Calculating the average temperature of each acquisition time node,
[0078] If the average temperature is greater than or equal to the preset average temperature standard threshold, the data analysis module determines that the cleaning frequency of the towel is the first-level cleaning frequency;
[0079] If the average temperature is less than the preset average temperature standard threshold, the data analysis module determines that the cleaning frequency of the towel is the second-level cleaning frequency.
[0080] Specifically, in this embodiment, the preset average temperature standard threshold is obtained by pre-measurement. The temperatures at several time points in the shower rooms in several different regions are respectively recorded, and the average temperature is solved. The preset average temperature standard threshold is 0.75 to 0.85 times the average temperature.
[0081] Specifically, calculating the time-domain dispersion of the environmental parameters at each acquisition time node in the calculated environmental parameter time-domain curve includes:
[0082] Obtain the environmental temperature values at each acquisition time node in the environmental parameter time-domain curve,
[0083] Calculate the temperature variance of each environmental temperature value,
[0084] Obtain the environmental humidity at each acquisition time node in the environmental parameter time-domain curve,
[0085] Calculate the humidity variance of each environmental humidity value.
[0086] Specifically, the data analysis module calculates the environmental change interference characterization value for the towel based on the calculated time-domain dispersion of the environmental parameters, including:
[0087] Solve the ratio of the temperature variance to the preset temperature variance standard threshold to obtain the first temperature change characteristic,
[0088] Solve the ratio of the humidity variance to the preset humidity variance standard threshold to obtain the second humidity change characteristic,
[0089] Weighted sum the first temperature change characteristic and the second humidity change characteristic to obtain the environmental change interference characterization value.
[0090] Specifically, in this embodiment, the preset temperature variance standard threshold is obtained by pre-measurement. The temperatures at each time node in the shower rooms in several regions within a predetermined time period are recorded, the temperature variances of the temperature changes in each shower room are respectively calculated, and the average value of the variances is solved. The preset temperature variance standard threshold is 0.7 to 0.8 times the average variance.
[0091] Please refer to Figure 3 as shown, which is a decision flow chart for determining the environmental change interference category of the towel.
[0092] Specifically, the data analysis module determines the environmental change interference category of the towel according to the environmental change interference characterization value, including:
[0093] If the environmental change interference characterization value is greater than or equal to the preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel belongs to the strong environmental change interference category;
[0094] If the environmental change interference characterization value is less than the preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel belongs to the weak environmental change interference category.
[0095] Specifically, in this embodiment, the preset environmental change interference characterization value standard threshold is obtained by pre-measurement. The environmental change interference characterization values of the shower rooms in several regions are calculated and statistically analyzed respectively, and the average value of the environmental change interference characterization value is solved. The preset environmental change interference characterization value standard threshold is 0.75 to 0.8 times the average value of the environmental change interference characterization value.
[0096] Please refer to Figure 4 as shown, which is a decision flow chart for determining the subsequent treatment parameters of the towel.
[0097] Specifically, the self-adjustment module determines the subsequent treatment parameters of the towel according to the environmental change interference category of the towel, including:
[0098] If the towel belongs to the strong environmental change interference category, the self-adjustment module calculates the average slope of each acquisition time node of the environmental parameter time-domain curve, adjusts the cleaning frequency of the towel according to the average slope, and corrects the single cleaning duration of the towel according to the towel usage frequency;
[0099] If the towel belongs to the weak environmental change interference category, the self-adjustment module maintains the initial towel cleaning frequency.
[0100] Specifically, the self-adjustment module calculates the average slope of each acquisition time node of the environmental parameter time-domain curve, including:
[0101] Calculate the slope of each acquisition time node in the time-domain curve of the towel placement environment temperature to obtain the first characteristic slope,
[0102] Calculate the slope of each acquisition time node in the time-domain curve of the towel placement environment humidity to obtain the second characteristic slope,
[0103] Calculate the average slope of the first characteristic slope and the second characteristic slope.
[0104] Specifically, the self-adjustment module increases the cleaning frequency of the towel according to the average slope, where
[0105] the increase in the cleaning frequency of the towel is positively correlated with the average slope.
[0106] In this embodiment, optionally,
[0107] Compare the average slope with a preset first preset average slope and a second preset average slope.
[0108] If the average slope is less than or equal to the first preset average slope, increase the first cleaning frequency, where the first cleaning frequency is 0.2 times the initial cleaning frequency.
[0109] If the average slope is greater than the first preset average slope and less than or equal to the second preset average slope, increase the second cleaning frequency, where the second cleaning frequency is 0.25 times the initial cleaning frequency.
[0110] If the average slope is greater than the second preset average slope, increase the third cleaning frequency, where the third cleaning frequency is 0.3 times the initial cleaning frequency.
[0111] The first preset average slope is 1.1 times the preset average slope, and the second preset average slope is 1.3 times the preset average slope. The preset average slope is obtained by pre-measurement. Calculate the first characteristic slope and the second characteristic slope of the towel in several different environments respectively, calculate the average slope respectively, and solve the average value of the average slopes to obtain the preset average slope.
[0112] Specifically, the self-adjusting module corrects the single cleaning duration of the towel according to the towel usage frequency, where
[0113] The increase in the single cleaning duration is positively correlated with the towel usage frequency.
[0114] Specifically, in this embodiment, the preset usage frequency standard threshold is obtained by pre-measurement. Record the usage frequencies of several towels and solve the average usage frequency.
[0115] In this embodiment, optionally,
[0116] Compare the towel usage frequency with a preset first preset towel usage frequency and a second preset towel usage frequency.
[0117] If the towel usage frequency is less than or equal to the first preset towel usage frequency, increase the first single cleaning duration, where the first single cleaning duration is 0.2 times the initial single cleaning duration.
[0118] If the towel usage frequency is greater than the first preset towel usage frequency and less than or equal to the second preset towel usage frequency, increase the second single cleaning duration, where the second single cleaning duration is 0.3 times the initial single cleaning duration.
[0119] If the usage frequency of the towel is greater than the second preset towel usage frequency, then increase the third single - time cleaning duration, where the third single - time cleaning duration is 0.4 times the initial single - time cleaning duration;
[0120] The first preset towel usage frequency is 1.1 times the average usage frequency, and the second preset towel usage frequency is 1.3 times the average usage frequency.
[0121] Specifically, the reminder module analyzes whether to send a towel replacement signal based on the change in the number of microorganisms on the towel, including:
[0122] The reminder module draws a quantity - time curve based on the number of microorganisms on the towel monitored by the monitoring module,
[0123] Calculate the quantity change slope at each time node of the quantity - time curve,
[0124] Calculate the average value of the quantity change slopes at each time node,
[0125] If the average value of the quantity change slopes is greater than or equal to the preset average value standard threshold of the quantity change slope, then the reminder module determines to send a towel replacement signal;
[0126] If the average value of the quantity change slopes is less than the preset average value standard threshold of the quantity change slope, then the reminder module determines that there is no need to replace the towel.
[0127] Specifically, in this embodiment, the preset average value standard threshold of the quantity change slope is obtained by pre - determination. Record the change in the number of microorganisms on several towels, draw the quantity - time curve images of the change in microorganisms on each single towel respectively, solve the quantity change slope at each time node, calculate the average value of the quantity change slopes, and the preset average value standard threshold of the quantity change slope is 0.7 - 0.82 times the average value of the quantity change slopes.
[0128] So far, the technical solution of the present invention has been described in combination with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
[0129] The above - mentioned are only the preferred embodiments of the present invention and are not used to limit the present invention; for those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent substitution, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An intelligent management system, characterized in that: include: An environmental parameter collection module, which includes an environmental temperature collection unit and an environmental humidity collection unit for collecting environmental parameters of towel placement; A towel parameter collection module, which includes a recording unit for collecting the frequency of towel use and a monitoring unit for collecting the microbial conditions on the towel; a data analysis module, which is connected to the environmental parameter acquisition module and the towel parameter acquisition module, and is used to construct an environmental parameter time domain curve according to the collected towel placement environmental parameters, determine the cleaning frequency of the towel according to the towel placement environmental parameters, calculate the time domain discreteness of the environmental parameters at each acquisition time node in the environmental parameter time domain curve, calculate the environmental change interference characterization value for the towel based on the calculated time domain discreteness of the environmental parameters, and determine the environmental change interference category of the towel according to the environmental change interference characterization value; The self-adjusting module is connected to the data analysis module and is used to determine the subsequent processing parameters of the towel according to the interference category of the environmental change of the towel, including: Calculate the slope mean of each acquisition time node of the environmental parameter time domain curve, increase the cleaning frequency of the towel according to the slope mean, and correct the single cleaning time of the towel according to the frequency of towel use, Or, maintain the initial towel cleaning frequency; The data analysis module determines the environmental change interference category of the towel according to the environmental change interference characterization value, including: If the environmental change interference characterization value is greater than or equal to a preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel is in the environmental change strong interference category; If the environmental change interference characterization value is less than the preset environmental change interference characterization value standard threshold, the data analysis module determines that the towel is of the environmental change weak interference category; The self-adjusting module determines the towel subsequent processing parameters according to the towel environmental change interference category, including: If the towel is a category with strong interference from environmental changes, the self-adjustment module calculates the slope mean of each acquisition time node of the environmental parameter time domain curve, adjusts the cleaning frequency of the towel according to the slope mean, and corrects the single cleaning time of the towel according to the frequency of use of the towel; If the towel is of the weak interference category of environmental changes, the self-adjusting module maintains the initial towel cleaning frequency; A cleaning module connected to the self-adjusting module for displaying cleaning parameters required for cleaning the towels according to the towel cleaning parameters determined by the self-adjusting module, the cleaning parameters including cleaning frequency and cleaning duration; The reminder module is connected to the towel parameter acquisition module and is used to analyze whether to send a signal to replace the towel according to the change of the number of microorganisms on the towel.
2. The intelligent management system according to claim 1, characterized in that: The data analysis module determines the cleaning frequency of the towel according to the towel placement environment parameters, including: Get the temperature of the environment where the towel is placed within a predetermined period. Calculate the mean temperature of each acquisition time node, If the temperature mean is greater than or equal to the preset temperature mean standard threshold, the data analysis module determines that the cleaning frequency of the towel is a first-level cleaning frequency; If the temperature mean is less than the preset temperature mean standard threshold, the data analysis module determines that the cleaning frequency of the towel is the secondary cleaning frequency.
3. The intelligent management system according to claim 1, characterized in that: The calculating the time domain discreteness of the environmental parameter at each acquisition time node in the time domain curve of the environmental parameter comprises: Get the ambient temperature value of each acquisition time node in the environmental parameter time domain curve, Calculate the temperature variance for each ambient temperature value, Get the ambient humidity at each acquisition time node in the environmental parameter time domain curve. Calculate the humidity variance for each ambient humidity value.
4. The intelligent management system according to claim 3 is characterized in that: The data analysis module calculates the environmental change interference characterization value for the towel based on the calculated time domain discreteness of the environmental parameters, including: Solving the ratio of the temperature variance to a preset temperature variance standard threshold value to obtain a first temperature change feature, Solving the ratio of the humidity variance to a preset humidity variance standard threshold, obtaining a second humidity change feature, The first temperature change feature and the second humidity change feature are weighted and summed to obtain an environmental change interference characterization value.
5. The intelligent management system according to claim 1, characterized in that: The self-adjusting module calculates the slope mean of each acquisition time node of the environmental parameter time domain curve, including: Calculate the slope of each acquisition time node in the time domain curve of the ambient temperature when the towel is placed, and obtain the first characteristic slope. Calculate the slope of each acquisition time node in the time domain curve of the humidity of the environment where the towel is placed, and obtain the second characteristic slope. Calculate the mean of the first characteristic slope and the second characteristic slope.
6. The intelligent management system according to claim 1, characterized in that: The self-adjusting module increases the cleaning frequency of the towel according to the slope mean, wherein: The increase in the frequency of towel cleaning is positively correlated with the mean slope.
7. The intelligent management system according to claim 1, characterized in that: The self-adjusting module corrects the single cleaning time of the towel according to the frequency of use of the towel, wherein: The increase in the single cleaning time is positively correlated with the frequency of use of the towel.
8. The intelligent management system according to claim 1, characterized in that: The reminder module analyzes whether to send a signal to replace the towel according to the change in the number of microorganisms on the towel, including: The reminder module draws a quantity-time curve according to the number of microorganisms on the towel monitored by the monitoring unit. Calculate the slope of quantity change at each time node of the quantity-time curve, Calculate the mean value of the slope of quantity change at each time node. If the quantity change slope mean is greater than or equal to the preset quantity change slope mean standard threshold, the reminder module determines to send a towel replacement signal; If the quantity change slope mean is less than the preset quantity change slope mean standard threshold, the reminder module determines that there is no need to replace the towels.
Citation Information
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