Coal-based solid waste comprehensive information management system of contract energy management mode
The integrated information management system for coal-based solid waste under the contract energy management model has solved the problems of unclear resource and environmental attributes and information asymmetry of coal-based solid waste, realizing the optimized allocation and commercial operation of coal-based solid waste, and improving resource utilization rate and enterprise competitiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- INST OF COAL CHEM CHINESE ACAD OF SCI
- Filing Date
- 2023-03-21
- Publication Date
- 2026-05-22
AI Technical Summary
Due to the complexity of coal types and utilization methods, there are many types of coal-based solid waste in different regions and industries, with complex composition. The resource and environmental attributes of coal-based solid waste are unclear, and there is information asymmetry across industries. This leads to insufficient comparative analysis of resource utilization projects, weak transformation, low economic efficiency of resource utilization, and inability to achieve optimal allocation and commercial operation at the regional and group levels.
By adopting the energy performance contracting model, a comprehensive information management system for coal-based solid waste is established, including a cloud platform for waste generation, waste transfer, waste utilization, quality improvement and processing, testing and analysis, and information exchange. Through technologies such as RFID, weighing, and Beidou-GPS positioning, the system achieves full-process data collection and decision optimization, promoting the comprehensive utilization of coal-based solid waste at the regional or group level.
This has enabled the optimized allocation and advantageous utilization of coal-based solid waste resources, improved resource utilization rate, reduced enterprise costs, improved environmental quality, and enhanced market competitiveness.
Smart Images

Figure CN116703055B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of coal-based solid waste information management systems, specifically relating to a comprehensive information management system for coal-based solid waste under a contract energy management model. Background Technology
[0002] Given the increasingly urgent need for the resource utilization of coal-based solid waste, it is imperative to overcome the following problems that restrict the efficient utilization of coal-based solid waste resources in my country: (1) Due to the complexity of coal types and utilization methods, there are many types of coal-based solid waste in different regions and industries, with complex compositions and unclear environmental attributes of coal-based solid waste resources classified by category. (2) Different regions have an urgent need for key technologies for the resource utilization of coal-based solid waste, and there is currently a lack of cross-industry information asymmetry. (3) The field of coal-based solid waste utilization technology is booming, but there is insufficient comparative analysis of resource utilization projects and weak transformation. (4) Due to the unclear resource attributes, inaccurate statistics on the amount generated, and difficulty in tracing the entire life cycle, the economic efficiency of coal-based solid waste utilization is low, and the optimal allocation, advantageous utilization, and commercial operation of coal-based solid waste resources at the regional and group levels cannot be achieved.
[0003] Coal-based solid waste generating enterprises generate a large amount of coal-based solid waste due to the need for coal production. A significant portion of this solid waste cannot be effectively utilized, placing an economic and environmental burden on these enterprises. Therefore, this invention, based on the Energy Performance Contracting (EPC) model, helps these enterprises improve the resource utilization rate of coal-based solid waste, reduce costs, obtain considerable economic benefits, improve the environmental quality of the region, establish a green corporate image, and enhance their market competitiveness. Summary of the Invention
[0004] To address the aforementioned issues, this invention provides a comprehensive information management system for coal-based solid waste under a contract energy management model. By comprehensively managing information across all links of the industrial chain, including waste generation, transportation, and utilization, it promotes the efficiency and quality of comprehensive utilization of coal-based solid waste at the regional or group level through market-based means. This enables the optimized allocation and advantageous utilization of multi-source coal-based solid waste, thereby achieving commercial operation in the field of coal-based solid waste.
[0005] To achieve the above objectives, the present invention employs the following technical solutions:
[0006] A comprehensive information management system for coal-based solid waste under an energy performance contracting model includes a waste generation unit, a waste transfer unit, a waste utilization unit, a decision-making unit, a quality improvement and processing unit, a detection and analysis unit, and an information interaction cloud platform.
[0007] The waste-generating unit includes a waste-generating enterprise terminal, a first RFID system, a first weighing system, and a solid waste storage monitoring system. The first RFID system reads and writes information on the transfer of coal-based solid waste. The first weighing system weighs and records the weight of coal used, the weight of solid waste generated during coal use, and the weight of transferred coal-based solid waste. The solid waste storage monitoring system performs real-time detection and monitoring of the solid waste storage site. The first RFID system, the first weighing system, and the solid waste storage monitoring system transmit the data they collect to the waste-generating enterprise terminal. The waste-generating enterprise terminal stores the data collected by the first RFID system, the first weighing system, and the solid waste storage monitoring system, and transmits the data to the information interaction cloud platform.
[0008] The waste transfer unit includes a transport vehicle, a Beidou-GPS positioning system, and a transport company terminal. The transport vehicle is responsible for the transfer between the waste generation unit, the waste utilization unit, and the quality improvement and processing unit. The Beidou-GPS positioning system locates the position information of the transport vehicle in real time and plans the route of the transport vehicle. The position information of the transport vehicle and the planned route of the transport vehicle are transmitted to the transport company terminal by the Beidou-GPS positioning system.
[0009] The waste utilization unit includes a waste utilization enterprise terminal, a second RFID system, and a second weighing system. The second RFID system is responsible for reading and writing information on the transfer of coal-based solid waste, and the second weighing system is responsible for weighing and recording the transferred coal-based solid waste and each batch of coal-based solid waste utilized. The second RFID system and the second weighing system transmit the data information they collect to the waste utilization enterprise terminal. The waste utilization enterprise terminal stores the data information collected by the second RFID system and the second weighing system, and transmits the data information to the information interaction cloud platform.
[0010] The detection and analysis unit includes a detection and analysis terminal and a coal-based solid waste property detection device. The coal-based solid waste property detection device performs a full resource and environmental property characteristic test on the coal-based solid waste from the waste-generating unit and analyzes its full resource and environmental properties. The coal-based solid waste property detection device transmits the analysis results to the detection and analysis terminal, and the detection and analysis terminal transmits the analysis results to the information interaction cloud platform.
[0011] The decision-making unit includes a coal-based solid waste resource utilization technology database, a coal-based solid waste resource utilization decision model, and an optimization algorithm. It obtains the full resource and environmental attributes of coal-based solid waste from the information interaction cloud platform, combines it with regional coal-based solid waste disposal market information, and makes decisions on the resource utilization of coal-based solid waste based on the coal-based solid waste resource utilization technology database, the coal-based solid waste resource utilization decision model, and the optimization algorithm. For coal-based solid waste that can be directly utilized, the decision-making unit outputs the coal-based solid waste utilization plan to the waste utilization unit. For coal-based solid waste that cannot be directly utilized, the decision-making unit outputs the coal-based solid waste upgrading plan to the upgrading and processing unit.
[0012] The modified processing unit includes a modified processing enterprise terminal, a third RFID system, and a third weighing system. The third RFID system is responsible for reading and writing coal-based solid waste transfer information, and the third weighing system is responsible for weighing the coal-based solid waste raw materials and finished products transported by the transport vehicles and recording and uploading the data to the modified processing enterprise terminal. The modified processing enterprise terminal stores the data information collected by the third RFID system and the third weighing system and transmits the data information to the information interaction cloud platform.
[0013] The information interaction cloud platform is responsible for establishing an online communication and information acquisition platform for each unit of the system, collecting and storing relevant data information from each unit, and promoting information flow and resource sharing. It includes a server and a database. The server is responsible for responding to requests from each terminal, and the database is responsible for storing data information from each unit.
[0014] Furthermore, the system also includes an operation and supervision platform, which is mainly responsible for the operation scheduling and supervision of the entire process of coal-based solid waste generation, transfer and utilization in the entire region. The operation and supervision platform includes operation terminals and operation systems. The operation terminals obtain data information from the information exchange cloud platform, and the operation system is responsible for the unified scheduling and supervision of waste generation units, waste transfer units and waste utilization units in the entire region.
[0015] Furthermore, the terminals of waste-generating enterprises, transportation enterprises, waste-utilizing enterprises, testing and analysis enterprises, and quality improvement and processing enterprises are PC terminals, vehicle terminals, or mobile terminals.
[0016] Furthermore, the RFID system includes electronic tags, readers, antennas, and software systems. The electronic tags are responsible for storing data information, the readers are responsible for reading and writing data information from the electronic tags, the antenna is responsible for signal transmission between the electronic tags and the readers, and the software system is responsible for interacting with the terminal.
[0017] Furthermore, the weighing system includes a weight sensor and an automatic identification system. The weight sensor calculates the weight of coal-based solid waste and products, and the automatic identification system is responsible for identifying vehicle information. The acquired information is transmitted to the terminal via wireless communication technology.
[0018] Furthermore, the solid waste storage monitoring system includes a video monitoring system and a hazardous gas detection system. The video monitoring system uses cameras to monitor the coal-based solid waste storage area and transmits the video in real time to the information interaction cloud platform through the waste-generating enterprise's terminal. The information interaction cloud platform uses AI algorithms to analyze the video and notifies staff to take evacuation measures when a dangerous situation is detected in the coal-based solid waste. The hazardous gas detection system uses hazardous gas sensors deployed around the coal-based solid waste storage area to detect the surrounding atmosphere in real time and monitor the concentration of hazardous gases.
[0019] Furthermore, the BeiDou-GPS positioning system communicates with the vehicle-mounted Internet of Things system. The BeiDou-GPS positioning system locates the position information of the transport vehicle in real time and transmits it to the information interaction cloud platform. The information interaction cloud platform plans the vehicle's operating route based on the vehicle's origin and destination and transmits it to the transport vehicle. The driver then travels according to the planned route.
[0020] Furthermore, the information on the coal-based solid waste disposal market in the region refers to the business information of enterprises related to the utilization of coal-based solid waste in the region, including the types of solid waste treated by a certain coal-based solid waste utilization enterprise, the attribute requirements for the solid waste treated, the treatment technology adopted, the products / semi-products generated, and the amount of solid waste disposed of per unit time.
[0021] Compared with the prior art, the present invention has the following advantages: it integrates and utilizes coal-based solid waste resources in the region, explores the comprehensive utilization potential of coal-based solid waste, and promotes the sustainable utilization of coal-based solid waste. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of a coal-based solid waste integrated information management system under the contract energy management model. Detailed Implementation
[0023] Example 1
[0024] like Figure 1 As shown, a comprehensive information management system for coal-based solid waste under the contract energy management model includes a waste generation unit, a waste transfer unit, a waste utilization unit, a decision-making unit, a quality improvement and processing unit, a detection and analysis unit, an information interaction cloud platform, and an operation and supervision platform.
[0025] The waste-generating unit includes a waste-generating enterprise terminal, a first RFID system, a first weighing system, and a solid waste storage monitoring system. The first RFID system reads and writes information on the transfer of coal-based solid waste. The first weighing system weighs and records the weight of coal used, the weight of solid waste generated during coal use, and the weight of transferred coal-based solid waste. The solid waste storage monitoring system performs real-time detection and monitoring of the solid waste storage site. The first RFID system, the first weighing system, and the solid waste storage monitoring system transmit the data they collect to the waste-generating enterprise terminal. The waste-generating enterprise terminal stores the data collected by the first RFID system, the first weighing system, and the solid waste storage monitoring system, and transmits the data to the information interaction cloud platform. The waste-generating enterprise terminal is mainly responsible for collecting and storing relevant data information of the waste-generating enterprise. Important information includes the type, batch, and source of coal used, the quantity of coal used, important production condition parameters during coal production such as temperature and processes, and the type and quantity of solid waste generated.
[0026] The waste transfer unit includes a transport vehicle, a Beidou-GPS positioning system, and a transport company terminal. The transport vehicle includes, but is not limited to, automobiles and trains, and is responsible for the transfer between the waste generation unit, the waste utilization unit, and the quality improvement and processing unit. The Beidou-GPS positioning system locates the position information of the transport vehicle in real time and plans the route of the transport vehicle. The position information of the transport vehicle and the planned route of the transport vehicle are transmitted to the transport company terminal. The transport company terminal is responsible for recording the coal-based solid waste transfer information, including the origin and destination of the transfer, the weight and type of the transferred solid waste, etc.
[0027] The waste utilization unit includes a waste utilization enterprise terminal, a second RFID system, and a second weighing system. The second RFID system is responsible for reading and writing information on the transfer of coal-based solid waste, and the second weighing system is responsible for weighing and recording the transferred coal-based solid waste and each batch of coal-based solid waste used. The second RFID system and the second weighing system transmit the data they collect to the waste utilization enterprise terminal. The waste utilization enterprise terminal stores the data collected by the second RFID system and the second weighing system and transmits the data to the information interaction cloud platform. The waste utilization enterprise terminal is responsible for information interaction with the information interaction cloud platform, uploading information such as the enterprise's current environmental attribute requirements for coal-based solid waste in solid waste utilization and the enterprise's coal-based solid waste disposal capacity to the cloud platform. After receiving and processing coal-based solid waste from waste-generating units, the unit acquires the solid waste transfer information recorded by the RFID and weighing systems, records data such as product output, technical parameters, and energy and resource consumption during the solid waste resource utilization process, and uploads the information to the cloud platform.
[0028] The detection and analysis unit is responsible for detecting the physicochemical properties of coal-based solid waste generated from different locations and batches of coal within the region, and analyzing its resource and environmental attributes. It includes a detection and analysis terminal and a coal-based solid waste attribute detection device. The coal-based solid waste attribute detection device performs a full resource and environmental attribute test on the coal-based solid waste from the waste-generating unit and analyzes its full resource and environmental attributes. The coal-based solid waste attribute detection device transmits the analysis results to the detection and analysis terminal, and the detection and analysis terminal transmits the analysis results to the information interaction cloud platform.
[0029] The decision-making unit is responsible for making decisions on the resource utilization of solid waste within the region. This includes a database of coal-based solid waste resource utilization technologies, a decision-making model for coal-based solid waste resource utilization, and optimization algorithms. It obtains the full resource and environmental attributes of coal-based solid waste from an information exchange cloud platform, combines this with market information on coal-based solid waste disposal within the region, and makes decisions on the resource utilization of coal-based solid waste based on the database of coal-based solid waste resource utilization technologies, the decision-making model for coal-based solid waste resource utilization, and optimization algorithms. From the perspective of solid waste utilization enterprises, it studies and selects the optimal coal-based solid waste utilization scheme. Considering the characteristics and generation volume of single or multiple sources of coal-based solid waste in the region, and taking into account the distance to different waste utilization units, for coal-based solid waste that can be directly utilized, the decision-making unit outputs a utilization scheme to the waste utilization unit; for coal-based solid waste that cannot be directly utilized, the decision-making unit outputs a modification scheme to the modification and processing unit.
[0030] The modified processing unit is mainly responsible for classifying and upgrading coal-based solid waste that cannot be directly utilized within the region. Based on the processing and upgrading plan output by the decision-making unit, the raw materials and upgraded semi-finished products are transported to the waste utilization unit through the transfer unit. The unit includes a modified processing enterprise terminal, a third RFID system, and a third weighing system. The third RFID system is responsible for reading and writing coal-based solid waste transfer information. The third weighing system is responsible for weighing the coal-based solid waste raw materials and finished products transported by the transport vehicles and recording and uploading the data to the modified processing enterprise terminal. The modified processing enterprise terminal stores the data information collected by the third RFID system and the third weighing system and transmits the data information to the information interaction cloud platform.
[0031] The information interaction cloud platform includes a server and a database. The server is responsible for responding to requests from terminals, and the database is responsible for storing data information from each unit.
[0032] The operation and supervision center primarily manages and supervises the entire process of coal-based solid waste generation, transfer, and utilization within the region. It promotes the resource utilization of coal-based solid waste, assists waste-generating enterprises in processing large quantities of coal-based solid waste, fosters collaboration between systems, and improves the comprehensive utilization rate of coal-based solid waste. This includes operation terminals and an operation system. The operation terminals acquire data from the information exchange cloud platform and interact with it. The operation system is responsible for supervising the waste-generating, waste-transferring, and waste-utilizing units within the region, coordinating the workflow of each unit, and monitoring the transfer of coal-based solid waste. This includes acquiring solid waste output data from waste-generating units, comparing and analyzing solid waste data transferred by transfer units with solid waste data acquired by waste-utilizing and processing units, and supervising the operational processes of other units in accordance with national and local laws and regulations to ensure no violations occur at any stage.
[0033] Among them, the terminals of waste-generating enterprises, transportation enterprises, waste utilization enterprises, testing and analysis enterprises, and quality improvement and processing enterprises are PC terminals, vehicle terminals, or mobile terminals.
[0034] An RFID system includes electronic tags, readers, antennas, and software. The electronic tags are responsible for storing data information, the readers are responsible for reading and writing data information from the electronic tags, the antenna is responsible for signal transmission between the electronic tags and the readers, and the software system is responsible for interacting with the terminal.
[0035] The first RFID system is primarily used in the transfer of coal-based solid waste. When the coal-based solid waste is transported from the waste-generating enterprise, this system records information such as the weight, time, destination, and license plate number of the transport vehicle. The second RFID system is responsible for reading the electronic tag information on the transport vehicle's RFID card, such as the weight and type of solid waste. The third RFID system is responsible for recording information such as the weight and type of the transferred solid waste.
[0036] The weighing system includes a weight sensor and an automatic identification system. The weight sensor calculates the weight of coal-based solid waste and products, and the automatic identification system is responsible for identifying vehicle information. The acquired information is transmitted to the terminal via wireless communication technology.
[0037] The first weighing system is primarily responsible for weighing and recording the weight of coal used, the weight of solid waste generated during coal use, and the weight of coal-based solid waste transferred. The second weighing system is responsible for confirming the weight information of coal-based solid waste transported by the transfer unit, weighing and recording the solid waste used in each batch of production, and weighing and recording the finished and semi-finished products obtained from production. The third weighing system is responsible for weighing and recording the coal-based solid waste raw materials and finished products transferred.
[0038] The solid waste storage monitoring system is responsible for real-time detection and monitoring of solid waste storage sites. It includes a video monitoring system and a hazardous gas detection system. The video monitoring system uses cameras to monitor the coal-based solid waste storage site and transmits the video in real time to the information interaction cloud platform through the waste-generating enterprise's terminal. The information interaction cloud platform uses relevant image processing technology (AI algorithm) to analyze the video and analyze whether there is a possibility of spontaneous combustion of gangue piles, landslides, or other dangers. When a danger is detected in the coal-based solid waste, staff are notified to take evacuation measures. The hazardous gas detection system uses hazardous gas sensors deployed around the coal-based solid waste storage site to detect the surrounding atmosphere in real time and detect the concentration of hazardous gases. If toxic or harmful gases exceed the threshold, staff and nearby residents are notified in a timely manner to take appropriate measures.
[0039] The Beidou-GPS positioning system communicates with the vehicle-mounted Internet of Things (IoT) system. The Beidou-GPS positioning system locates the position information of the transfer vehicle in real time and transmits it to the information interaction cloud platform. The information interaction cloud platform plans the vehicle's running route based on the origin and destination of the transfer vehicle and transmits it to the transfer vehicle. The driver refers to the planned route to travel, thereby improving transportation efficiency.
[0040] The information on the coal-based solid waste disposal market within the region refers to the operational information of enterprises related to the utilization of coal-based solid waste within the region. This includes information such as the types of solid waste processed by a particular coal-based solid waste utilization enterprise, the required properties of the processed solid waste, the treatment technologies used, the products / semi-products generated, and the quantity of solid waste disposed of per unit time. After collecting the information on the coal-based solid waste disposal market within the region, further information on enterprises related to the utilization of coal-based solid waste outside the region can be collected to identify potential disposal units for coal-based solid waste within the region.
[0041] This invention focuses on the commercial utilization of coal-based solid waste resources within a region. Employing an energy performance contracting model, it analyzes the physicochemical properties of solid waste within the region, examines its resource and environmental attributes, and combines this with local market information on coal-based solid waste disposal to select the optimal utilization technology for enterprises engaged in the resource utilization of coal-based solid waste, thereby promoting cooperation between waste-generating and waste-utilizing enterprises. By establishing a comprehensive information management system covering the entire process of regional coal-based solid waste resource utilization, it achieves clear and transparent information management of regional coal-based solid waste, realizing the optimal allocation, advantageous utilization, and commercial operation of coal-based solid waste resources at the regional and group levels, and promoting the utilization and development of coal-based solid waste resources.
Claims
1. A comprehensive information management system for coal-based solid waste under an energy performance contracting model, characterized in that, It includes waste generation unit, waste transfer unit, waste utilization unit, decision-making unit, quality improvement and processing unit, testing and analysis unit, and information interaction cloud platform; The waste-generating unit includes a waste-generating enterprise terminal, a first RFID system, a first weighing system, and a solid waste storage monitoring system. The first RFID system reads and writes information on the transfer of coal-based solid waste. The first weighing system weighs and records the weight of coal used, the weight of solid waste generated during coal use, and the weight of transferred coal-based solid waste. The solid waste storage monitoring system performs real-time detection and monitoring of the solid waste storage site. The first RFID system, the first weighing system, and the solid waste storage monitoring system transmit the data they collect to the waste-generating enterprise terminal. The waste-generating enterprise terminal stores the data collected by the first RFID system, the first weighing system, and the solid waste storage monitoring system, and transmits the data to the information interaction cloud platform. The waste transfer unit includes a transport vehicle, a Beidou-GPS positioning system, and a transport company terminal. The transport vehicle is responsible for the transfer between the waste generation unit, the waste utilization unit, and the quality improvement and processing unit. The Beidou-GPS positioning system locates the position information of the transport vehicle in real time and plans the route of the transport vehicle. The position information of the transport vehicle and the planned route of the transport vehicle are transmitted to the transport company terminal by the Beidou-GPS positioning system. The waste utilization unit includes a waste utilization enterprise terminal, a second RFID system, and a second weighing system. The second RFID system is responsible for reading and writing information on the transfer of coal-based solid waste, and the second weighing system is responsible for weighing and recording the transferred coal-based solid waste and each batch of coal-based solid waste utilized. The second RFID system and the second weighing system transmit the data information they collect to the waste utilization enterprise terminal. The waste utilization enterprise terminal stores the data information collected by the second RFID system and the second weighing system, and transmits the data information to the information interaction cloud platform. The detection and analysis unit includes a detection and analysis terminal and a coal-based solid waste property detection device. The coal-based solid waste property detection device performs a full resource and environmental property characteristic test on the coal-based solid waste from the waste-generating unit and analyzes its full resource and environmental properties. The coal-based solid waste property detection device transmits the analysis results to the detection and analysis terminal, and the detection and analysis terminal transmits the analysis results to the information interaction cloud platform. The decision-making unit includes a coal-based solid waste resource utilization technology database, a coal-based solid waste resource utilization decision model, and an optimization algorithm. It obtains the full resource and environmental attributes of coal-based solid waste from the information interaction cloud platform, combines it with regional coal-based solid waste disposal market information, and makes decisions on the resource utilization of coal-based solid waste based on the coal-based solid waste resource utilization technology database, the coal-based solid waste resource utilization decision model, and the optimization algorithm. For coal-based solid waste that can be directly utilized, the decision-making unit outputs the coal-based solid waste utilization plan to the waste utilization unit. For coal-based solid waste that cannot be directly utilized, the decision-making unit outputs the coal-based solid waste upgrading plan to the upgrading and processing unit. The modified processing unit includes a modified processing enterprise terminal, a third RFID system, and a third weighing system. The third RFID system is responsible for reading and writing coal-based solid waste transfer information, and the third weighing system is responsible for weighing the coal-based solid waste raw materials and finished products transported by the transport vehicles and recording and uploading the data to the modified processing enterprise terminal. The modified processing enterprise terminal stores the data information collected by the third RFID system and the third weighing system and transmits the data information to the information interaction cloud platform. The information interaction cloud platform includes a server and a database. The server is responsible for responding to requests from terminals, and the database is responsible for storing data information from each unit.
2. The coal-based solid waste integrated information management system under the contract energy management model according to claim 1, characterized in that, The system also includes an operation and supervision platform, which includes an operation terminal and an operation system. The operation terminal obtains data information from the information exchange cloud platform, and the operation system is responsible for the unified operation, scheduling and supervision of waste-generating units, waste-transferring units and waste-utilizing units in the entire region.
3. The coal-based solid waste integrated information management system under the contract energy management model according to claim 1, characterized in that, The terminals for waste-generating enterprises, transportation enterprises, waste-utilizing enterprises, testing and analysis enterprises, and quality improvement and processing enterprises can be PC terminals, vehicle terminals, or mobile terminals.
4. The coal-based solid waste integrated information management system under the contract energy management model according to claim 1, characterized in that, The RFID system includes electronic tags, readers, antennas, and software. The electronic tags are responsible for storing data information, the readers are responsible for reading and writing data information from the electronic tags, the antenna is responsible for signal transmission between the electronic tags and the readers, and the software system is responsible for interacting with the terminal.
5. A comprehensive information management system for coal-based solid waste under a contract energy management model as described in claim 1, characterized in that, The weighing system includes a weight sensor and an automatic identification system. The weight sensor calculates the weight of coal-based solid waste and products, and the automatic identification system is responsible for identifying vehicle information. The acquired information is transmitted to the terminal via wireless communication technology.
6. A comprehensive information management system for coal-based solid waste under a contract energy management model according to claim 1, characterized in that, The solid waste storage monitoring system includes a video monitoring system and a hazardous gas detection system. The video monitoring system uses cameras to monitor the coal-based solid waste storage area and transmits the video in real time to the information interaction cloud platform through the waste-generating enterprise's terminal. The information interaction cloud platform uses AI algorithms to analyze the video and notifies staff to take evacuation measures when a dangerous situation is detected in the coal-based solid waste. The hazardous gas detection system uses hazardous gas sensors deployed around the coal-based solid waste storage area to detect the surrounding atmosphere in real time and monitor the concentration of hazardous gases.
7. A comprehensive information management system for coal-based solid waste under a contract energy management model according to claim 1, characterized in that, The Beidou-GPS positioning system communicates with the vehicle-mounted Internet of Things system. The Beidou-GPS positioning system locates the position information of the transport vehicle in real time and transmits it to the information interaction cloud platform. The information interaction cloud platform plans the vehicle's running route based on the origin and destination of the transport vehicle and transmits it to the transport vehicle. The driver refers to the planned route to travel.
8. A comprehensive information management system for coal-based solid waste under a contract energy management model according to claim 1, characterized in that, The information on the coal-based solid waste disposal market in the region refers to the business information of enterprises related to the utilization of coal-based solid waste in the region, including the types of solid waste treated by a certain coal-based solid waste utilization enterprise, the attribute requirements of the solid waste treated, the treatment technology adopted, the products / semi-products generated, and the amount of solid waste disposed of per unit time.