A logistics follow-up monitoring and response method for solid waste intelligent management library

Through the logistics follow-up monitoring and response method of solid waste intelligent management warehouse logistics, the fine classification and storage of solid waste are realized, the inefficiency problem caused by intricate classification in the existing technology is solved, and the storage and utilization efficiency is improved.

CN116245439BActive Publication Date: 2025-08-08ZHEJIANG HONGHULU RENEWABLE RESOURCES RECYCLING CO LTD
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Patent Information

Application Number
CN202310240552.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-08
Publication Date
2025-08-08
Estimated Expiration
2043-03-08

AI Technical Summary

Technical Problem

The existing solid waste treatment methods cannot achieve fine classification, resulting in poor classification during solid waste storage process, affecting subsequent processing efficiency and effectiveness.

Method used

The logistics follow-up monitoring and response method of solid waste intelligent management warehouse is adopted to obtain solid waste types and weights through identity identification, information collection and weighing components, and combine cloud servers to calculate storage paths and capacity to achieve fine classification and storage.

Benefits of technology

It improves the efficiency and effectiveness of solid waste storage, avoids resource waste, ensures that different types of solid waste are stored in the appropriate location and in the appropriate quantity, reduces problems such as rot and rust, and improves utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a logistics follow-up monitoring and response method for a solid waste intelligent management library, which belongs to the field of solid waste treatment technology. The method includes: obtaining the type of solid waste to be stored; obtaining the weight or volume of the solid waste to be stored; obtaining the vacancy status of storage locations in a solid waste storage area; obtaining the type of solid waste stored in the vacant solid waste storage area and the remaining storage capacity; pairing the type of solid waste to be stored with the type of solid waste stored in the vacant solid waste storage area to obtain a pairing result; comparing the weight or volume of the solid waste to be stored with the remaining storage capacity of the vacant solid waste storage area, and when the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, obtaining the difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and controlling the weight of the solid waste to be stored according to the difference; determining the storage location, storage method, storage time and supervision method of the stored solid waste according to the type and weight of the solid waste stored in the designated area.
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Description

Technical Field

[0001] The present invention relates to the field of solid waste treatment technology, and in particular to a solid waste intelligent management library logistics follow-up monitoring and response method. Background Art

[0002] Solid waste treatment generally refers to the process of converting solid waste into a form suitable for transportation, storage, utilization or disposal through physical, chemical, biological, physicochemical and biochemical methods. The goal of solid waste treatment is to render it harmless, reduce its volume and utilize it as a resource.

[0003] Existing solid waste screening devices, when in use, mostly use sieve plates to screen solid waste, or perform manual screening or inspection. After screening or manual screening, the solid waste is stored in a designated location or directly processed based on the screening results.

[0004] However, the above method has a single screening type and rough classification steps, which cannot achieve fine classification of solid waste. There is also no corresponding operating system to complete the classification, storage and subsequent processing of solid waste, which leads to low efficiency in solid waste classification and affects processing efficiency. Summary of the Invention

[0005] The present invention provides a solid waste intelligent management library logistics follow-up monitoring and response method, which can solve the technical problem that the above-mentioned classification method cannot finely classify solid waste, resulting in incomplete classification during the solid waste storage process, resulting in mismatch between the subsequent treatment methods of solid waste, and thus affecting the efficiency and effect of subsequent treatment of solid waste.

[0006] The technical solution provided by the present invention is as follows:

[0007] A solid waste intelligent management library logistics follow-up monitoring response method, the solid waste intelligent management library comprising:

[0008] The intelligent management machine body includes a base and a mounting column, the base is used to connect to the floor scale, and the mounting column is rotatably connected to the base;

[0009] A weighing unit connected to the mounting column of the intelligent management machine body and used for weighing solid waste;

[0010] An identity recognition unit, located on the mounting post of the smart management machine body, for identifying the user's identity;

[0011] The control unit is used to track and control the path and weight of solid waste in the solid waste intelligent management library;

[0012] An information collection unit, located on the mounting column of the intelligent management machine body, is used to obtain solid waste information;

[0013] The method comprises:

[0014] The identity recognition unit obtains the identity information of the user, and the cloud server determines whether the user is a manager or a solid waste storage staff according to the identity information of the user;

[0015] The information collection unit collects the types of solid waste to be stored;

[0016] The weighing unit obtains the weight or volume of the solid waste to be stored;

[0017] The information collection unit obtains the vacancy status of storage locations in the solid waste storage area;

[0018] The server calculates the remaining storage capacity, moving path, and transportation distance of the solid waste to be stored based on the type, weight, or volume of the solid waste to be stored and the vacancy status of storage locations in the solid waste storage area;

[0019] Matching the types of solid waste to be stored with the types of solid waste stored in the vacant solid waste storage area to obtain a matching result;

[0020] comparing the weight or volume of the solid waste to be stored with the remaining storage capacity of an empty solid waste storage area; when the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, obtaining a difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and controlling the weight of the solid waste to be stored according to the difference;

[0021] storing the solid waste in a designated area according to the matching result and the difference;

[0022] The storage location, storage method, storage time and supervision method of the stored solid waste are determined according to the type and weight of the stored solid waste in the designated area.

[0023] In an optional embodiment, the pairing result includes:

[0024] When the types of solid waste to be stored cannot be matched with the types of solid waste stored in the vacant solid waste storage area, the types of solid waste that cannot be matched will be listed separately, and a new solid waste type database will be established based on the types of solid waste that cannot be matched. The corresponding storage location, storage method, storage time and supervision method will be set for the types of solid waste that cannot be matched as the basis for matching the next time this type of solid waste is stored.

[0025] In an optional embodiment, obtaining the type of solid waste to be stored includes:

[0026] The properties of the solid waste storage user are obtained, and the properties of the solid waste storage user are compared with pre-stored users, and the type of solid waste to be stored is determined according to the comparison result.

[0027] In an optional embodiment, the obtaining of the nature of the solid waste storage user includes: obtaining identity information of the user storing the solid waste, and determining whether the user storing the solid waste is an individual or a corporate user based on the identity information;

[0028] If the user storing the solid waste is an individual user, the solid waste to be stored is classified as domestic solid waste;

[0029] If the user storing the solid waste is a corporate user, the solid waste to be stored is divided into medical solid waste, construction solid waste and production solid waste.

[0030] In an optional embodiment, after determining that the solid waste to be stored is medical solid waste, construction solid waste, and production solid waste, the storage location is selected, and the storage method, storage time, and supervision method are determined according to the type of solid waste to be stored.

[0031] In an optional embodiment, when the solid waste to be stored is medical solid waste, the medical solid waste is divided into infectious waste, pathological waste, pathological waste, injury waste, and pharmaceutical waste, and stored and processed according to a first preset storage mechanism.

[0032] In an optional embodiment, when the solid waste to be stored is construction solid waste, the construction solid waste is divided into recyclable solid waste and non-recyclable solid waste, and stored and processed according to a second preset storage mechanism.

[0033] In an optional embodiment, when the solid waste to be stored is production solid waste, the production solid waste is divided into recyclable solid waste and non-recyclable solid waste and stored and processed according to a third preset storage mechanism.

[0034] In an optional embodiment, the method further includes issuing an alarm indicating that the weight exceeds a preset threshold when the weight of the stored solid waste exceeds a preset threshold;

[0035] When the type of solid waste to be stored cannot be matched with the type of solid waste stored in the vacant solid waste storage area, an alarm prompt is issued for the storage of new types of solid waste;

[0036] When the pre-stored user information does not include the user information of the solid waste to be stored, an alarm prompt is issued for the new storage user to enter the warehouse;

[0037] Corresponding processing measures are established based on the alarm prompts for weight exceeding the preset threshold, the alarm prompts for new types of solid waste entering the warehouse, and the alarm prompts for new storage users entering the warehouse, and a new database is established based on the corresponding processing measures as the basis for processing the next alarm prompt.

[0038] In an optional embodiment, the base is provided with a motor, the output shaft of the motor is installed with a driving half gear, the mounting column is provided with a driven gear, and the mounting column is connected to the base through the driven gear and the driving half gear.

[0039] In an optional embodiment, a cylindrical rotating structure is provided at the bottom of the mounting column, and an annular recessed limiting groove is provided in the cylindrical area of the rotating structure;

[0040] The base comprises a pedestal and a buckle structure rotatably connected to the pedestal, wherein the buckle structure is provided with a protruding columnar boss;

[0041] The mounting post is inserted into the columnar boss through the limiting groove;

[0042] The buckle structure rotates relative to the base, and the end of the buckle structure is buckled into the limiting groove, thereby preventing the mounting column from being pulled out.

[0043] The method provided by the embodiment of the present invention has at least the following beneficial effects:

[0044] The method provided by the embodiment of the present invention obtains the type and quantity of solid waste to be stored through an information collection unit and a weighing unit. The information collection unit obtains the vacancy status of storage locations in the solid waste storage area to ensure the effectiveness of solid waste storage. Further, the server calculates the remaining storage capacity, movement path and transportation distance of the solid waste to be stored based on the type, weight or volume of the solid waste to be stored and the vacancy status of storage locations in the solid waste storage area, thereby ensuring the optimization of the storage path, saving storage time and improving storage efficiency. The type of solid waste to be stored is matched with the type of solid waste stored in the vacant solid waste storage area to obtain a matching result. When the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, the difference between the weight or volume of the solid waste to be stored and the remaining storage capacity is obtained, and the weight or volume of the solid waste to be stored is controlled based on the difference to ensure that the solid waste storage at each location is neither redundant nor vacant, thereby wasting resources. The solid waste is stored in a designated area based on the matching result and the difference. Finally, the storage location, storage method, storage time and supervision of the stored solid waste are determined based on the type and weight or volume of the solid waste stored in the designated area. The method provided by the embodiment of the present invention avoids manual classification and storage of solid waste, and pre-classifies solid waste based on big data to ensure that different types of solid waste can be stored in appropriate locations and the stored quantity is within the most appropriate quantity range, so as to avoid waste of resources caused by problems such as solid waste rotting, rusting, and abandonment due to inaccurate solid waste classification, improve the efficiency and storage effect of solid waste storage, and further improve the efficiency of solid waste utilization. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] The above and other objects, features and advantages of the present disclosure will become more apparent through a more detailed description of exemplary embodiments of the present disclosure with reference to the accompanying drawings, wherein like reference numerals generally represent like components throughout the exemplary embodiments of the present disclosure.

[0046] Figure 1 A schematic diagram of a method flow diagram provided by an embodiment of the present invention is shown;

[0047] Figure 2 It shows a schematic diagram of the structure of the solid waste intelligent management library provided by an embodiment of the present invention;

[0048] Figure 3 A schematic diagram of the partial structure of the solid waste intelligent management library provided by an embodiment of the present invention is shown.

[0049] Reference numerals:

[0050] 1-base; 11-base; 12-snap structure; 13-columnar boss; 2-mounting column; 22-rotation structure; 201-limiting slot; 3-weighing unit; 4-identification unit; 5-control unit; 6-information collection unit; 7-driving half gear. DETAILED DESCRIPTION

[0051] The embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although the embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present disclosure more thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art. The term "including" and its variations used in this article represent open inclusion, that is, "including but not limited to". Unless otherwise stated, the term "or" means "and / or". The term "based on" means "based at least in part on". The term "an exemplary embodiment" and

[0052] "One embodiment" means "at least one example embodiment." The term "another embodiment" means "at least one additional embodiment." The terms "first," "second," and so on may refer to different or identical objects. Other explicit and implicit definitions may also be included below.

[0053] The embodiment of the present invention provides a solid waste intelligent management library logistics follow-up monitoring response method, please refer to Figure 1-3 , Figure 1 The method flow diagram provided in this embodiment of the present invention includes:

[0054] The intelligent management machine body includes a base 1 and a mounting column 2. The base 1 is used to connect to the floor scale, and the mounting column 2 is rotatably connected to the base 1;

[0055] Weighing unit 3, used for weighing solid waste;

[0056] The identity recognition unit 4 is located on the mounting column 2 of the smart management machine body and is used to identify the user's identity;

[0057] Control unit 5, used to track and control the path and weight of solid waste in the solid waste intelligent management library;

[0058] The information collection unit 6 is located on the mounting column 2 of the intelligent management machine body and is used to obtain solid waste information;

[0059] The method includes:

[0060] S101, the information collection unit 6 collects and obtains the types of solid waste to be stored;

[0061] S102, the weighing unit 3 obtains the weight or volume of the solid waste to be stored;

[0062] S103, the information collection unit 6 obtains the vacancy status of storage locations in the solid waste storage area;

[0063] S104. The server calculates the remaining storage capacity, moving path, and transportation distance of the solid waste to be stored based on the type, weight, or volume of the solid waste to be stored and the vacancy status of storage locations in the solid waste storage area;

[0064] S105: Pair the types of solid waste to be stored with the types of solid waste stored in the vacant solid waste storage area to obtain a pairing result;

[0065] S106: Compare the weight or volume of the solid waste to be stored with the remaining storage capacity of the vacant solid waste storage area; when the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, obtain the difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and control the weight of the solid waste to be stored based on the difference;

[0066] S107: storing the solid waste in a designated area according to the matching results and the difference;

[0067] S108. Determine the storage location, storage method, storage time, and supervision method of the stored solid waste based on the type and weight of the stored solid waste in the designated area.

[0068] The method provided by the embodiment of the present invention will be further explained and described below through optional embodiments.

[0069] The base 1 is provided with a motor, the output shaft of which is mounted a driving half gear, and the mounting column 2 is provided with a driven gear, which is connected to the base 1 via the driven gear and the driving half gear. Furthermore, the base 1 is provided with a motor, the output shaft of which is mounted a driving half gear 7, and the mounting column 2 is provided with a driven gear 21, which is connected to the base 1 via the driven gear 21 and the driving half gear 7.

[0070] A cylindrical rotating structure 22 is provided at the bottom of the mounting column 2, and an annular concave limiting groove 201 is provided in the cylindrical area of the rotating structure;

[0071] The base 1 includes a base 11 and a buckle structure 12 rotatably connected to the base 11, and the buckle structure 12 is provided with a protruding columnar boss 13;

[0072] The mounting column 2 is inserted into the columnar boss 13 through the limiting groove 201;

[0073] The buckle structure 12 rotates relative to the base 11 , and the end of the buckle structure 12 is buckled into the limiting groove 201 , thereby preventing the mounting column 2 from being pulled out.

[0074] Optionally, the identity recognition unit 4 determines the identity of the current user through an IC card, facial recognition, fingerprint recognition, or other identification methods. The weighing unit 3 weighs and measures the current solid waste, and inputs / selects the corresponding solid waste type, which includes recyclable solid waste, landfill solid waste, incineration solid waste, and other solid waste. The weighing unit 3 can be a weighing platform, a floor scale, or a measuring instrument that can measure volume. The information collection unit 6 can be a camera, and the number of cameras can be multiple, that is, one camera can be set on the intelligent management machine body, or multiple cameras can be set in other places of the solid waste intelligent management library. The multiple cameras are connected to the server to upload the captured information.

[0075] Optionally, the solid waste intelligent management library provided in the embodiment of the present invention further includes an identity recognition unit 4 for obtaining the identity information of the user, and the cloud server determines whether the user is a manager or a solid waste storage staff according to the identity information of the user;

[0076] As an example, the solid waste manager places the solid waste on the smart management machine body 1 of the solid waste smart management warehouse, performs facial recognition to start weighing, and selects the corresponding button on the smart management machine body 1 according to the solid waste category. After the equipment completes weighing, it will make a voice broadcast and transmit the weighing information to the cloud server; after the broadcast is completed, the server will give a storage location based on the storage location information pre-stored in the system, and the solid waste manager will select the solid waste area to be stored on the touch screen of the smart management machine body 1. After the selection is completed, the system prompt light on the smart management machine will light up and go out after a period of time.

[0077] After completing the above work, the solid waste manager will transport the solid waste to the designated storage area according to the instructions sent by the cloud server to the client. When passing through the door of the corresponding storage area, the intelligent detection grating is triggered. At this time, the solid waste storage is considered completed, and the corresponding weight is added to the corresponding solid waste storage area in the solid waste management system, and the weight is transmitted to the cloud server for storage.

[0078] The system provided by the embodiment of the present invention can set the category and weight of each solid waste storage area. When the solid waste storage weight reaches the alarm value set by the system, the system will automatically prompt to process it as soon as possible, thereby accelerating the solid waste turnover efficiency, improving management efficiency, and reducing management costs.

[0079] Optionally, the mounting post 2 is rotatably connected to the base 1, so the intelligent management machine can move with the management personnel or solid waste handling equipment. The mounting post 2 rotates relative to the base 1, thereby driving the camera to automatically identify the moving target. After the moving target is identified, the relevant parameters of the solid waste currently on the scale are associated (this association can realize the collection and statistics of materials). During the movement of the moving target, the mounting post 2 rotates with it to measure the moving path and transportation distance of the moving target in real time.

[0080] S101. The information collection unit collects the types of solid waste to be stored.

[0081] It should be noted that the storage of solid waste needs to be classified according to the type of solid waste to ensure efficient storage and effectiveness.

[0082] By establishing a cloud database and pre-entering the types of solid waste, the information collection unit takes photos of the types of solid waste to be stored, and the client enters the type of solid waste to be stored. For example, the type of solid waste to be stored may be medical solid waste from a hospital, construction solid waste, or industrial solid waste. The client then transmits the solid waste to be stored to the cloud database.

[0083] S101 includes obtaining the properties of the solid waste storage user, comparing the properties of the solid waste storage user with pre-stored users, and determining the type of solid waste to be stored based on the comparison result.

[0084] The method provided by the embodiment of the present invention pre-stores the properties of the solid waste storage user, such as whether the user is an enterprise or an individual, and classifies the solid waste of enterprises and individuals based on their differences, so as to improve the efficiency of solid waste classification.

[0085] Optionally, obtaining identity information of the user storing the solid waste, and determining whether the user storing the solid waste is an individual or a corporate user based on the identity information;

[0086] If the user storing the solid waste is an individual user, the solid waste to be stored shall be classified as domestic solid waste;

[0087] If the user storing the solid waste is a corporate user, the solid waste to be stored will be divided into medical solid waste, construction solid waste and production solid waste.

[0088] By pre-entering the identity information of the solid waste storage user, when the user stores solid waste, the server obtains the identity information of the solid waste storage user and determines whether the user is a corporate user or an individual user. If it is an individual user, the solid waste is mostly domestic solid waste, and the solid waste is initially classified as domestic solid waste based on this classification. Furthermore, the identity information of users who frequently store solid waste can be pre-entered on the client, such as the fingerprint information and IC card information of the user manager. It should be noted that when the solid waste storage user is an individual, some construction solid waste, medical solid waste, etc. may also be generated. Therefore, the client's signal acquisition unit, such as a camera, can be used to take photos of the solid waste and transmit the photos to the cloud database, which performs a simple comparison and then classifies them.

[0089] If the user storing solid waste is a corporate user, the solid waste to be stored will be divided into medical solid waste, construction solid waste and production solid waste, and then the solid waste will be further classified, stored and processed according to domestic solid waste, medical solid waste, construction solid waste and production solid waste, which improves the accuracy of solid waste classification and storage, reduces the inaccurate classification caused by simple misjudgment, and thus affects the problem of inaccurate storage methods and processing methods.

[0090] Optionally, when the solid waste to be stored is medical solid waste, the medical solid waste is divided into infectious waste, pathological waste, damaging waste, and pharmaceutical waste, and stored and processed according to the first preset storage mechanism.

[0091] Understandably, medical solid waste differs from domestic solid waste, construction solid waste, and industrial solid waste. Medical and health institutions generate waste from medical treatment, preventive care, healthcare, teaching, scientific research, and other related activities that are directly or indirectly infectious, toxic, or otherwise hazardous. This waste, including waste and patient excrement, is highly hazardous and contaminating, containing dozens, hundreds, or even thousands of times more pathogens and viruses than ordinary domestic solid waste. This waste plays a role in the spread of disease and epidemics. If not properly handled, it poses a threat to public health.

[0092] Therefore, once it is determined that the solid waste storage user is a medical institution or medical research institution, the solid waste stored by the user can be judged as medical solid waste. According to the characteristics of medical solid waste, it can be treated by high-temperature incineration, pyrolysis treatment or sterilization and disinfection methods to improve the efficiency of solid waste treatment and avoid environmental pollution or bacterial growth caused by improper solid waste classification.

[0093] Furthermore, depending on whether the solid waste is infectious waste, pathological waste, harmful waste or pharmaceutical waste, it is determined whether the solid waste should be treated by high-temperature incineration, pyrolysis or sterilization.

[0094] Optionally, when the solid waste to be stored is construction solid waste, the construction solid waste is divided into recyclable solid waste and non-recyclable solid waste, and stored and processed according to the second preset storage mechanism.

[0095] The client's collection unit collects image information of solid waste and transmits it to the cloud database. The cloud database uses a pre-set program to determine whether the solid waste is recyclable or non-recyclable, and classifies it; and stores it according to the recyclable and non-recyclable nature of the construction solid waste.

[0096] Optionally, when the solid waste to be stored is production solid waste, the production solid waste is classified into recyclable solid waste and non-recyclable solid waste and stored and processed according to a third preset storage mechanism.

[0097] Optionally, after determining that the solid waste to be stored is medical solid waste, construction solid waste, or production solid waste, the storage location is selected, and the storage method, storage time, and supervision method are determined according to the type of solid waste to be stored.

[0098] It's understandable that different solid waste classifications will require different storage locations, methods, durations, and oversight. For example, medical solid waste must be stored in a closed area, not in the open air, and cannot be stored for more than two days. Easily corrosive and deteriorating solid waste cannot be stored for extended periods and must be disposed of within a specified timeframe. Chemical waste and flammable and explosive solid waste require regular oversight to prevent potential safety incidents.

[0099] S102: The weighing unit obtains the weight or volume of the solid waste to be stored.

[0100] The weight of the solid waste to be stored is obtained through a weighing platform or a floor scale, or through a volume measuring device, such as a static code scanning weighing and measuring all-in-one machine, and the measured data is uploaded to the cloud server to ensure that the weight of the stored solid waste does not exceed the preset weight and the volume does not exceed the preset volume.

[0101] S103. The information collection unit obtains the vacancy status of storage locations in the solid waste storage area.

[0102] It's understandable that some locations in solid waste storage areas are already filled with solid waste, while others are stored but not yet full. Therefore, information collection units, such as cameras, installed in these storage areas capture the vacancy status of these storage areas in real time and transmit this information back to the cloud server in real time. It should be noted that the size, storage type, storage volume, and storage capacity of each storage area have been uploaded to the cloud server in advance via the client. When a storage area is occupied or partially occupied, the server will update the vacancy status of that storage area in real time.

[0103] S104. The server calculates the remaining storage capacity, moving path, and transportation distance of the solid waste to be stored based on the type, weight, or volume of the solid waste to be stored and the vacancy status of storage locations in the solid waste storage area.

[0104] It is understandable that each solid waste storage area stores different types of solid waste. Due to the continuous influx of solid waste, it is necessary to obtain the types of solid waste stored in the vacant solid waste storage areas and the remaining storage capacity in real time.

[0105] The server calculates the storage movement path and transportation path based on the type of solid waste to be stored and the vacancy of storage locations in the solid waste storage area to ensure that the path is the optimal path. Furthermore, when there are two storage paths, the transportation path of the first storage path is smaller, but the storage capacity is insufficient, and the transportation path of the second storage path is larger and the storage capacity also matches, then the second path is selected as the storage path. Or if the transportation path of the first storage path is smaller and the transportation path of the second storage path is larger, but the storage capacity of the first storage path is greater than the actual storage capacity, and the storage capacity of the second storage path is just equivalent to the current storage capacity of solid waste, then the second storage path is selected first, leaving the larger storage capacity for the next storage.

[0106] S105: Pair the types of solid waste to be stored with the types of solid waste stored in the vacant solid waste storage area to obtain a pairing result.

[0107] Optionally, the pairing result in S105 includes:

[0108] When the types of solid waste to be stored cannot be matched with the types of solid waste stored in the vacant solid waste storage area, the types of solid waste that cannot be matched will be listed separately, and a new solid waste type database will be established based on the types of solid waste that cannot be matched. The corresponding storage location, storage method, storage time and supervision method will be set for the types of solid waste that cannot be matched, which will serve as the basis for matching the storage of this type of solid waste next time.

[0109] In other words, the unmatched solid waste type does not exist in the cloud database, so matching cannot be completed. Therefore, the unmatched solid waste type is listed separately, and a new solid waste type database is established based on the unmatched solid waste type, which serves as the basis for matching the solid waste of this type next time. It is understandable that there is no specific storage method or subsequent processing method for the new solid waste type in the database. Therefore, corresponding storage locations, storage methods, storage times, and supervision methods are set for the unmatched solid waste types as the basis for matching the storage of this type of solid waste next time.

[0110] S106. Compare the weight or volume of the solid waste to be stored with the remaining storage capacity of the vacant solid waste storage area. When the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, obtain the difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and control the weight of the solid waste to be stored based on the difference.

[0111] Furthermore, by weighing or measuring the volume, if the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, the server calculates the difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and gives the weight and volume of the solid waste that can be stored in the vacant location, thereby improving the efficiency and effectiveness of solid waste storage.

[0112] S107. Store the solid waste in a designated area according to the matching results and the difference.

[0113] S108. Determine the storage location, storage method, storage time, and supervision method of the stored solid waste based on the type and weight of the stored solid waste in the designated area.

[0114] Understandably, different solid waste storage locations, methods, durations, and oversight methods vary. For example, medical solid waste requires a confined space, limited storage time, and regular inspections to prevent leaks. The cloud server database already stores the storage method, duration, and oversight method corresponding to each solid waste. This information is then sent to the client via the server, allowing administrators to further manage the solid waste based on the information received.

[0115] Optionally, the method further includes issuing an alarm indicating that the weight exceeds a preset threshold when the weight of the stored solid waste exceeds a preset threshold;

[0116] When the type of solid waste to be stored cannot be matched with the type of solid waste stored in the vacant solid waste storage area, an alarm prompt will be issued for the new type of solid waste to be stored;

[0117] When the pre-stored user information does not include the user information of the solid waste to be stored, an alarm prompt is issued for the new storage user to enter the warehouse;

[0118] Corresponding processing measures are established based on the alarm prompts for weight exceeding the preset threshold, the alarm prompts for new types of solid waste entering the warehouse, and the alarm prompts for new storage users entering the warehouse. A new database is established with the corresponding processing measures as the basis for processing the next alarm prompt.

[0119] While various embodiments of the present disclosure have been described above, the foregoing description is intended to be illustrative, non-exhaustive, and not limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is selected to best explain the principles of the embodiments, their practical applications, or technical improvements to existing technologies, or to enable others skilled in the art to understand the embodiments disclosed herein.

Claims

1. A solid waste intelligent management library logistics follow-up monitoring response method, characterized in that: The solid waste intelligence management library includes: The intelligent management machine body includes a base and a mounting column, the base is used to connect to the floor scale, and the mounting column is rotatably connected to the base; Weighing unit, used for weighing solid waste; An identity recognition unit, located on the mounting post of the smart management machine body, for identifying the user's identity; The control unit is used to track and control the path and weight of solid waste in the solid waste intelligent management library; An information collection unit, located on the mounting column of the intelligent management machine body, is used to obtain solid waste information; The method comprises: The information collection unit collects the types of solid waste to be stored; The weighing unit obtains the weight or volume of the solid waste to be stored; The information collection unit obtains the vacancy status of storage locations in the solid waste storage area; The server calculates the remaining storage capacity, moving path, and transportation distance of the solid waste to be stored based on the type, weight, or volume of the solid waste to be stored and the vacancy status of storage locations in the solid waste storage area; Matching the types of solid waste to be stored with the types of solid waste stored in the vacant solid waste storage area to obtain a matching result; comparing the weight or volume of the solid waste to be stored with the remaining storage capacity of an empty solid waste storage area; when the weight or volume of the solid waste to be stored is greater than the remaining storage capacity, obtaining a difference between the weight or volume of the solid waste to be stored and the remaining storage capacity, and controlling the weight of the solid waste to be stored according to the difference; storing the solid waste in a designated area according to the matching result and the difference; Determining the storage location, storage method, storage time, and supervision method of the stored solid waste based on the type and weight of the stored solid waste in the designated area; The pairing results include: When the types of solid waste to be stored cannot be matched with the types of solid waste stored in the vacant solid waste storage area, the types of solid waste that cannot be matched will be listed separately, and a new solid waste type database will be established based on the types of solid waste that cannot be matched. The corresponding storage location, storage method, storage time and supervision method will be set for the types of solid waste that cannot be matched as the basis for matching the next time this type of solid waste is stored.

2. The solid waste intelligent management library logistics tracking monitoring response method according to claim 1 is characterized in that: The obtaining of the types of solid waste to be stored includes: Obtaining the nature of the solid waste storage user, comparing the nature of the solid waste storage user with pre-stored users, and determining the type of solid waste to be stored based on the comparison result; Obtaining identity information of a user storing the solid waste, and determining whether the user storing the solid waste is an individual or a corporate user based on the identity information; If the user storing the solid waste is an individual user, the solid waste to be stored is classified as domestic solid waste; If the user storing the solid waste is a corporate user, the solid waste to be stored is divided into medical solid waste, construction solid waste and production solid waste.

3. The solid waste intelligent management library logistics tracking monitoring response method according to claim 2 is characterized in that: After determining that the solid waste to be stored is medical solid waste, construction solid waste, and production solid waste, the storage location is selected, and the storage method, storage time, and supervision method are determined according to the type of solid waste to be stored.

4. The solid waste intelligent management library logistics tracking monitoring response method according to claim 3 is characterized in that: When the solid waste to be stored is medical solid waste, the medical solid waste is divided into infectious waste, pathological waste, pathological waste, injury waste, and pharmaceutical waste, and is stored and processed according to a first preset storage mechanism.

5. The solid waste intelligent management library logistics tracking monitoring response method according to claim 4 is characterized in that: When the solid waste to be stored is construction solid waste, the construction solid waste is divided into recyclable solid waste and non-recyclable solid waste, and stored and processed according to a second preset storage mechanism.

6. The solid waste intelligent management library logistics tracking monitoring response method according to claim 5 is characterized in that: When the solid waste to be stored is production solid waste, the production solid waste is divided into recyclable solid waste and non-recyclable solid waste and stored and processed according to the third preset storage mechanism.

7. The solid waste intelligent management library logistics tracking monitoring response method according to claim 1 is characterized in that: The method further includes issuing an alarm indicating that the weight exceeds a preset threshold when the weight of the stored solid waste exceeds a preset threshold; When the type of solid waste to be stored cannot be matched with the type of solid waste stored in the vacant solid waste storage area, an alarm prompt is issued for the storage of new types of solid waste; When the pre-stored user information does not include the user information of the solid waste to be stored, an alarm prompt is issued for the new storage user to enter the warehouse; Corresponding processing measures are established based on the alarm prompts for weight exceeding the preset threshold, the alarm prompts for new types of solid waste entering the warehouse, and the alarm prompts for new storage users entering the warehouse, and a new database is established based on the corresponding processing measures as the basis for processing the next alarm prompt.

8. The solid waste intelligent management library logistics tracking monitoring response method according to claim 1 is characterized in that: The base is provided with a motor, the output shaft of the motor is installed with a driving half gear, the mounting column is provided with a driven gear, and the mounting column is connected to the base through the driven gear and the driving half gear.

9. The solid waste intelligent management warehouse logistics tracking monitoring response method according to claim 8 is characterized in that: A cylindrical rotating structure is provided at the bottom of the mounting column, and an annular concave limiting groove is provided in the cylindrical area of the rotating structure; The base comprises a pedestal and a buckle structure rotatably connected to the pedestal, wherein the buckle structure is provided with a protruding columnar boss; The mounting post is inserted into the columnar boss through the limiting groove; The buckle structure rotates relative to the base, and the end of the buckle structure is buckled into the limiting groove, thereby preventing the mounting column from being pulled out.

Citation Information

Patent Citations

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