A multi-source monitoring information integration system based on a waste-free city
By designing a diversified monitoring information integration system, the problem of imperfect informationization and low business processing capabilities of waste-free city supervision systems has been solved, and waste transaction optimization and macro-control of waste-free cities has been achieved.
Patent Information
- Application Number
- CN202310854939.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-12
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2043-07-12
AI Technical Summary
The informatization degree of waste-free urban supervision system is imperfect and the business processing capacity is low, resulting in inaccurate and untimely data.
Design a diversified monitoring information integration system based on waste-free cities, including system input module, business center, waste-free service desk and waste-free workbench. By conducting preliminary classification and full-process supervision of waste materials, establish waste supply and demand relationships, conduct transaction scores and trend estimates, and adjust the regulation ratio to achieve optimization of waste transactions and macro-control of urban waste consumption.
By establishing waste supply and demand relationships, optimizing waste transactions, reducing waste quantity, improving the accuracy of the system and timeliness of information, it is convenient to conduct macro-control of waste-free cities and promote the establishment of waste-free cities.
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Figure CN117332998B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of waste treatment, and particularly to a multi - monitoring information integration system based on a zero - waste city. Background Art
[0002] In the process of operation and management of the zero - waste city project, the operation and management department of the zero - waste city faces a huge workload. In the past, the management of the zero - waste city relied too much on manpower, which would lead to inaccurate and untimely data.
[0003] Chinese Patent Publication No.: CN114255149A. It discloses a management system for a single network of solid and hazardous wastes and a garbage supervision system based on a zero - waste city. The garbage supervision system includes a client and a cloud database. The client is wirelessly communicatively connected to the cloud database. The cloud database includes relevant data information on the sources, transportation and transfer, and terminal disposal of various types of garbage. The client is used for users to formulate, view, and manage various information ledgers and data reports according to their own needs in combination with the cloud database, so as to achieve remote management and data inspection. It can be seen that the "zero - waste city" supervision system has problems of imperfect informatization level and low business processing ability. Summary of the Invention
[0004] Therefore, the present invention provides a multi - monitoring information integration system based on a zero - waste city to overcome the problems of imperfect informatization level and low business processing ability existing in the "zero - waste city" supervision system in the prior art.
[0005] To achieve the above object, the present invention provides a multi - monitoring information integration system based on a zero - waste city, including:
[0006] A system input module for initially editing information for the zero - waste collaboration platform, inputting waste supply - demand information, and inputting a number of waste materials;
[0007] A business center for initially classifying the input waste materials and summarizing the classified waste materials in the full - process supervision centers of the corresponding special subsystems. The full - process supervision centers of the special subsystems include the full - process supervision of general industrial solid waste, the full - process supervision of hazardous waste, the full - process supervision of domestic waste, the closed - loop supervision of construction waste business, and the full - process supervision of agricultural waste;
[0008] A zero - waste service desk that processes the information of each special subsystem respectively and stores it in the processing centers of the corresponding special subsystems, and integrates and processes the information into materials for storage and display in each module. The modules include a waste supply - demand module and a waste trading module;
[0009] A waste-free workbench that provides overall control and management services for the information of each special subsystem of the system, and collaborates, processes, and analyzes the operations of the waste-free service desk. This includes scoring the completion status of transactions for single-category waste to determine if the single-category waste transaction meets the transaction target; scoring the treatment of major categories of waste for each special subsystem to determine if the major-category waste transactions meet the treatment target; predicting indicators for each special subsystem and reminding the special subsystem to push transactions for modules that do not meet the treatment target; adjusting the trend prediction parameters of the adjustment special subsystem to determine if the control ratio set by the subsystem is appropriate; calculating and matching the supply-demand relationship parameters in the waste transaction module of the waste-free service desk, matching the cooperation choices between enterprises, and promoting information exchange between enterprises.
[0010] Furthermore, in the waste-free service desk, the waste supply-demand module stores classifications of the supply-demand behaviors of user enterprises, including waste-producing enterprises and waste-using enterprises.
[0011] Perform secondary category extraction on the input waste data. The secondary category extraction includes extracting the types and output situations of the waste produced by waste-producing enterprises and storing them in the supply database; and also extracting the waste required by waste-using enterprises and presenting it as demand options to waste-using enterprises.
[0012] Encode and mark the types and output situations of the waste produced by waste-producing enterprises.
[0013] There are several transfer units in the waste-free service desk for non-directly used waste produced within several waste-producing enterprises. These transfer units will summarize and extract the quality of the non-directly used waste produced and perform encoding and marking.
[0014] Furthermore, there are two situations for non-directly used waste. One is waste that is toxic and harmful and requires monitoring of transaction situations; the other is when the output situation of the waste produced by a waste-producing enterprise does not reach the minimum transaction value, and it is determined as non-directly used waste.
[0015] Set a minimum transaction value in the waste-free service desk. If the waste output situation input by a waste-producing enterprise is lower than the minimum transaction value, the waste data will be automatically transferred to the transfer unit.
[0016] Furthermore, in the waste-free workbench, for the waste transaction module in the waste-free service desk, for the same category of waste, conduct transaction scoring based on the completion status of each waste transaction; comprehensively calculate the transaction score through the successful transaction volume and waste utilization degree within the waste transaction module.
[0017] For the completion status of each waste transaction of the same category of waste, the waste-free workbench stores transaction indicators for transaction scoring.
[0018] If the transaction score is greater than or equal to its transaction indicator, it is determined that there is no inappropriate situation in the treatment of the waste in this waste transaction;
[0019] If the transaction score is less than its transaction indicator, it is determined that there is an inappropriate situation in the treatment of the waste in this waste transaction, and the transaction situation needs to be analyzed and processed.
[0020] Furthermore, in the waste-free service desk, the encoding and marking information of various types of waste is extracted for the same special subsystem, and summarized into the treatment score of the major waste in the special subsystem;
[0021] In the waste-free service desk, there is a treatment score indicator for the major waste of the special subsystem;
[0022] For any one special subsystem,
[0023] If the treatment score of its major waste is less than its treatment score indicator, a transaction recommendation reminder is made in the transaction module of the waste-free service desk;
[0024] If the treatment score of its major waste is greater than its treatment score indicator, the transaction recommendation is reduced in the transaction module of the waste-free service desk.
[0025] Furthermore, in the waste-free service desk, there is a waste monitoring information trend prediction model, which makes an overall prediction of the waste transaction and sets trend prediction parameters for the treatment situation of the waste;
[0026] For any one special subsystem, within the set time,
[0027] For the special subsystem that has not reached the treatment score indicator, before proceeding to the next set time, a treatment indicator warning is triggered, and at the same time, a reminder is pushed in the relevant transaction module of the waste-free service desk, and at the same time, an adjustment program for the trend prediction parameters is triggered;
[0028] For the special subsystem that has reached the treatment score indicator, before proceeding to the next set time, continue to calculate the treatment score of the major waste.
[0029] Furthermore, in the waste-free service desk, there is an adjustment program for the trend prediction parameters;
[0030] Within a period of time, for the special subsystem that has not reached the treatment score indicator, calculate the proportion of the part that has not reached the score indicator. In the adjustment program of the trend prediction parameters, in the waste-free service desk, a regulation ratio threshold is set;
[0031] If the ratio of the part that has not reached the score indicator is greater than the regulation ratio threshold, the trend prediction parameters are reduced in equal proportion;
[0032] If the partial ratio that fails to meet the scoring criteria is equal to the regulation ratio threshold, the existing trend prediction parameters will not be changed;
[0033] If the partial ratio that fails to meet the scoring criteria is less than the regulation ratio threshold, the trend prediction parameters will be increased in geometric progression.
[0034] Furthermore, in the waste trading module of the waste-free service desk, for waste of the same category, there is a program for judging the supply and demand situation of the transaction, including,
[0035] Calculate the direct matching parameter of the supply and demand requirements of the waste-producing enterprise and the waste-using enterprise to determine whether the supply and demand situation of the two meets the enterprise's demands. The system input module stores the direct matching parameters input by the waste-using enterprise;
[0036] The waste trading module in the waste-free service desk can sort the waste-producing enterprises for which the direct matching parameters have been calculated;
[0037] If the direct matching parameter of the waste-producing enterprise is greater than or equal to the direct matching parameter input by the waste-using enterprise, the waste-using enterprise will further confirm the waste-producing enterprise for cooperation according to the determined matching waste-producing enterprise information;
[0038] If the direct matching parameter of the waste-producing enterprise is less than the direct matching parameter input by the waste-using enterprise, the waste-using enterprise will trigger the transaction ratio determination program according to the determined matching waste-producing enterprise information;
[0039] According to the needs of the waste-using enterprise, the system input module stores the system-set transaction ratio value. Calculate the tradable ratio value according to the waste output of the waste-producing enterprise and the demand input by the waste-using enterprise;
[0040] If the tradable ratio value is greater than or equal to the system-set transaction ratio value, it is determined that the waste-using enterprise can further confirm several waste-producing enterprises for cooperation according to the matched several waste-producing enterprises;
[0041] If the tradable ratio value is less than the system-set transaction ratio value, it is determined that the waste-free service desk cannot provide directly matched waste-producing enterprises, and the transfer unit selection program is triggered.
[0042] Furthermore, there are two trigger values for the transfer unit selection program,
[0043] One is that the tradable ratio value is less than the system-set transaction ratio value. At this time, the system automatically triggers the transfer unit selection program;
[0044] The second is that the waste-using enterprise has waste-producing enterprises that can cooperate in the direct matching parameters, but the waste-using enterprise still selects to use waste from the transfer unit;
[0045] The transfer unit selection program displays the available supply and transfer unit for any type of waste;
[0046] Waste-using enterprises can specifically select the waste in the transfer unit according to the available supply prompt of the transfer unit to determine the waste usage amount.
[0047] Furthermore, the direct matching parameter calculates parameter compensation according to the waste category and other data information. The calculated compensation values include a waste cycle calculation compensation value related to the waste production cycle of the waste-producing enterprise, a logistics information calculation compensation value related to the logistics duration of the waste of the waste-producing enterprise, and a disposal capacity matching calculation compensation value related to the disposal capacity of the waste by the waste-using enterprise;
[0048] The waste cycle calculation compensation value is proportional to the waste production cycle of the waste-producing enterprise, the logistics information calculation compensation value is proportional to the logistics duration of the waste of the waste-producing enterprise, and the disposal capacity matching calculation compensation value is proportional to the disposal capacity related to the waste by the waste-using enterprise.
[0049] Compared with the prior art, the beneficial effect of the present invention is that by establishing a waste supply and demand relationship, the waste transaction is carried out, reducing the quantity of waste. At the same time, it is convenient to conduct macro-control over the overall "waste-free city", control the index adjustment of urban waste consumption, and has great positive significance for the establishment of the "waste-free city".
[0050] Furthermore, the present invention divides the using enterprises, extracts the waste types for the second time, extracts the waste types available for the enterprises and the waste that can be supplied, and establishes a supply and demand relationship during the reuse of waste, thereby reducing the quantity of waste.
[0051] Furthermore, the present invention marks the non-directly used waste, sets up a transfer unit for storing the waste that is not convenient for direct trading, and is convenient for more detailed supervision and control of the non-directly used waste.
[0052] Furthermore, the present invention sets a transaction score to optimize the details of the transaction situation in the waste transaction, increase the accuracy of this system, and at the same time manually adjust the information to ensure that the system calculates the relevant transaction parameters accurately enough during each transaction.
[0053] Furthermore, the present invention analyzes the details of the overall waste treatment by scoring the major waste types in any special subsystem, affects the operation of the "waste-free city", and sets up a transaction push when the index is less than the standard, increasing the information push prompt between the waste-producing and waste-using enterprises.
[0054] Furthermore, the present invention sets the processing scoring index in the processing index through a special subsystem, controls the index for the overall operation program prediction model of the "waste-free city", and lays a foundation for the overall control of the construction of the "waste-free city".
[0055] Furthermore, the present invention controls the scoring index of the special subsystem by regulating the trend prediction parameters, and conducts overall control over the construction of the "waste-free city".
[0056] Furthermore, according to the selected waste category, the present invention calculates the direct matching parameters of several waste-producing enterprises and sorts them, facilitating the waste-using enterprises to determine the cooperative waste-producing enterprises according to the company's demands, and facilitating the waste-using enterprises to control the usage cost of the waste.
[0057] Furthermore, the present invention sets a transfer unit selection program to select the transfer unit when the matching value of the waste-using enterprise is insufficient or when the waste required by the waste-using enterprise is insufficient, and statistically summarizes it according to the usage amount to the corresponding business center for summary statistics. BRIEF DESCRIPTION OF THE DRAWINGS
[0058] Figure 1 It is a schematic diagram of the software structure of the multi-source monitoring information integration system based on the waste-free city according to the embodiment of the present invention;
[0059] Figure 2 It is a schematic diagram of the classification of the transformation subsystem of the central business center of the multi-source monitoring information integration system based on the waste-free city according to the embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0060] In order to make the objectives and advantages of the present invention clearer, the present invention will be further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0061] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principle of the present invention and do not limit the protection scope of the present invention.
[0062] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "upper", "lower", "left", "right", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0063] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and defined, the terms "installation", "connection", and "linkage" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0064] Please refer to Figure 1 As shown, it is a schematic diagram of the software structure of the multi-source monitoring information integration system based on the waste-free city, including a system input module, a business center, a waste-free service desk, and a waste-free workbench. The system input module inputs the waste supply and demand information; the business center preliminarily classifies the input waste materials and summarizes the classified waste in the full-process supervision centers of the corresponding special subsystems; the waste-free service desk processes the information of each special subsystem respectively and stores them in the processing centers of the corresponding special subsystems, and then integrates and processes the information into materials and stores them in each module for display; the waste-free workbench conducts overall management and control services for the information of each special subsystem of the system, and collaborates and processes and analyzes the operations of the waste-free service desk. There are several classifications of special subsystems stored in the business center. Please refer to Figure 2 As shown, it is a schematic diagram of the classification of the transformation subsystems for the central business center of the multi-source monitoring information integration system based on the waste-free city.
[0065] The present invention provides a multi-source monitoring information integration system based on the waste-free city, including:
[0066] A system input module that performs preliminary information editing on the waste-free collaboration platform, inputs the waste supply and demand information, and inputs several waste materials;
[0067] A business center that preliminarily classifies the input waste materials and summarizes the classified waste in the full-process supervision centers of the corresponding special subsystems. The full-process supervision centers of the special subsystems include the full-process supervision of general industrial solid waste, the full-process supervision of hazardous waste, the full-process supervision of domestic waste, the business closed-loop supervision of construction waste, and the full-process supervision of agricultural waste;
[0068] A waste-free service desk that processes the information of each special subsystem respectively and stores them in the processing centers of the corresponding special subsystems, and then integrates and processes the information into materials and stores them in each module for display. The modules include a waste supply and demand module and a waste trading module;
[0069] A waste-free workbench that provides overall management and control services for the information of each special subsystem of the system, and collaborates, processes, and analyzes the operations of the waste-free service desk. This includes scoring the completion of transactions for single-category waste to determine if the single-category waste transactions meet the transaction targets; scoring the treatment of major categories of waste for each special subsystem to determine if the major-category waste transactions meet the treatment targets; predicting the targets for each special subsystem and reminding the special subsystem to push transactions for modules that do not meet the treatment targets; adjusting the trend prediction parameters of the adjustment special subsystem to determine if the control ratio set by the subsystem is appropriate; calculating and matching the supply-demand relationship parameters in the waste transaction module of the waste-free service desk, matching the cooperation choices between enterprises, and promoting information exchange between enterprises.
[0070] The present invention establishes a waste supply-demand relationship, promotes waste transactions, reduces the quantity of waste, and at the same time facilitates the macro-control of the overall "waste-free city", controls the index adjustment of urban waste consumption, and has great positive significance for the establishment of a "waste-free city".
[0071] For the convenience of description, the special subsystems in the waste-free service desk are numbered. The full-process supervision center of the special subsystems includes Special Subsystem 01, Special Subsystem 02, Special Subsystem 03, Special Subsystem 04, and Special Subsystem 05.
[0072] Special Subsystem 01 is for the full-process supervision of general industrial solid waste, Special Subsystem 02 is for the full-process supervision of general industrial solid waste, Special Subsystem 03 is for the full-process supervision of domestic waste, Special Subsystem 04 is for the closed-loop supervision of construction waste operations, and Special Subsystem 05 is for the full-process supervision of agricultural waste.
[0073] Specifically, in the waste-free service desk, the supply-demand module for waste stores the supply-demand behaviors of using enterprises, which includes waste-producing enterprises and waste-using enterprises.
[0074] The input waste data is subjected to secondary category extraction. The secondary category extraction includes extracting the types and output situations of the waste produced by waste-producing enterprises and storing them in the supply database; it also includes extracting the waste required by waste-using enterprises and presenting it as demand options to waste-using enterprises.
[0075] For the waste produced by waste-producing enterprises, the types and output situations of the waste are encoded and marked.
[0076] There are several transfer units in the waste-free service desk for the non-directly used waste produced within several waste-producing enterprises. These transfer units will summarize and extract the quality of the non-directly used waste produced and encode and mark it.
[0077] At the waste-free service desk, the waste supply and demand module stores the classification of the supply and demand behaviors of user enterprises, which includes waste-producing enterprises and waste-using enterprises.
[0078] There are several waste-producing enterprises, and several waste-using enterprises select the waste produced by the waste-producing enterprises to determine the cooperation objects. The cooperation objects include a single waste-producing enterprise, several waste-producing enterprises, a single transfer unit, a waste-producing enterprise and a transfer unit.
[0079] For a certain waste-producing enterprise, the types of waste it produces are set as several, denoted as Aj, j = 1, 2,... n, where j is the serial number of the waste type.
[0080] For a certain waste-using enterprise, the types of waste it needs are several, denoted as Bk, k = 1, 2,... m, where k is the serial number of the waste type needed.
[0081] The present invention classifies user enterprises, extracts waste types twice, extracts the types of waste available to enterprises and the waste that can be supplied, establishes a supply and demand relationship in the reuse of waste, and thus reduces the amount of waste.
[0082] Specifically, there are two situations for the non-directly used waste. One is the waste that is toxic and harmful and needs to monitor the trading situation; the other is that the output of the waste produced by the waste-producing enterprise does not reach the minimum trading value, and it is determined as non-directly used waste.
[0083] Set a minimum trading value in the waste-free service desk. If the waste output situation input by the waste-producing enterprise is lower than the minimum trading value, the waste information will be automatically transferred to the transfer unit.
[0084] If in any extraction of waste types by the waste-producing enterprise, it is determined that the waste is toxic and harmful and needs to monitor the trading situation, the waste type and output situation will be encoded and marked, and it will be transferred to the transfer unit.
[0085] Set a minimum trading value R0 in the waste-free service desk. If the output situation of the waste type Aj produced by the waste-producing enterprise is Rj.
[0086] If the output situation Rj is less than the minimum trading value R0, the waste type Aj will be determined as non-directly used waste, the waste type and output situation will be encoded and marked, and the waste information will be automatically transferred to the transfer unit.
[0087] The present invention facilitates more detailed supervision and control of non-directly used waste by setting marks for non-directly used waste and storing non-directly tradable waste in a transfer unit.
[0088] Specifically, in the waste-free workbench, for the waste trading module in the waste-free service desk, for waste of the same category, according to the situation of each waste transaction completion, a transaction score is calculated; within the waste trading module, the transaction score is comprehensively calculated through the successful transaction volume and the degree of waste utilization in the transaction.
[0089] For waste of the same category, regarding the situation of each waste transaction completion, the waste-free workbench stores transaction indicators for transaction scoring.
[0090] If the transaction score is greater than or equal to its transaction indicator, it is determined that there is no inappropriate situation in the waste treatment of this waste transaction.
[0091] If the transaction score is less than its transaction indicator, it is determined that there is an inappropriate situation in the waste treatment of this waste transaction, and the transaction situation needs to be analyzed and processed.
[0092] The present invention sets a transaction score to optimize the details of the transaction situation in waste trading, increase the accuracy of this system, and at the same time perform manual regulation on the information to ensure that the relevant transaction parameters are calculated accurately enough during each transaction of the system.
[0093] Specifically, in the waste-free service desk, the encoded marker information of various types of waste is extracted for the same special subsystem and summarized into the treatment score of the major category of waste in the special subsystem.
[0094] In the waste-free service desk, there are treatment score indicators for the major category of waste in the special subsystem.
[0095] For any one special subsystem,
[0096] If the treatment score of its major category of waste is less than its treatment score indicator, a transaction recommendation reminder is made in the transaction module of the waste-free service desk.
[0097] If the treatment score of its major category of waste is greater than its treatment score indicator, the transaction recommendation is reduced in the transaction module of the waste-free service desk.
[0098] The present invention conducts a detailed analysis of the overall waste treatment through the treatment score of the major category of waste in any special subsystem, affects the operation of the "waste-free city", sets transaction push when it is less than the indicator, and increases the information push reminder between waste-producing and waste-using enterprises.
[0099] Specifically, in the waste-free service desk, there is a trend prediction model for waste monitoring information, which conducts an overall prediction of waste transactions and sets trend prediction parameters for the waste treatment situation.
[0100] For any one special subsystem, within the set time,
[0101] For a special subsystem that fails to meet the processing score index, before proceeding to the next set time, a processing index warning is triggered. Meanwhile, a reminder is pushed to the relevant transaction module of the waste-free service desk, and a regulation program for the trend prediction parameter is triggered.
[0102] For a special subsystem that meets the processing score index, before proceeding to the next set time, the overall waste treatment score continues to be calculated.
[0103] When the set prediction time is 30 days, for the special subsystem numbered 01, the overall waste treatment score A101 within it has a processing score index B101, while in actual transactions, its processing score is C101.
[0104] In the waste-free service desk, a trend prediction parameter E for the waste treatment situation is set.
[0105] For the special subsystem 01,
[0106] If the processing score C101 fails to meet the processing score index B101, before reaching 30 days, a processing index warning is triggered. Meanwhile, a reminder is pushed to the relevant transaction module of the waste-free service desk, and a regulation program for the trend prediction parameter E is triggered.
[0107] If the processing score C101 meets the processing score index B101, before reaching the next 30 days, a regulation program for the trend prediction parameter is triggered to continue calculating the overall waste treatment score.
[0108] The present invention sets the processing score index in the processing index through the special subsystem, controls the index for the prediction model of the overall operation process of the "waste-free city", and lays a foundation for the overall control of the construction of the "waste-free city".
[0109] Specifically, in the waste-free service desk, a regulation program for the trend prediction parameter is set.
[0110] For a special subsystem that fails to meet the processing score index within a certain period, the ratio of the part that fails to meet the score index is calculated. In the regulation program of the trend prediction parameter, a regulation ratio threshold is set in the waste-free service desk.
[0111] If the ratio of the part that fails to meet the score index is greater than the regulation ratio threshold, the trend prediction parameter is decreased in equal proportion.
[0112] If the ratio of the part that fails to meet the score index is equal to the regulation ratio threshold, the existing trend prediction parameter is not changed.
[0113] If the ratio of the part that fails to meet the score index is less than the regulation ratio threshold, the trend prediction parameter is increased in equal proportion.
[0114] In the waste-free service desk, set its regulation ratio threshold to Z11, and set up a waste monitoring information trend prediction model:
[0115] P(Ei+1) = (B101, C101, E).
[0116] Among them, Ei is the trend prediction parameter calculated for the i-th time; Ei+1 is the trend prediction parameter after 30 days, and i is the calculation times of the trend prediction parameter in the previous stage; P is the function of the prediction trend model related to Ei+1; B101 is the processing score index of the special subsystem 01; C101 is the processing score of the special subsystem 01 at this time.
[0117] If there are N types of waste in the special subsystem 01 and N' types of the part that does not reach the score index, then:
[0118] The ratio of the part that does not reach the score index:
[0119]
[0120] If the ratio Z01 of the part that does not reach the score index is greater than the regulation ratio threshold Z11, the trend prediction parameter Ei is decreased in geometric ratio;
[0121] If the ratio Z01 of the part that does not reach the score index is equal to the regulation ratio threshold Z11, the existing trend prediction parameter Ei is not changed;
[0122] If the ratio Z01 of the part that does not reach the score index is less than the regulation ratio threshold Z11, the trend prediction parameter Ei is increased in geometric ratio.
[0123] The present invention controls the score index of the special subsystem by regulating the trend prediction parameter, and overall controls the construction of the "waste-free city".
[0124] Specifically, in the waste trading module of the waste-free service desk, for the same category of waste, there is a judgment program for the supply and demand situation of the trading situation, including,
[0125] Calculate the direct matching parameter of the supply and demand requirements of the waste-producing enterprise and the waste-using enterprise, and determine whether the supply and demand situation meets the enterprise's demands. The system input module stores the direct matching parameter input by the waste-using enterprise;
[0126] The waste trading module in the waste-free service desk can sort the waste-producing enterprises for which the direct matching parameters have been calculated;
[0127] If the direct matching parameter of the waste-producing enterprise is greater than or equal to the direct matching parameter input by the waste-using enterprise, the waste-using enterprise further confirms the waste-producing enterprise for cooperation according to the determined matching waste-producing enterprise information;
[0128] If the direct matching parameter of the waste-producing enterprise is less than the direct matching parameter input by the waste-using enterprise, the waste-using enterprise triggers the transaction ratio determination process according to the information of the waste-producing enterprise determined to be matched.
[0129] According to the requirements of the waste-using enterprise, the system input module stores the transaction ratio value set by the system. According to the waste output of the waste-producing enterprise and the demand input by the waste-using enterprise, the tradable ratio value is calculated.
[0130] If the tradable ratio value is greater than or equal to the transaction ratio value set by the system, it is determined that the waste-using enterprise can further confirm several waste-producing enterprises for cooperation according to several matched waste-producing enterprises.
[0131] If the tradable ratio value is less than the transaction ratio value set by the system, it is determined that the waste-free service desk cannot provide directly matched waste-producing enterprises, and the transfer unit selection process is triggered.
[0132] Set the waste categories produced by a certain waste-producing enterprise to several, denoted as Aj, j = 1, 2,... n, where j is the serial number of the waste category produced. For a single category Aj, the corresponding waste output is Gj.
[0133] For a certain waste-using enterprise, the required waste categories are several, denoted as Bk, k = 1, 2,... m, where k is the serial number of the required waste category. For the waste category Aj, the required waste category is Bk, and the required waste product quantity is Tk.
[0134] The system input module stores the direct matching parameter input by the waste-using enterprise for the waste category Bk required by the waste-using enterprise corresponding to the waste category Aj produced by each waste-producing enterprise. The direct matching parameter for the enterprise corresponding to the required Bk is Ck, and the system input module stores the direct matching parameter Dk input by the waste-using enterprise.
[0135] Specifically, the direct matching parameter calculates parameter compensation according to the waste category and other data information. The calculated compensation value includes a waste cycle calculation compensation value related to the waste production cycle of the waste-producing enterprise, a logistics information calculation compensation value related to the logistics duration of the waste of the waste-producing enterprise, and a disposal capacity matching calculation compensation value related to the disposal capacity of the waste by the waste-using enterprise.
[0136] The waste cycle calculation compensation value is proportional to the waste production cycle of the waste-producing enterprise, the logistics information calculation compensation value is proportional to the logistics duration of the waste of the waste-producing enterprise, and the disposal capacity matching calculation compensation value is proportional to the disposal capacity related to the waste by the waste-using enterprise.
[0137] For the waste of the waste-producing enterprise category Aj, calculate the direct matching parameter Ck for the waste category Bk required by the waste-using enterprise corresponding to the waste Aj.
[0138] The calculation logic for directly matching parameters of waste-producing enterprises is as follows:
[0139] Ck = Gj × tj + Gj × wj + Gj × ek.
[0140] Among them, Ck is the directly matching parameter;
[0141] Gj is the amount of waste produced;
[0142] tj is the calculation compensation value for the waste cycle. The calculation compensation value tj for the waste cycle is related to the waste production cycle Tj of the waste-producing enterprise. If the waste production cycle Tj of the waste-producing enterprise is larger, the value of the calculation compensation value tj for the waste cycle is larger;
[0143] wj is the calculation compensation value for logistics information. The calculation compensation value wj for logistics information is related to the logistics duration Wj of the waste of the waste-producing enterprise. If the logistics duration Wj of the waste of the waste-producing enterprise is longer, the value of the calculation compensation value wj for logistics information is larger;
[0144] ek is the calculation compensation value for the matching of the disposal capacity of the waste-using enterprise for waste Aj. The calculation compensation value ek for the matching of the disposal capacity of the waste-using enterprise for waste Aj is related to the disposal capacity Ek of the waste-using enterprise for waste Aj. If the disposal capacity Ek of the waste-using enterprise for waste Aj is stronger, the calculation compensation value ek for the matching of the disposal capacity of the waste-using enterprise for waste Aj is larger.
[0145] If the directly matching parameter Ck of the waste-producing enterprise is greater than or equal to the directly matching parameter Dk input by the waste-using enterprise, the waste-using enterprise further confirms the waste-producing enterprise for cooperation according to the determined and matched waste-producing enterprise information;
[0146] If the directly matching parameter Ck of the waste-producing enterprise is less than the directly matching parameter Dk input by the waste-using enterprise, the waste-using enterprise triggers the transaction ratio determination program according to the determined and matched waste-producing enterprise information;
[0147] According to the requirements of the waste-using enterprise, a system-set transaction ratio value Mk is stored in the system input module. According to the waste output of the waste-producing enterprise and the demand input by the waste-using enterprise, its tradable ratio value Mk' is calculated.
[0148] The tradable ratio value Mk':
[0149]
[0150] Among them, Mk' is the tradable ratio value; Tk is the amount of waste products required by the waste-using enterprise; Gj is the amount of waste produced by the waste-producing enterprise.
[0151] If the tradable ratio value Mk' is greater than the tradable ratio value set by the system, it is determined that the waste-using enterprise can further confirm a number of waste-producing enterprises for cooperation according to a number of matched waste-producing enterprises;
[0152] If the tradable ratio value Mk' is less than the tradable ratio value set by the system, it is determined that the waste-free service desk cannot provide directly matched waste-producing enterprises, triggering the transfer unit selection program.
[0153] The present invention calculates and sorts the direct matching parameters of a number of waste-producing enterprises according to the selected waste category, facilitating the waste-using enterprise to determine the waste-producing enterprises for cooperation according to the company's demands and facilitating the waste-using enterprise to control the usage cost of the waste.
[0154] Specifically, there are two trigger values for the transfer unit selection program.
[0155] One is that the tradable ratio value is less than the tradable ratio value set by the system. At this time, the system independently triggers the transfer unit selection program.
[0156] The other is that there are waste-producing enterprises that can cooperate among the direct matching parameters for the waste-using enterprise, but the waste-using enterprise still selects waste from the transfer unit.
[0157] The transfer unit selection program displays the available supply volume of any type of waste and the transfer unit.
[0158] The waste-using enterprise can specifically select the waste in the transfer unit according to the available supply volume prompt of the transfer unit to determine the waste usage amount.
[0159] The present invention sets up a transfer unit selection program to select when the matching value of the waste-using enterprise for the transfer unit is insufficient or when the waste required by the waste-using enterprise is insufficient, and summarizes the statistics according to the usage amount to the corresponding business center for summary statistics.
[0160] So far, the technical solution of the present invention has been described in combination with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
[0161] The above are only the preferred embodiments of the present invention and are not used to limit the present invention; for those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent substitution, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A multi - monitoring information integration system based on a zero - waste city, characterized in that, it includes: A system input module that performs preliminary information editing on the zero - waste collaboration platform, enters waste supply - demand information, and inputs several waste materials; A business center that preliminarily classifies the input waste materials and summarizes the classified waste materials in the full - process supervision centers of the corresponding special subsystems. The full - process supervision centers of the special subsystems include the full - process supervision of general industrial solid waste, the full - process supervision of hazardous waste, the full - process supervision of domestic waste, the closed - loop supervision of construction waste operations, and the full - process supervision of agricultural waste; A zero - waste service desk that processes the information of each special subsystem respectively and stores it in the processing centers of the corresponding special subsystems, and integrates and processes the information into materials for storage and display in each module. The modules include a waste supply - demand display module and a waste trading module; A zero - waste workbench that provides overall control services for the information of each special subsystem of the system, and collaborates and processes the operations of the zero - waste service desk, including scoring the completion of transactions for a single type of waste to determine whether the transaction of a single type of waste reaches the transaction target; scoring the treatment of major types of waste for each special subsystem to determine whether the transactions of major types of waste reach the treatment target; predicting the indicators for each special subsystem and reminding the special subsystem to push transactions for modules that do not reach the treatment target; adjusting the trend prediction parameters of the special subsystem to determine whether the set regulation ratio of the subsystem is appropriate; calculating and matching the supply - demand relationship parameters in the waste trading module of the zero - waste service desk to match the cooperation choices between enterprises and promote information exchange between enterprises; There are two situations for non - directly used waste. One is waste that is toxic and harmful and requires monitoring of trading situations; the other is that the output of waste produced by waste - generating enterprises does not reach the minimum trading value, and it is determined as non - directly used waste; A minimum trading value is set in the zero - waste service desk. If the waste output situation input by a waste - generating enterprise is lower than the minimum trading value, the waste materials will be automatically transferred to the transfer unit.
2. The multi - monitoring information integration system based on a zero - waste city according to claim 1, characterized in that, In the zero - waste service desk, the supply - demand module stores the classification of the supply - demand behaviors of using enterprises, including waste - generating enterprises and waste - using enterprises; Perform secondary category extraction on the input waste materials. The secondary category extraction includes extracting the types and output situations of waste produced by waste - generating enterprises and storing them in the supply database; it also includes extracting the waste required by waste - using enterprises and presenting it as a demand option to waste - using enterprises; Encode and mark the types and output situations of the waste produced by waste - generating enterprises; There are several transfer units in the zero - waste service desk for non - directly used waste produced within several waste - generating enterprises. It will summarize and extract the quality of the non - directly used waste produced and perform encoding and marking.
3. The multi - monitoring information integration system based on a zero - waste city according to claim 2, characterized in that, In the waste-free workbench, for the waste trading module in the waste-free service desk, for waste of the same category, a trading score is calculated based on the situation of each waste transaction; within the waste trading module, the trading score is comprehensively calculated through the successful trading volume and the degree of waste utilization of the transaction. For waste of the same category, regarding the situation of each waste transaction, trading indicators for trading scores are stored in the waste-free workbench. If the trading score is greater than or equal to its trading indicator, it is determined that there is no inappropriate situation in the treatment of the waste in this waste transaction. If the trading score is less than its trading indicator, it is determined that there is an inappropriate situation in the treatment of the waste in this waste transaction, and the trading situation needs to be analyzed and processed.
4. The multi-source monitoring information integration system based on a waste-free city according to claim 1, characterized in that, In the waste-free service desk, coding mark information extraction of the same special subsystem is carried out for various types of waste, and it is summarized into the treatment score of major waste in the special subsystem. In the waste-free service desk, there are treatment score indicators for major waste in the special subsystem. For any one special subsystem, if the treatment score of its major waste is less than its treatment score indicator, a trading recommendation reminder is carried out in the trading module of the waste-free service desk; if the treatment score of its major waste is greater than its treatment score indicator, the trading recommendation is reduced in the trading module of the waste-free service desk.
5. The multi-source monitoring information integration system based on a waste-free city according to claim 3, characterized in that, In the waste-free service desk, there is a trend prediction model for waste monitoring information, which makes an overall prediction of the waste transaction and sets trend prediction parameters for the treatment situation of the waste. For any one special subsystem, within a set time, for the special subsystem that has not reached the treatment score indicator, before proceeding to the next set time, a treatment indicator warning is triggered, and at the same time, a reminder is pushed in the relevant trading module of the waste-free service desk, and at the same time, an adjustment program for the trend prediction parameters is triggered; for the special subsystem that has reached the treatment score indicator, before proceeding to the next set time, the treatment score of the major waste continues to be calculated.
6. The multi-source monitoring information integration system based on a waste-free city according to claim 4, characterized in that, In the waste-free service desk, an adjustment program for the trend prediction parameters is set; Within a period of time, for the special subsystem that has not reached the treatment score indicator, calculate the proportion of the part that has not reached the score indicator, and in the adjustment program of the trend prediction parameters, in the waste-free service desk, a regulation ratio threshold is set; If the ratio of the part that has not reached the score indicator is greater than the regulation ratio threshold, the trend prediction parameters are decreased in equal proportion; If the ratio of the part that has not reached the score indicator is equal to the regulation ratio threshold, the existing trend prediction parameters are not changed; If the ratio of the part that has not reached the score indicator is less than the regulation ratio threshold, the trend prediction parameters are increased in equal proportion.
7. The multi-source monitoring information integration system based on a waste-free city according to claim 5, characterized in that, In the waste trading module of the zero-waste service desk, for waste of the same category, there is a judgment program for trading and supply-demand situations, including directly calculating matching parameters for the supply-demand requirements of the waste-producing enterprise and the waste-using enterprise to determine whether their supply-demand situation meets the enterprise's demands. The system input module stores the directly matching parameters input by the waste-using enterprise. The waste trading module in the zero-waste service desk can sort the waste-producing enterprises for which the directly matching parameters have been calculated. If the directly matching parameter of the waste-producing enterprise is greater than or equal to the directly matching parameter input by the waste-using enterprise, the waste-using enterprise further confirms the waste-producing enterprise for cooperation based on the information of the determined matching waste-producing enterprise. If the directly matching parameter of the waste-producing enterprise is less than the directly matching parameter input by the waste-using enterprise, the waste-using enterprise triggers a transaction ratio judgment program based on the information of the determined matching waste-producing enterprise. According to the requirements of the waste-using enterprise, the system input module stores the system-set transaction ratio value. Based on the waste output of the waste-producing enterprise and the demand input by the waste-using enterprise, calculate the tradable ratio value. If the tradable ratio value is greater than or equal to the system-set transaction ratio value, it is determined that the waste-using enterprise can further confirm several waste-producing enterprises for cooperation based on the several matching waste-producing enterprises. If the tradable ratio value is less than the system-set transaction ratio value, it is determined that the zero-waste service desk cannot provide directly matching waste-producing enterprises, and a transfer unit selection program is triggered.
8. The multi-source monitoring information integration system based on a zero-waste city according to claim 7, characterized in that the transfer unit selection program has two trigger values. One is that the tradable ratio value is less than the system-set transaction ratio value. At this time, the system autonomously triggers the transfer unit selection program. The other is that the waste-using enterprise has waste-producing enterprises that can cooperate in the directly matching parameters, but the waste-using enterprise still selects to use waste from the transfer unit. The transfer unit selection program displays the available supply amount for any type of waste and the transfer unit. The waste-using enterprise can specifically select the waste in the transfer unit according to the available supply amount prompt of the transfer unit to determine the waste usage amount.
9. The multi-source monitoring information integration system based on a zero-waste city according to claim 7, characterized in that the directly matching parameter calculates a parameter compensation value according to the waste category and other data information. The calculated parameter compensation value includes a waste cycle calculation compensation value related to the waste production cycle of the waste-producing enterprise, a logistics information calculation compensation value related to the logistics duration of the waste of the waste-producing enterprise, and a disposal capacity matching calculation compensation value related to the waste disposal capacity of the waste-using enterprise. The waste cycle calculation compensation value is proportional to the waste production cycle of the waste-producing enterprise, the logistics information calculation compensation value is proportional to the logistics duration of the waste of the waste-producing enterprise, and the disposal capacity matching calculation compensation value is proportional to the disposal capacity related to the waste of the waste-using enterprise.
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