Waste management system and method for controlling the same

KR103004417B1Active Publication Date: 2026-08-12KYUNGPOOK NAT UNIV IND ACADEMIC COOP FOUND
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Patent Information

Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2026-08-12

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Abstract

The present invention relates to a waste management system and a method for controlling the same. More specifically, a method for controlling a waste management system according to the present invention may include the steps of: receiving outgoing information regarding waste to be processed from an outgoing company; generating a QR code including the outgoing information; providing the generated QR code to the outgoing company, a transporter transporting the waste to a processing facility, and a processing company processing the waste at the processing facility, respectively; generating a recognition event of the QR code provided to the outgoing company from the transporter; monitoring the transportation status of the waste based on the generation of the recognition event of the QR code provided to the outgoing company; generating a recognition event of the QR code provided to the transporter from the processing company; and monitoring the processing status of the waste based on the generation of the recognition event of the QR code provided to the transporter.
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Description

Technology Field

[0001] The present invention relates to a waste management system and a method for controlling the same. Background Technology

[0002] Recently, construction waste has consistently been higher than general household and industrial waste. In particular, waste concrete and construction waste soil, which account for the majority of construction waste, contain heavy metals, requiring environmentally friendly treatment.

[0003] However, illegal disposal of construction waste continues to be detected, and recently, large amounts of taxpayer money are being poured into dealing with illegally dumped and abandoned construction waste, particularly in areas with many construction sites such as new city construction and redevelopment.

[0004] Meanwhile, although a construction waste information management system has been established to perform administrative tasks related to construction waste, there is a possibility that waste that was not transported from the generator to the treatment facility may be recorded as having been legally processed even though it was illegally dumped.

[0005] Therefore, there is a need for a service that can prevent environmental pollution caused by the involvement of unqualified treatment companies, illegal disposal, and abandonment during the construction waste treatment process. The problem to be solved

[0006] The present invention is intended to provide a waste management system capable of preventing illegal waste disposal and a method for controlling the same.

[0007] More specifically, the present invention is intended to provide a waste management system capable of monitoring the progress from the waste generation process to the final treatment process in real time, and a method for controlling the same.

[0008] Furthermore, the present invention aims to provide a waste management system and a control method thereof that enable efficient waste management and treatment by utilizing QR code recognition, location tracking technology, and real-time weight measurement. means of solving the problem

[0009] To solve the problem described above, a control method for a waste management system according to the present invention may include the steps of: receiving outflow information regarding waste to be processed from an outflow company; generating a QR code including the outflow information; providing the generated QR code to the outflow company, a transporter transporting the waste to a processing facility, and a processing company processing the waste at the processing facility, respectively; generating a recognition event of the QR code provided to the outflow company from the transporter; monitoring the transportation status of the waste based on the generation of the recognition event of the QR code provided to the outflow company; generating a recognition event of the QR code provided to the transporter from the processing company; and monitoring the processing status of the waste based on the generation of the recognition event of the QR code provided to the transporter.

[0010] Furthermore, the step of receiving the above-mentioned outflow information further includes the step of receiving the carrier information and the processing company information from the above-mentioned outflow company, and the above-mentioned outflow information may include at least one of the type of waste and the weight of the waste.

[0011] Furthermore, the method further includes a step of specifying the carrier and the processing company, wherein in the specifying step, the carrier and the processing company can be specified based on the carrier information and the processing company information entered from the exporter.

[0012] Furthermore, the method may further include the step of generating a QR code recognition event provided to the transporter from the aforementioned exporting company, the step of providing the service page to the exporting company based on the generation of the QR code recognition event from the aforementioned exporting company, and the step of receiving at least one of the export date and time and the export location of the waste from the exporting company through the service page.

[0013] Furthermore, in the step where the QR code recognition event provided to the aforementioned outgoing company occurs, if the outgoing time and location of the waste are entered, the QR code recognition event occurs from the aforementioned transporter, and in the step of monitoring the transport situation, based on the occurrence of the QR code recognition event from the said transporter, the method may include the step of providing the said service page to the said transporter, the step of receiving information related to the transport of the waste through the said service page from the said transporter, and the step of monitoring the transport situation of the waste based on the input of the information related to the transport.

[0014] Furthermore, the information related to the transportation of the waste includes at least one of the starting point of the transportation of the waste, the time and date of the start of transportation, and the location information of the treatment facility, and in the step of monitoring the transportation situation, the weight of the waste and the location information of the carrier can be monitored.

[0015] Furthermore, the step of monitoring the processing status may include: providing the service page to the processing company based on the occurrence of the QR code recognition event from the processing company; receiving information related to the processing of the waste from the processing company through the service page; and monitoring the processing status of the waste based on the input of information related to the processing of the waste.

[0016] Furthermore, information related to the treatment of the waste includes at least one of the waste entry location and entry time, and in the step of monitoring the treatment status, the waste treatment status can be monitored based on the waste entry location and entry time entered by the treatment company.

[0017] Meanwhile, the waste management system according to the present invention receives outflow information regarding waste to be processed from an outflow company, generates a QR code including said outflow information, provides said generated QR code to said outflow company, a transporter transporting said waste to a processing facility, and a processing company processing said waste at said processing facility, respectively, monitors the transport status of said waste based on the occurrence of a QR code recognition event provided to said outflow company from said transporter, and monitors the processing status of said waste based on the occurrence of a QR code recognition event provided to said outflow company from said processing company.

[0018] Meanwhile, the program according to the present invention is a program that is executed by one or more processes on an electronic device and can be stored on a computer-readable recording medium, and the program may include instructions for performing the steps of: receiving outflow information regarding waste to be processed from an outflow company; generating a QR code including said outflow information; providing said generated QR code to said outflow company, a transporter transporting said waste to a processing facility, and a processing company processing said waste at said processing facility, respectively; generating a QR code recognition event provided to said outflow company from said transporter; monitoring the transportation status of said waste based on said QR code recognition event provided to said outflow company; generating a QR code recognition event provided to said transporter from said processing company; and monitoring the processing status of said waste based on said QR code recognition event provided to said transporter. Effects of the invention

[0019] As described above, the waste management system and control method according to the present invention can provide an environment to the outsourcing company, the transporter, and the processing company that enables integrated management of the waste treatment process, including outsourcing, transportation, and processing. Through this, complex procedures that may occur during the waste treatment process can be simplified, and efficiency can be significantly improved by operating the waste treatment process more systematically and rapidly.

[0020] Furthermore, according to the waste management system and control method of the present invention, a system capable of monitoring the waste treatment process and weight in real time through QR code tracking can be provided, thereby enabling the prevention of illegal disposal. Through this, environmental pollution caused by the intervention of unqualified treatment companies, illegal burial, and abandonment can be prevented, and social costs resulting from illegal waste disposal (e.g., environmental cleanup, disputes between involved companies and residents, etc.) can be reduced.

[0021] Furthermore, according to the waste management system and control method of the present invention, the type, volume, information on the waste generator, and the timing of entry and exit can be digitized based on QR code recognition technology and automatically processed (e.g., collection, aggregation, distribution, etc.). Through this, waste treatment and management tasks can be performed more efficiently.

[0022] In other words, the present invention provides a waste management system utilizing QR code recognition, location tracking technology, and real-time weight measurement, as well as a method for controlling the same. Through this, the location of a vehicle transporting waste can be checked in real time, and the locations of waste export and import, as well as the movement routes, can be verified. Furthermore, by measuring the weight of the waste in real time during this process, illegal waste disposal can be prevented and processing efficiency can be significantly improved. Brief explanation of the drawing

[0023] FIGS. 1 and FIGS. 2 are conceptual diagrams for explaining a waste management system according to the present invention. FIG. 3 is a conceptual diagram illustrating a control method for a waste management system according to the present invention. FIGS. 4, FIGS. 5, FIGS. 6, FIGS. 7, FIGS. 8, FIGS. 9, FIGS. 11 and FIGS. 12 are conceptual diagrams for explaining a control method of a waste management system according to the present invention. FIGS. 10 and FIGS. 13 are conceptual diagrams for explaining a monitoring screen according to the present invention. Specific details for implementing the invention

[0024] Hereinafter, embodiments disclosed in this specification will be described in detail with reference to the attached drawings. Identical or similar components are assigned the same reference number regardless of the drawing symbols, and redundant descriptions thereof will be omitted. The suffixes "module" and "part" used for components in the following description are assigned or used interchangeably solely for the ease of drafting the specification and do not have distinct meanings or roles in themselves. Furthermore, in describing the embodiments disclosed in this specification, if it is determined that a detailed description of related prior art could obscure the essence of the embodiments disclosed in this specification, such detailed description will be omitted. Additionally, the attached drawings are intended only to facilitate understanding of the embodiments disclosed in this specification; the technical concept disclosed in this specification is not limited by the attached drawings, and it should be understood that they include all modifications, equivalents, and substitutions that fall within the spirit and technical scope of the present invention.

[0025] Terms including ordinal numbers, such as first, second, etc., may be used to describe various components, but said components are not limited by said terms. These terms are used solely for the purpose of distinguishing one component from another.

[0026] When it is stated that one component is "connected" or "connected" to another component, it should be understood that while it may be directly connected or connected to that other component, there may also be other components in between. On the other hand, when it is stated that one component is "directly connected" or "directly connected" to another component, it should be understood that there are no other components in between.

[0027] A singular expression includes a plural expression unless the context clearly indicates otherwise.

[0028] In this application, terms such as “comprising” or “having” are intended to specify the existence of the features, numbers, steps, actions, components, parts, or combinations thereof described in the specification, and should be understood as not precluding the existence or addition of one or more other features, numbers, steps, actions, components, parts, or combinations thereof.

[0029] The present invention relates to a waste management system and a method for controlling the same. The waste management system according to the present invention can provide various functions to prevent illegal disposal by monitoring the construction waste treatment process and weight in real time through QR code tracking.

[0030] The waste management system according to the present invention may include a “waste weight measurement system” for measuring the weight of waste and a “waste location tracking system” for tracking the movement path and location of waste. Through these components, the waste management system can collect and manage weight and location information of each waste and provide information throughout all processes of removal, transportation, and treatment.

[0031] The waste management system according to the present invention may be implemented in various platform forms, such as applications, software, and websites. For convenience of explanation, the form in which the waste management system is implemented is not limited to any one form. The waste management system according to the present invention may also be referred to as a “waste management service provision platform.”

[0032] The exporting, transporting, and processing companies described above may possess accounts already registered in the waste management system according to the present invention. In this case, it is possible to create the account through a page (or screen) linked to the waste management system. Alternatively, the account may also be created in at least one other system linked to the waste management system. However, in this specification, the system in which the account was issued is not distinguished separately, and all accounts capable of utilizing the various services (or functions) provided by the waste management system according to the present invention are referred to as “accounts already registered in the waste management system.”

[0033] In this invention, the waste management system according to the present invention can provide various information that enables waste removal companies, transport companies, and treatment companies to manage the waste management process through a service page linked to the system. The service page may not only input information required at each stage of waste removal, transportation, and treatment, but may also include various functions such as viewing stored data in real time, tracking transportation and treatment status, and updating data according to the situation. Furthermore, the service page can be linked with contactless recognition technologies such as QR codes and RFID to automatically collect and update information on-site, thereby allowing step-by-step data to be reflected.

[0034] Furthermore, for the waste management system according to the present invention, organic information, that is, data transmission and reception between the outsourcing company, the transporter, the processing company, and the waste management system is essential.

[0035] To this end, the information transmitted from the exporting company to the waste management system or from the waste management system to the exporting company is substantially transmitted from an electronic device logged in with the exporting company account to the waste management system or from the waste management system to an electronic device logged in with the exporting company account.

[0036] However, for the convenience of explanation, this specification does not clearly distinguish between i) information being transmitted from an “electronic device logged in with an exporter account” or ii) information being received by an “electronic device logged in with an exporter account,” and describes the exporter terminal as the subject, such as i) information being transmitted from an exporter or ii) information being received by an exporter.

[0037] Likewise, information that is transmitted from i) the carrier to the waste management system or ii) from the waste management system to the carrier is substantially transmitted from i) an electronic device logged in with a carrier account to the waste management system or ii) from the waste management system to an electronic device logged in with a carrier account.

[0038] However, for the convenience of explanation, this specification does not clearly distinguish between i) information being transmitted from an “electronic device logged in with a carrier account” or ii) information being received by an “electronic device logged in with a carrier account,” and describes the carrier terminal as the subject, such as i) information being transmitted from the carrier or ii) information being received by the carrier.

[0039] In addition, i) information transmitted from the treatment company to the waste management system or ii) information transmitted from the waste management system to the treatment company is substantially i) transmitted from an electronic device logged in with a treatment company account to the waste management system or ii) transmitted from the waste management system to an electronic device logged in with a treatment company account.

[0040] However, for the convenience of explanation, this specification does not clearly distinguish between i) information being transmitted from an “electronic device logged in with a processor account” or ii) information being received by an “electronic device logged in with a processor account,” and describes the processor terminal as the subject, such as i) information being transmitted from a processor or ii) information being received by a processor.

[0041] In this specification, “QR code recognition event” is defined as a contactless information processing process in which a QR code is scanned in a waste management system to automatically retrieve and transmit information required during the outbound, transport, and processing stages, and may be used interchangeably with “QR code scan.”

[0042] A QR code (Quick Response code) is a computer-generated black-and-white grid pattern code that can refer to a two-dimensional code in a matrix format representing information. A QR code can be formed in a unidirectional one-dimensional form (e.g., barcode) or a two-dimensional form in the vertical and horizontal directions.

[0043] QR codes are generated containing various information about the waste to be processed and are assigned unique serial numbers. Through this, even when multiple types of waste are dispatched simultaneously, the waste management system can identify each type of waste individually using the QR code serial number. Therefore, the status and information of each type of waste can be managed independently, even if they travel along the same route or are processed at the same location.

[0044] In one embodiment, let us assume that the waste management system receives outflow information for each of the first waste, second waste, and third waste to be processed from the outflow company terminal (10). The waste management system may assign a unique QR code serial number to each waste according to the waste information input from the outflow company. The waste management system may assign a first serial number (e.g., “1”) to the QR code (first QR code) corresponding to the first waste, a second serial number (e.g., “2”) to the QR code (second QR code) corresponding to the second waste, and a third serial number (e.g., “3”) to the QR code (third QR code) corresponding to the third waste. The QR code serial numbers may be assigned as different unique numbers, and the user can check the current status, waste type, planned weight, actual weight, current location, outflow information, movement information, and processing information for the first waste, second waste, and third waste through the QR code status list.

[0045] The waste management system automatically retrieves information such as the type and weight of waste through QR code recognition events (or scans), enabling the transmission of necessary data during the removal, transportation, and processing stages. For example, when a transporter scans a removal company's QR code, the type and weight information of the waste to be processed are automatically displayed, along with details such as the removal time, location, and contact person. Additionally, when a processing company scans the QR code, they can verify information such as whether transportation is complete, current location data, and the waste disposal method (e.g., recycling, incineration).

[0046] Hereinafter, the present invention will be examined in more detail with reference to the attached drawings. FIGS. 1 and 2 are conceptual diagrams for explaining a waste management system according to the present invention, and FIGS. 3 is a conceptual diagram for explaining a control method of a waste management system according to the present invention. FIGS. 4, 5, 6, 7, 8, 9, 11, and 12 are conceptual diagrams for explaining a control method of a waste management system according to the present invention, and FIGS. 10 and 13 are conceptual diagrams for explaining a monitoring screen according to the present invention.

[0047] Meanwhile, as illustrated in FIG. 1, the waste management system (100) according to the present invention may include at least one of an input unit (110), an output unit (120), a communication unit (130), a storage unit (140), and a control unit (150).

[0048] Although not described, the waste management system (100) according to the present invention may include one or more processors, and such processors may include one or more general-purpose processors and / or one or more special-purpose processors (e.g., digital signal processors, tensor processing units (TPUs), graphics processing units (GPUs), neural network processing units (NPUs), application integrated circuits, application semiconductors (ASICs), etc.). One or more processors may be configured to execute instructions, computer-readable instructions, and / or other instructions described herein that are stored (or included) in the storage unit (140). The waste management system and method according to the present invention may perform data processing described below in cooperation with memory and at least one processor. The processor may perform a series of operations and data processing using data and information stored in memory. In this case, memory may be a component of the storage unit (140).

[0049] Meanwhile, the input unit (110) can be configured in various ways as a means of data input. For example, the input unit (110) can be configured to receive user input from an electronic device. Here, “receiving input” may mean receiving an input signal (or selection signal) corresponding to the user’s input based on the input being made by the user through the configuration of the input unit provided in the electronic device.

[0050] The input unit (110) may also be referred to as a user interface module. The input unit (110) may include a touchscreen, a computer mouse, a keyboard, a keypad, a touchpad, a trackball, a joystick, a voice recognition module, or other similar devices. However, the present invention does not limit the type of input unit (110). Furthermore, in the present invention, the input unit (110) does not necessarily refer to a hardware means, but can be understood as a channel for receiving input from a user.

[0051] Here, user input may include documents, text, images (or videos), voice, etc. In this case, the waste management system (100) may further include a module that converts voice into text.

[0052] Next, the output unit (120) can output information through an output unit configuration (e.g., a display unit, a touch screen, a speaker, etc.) provided in an electronic device linked to the waste management system (100) according to the present invention. For example, the output unit (120) can output a page (or service page, 1000) linked to the waste management system (100) according to the present invention to the display unit of the electronic device. The page (1000) may provide at least one of information regarding recent waste and information regarding its removal, transportation, and / or processing.

[0053] Additionally, the output unit (120) does not necessarily mean a hardware means, but can be understood as a channel for outputting results to the user.

[0054] Next, the communication unit (130) may be connected via a wireless or wired network to an electronic device, a central server, an external server, a device, and at least one network, etc., to receive or transmit overall data and information necessary for the operation of the waste management system (100) according to the present invention.

[0055] In this case, the communication unit (130) may include one or more communication modules to enable wireless and / or wired communication between the waste management system (100) and an electronic device, inside and outside the waste management system (100), between the waste management system (100) and a remote server, between the waste management system (100) and a GPS signal, and between the waste management system (100) and a sensing device.

[0056] Here, the electronic device may include at least one of a mobile phone, a smartphone, a notebook computer, a laptop computer, a slate PC, a tablet PC, an ultrabook, a desktop computer, a digital broadcasting terminal, a PDA (personal digital assistants), a PMP (portable multimedia player), a navigation device, and a wearable device (e.g., a smartwatch, a smart glass, a head-mounted display).

[0057] Furthermore, the communication unit (130) can support various communication methods according to the communication standards of the communicating device.

[0058] For example, the communication unit (130) may be configured to communicate with a communication target using at least one of the following technologies: WLAN (Wireless LAN), Wi-Fi (Wireless-Fidelity), Wi-Fi (Wireless Fidelity) Direct, DLNA (Digital Living Network Alliance), WiBro (Wireless Broadband), WiMAX (World Interoperability for Microwave Access), HSDPA (High Speed ​​Downlink Packet Access), HSUPA (High Speed ​​Uplink Packet Access), LTE (Long Term Evolution), LTE-A (Long Term Evolution-Advanced), 5G (5th Generation Mobile Telecommunication), Bluetooth (Bluetooth™ RFID (Radio Frequency Identification), Infrared Communication (Infrared Data Association; IrDA), UWB (Ultra-Wideband), ZigBee, NFC (Near Field Communication), Wi-Fi Direct, and Wireless USB (Wireless Universal Serial Bus).

[0059] Additionally, the communication unit (130) may apply security protocols including encryption and / or authentication to ensure secure data communication related to the waste management system (100), thereby enhancing the integrity, confidentiality, and access control of all transmitted information to prevent illegal data access and tampering.

[0060] Meanwhile, the storage unit (140) serves to store various data related to the present invention and may include one or more non-transient computer-readable storage media that can be read and / or accessed by at least one of one or more processors.

[0061] One or more computer-readable storage media may include volatile and / or non-volatile storage components, such as optical, magnetic, organic, or other memory or disk storage devices. In some examples, the storage unit (140) may be implemented using a single physical device (e.g., one optical, magnetic, organic, or other memory or disk storage device), whereas in other examples, the storage unit (140) may be implemented using two or more physical devices.

[0062] The storage unit (140) may include computer-readable instructions and additional data. The storage unit (140) may include a storage necessary to perform at least some of the methods, scenarios, and techniques described herein and / or at least some of the functions of the device and network.

[0063] Furthermore, at least a portion of the storage unit (140) may be a cloud storage or a cloud server. At least a portion of the data corresponding to user input received from the input unit (110) and the training data may be stored in the storage unit (140).

[0064] That is, the storage unit (140) is sufficient as a space where information necessary for the operation of the waste management system (100) according to the present invention is stored, and it can be understood that there are no restrictions on the physical space.

[0065] Additionally, the storage unit (140) may include a database (DB) that stores and manages basic information, location information of waste related to the waste management system (100), weight data, identification codes (e.g., QR codes, etc.), and other related information. For example, the database (DB) may include at least one of an outflow information DB, a transport information DB, a processing information DB, a QR code DB, a waste outflow DB, a waste transport DB, and a waste processing DB, and this may be included as one of the components of the storage unit (140). The database may be designed to record and track data related to the waste management system (100) (waste origin, movement path, final processing site, etc.) in real time.

[0066] Meanwhile, the control unit (150) can perform the role of controlling the overall operation of the waste management system (100) related to the present invention. The control unit (150) can process signals, data, information, etc. that are input or output through the components described above, or perform a series of data processing to provide or process appropriate information and functions to the user.

[0067] The control unit (150) can receive basic information and information regarding at least one waste to be processed in the waste management system (100) from the outgoing company (10), the transport company (20), and the processing company (30). In this specification, a specific description of the process of inputting information is omitted, and the description is made on the premise that information is received (or input) through various methods.

[0068] In this regard, when information regarding the waste to be processed is input from the outgoing company (10), the control unit (150) can input information regarding the transporter (20) and information regarding the processing company (30) and store them in the storage unit (140), and such information can be matched to identify the transporter (20) and the processing company (30).

[0069] These information may be stored in a storage unit (140) of a waste management system (100). For example, as illustrated in FIG. 2, the storage unit (140) may contain basic information registered from an outsourcing company (10), a transporter (20), and a processing company (30). For example, the basic information may include at least one of the following: outsourcing company name (311a), outsourcing person (311b), transporter company name (312a), transporter person (312b), vehicle number (312c), processing company name (313a), processing person (313b), person contact information (314), and person verification (315).

[0070] The name of the outgoing company (311a) may be included to clearly identify the identity of the outgoing company in the waste management system (100) and to distinguish the responsible party at each processing stage. The outgoing person (311b) may be included to identify the specific person who actually takes responsibility and performs the work during the outgoing process. The name of the transporter (312a) may be included to identify the company responsible for transport in the waste management process and to clarify the person responsible for each transport operation. The transport person (312b) may be included to indicate the specific person who takes responsibility for and performs the actual transport process. The vehicle number (312c) may be included to identify the specific vehicle used in the waste transport process. The name of the processing company (313a) may be included to clearly identify the company responsible for the final disposal of the waste. The processing person (313b) may be included to indicate the specific person who takes responsibility for and performs the final disposal process of the waste. The contact information (314) may be included to provide for quick contact with the person in charge at each stage of the waste management process. Person in charge verification (315) may be included to be uploaded along with the person in charge's photo for reliable identity verification when registering basic information.

[0071] Furthermore, various information regarding waste to be processed by the exporting company (10), the transporting company (20), and the processing company (30) may be stored in the storage unit (140). For example, the first component of the storage unit (140) may consist of an export information DB, a transporting information DB, a processing information DB, a QR code DB, a waste export DB, a waste transporting DB, and a waste processing DB.

[0072] For example, the outflow information DB may store the name of the outflow company (311a), the name of the person in charge of outflow (311b), and the contact information (314) of the person in charge, etc., received from the outflow company. The transport information DB may store the name of the transport company (312a), the name of the person in charge of transport (312b), the contact information (314), and the transport vehicle number (312c), etc., received from the transport company. The processing information DB may store the name of the processing company (313a), the name of the person in charge of processing (313b), and the contact information (314) of the person in charge, etc., received from the processing company. The QR code DB stores the generated QR code, the information contained therein, and the creation date, and the QR code can be distinguished through a unique serial number. In addition, the waste outflow DB may store the outflow location and outflow date and time received from the outflow company, and the waste transport DB may store the weight, transport start date and time, origin, and destination received through the waste weight measurement system. Finally, the waste processing DB may store the inflow location and inflow date and time received from the processing company.

[0073] Waste can be identified using QR code serial numbers, and the current location of the vehicle carrying the waste can be displayed by linking with the waste location tracking system included in the waste management system. Additionally, the type and weight of the waste are linked to the QR code database, the origin (starting area) is linked to the waste export database, and the destination (arrival area) can be linked to the waste treatment database.

[0074] For example, data stored in the Waste Removal DB, Waste Transport DB, and Waste Treatment DB can be displayed in 'Before Removal', 'In Transit', and 'Transit Completed' statuses, respectively. The 'Before Removal' status indicates a case where the [Waste Removal], [Waste Transport], and [Waste Treatment] processes have not all been completed; the 'In Transit' status indicates a case where [Waste Treatment] has not been completed; and the 'Transit Completed' status indicates a case where all processes have been completed.

[0075] The control unit (150) can monitor the transportation and processing status of waste using stored data. Monitoring of the transportation status is initiated based on the occurrence of a QR code recognition event (scan) provided to the outsourcing company, and can track real-time weight data changes and the current location of the waste based on data stored in the QR code DB and the transportation information DB. Through this, if the waste deviates from the designated route or the weight exceeds a preset error rate (e.g., ±5%), it can be recorded as illegal overloading or illegal dumping. Changes in weight data can be determined into three states: "no change," "increased," or "decreased," based on the preset error rate (e.g., ±5%).

[0076] In the case of monitoring the processing status, it is initiated based on the occurrence of a QR code recognition event provided to the transporter, and by referring to data in the processing information DB, it is possible to check whether the waste has arrived at the final treatment facility or whether waste treatment has been completed.

[0077] Meanwhile, in the present invention, a process may be carried out to receive outflow information regarding waste to be processed from an outflow company through a service page linked to a waste management system (S310, see FIG. 3).

[0078] Here, the waste subject to treatment (or removal) may be “construction waste.” Construction waste includes various types of waste generated during construction work and generally occurs during demolition, new construction, or renovation work. For example, construction waste may include at least one of waste concrete, waste soil, waste wood, waste synthetic resin, waste steel and metals, waste asphalt, and stone.

[0079] At this time, the waste removed from the removal company is not necessarily limited to this. For example, the waste may further include various types of waste, such as household waste, industrial waste, medical waste, electronic waste, agricultural and livestock waste, and hazardous waste. However, for the sake of convenience of explanation, this specification will be described on the premise that the waste to be treated is construction waste.

[0080] As illustrated in FIG. 4, the control unit (150) can provide (or output) a service page (1000) linked to the waste management system (100) to the exporter terminal (10) in order to receive export information regarding waste to be processed from the exporter.

[0081] The control unit (150) can receive a request to register export information for at least one waste from an exporter terminal (10) through a service page (1000). In this case, the request to register export information for waste can also be understood as a request to generate a QR code for (or corresponding to) a specific waste.

[0082] For example, the control unit (150) may include (or provide, display, output, etc.) a graphic object (or icon, 400a) linked (or connected, linked, etc.) to an export information registration page (or QR code generation page) in one area of ​​the service page (1000). The control unit (150) may provide a QR code generation page (400) to the export company terminal (10) based on the selection of the graphic object (ex: “ex: “QR code generation”, 400a) from the export company terminal (10).

[0083] The QR code generation page (400) may be configured to receive various information related to the waste to be processed. For example, the QR code generation page (400) may be configured to receive information related to at least one of waste information (or waste removal information, 411), removal company information (or removaler information, 412), transport company information (or transporter information, 413), and processing company information (or processing information, 414). In this case, the QR code generation page (400) may also be understood to include an input (or selection) area for receiving (or selecting) information (411, 412, 413, 414) required for QR code generation.

[0084] First, the control unit (150) can receive outgoing information (411) for waste to be processed from the outgoing company terminal (10) via a QR code generation page (400). The outgoing information (411) may include at least one of the type of waste (411a) and the weight of the waste (or weight, 411b). For example, the outgoing company can input the type of specific waste to be processed (e.g., “waste concrete”, 411a) and the planned weight of the specific waste (e.g., “10t”, 411b) via the QR code generation page (400). In this case, the type of specific waste (411a) can be input directly from the outgoing company terminal (10) or selected (or input) via a select menu and / or a drop-down menu.

[0085] And, the control unit (150) can receive exporter information (412), transporter information (413), and processing company information (414) from the exporter terminal (10) through the QR code generation page (400).

[0086] The exporter information (412) may include at least one of the name (or name, 412a) of the exporter and the person in charge (412b) of the exporter. For example, the exporter may directly input the name of a specific exporter (e.g., “A Company”, 412a) and a specific person in charge (412b) through the QR code generation page (400), or select the information (or elements, items, details, etc., 412a, 412b) included in the exporter information (412) using a select menu and / or a dropdown menu.

[0087] The carrier information (413) may include at least one of the carrier name (413a), the carrier person in charge (413b), the carrier driver (413c), and the number of the carrier vehicle (10) (413d). For example, the exporter may directly input the name of a specific carrier (e.g., “Company B”, 413a), the carrier person in charge (413b), the carrier driver (413c), and the number of a specific carrier vehicle (10) (e.g., “No. 12 3456”, 413d) through the QR code generation page (400), or select the information (413a, 413b, 413c, 413d) included in the carrier information (413) using a select menu and / or a dropdown menu.

[0088] The processing company information (414) may include at least one of the processing company name (414a) and the processing company person in charge (412b). For example, the exporting company may directly input the name of a specific processing company (e.g., “Company C”, 414a) and a specific person in charge (414b) through the QR code generation page (400), or select the information (414a, 414b) included in the processing company information (414) using a select menu and / or a dropdown menu.

[0089] In this case, the exporter information (412), transporter information (413), and processing company information (414) that are input or selected from the exporter terminal (10) may be information (or data) stored in a storage unit (140, or DB) linked to a waste management system.

[0090] Furthermore, the control unit (150) can receive information necessary for generating a QR code input from the exporter terminal (10) (e.g., export information (411), exporter information (412), transporter information (413) and processing company information (414)).

[0091] For example, one area of ​​the QR code generation page (400) may include a graphic object (e.g., “Confirm”, 415) associated with a QR code generation request reception function. The control unit (150) may receive a QR code generation request related to a specific waste based on the selection of the graphic object (415) from the exporter terminal (10).

[0092] Furthermore, the control unit (150) can identify a carrier that transports waste to a treatment facility and a treatment company that processes the waste at the treatment facility based on information received (or input) from the exporting company terminal (10). For example, the control unit (150) can identify a specific carrier that transports waste exported from the exporting company as “Company B” and identify a specific treatment company that processes waste exported from the exporting company as “Company C” based on carrier information (e.g., “Company B”, 413) and treatment company information (e.g., “Company C”, 414) input from the exporting company terminal (10).

[0093] Meanwhile, in the present invention, a process may be carried out to generate a QR code containing outbound information (S320), and to provide the generated QR code to an outbound company, a transport company that transports waste to a treatment facility, and a treatment company that processes the waste at the treatment facility, respectively (S330, see FIG. 3).

[0094] As illustrated in FIG. 5, the control unit (150) can generate a QR code (500) containing information input from the exporter terminal (10) (e.g., export information, carrier information, processing company information, etc.) based on a QR code generation request received from the exporter terminal (10).

[0095] Additionally, the control unit (150) can store the generated QR code (500) in the storage unit (140, or QR code DB). The control unit (150) can store information received from the exporter terminal (10) and metadata (e.g., creation date) for the QR code (500) in the storage unit (140) by matching (or linking) them together. In this case, it can also be understood that the QR code (500) is stored in the storage unit (140) in conjunction with the exporter account, the specific carrier account, and the processing company account, respectively.

[0096] In this regard, the control unit (150) can provide various functions to the user by using information stored in the storage unit (140). In one embodiment, as shown in FIGS. 4 and 5, the control unit (150) can provide a QR code list page (510) to the user terminal (10, 20, 30) based on the selection of a graphic object (400b) associated with a QR code list page included in the service page (1000) from the user terminal (10, 20, 30). The QR code list page (510) may include (or provide, display, etc.) a specific QR code (500) stored in the storage unit (140), a serial number of the specific QR code (500), and information related to (or associated with) the specific QR code (500) (e.g., export information, export company information, transport company information, processing company information, etc.).

[0097] Furthermore, the control unit (150) can provide (or transmit) the QR code (500) to the outgoing company, the transporter transporting the waste to the treatment facility, and the treatment company processing the waste at the treatment facility, respectively, based on the information (or specific information) stored in the storage unit (140). For example, as shown in FIG. 5, the control unit (150) can transmit the QR code (500) to the outgoing company terminal (10), the specific transporter terminal (20), and the specific treatment company terminal (30), respectively.

[0098] Meanwhile, in the present invention, a QR code recognition event provided to the outgoing company is generated from the transporter (S340), and based on the generation of the QR code recognition event provided to the outgoing company, a process of monitoring the transportation status of waste can be carried out (S350, see FIG. 3).

[0099] First, in order to remove waste to be processed, a QR code (500) recognition event provided to the transporter terminal (20) may occur from the removal company terminal (10). For example, as shown in FIG. 6, the control unit (150) may receive information on the occurrence of a QR code (500) recognition event (or QR code recognition event information) from the removal company terminal (10) based on the occurrence of a QR code (500) recognition event corresponding to (or corresponding to, matched, etc.) a specific serial number (e.g., “1”, 500a) at the removal company terminal (10).

[0100] In the present invention, a QR code recognition event generated from an exporter terminal (10) may also be referred to as a “first recognition event for a QR code,” and information received upon the occurrence of the first recognition event may also be referred to as “first recognition event occurrence information.”

[0101] As illustrated in FIG. 7, the control unit (150) may provide a service page (or waste removal page (or screen), 700) to the removal company terminal (10) based on information regarding the occurrence of a QR code (500) recognition event (first recognition event information) received from the removal company terminal (10). For example, the service page (700) may be a page configured (or made) to receive information related to the removal of waste to be processed. Information related to the removal of waste may include at least one of the waste removal location (701) and the removal time (702). Additionally, the service page (700) may provide (or display) the type of waste (e.g., “waste concrete”) and weight information (e.g., “1.25 ton”, or planned weight information) corresponding to the QR code (500).

[0102] Furthermore, the control unit (150) may receive information related to the removal of waste from the removal company terminal (10) through a service page (700). For example, the service page (700) may include a graphic object (e.g., “Confirmed”, 700a) associated with a function to receive information related to the removal of specific waste. Based on the selection of the graphic object (700a) from the removal company terminal (10), the control unit (150) may receive at least one of the removal location (e.g., “Daegu Dong-gu XX”, 701) and the removal time (e.g., “XX Month YY Day ZZ Hour AA Minute”, 702) input from the removal company terminal (10) through the service page (700), and may store the received information in a storage unit (140, or waste removal DB). In this case, the export location (701) can be entered by selecting a graphic object (e.g., “find location”, 701a) associated with a map from the export company terminal (10) and selecting the export location from the map output through this.

[0103] Here, receiving information (701, 702) related to the removal of waste from the removal company terminal (10) can be understood as the removal of waste to be processed by the removal company being completed.

[0104] Meanwhile, in order to transport waste to be processed, a QR code (500) recognition event provided to the outgoing company terminal (10) may occur from the transporter terminal (20). For example, as shown in FIG. 8, the control unit (150) may receive information on the occurrence of a QR code (500) recognition event from the transporter terminal (20) based on the occurrence of a QR code (500) recognition event corresponding to a specific serial number (e.g., “1”, 500a) at the transporter terminal (20).

[0105] In the present invention, the QR code recognition event generated from the carrier terminal (20) may also be referred to as a “second recognition event for the QR code,” and the information received upon the occurrence of the second recognition event may also be referred to as “second recognition event occurrence information.”

[0106] It can be understood that a QR code (500) recognition event (second recognition event) occurs at the transporter terminal (20) when the input of the waste removal time (701) and removal location (702) is completed at the removal company terminal (10).

[0107] As illustrated in FIG. 9, the control unit (150) may provide a service page (or waste transport page (or screen), 900) to the carrier terminal (10) based on information regarding the occurrence of a QR code (500) recognition event (second recognition event information) received from the carrier terminal (20). For example, the service page (900) may be a page configured to receive information related to the transport of waste to be processed. Information related to the transport of waste may include at least one of the waste transport start location (901), location information of the waste treatment facility (or transport destination, 902), and the transport start time (903). Additionally, the service page (900) may provide information on the type of waste (e.g., “waste concrete”) and weight (e.g., “1.25 ton”) corresponding to the QR code (500).

[0108] The control unit (150) can receive information related to the transportation of waste from the carrier terminal (20) through a service page (900). For example, the service page (900) may include a graphic object (e.g., “Confirmed”, 900a) associated with a function to receive information related to the transportation of specific waste. Based on the selection of the graphic object (900a) from the carrier terminal (20), the control unit (150) can receive at least one of the waste transportation start location (e.g., “Daegu Dong-gu XX”, 901), the location information of the treatment facility (e.g., “Daegu Dalseo-gu XX”, 902), and the transportation start time (e.g., “XX Month YY Day ZZ Hour AA Minute”, 903) input from the carrier terminal (20) through the service page (900), and store the received information in a storage unit (140, or waste transportation DB). In this case, the location information (902) of the transport starting point (901) and the processing facility can be entered by selecting a graphic object (e.g., “find location”, 901a, 902a) linked to a map on the transporter terminal (20) and selecting the location information of the transport starting point and the processing facility from the map output through this.

[0109] Here, receiving information related to the transportation of waste from the carrier terminal (20) can be understood as the transportation of waste being started by the carrier (e.g., a carrier driver).

[0110] Furthermore, the control unit (150) can monitor the transportation status of waste based on information related to the transportation of waste that has been entered. The control unit (150) can provide a user environment that allows real-time monitoring of the transportation status of waste at the outgoing company terminal (10). For example, as illustrated in FIG. 10, the control unit (150) can provide a monitoring screen (or waste tracking management screen, 950) to the outgoing company terminal (10) so that the transportation status of waste can be monitored in real-time at the outgoing company terminal (10).

[0111] The monitoring screen (950) may be provided with the real-time (or current) location of the transport vehicle carrying the waste (e.g., “Dong-gu, Daegu Metropolitan City, South Korea”) linked thereto. Additionally, the type and weight information of the waste (e.g., “Serial No. 4”, “Waste Concrete”, “1.25 ton”) may be linked to the information matched to the QR code (500). Furthermore, the outgoing location (e.g., “XXX, Dong-gu, Daegu Metropolitan City”) and the incoming location (e.g., “XXX, Dalseo-gu, Daegu Metropolitan City”) may be linked to the storage unit (140, or the waste outgoing DB and waste treatment DB).

[0112] In the process of monitoring the transport situation, the weight of the waste and the real-time location information of the transporter can be monitored through the monitoring screen (950). In this case, the control unit (150) and the exporter terminal (10) can monitor whether the weight of the waste loaded on the transporter's transport vehicle corresponds to (or matches) the weight information of a specific waste included in the export information. For example, let's assume that the weight of a specific waste entered into the export information from the exporter terminal (10) is “1.25 tons.” The control unit (150) and the exporter terminal (10) can monitor in real time through the monitoring screen (950) whether the weight of the specific waste corresponds to the weight exported from the exporter (e.g., “1.25 tons”) during the transporter's waste transport process.

[0113] In this way, the present invention allows for the immediate identification of variables that may occur during the transportation process by monitoring the weight of the waste being transported and the weight of the waste being transported in real time. That is, since the present invention allows for the immediate determination of whether a change in weight has occurred through monitoring, illegal acts such as illegal dumping, overloading, or omission of waste can be prevented in advance.

[0114] Meanwhile, in the present invention, a QR code recognition event provided to a transporter is generated from a processing company (S360), and based on the generation of the QR code recognition event provided to the transporter, a process of monitoring the waste treatment status can be carried out (S370, see FIG. 3).

[0115] First, in order to process waste to be processed, a QR code (500) recognition event provided to the transporter terminal (20) may occur from the processing company terminal (30). For example, as shown in FIG. 11, the control unit (150) may receive information on the occurrence of a QR code (500) recognition event from the processing company terminal (30) based on the occurrence of a QR code (500) recognition event corresponding to a specific serial number (e.g., “1”, 500a) at the processing company terminal (30).

[0116] In the present invention, the QR code recognition event generated from the processing company terminal (30) may also be referred to as a “third recognition event for the QR code,” and the information received upon the occurrence of the third recognition event may also be referred to as “third recognition event occurrence information.”

[0117] The occurrence of a QR code (500) recognition event (third recognition event) at the processing company terminal (30) can be understood as occurring when the waste being transported by the transporter is completed at the processing company. For example, it can also be understood as occurring when the transport vehicle of the transporter carrying the waste arrives at the processing facility.

[0118] As illustrated in FIG. 12, the control unit (150) may provide a service page (or waste treatment page (or screen), 1200) to the treatment company terminal (30) based on information regarding the occurrence of a QR code (500) recognition event (third recognition event information) received from the treatment company terminal (30). For example, the service page (1200) may be a page configured to receive information related to the treatment of waste to be treated. Information related to the treatment of waste may include at least one of the waste entry location (1201) and the entry time (1202). Additionally, the service page (1200) may provide information on the type of waste (e.g., “waste concrete”) and weight (e.g., “1.25 ton”) corresponding to the QR code (500).

[0119] The control unit (150) can receive information related to waste treatment from the treatment company terminal (30) through a service page (1200). For example, the service page (1200) may include a graphic object (e.g., “Confirmed”, 1200a) associated with a function to receive information related to the treatment of specific waste. Based on the selection of the graphic object (1200a) from the treatment company terminal (30), the control unit (150) can receive at least one of the waste entry location (e.g., “Daegu Dalseo-gu XX”, 1201) and entry time (e.g., “XX Month YY Day ZZ Hour AA Minute”, 1202) entered from the treatment company terminal (30) through the service page (1200), and can store the received information in a storage unit (140, or waste treatment DB). In this case, the waste entry location (1201) can be entered by selecting a graphic object linked to a map (e.g., “find location”, 1201a) from the processing company terminal (30) and selecting the entry location from the map output through this.

[0120] Here, receiving information related to the transportation of waste from the processing company terminal (30) can be understood as the processing company having completed the entry of waste to be processed.

[0121] Meanwhile, the control unit (150) can monitor the waste treatment status. More specifically, the control unit (150) can provide a user environment that allows real-time monitoring of the waste treatment status at the outgoing company terminal (10). For example, as shown in FIG. 10, the control unit (150) can provide the outgoing company terminal (10) with a monitoring screen (or waste status list screen, 1300) configured to allow real-time monitoring of the waste transport status at the outgoing company terminal (10).

[0122] Information (or data) received during the waste removal, transportation, and processing processes described above may be provided on the monitoring screen (1300). The control unit (150) may display information stored in the storage unit (140, or waste removal DB, waste transportation DB, waste treatment DB, etc.) on the monitoring screen (950). For example, at least one of the following may be provided on the monitoring screen (1300) provided to the removal company terminal (10): the current processing status (or condition, 1301) of the waste to be processed, the type of waste (1302), the planned weight of the waste (1303), the actual weight of the waste (1304), the current location of the waste being transported (1305), removal information (1306), transportation (or movement) information (1307), and processing information (1308).

[0123] In this case, the current treatment status of the waste to be treated may be indicated by multiple different states. The first state (e.g., “Before Dispatch”) refers to the state before the waste is dispatched, the second state (e.g., “In Transit”) refers to the state where the waste has been dispatched and is being transported, and the third state (e.g., “Transit Completed”) may refer to the state where the treatment of the waste is completed.

[0124] In the process of monitoring the processing status, the processing status of waste can be monitored in real time through a monitoring screen (1300). In this case, the control unit (150) and the outgoing company terminal (10) can monitor whether the weight of waste processed (or brought in) by the outgoing company corresponds to (or matches) the weight information of a specific waste included in the outgoing information. For example, let's assume that the weight of a specific waste entered into the outgoing information from the outgoing company terminal (10) is “1.25 tons.” The control unit (150) and the outgoing company terminal (10) can monitor in real time through the monitoring screen (950) whether the weight of the specific waste corresponds to the weight (e.g., “1.25 tons”) exported from the outgoing company during the waste transport process by the transporter.

[0125] As such, the present invention monitors the treatment status of waste step by step, allowing the location and status of each treatment step to be verified in real time. Furthermore, by monitoring in real time whether the weight of the discharged waste matches the weight during the treatment process, the present invention minimizes risks such as the illegal addition or omission of waste, thereby enhancing reliability in the treatment process and ensuring transparency in waste management. This can contribute to preventing environmental pollution caused by waste.

[0126] As described above, the waste management system and control method according to the present invention can provide an environment to the outsourcing company, the transporter, and the processing company that enables integrated management of the waste treatment process, including outsourcing, transportation, and processing. Through this, complex procedures that may occur during the waste treatment process can be simplified, and efficiency can be significantly improved by operating the waste treatment process more systematically and rapidly.

[0127] Furthermore, according to the waste management system and control method of the present invention, a system capable of monitoring the waste treatment process and weight in real time through QR code tracking can be provided, thereby enabling the prevention of illegal disposal. Through this, environmental pollution caused by the intervention of unqualified treatment companies, illegal burial, and abandonment can be prevented, and social costs resulting from illegal waste disposal (e.g., environmental cleanup, disputes between involved companies and residents, etc.) can be reduced.

[0128] Furthermore, according to the waste management system and control method of the present invention, the type, volume, information on the waste generator, and the timing of entry and exit can be digitized based on QR code recognition technology and automatically processed (e.g., collection, aggregation, distribution, etc.). Through this, waste treatment and management tasks can be performed more efficiently.

[0129] In other words, the present invention provides a waste management system utilizing QR code recognition, location tracking technology, and real-time weight measurement, as well as a method for controlling the same. Through this, the location of a vehicle transporting waste can be checked in real time, and the locations of waste export and import, as well as the movement routes, can be verified. Furthermore, by measuring the weight of the waste in real time during this process, illegal waste disposal can be prevented and processing efficiency can be significantly improved.

[0130] Meanwhile, the present invention described above can be implemented as a program that is executed by one or more processes on a computer and can be stored on a computer-readable medium (or recording medium).

[0131] Furthermore, the present invention described above can be implemented as computer-readable code or instructions on a medium on which a program is recorded. That is, the present invention can be provided in the form of a program.

[0132] Meanwhile, computer-readable media include all types of recording devices in which data that can be read by a computer system is stored. Examples of computer-readable media include HDD (Hard Disk Drive), SSD (Solid State Disk), SSD (Silicon Disk Drive), ROM, RAM, CD-ROM, magnetic tape, floppy disk, optical data storage device, etc.

[0133] Furthermore, the computer-readable medium may be a server or cloud storage that includes a storage and is accessible via communication. In this case, the computer may download the program according to the present invention from the server or cloud storage via wired or wireless communication.

[0134] Furthermore, in the present invention, the computer described above is an electronic device equipped with a processor, namely a CPU (Central Processing Unit), and no special limitations are placed on its type.

[0135] Meanwhile, the above detailed description should not be interpreted restrictively in all respects but should be considered exemplary. The scope of the invention shall be determined by a reasonable interpretation of the appended claims, and all modifications within the equivalent scope of the invention are included within the scope of the invention.

Claims

Claim 1 A method for controlling a waste management system comprises: receiving, from an exporting company, export information regarding waste to be processed; generating a QR code containing the export information; providing the generated QR code to the exporting company, a transporter transporting the waste to a processing facility, and a processing company processing the waste at the processing facility, respectively; generating a QR code recognition event provided to the exporting company from the transporter; monitoring the transportation status of the waste based on the generation of the QR code recognition event provided to the exporting company; generating a QR code recognition event provided to the transporter from the processing company. A method for controlling a waste management system, characterized by comprising: a step of monitoring the processing status of the waste based on the occurrence of a QR code recognition event provided to the carrier; a step of providing a service page to the outgoing company based on the occurrence of a QR code recognition event from the outgoing company, and receiving at least one of the outgoing time and location of the waste through the service page provided to the outgoing company; a step of providing a service page to the carrier based on the occurrence of a QR code recognition event from the carrier, and receiving at least one of the waste transport start point, transport start time and location, and location information of the treatment facility through the service page provided to the carrier; and a step of providing a service page to the treatment company based on the occurrence of a QR code recognition event from the treatment company, and receiving at least one of the waste incoming location and incoming time and location through the service page provided to the treatment company. Claim 2 A method for controlling a waste management system according to claim 1, wherein the step of receiving the outflow information further includes the step of receiving the transporter information and the processing company information from the outflow company, and wherein the outflow information includes at least one of the type of waste and the weight of the waste. Claim 3 A method for controlling a waste management system according to paragraph 2, further comprising a step of specifying the carrier and the processing company, wherein in the specifying step, the carrier and the processing company are specified based on the carrier information and the processing company information input from the exporting company. Claim 4 delete Claim 5 A method for controlling a waste management system comprises: receiving, from an exporting company, export information regarding waste to be processed; generating a QR code containing the export information; providing the generated QR code to the exporting company, a transporter transporting the waste to a processing facility, and a processing company processing the waste at the processing facility, respectively; generating a QR code recognition event provided to the exporting company from the transporter; monitoring the transportation status of the waste based on the generation of the QR code recognition event provided to the exporting company; generating a QR code recognition event provided to the transporter from the processing company. A method for controlling a waste management system, characterized by including a step of monitoring the processing status of the waste based on the occurrence of a QR code recognition event provided to the carrier, wherein in the step where the QR code recognition event provided to the exporter occurs, if the export date and location of the waste are entered, the QR code recognition event occurs from the carrier, and in the step of monitoring the transportation status, the step of providing a service page to the carrier based on the occurrence of the QR code recognition event from the carrier; the step of receiving information related to the transportation of the waste through the service page from the carrier; and the step of monitoring the transportation status of the waste based on the input of information related to the transportation. Claim 6 A method for controlling a waste management system according to claim 5, wherein the information related to the transportation of the waste includes at least one of the starting point of the transportation of the waste, the time and date of the transportation start, and the location information of the treatment facility, and wherein, in the step of monitoring the transportation situation, the weight of the waste and the location information of the carrier are monitored. Claim 7 A method for controlling a waste management system comprises: receiving, from an exporting company, export information regarding waste to be processed; generating a QR code containing the export information; providing the generated QR code to the exporting company, a transporter transporting the waste to a processing facility, and a processing company processing the waste at the processing facility, respectively; generating a QR code recognition event provided to the exporting company from the transporter; monitoring the transportation status of the waste based on the generation of the QR code recognition event provided to the exporting company; generating a QR code recognition event provided to the transporter from the processing company; and monitoring the processing status of the waste based on the generation of the QR code recognition event provided to the transporter, wherein the step of monitoring the processing status includes: providing a service page to the processing company based on the generation of the QR code recognition event provided to the processing company; and receiving information related to the processing of the waste from the processing company through the service page. A method for controlling a waste management system characterized by including a step of monitoring the waste treatment status based on input information related to the treatment of the waste. Claim 8 A method for controlling a waste management system according to claim 7, wherein the information related to the treatment of the waste includes at least one of the waste entry location and the entry time and date, and in the step of monitoring the treatment status, the waste treatment status is monitored based on the waste entry location and the entry time and date input from the treatment company. Claim 9 In a waste management system, the system receives outflow information regarding waste to be processed from an outflow company, generates a QR code containing said outflow information, provides said generated QR code to said outflow company, a transporter transporting said waste to a processing facility, and a processing company processing said waste at said processing facility, respectively; monitors the transportation status of said waste based on the occurrence of a QR code recognition event provided to said outflow company from said transporter, monitors the processing status of said waste based on the occurrence of a QR code recognition event provided to said transporter from said processing company, provides a service page to said outflow company based on the occurrence of a QR code recognition event provided to said outflow company, and receives input of at least one of said outflow date and time and said outflow location of said waste through the service page provided to said outflow company, and receives input of at least one of said waste transport start point, said transport start date and time and said waste, and said processing facility location information from said processing company the QR code A waste management system characterized by providing a service page to the processing company based on the occurrence of a recognition event, and receiving at least one of the waste entry location and entry time through the service page provided to the processing company. Claim 10 A program that is executed by one or more processes on an electronic device and stored on a computer-readable recording medium, wherein the program comprises: a step of receiving, from an exporting company, export information regarding waste to be processed; a step of generating a QR code including said export information; a step of providing said generated QR code to said exporting company, a transporter transporting said waste to a processing facility, and a processing company processing said waste at said processing facility, respectively; a step of generating a QR code recognition event provided to said exporting company from said transporter; a step of monitoring the transportation status of said waste based on said QR code recognition event provided to said exporting company; a step of generating a QR code recognition event provided to said transporter from said processing company; a step of monitoring the processing status of said waste based on said QR code recognition event provided to said transporter; a step of providing a service page to said exporting company based on said QR code recognition event provided to said exporting company and receiving at least one of said export date and time and said export location of said waste through the service page provided to said exporting company; and a step of receiving said QR code from said transporter A program stored on a computer-readable recording medium, characterized by including instructions for performing the steps of: providing a service page to the carrier based on the occurrence of a recognition event, and receiving at least one of the waste transport start location, transport start time and date, and location information of the treatment facility through the service page provided to the carrier; and providing a service page to the treatment company based on the occurrence of a QR code recognition event from the treatment company, and receiving at least one of the waste import location and import time and date through the service page provided to the treatment company.

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