Drainage pipe network monitoring processing method and device, electronic equipment and storage medium
By monitoring and processing urban drainage pipe networks, acquiring and analyzing monitoring data, and generating work orders to instruct business personnel and maintenance personnel to conduct verification and repairs, the problem of incomplete basic data of drainage pipe networks has been solved, enabling timely management and improved safety of drainage systems.
Patent Information
- Application Number
- CN202512028946.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-30
- Publication Date
- 2026-04-14
AI Technical Summary
The lack of basic data on urban drainage pipe networks, outdated data storage methods, low information acquisition efficiency, and untimely pipe cleaning and maintenance work have led to numerous safety hazards.
This invention provides a method for monitoring and processing drainage pipe networks. By acquiring data from pipe network monitoring equipment, analyzing abnormal situations, sending alarm information to management personnel, generating verification work orders, conducting verification by business personnel, and carrying out maintenance by maintenance personnel, the method achieves comprehensive management and timely processing of drainage pipe networks.
It enables timely response and handling of abnormal situations in the drainage network, improves information acquisition efficiency, reduces safety hazards, and ensures the stable operation of the urban drainage system.
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Figure CN121860607A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of drainage technology, and more specifically, to a method, apparatus, electronic device, and storage medium for monitoring and processing drainage pipe networks. Background Technology
[0002] Urban underground drainage networks are a crucial component of urban infrastructure and a vital foundation for urban planning, construction, and management. These networks are responsible for transmitting information and transporting media, serving as the material basis for urban survival and development—often referred to as the city's "lifeline." Strengthening urban management and maintenance of drainage systems, improving their functionality, increasing investment in management and maintenance by urban management departments, conducting thorough special renovations of drainage networks, and developing urban drainage contingency plans will all contribute to improving the quality of life for urban residents.
[0003] In the existing technology, the basic data of urban drainage pipe network systems is incomplete, the data storage methods are outdated, the information acquisition efficiency is low, and the daily cleaning, dredging and maintenance of pipes cannot be carried out in a timely manner, which brings many safety hazards to the daily management of cities and related planning and construction. Summary of the Invention
[0004] The purpose of this application is to address the shortcomings of the prior art by providing a drainage network monitoring and processing method, device, electronic equipment, and storage medium, thereby enabling a series of functions such as comprehensive management, querying, and analysis of urban drainage networks.
[0005] To achieve the above objectives, the technical solutions adopted in the embodiments of this application are as follows: In a first aspect, embodiments of this application provide a method for monitoring and processing drainage pipe networks, the method comprising: Obtain monitoring data reported by pipeline monitoring equipment installed within the monitoring area; The monitoring data is analyzed to determine whether there are any abnormalities in the drainage pipe network of the monitoring area; If so, an alarm message is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the alarm message; The system receives verification information sent by the management personnel client, which includes: the identifier of the salesperson responsible for the verification and the identifier of the drainage network to be verified; Based on the verification information, at least one verification work order is generated. Each verification work order corresponds to one or more salespersons. The verification work order includes the identifier of the drainage pipe network to be verified. The verification work order is used to instruct the corresponding salesperson to verify the drainage pipe network to be verified. The verification work order is sent to the salesperson's client corresponding to each verification work order.
[0006] Optionally, after sending the verification work order to the salesperson's client corresponding to each verification work order, the method further includes: Receive verification result information sent by the salesperson's client, the verification result information including: the identifier of the drainage pipe network that needs to be repaired after verification; Based on the verification results, the target maintenance personnel were identified; A maintenance work order is sent to the maintenance personnel's client. The maintenance work order includes the identifier of the drainage network to be maintained. The maintenance work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained and / or resolve the problem of illegal discharge.
[0007] Optionally, after sending the alarm information to the administrator's client, the method further includes: Receive a dispatch instruction sent by the management personnel client, the dispatch instruction including an identifier of the drainage network to be confirmed; The dispatch instruction is sent to the maintenance personnel's client to instruct the maintenance personnel executing the dispatch instruction to confirm the abnormal information of the drainage network to be confirmed. The dispatch execution result is sent by the maintenance personnel client to the maintenance personnel who executed the dispatch instruction; The dispatch execution result is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the dispatch execution result.
[0008] Optionally, the method further includes: Receive inspection plan information sent by the management personnel client; Based on the inspection plan information, at least one inspection work order is generated. Each inspection work order corresponds to one or more inspection personnel. The inspection work order includes the area to be inspected and the identification of the drainage pipe network to be inspected. The inspection work order is used to instruct the corresponding inspection personnel to inspect the drainage pipe network to be inspected. Send the inspection work order to the client of the inspection personnel corresponding to the inspection work order; The system receives inspection data sent by the inspection personnel's client, parses the inspection data, and determines the event type corresponding to the inspection data. The event type includes regular event types and emergency event types. An event work order corresponding to the event type is generated based on the event type, and the event work order includes the identifier of the drainage pipe network to be repaired; The event work order is sent to the maintenance personnel's client or the management personnel's client corresponding to the event work order, based on the event type.
[0009] Optionally, sending the event work order to the maintenance personnel or emergency personnel corresponding to the event work order of the event type includes: if the event type is a regular event type, then sending the regular event work order to the maintenance personnel client of the maintenance personnel corresponding to the regular event type; If the event type is an emergency event, an emergency event work order is sent to the administrator's administrator client.
[0010] Optionally, if the event type is a regular event type, then the regular event work order is sent to the maintenance personnel's client corresponding to the regular event type, including: If the event type is a routine event type, the target maintenance personnel are determined based on the inspection data; A routine event work order is sent to the maintenance personnel's client. The routine event work order includes an identifier of the drainage network to be repaired. The routine event work order is used to instruct the target maintenance personnel to repair the drainage network to be repaired.
[0011] Optionally, after sending an emergency event ticket to the administrator's administrator client, the following may also be included: Receive confirmation information sent by the management personnel client, the confirmation information including the identifier of the drainage network to be confirmed and the level of the emergency event work order; A corresponding dispatch request is generated based on the information to be confirmed. The dispatch request includes the identifiers of the target emergency personnel, target emergency vehicles, target emergency supplies, and the drainage pipe network to be repaired. The dispatch request is sent to the target emergency personnel client of the target emergency personnel executing the dispatch request. The dispatch request is used to instruct the target emergency personnel executing the dispatch request to repair the drainage pipe network to be repaired. Receive the scheduling execution result sent by the target emergency personnel client that executed the scheduling request; The scheduling execution result is sent to the administrator's client so that the administrator can close the emergency event work order based on the scheduling execution result.
[0012] Secondly, embodiments of this application also provide a drainage network monitoring and processing device, the device comprising: The acquisition module is used to acquire monitoring data reported by pipeline monitoring equipment set up within the monitoring area; The determination module is used to parse the monitoring data and determine whether there are any abnormalities in the drainage pipe network of the monitoring area; The sending module is used to send alarm information to the management personnel client if the alarm information is present, so that the management personnel can confirm the abnormal information of the drainage network based on the alarm information. The receiving module is used to receive verification information sent by the management personnel client. The verification information includes: the identifier of the business person responsible for the verification and the identifier of the drainage network to be verified. The generation module is used to generate at least one verification work order based on the verification information. Each verification work order corresponds to one or more salespersons. The verification work order includes the identifier of the drainage pipe network to be verified. The verification work order is used to instruct the corresponding salesperson to verify the drainage pipe network to be verified. The sending module is used to send the verification work order to the salesperson's client corresponding to each verification work order.
[0013] Optionally, the sending module is specifically used for: Receive verification result information sent by the salesperson's client, the verification result information including: the identifier of the drainage pipe network that needs to be repaired after verification; Based on the verification results, the target maintenance personnel were identified; A maintenance work order is sent to the maintenance personnel's client. The maintenance work order includes the identifier of the drainage network to be maintained. The maintenance work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained and / or resolve the problem of illegal discharge.
[0014] Optionally, the sending module is specifically used for: Receive a dispatch instruction sent by the management personnel client, the dispatch instruction including an identifier of the drainage network to be confirmed; The dispatch instruction is sent to the maintenance personnel's client to instruct the maintenance personnel executing the dispatch instruction to confirm the abnormal information of the drainage network to be confirmed. The dispatch execution result is sent by the maintenance personnel client to the maintenance personnel who executed the dispatch instruction; The dispatch execution result is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the dispatch execution result.
[0015] Optionally, the generation module is specifically used for: Receive inspection plan information sent by the management personnel client; Based on the inspection plan information, at least one inspection work order is generated. Each inspection work order corresponds to one or more inspection personnel. The inspection work order includes the area to be inspected and the identification of the drainage pipe network to be inspected. The inspection work order is used to instruct the corresponding inspection personnel to inspect the drainage pipe network to be inspected. Send the inspection work order to the client of the inspection personnel corresponding to the inspection work order; The system receives inspection data sent by the inspection personnel's client, parses the inspection data, and determines the event type corresponding to the inspection data. The event type includes regular event types and emergency event types. An event work order corresponding to the event type is generated based on the event type, and the event work order includes the identifier of the drainage pipe network to be repaired; The event work order is sent to the maintenance personnel's client or the management personnel's client corresponding to the event work order, based on the event type.
[0016] Optionally, the sending module is specifically used to: if the event type is a regular event type, send the regular event work order to the maintenance personnel client of the maintenance personnel corresponding to the regular event type; If the event type is an emergency event, an emergency event work order is sent to the administrator's administrator client.
[0017] Optionally, the sending module is specifically used for: If the event type is a routine event type, the target maintenance personnel are determined based on the inspection data; A routine event work order is sent to the maintenance personnel's client. The routine event work order includes an identifier of the drainage network to be repaired. The routine event work order is used to instruct the target maintenance personnel to repair the drainage network to be repaired.
[0018] Optionally, the sending module is specifically used for: Receive confirmation information sent by the management personnel client, the confirmation information including the identifier of the drainage network to be confirmed and the level of the emergency event work order; A corresponding dispatch request is generated based on the information to be confirmed. The dispatch request includes the identifiers of the target emergency personnel, target emergency vehicles, target emergency supplies, and the drainage pipe network to be repaired. The dispatch request is sent to the target emergency personnel client of the target emergency personnel executing the dispatch request. The dispatch request is used to instruct the target emergency personnel executing the dispatch request to repair the drainage pipe network to be repaired. Receive the scheduling execution result sent by the target emergency personnel client that executed the scheduling request; The scheduling execution result is sent to the administrator's client so that the administrator can close the emergency event work order based on the scheduling execution result.
[0019] Thirdly, embodiments of this application also provide an electronic device, including: a processor, a storage medium, and a bus. The storage medium stores program instructions executable by the processor. When the application runs, the processor communicates with the storage medium via the bus, and the processor executes the program instructions to perform the steps of the drainage network monitoring and processing method described in the first aspect.
[0020] Fourthly, embodiments of this application also provide a computer-readable storage medium storing a computer program, which is read and executes the steps of the drainage network monitoring and processing method described in the first aspect.
[0021] The beneficial effects of this application are: This application provides a drainage network monitoring and processing method, device, electronic equipment, and storage medium. By monitoring the urban drainage network, it can promptly send alarm information to the management personnel's client when abnormalities occur. Upon receiving the alarm information, the management personnel's client sends verification information and a verification work order to the corresponding business personnel's client. The business personnel can then promptly verify the abnormalities. This allows for efficient handling of abnormal data detected in the drainage network monitoring system. Each responsible person can respond promptly based on the abnormalities detected on their respective client, ensuring timely response and processing of abnormal information. Attached Figure Description
[0022] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0023] Figure 1 This is an exemplary scenario diagram provided for an embodiment of this application; Figure 2 A flowchart illustrating a drainage network monitoring and processing method provided in an embodiment of this application; Figure 3 A flowchart illustrating another drainage network monitoring and processing method provided in this application embodiment; Figure 4 A flowchart illustrating another drainage network monitoring and processing method provided in this application embodiment; Figure 5 This application provides a schematic diagram of a complete process for monitoring and processing drainage pipe networks. Figure 6A schematic flowchart of a drainage pipe network treatment method provided in an embodiment of this application; Figure 7 A schematic flowchart of another drainage network treatment method provided in an embodiment of this application; Figure 8 This application provides a complete flowchart of a drainage network treatment method according to an embodiment of the present application. Figure 9 A schematic diagram of an apparatus for a drainage network monitoring and processing method provided in an embodiment of this application; Figure 10 This is a structural block diagram of an electronic device provided in an embodiment of this application. Detailed Implementation
[0024] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. It should be understood that the accompanying drawings in this application are for illustrative and descriptive purposes only and are not intended to limit the scope of protection of this application. Furthermore, it should be understood that the schematic drawings are not drawn to scale. The flowcharts used in this application illustrate operations implemented according to some embodiments of this application. It should be understood that the operations in the flowcharts may not be implemented in sequence, and steps without logical contextual relationships may be reversed or implemented simultaneously. In addition, those skilled in the art, guided by the content of this application, may add one or more other operations to the flowcharts, or remove one or more operations from the flowcharts.
[0025] Furthermore, the described embodiments are merely some, not all, of the embodiments of this application. The components of the embodiments of this application described and illustrated herein can typically be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0026] It should be noted that the term "comprising" will be used in the embodiments of this application to indicate the presence of the features declared thereafter, but does not exclude the addition of other features.
[0027] With the expansion and growth of urban areas, urban drainage networks have evolved into complex and vast systems. Many cities suffer from incomplete basic data on drainage networks, outdated methods for storing drawings, documents, and data archives, low information retrieval efficiency, and delays in routine pipe cleaning, dredging, and maintenance. Furthermore, the lack of sufficient or complete reference data hinders timely and accurate handling of drainage emergencies. In some cities, as-built drawings and other documentation for stormwater and sewage pipe networks, pumping stations, and other drainage infrastructure are lacking or incomplete; some even use construction drawings as as-built drawings, creating numerous safety hazards for daily urban management and related planning and construction.
[0028] Figure 1 An exemplary scenario diagram provided for an embodiment of this application, such as... Figure 1 As shown, this method is applied to a server; the server can be implemented on a cloud platform. As an example only, the cloud platform can include private cloud, public cloud, hybrid cloud, community cloud, distributed cloud, inter-cloud, multi-cloud, or any combination thereof.
[0029] Optionally, the server can communicate with the pipeline monitoring equipment via a network, so that the data in the pipeline monitoring equipment can be sent to the electronic device via the network, and the electronic device can perform monitoring and processing of the drainage pipeline network using the method provided in the embodiments of this application based on the received data.
[0030] The network provides a communication link between the server and the pipeline monitoring equipment, enabling them to exchange information and / or data. The network can include various connection types, such as wired networks, wireless networks, fiber optic networks, remote communication networks, wide area networks (WANs), local area networks (LANs), or any combination thereof.
[0031] The server in this application embodiment includes an information management and service platform with drainage pipe network data as the main data object. It can realize the process-oriented, dynamic, real-time, and visualized urban drainage information management of drainage pipe network planning and hidden danger management, comprehensively record the results of source tracing and rectification, strengthen drainage business management, realize the central management of events such as inspection, maintenance, and repair, provide information-based supervision means for drainage pipe networks, manhole covers, and pumping stations and other ancillary facilities, and coordinate the online monitoring of drainage pipe networks in key areas of the whole region.
[0032] The server includes a mature relational database, which provides a series of functions such as management, querying and analysis of urban drainage pipe network data obtained from basic surveying and mapping, and sets up the division of responsibilities for various types of urban data management.
[0033] The embodiments of this application can realize the monitoring and processing of drainage pipe networks. The monitoring and processing of drainage pipe networks involves management personnel, business personnel and maintenance personnel. Among them, management personnel, business personnel and maintenance personnel can perform relevant business operations through their respective client devices.
[0034] Figure 2 This is a flowchart illustrating a drainage network monitoring and processing method provided in an embodiment of this application. The execution entity of this method is the aforementioned server. Figure 2 As shown, the method includes: S101. Obtain monitoring data reported by the pipeline monitoring equipment set in the monitoring area.
[0035] The monitoring area can be any area in the city where a drainage pipe network is located, and the pipe network monitoring equipment can be, for example, water level gauges, manhole cover displacement monitoring equipment, camera equipment, etc.
[0036] Specifically, water level gauges can be installed in flood-prone areas to monitor the water level in these areas at any time and report the monitored water level data to the server mentioned above. Manhole cover displacement monitoring devices can be installed on each manhole cover to monitor whether the corresponding manhole cover has shifted position and report the monitored manhole cover displacement data to the server mentioned above.
[0037] Optionally, different preset thresholds can be set for different pipeline monitoring devices. These preset thresholds refer to the threshold values for the monitoring data obtained by the monitoring devices. If the monitoring data detected by the pipeline monitoring device exceeds the set preset threshold, the monitored data can be reported to the server. For example, for water level monitoring, if the preset threshold is 8cm, and the monitored water level is 8.2cm, the monitored water level data can be reported to the electronic device; if the monitored water level is 7.5cm, the monitored data does not need to be reported to the server. For example, for manhole cover displacement monitoring, if the preset threshold for displacement offset is set to 0.2m, then when the manhole cover displacement monitoring device detects a displacement of 0.3cm, the monitoring data will be uploaded to the server; if the manhole cover displacement monitoring device detects a displacement of 0.1cm, the monitored data does not need to be reported to the server. Different preset thresholds can be set for different pipeline monitoring devices.
[0038] S102. Analyze the monitoring data to determine whether there are any abnormalities in the drainage pipe network of the monitoring area. If so, proceed to step S103.
[0039] Optionally, the acquired monitoring data is parsed, and it is determined whether the acquired monitoring data exceeds a preset threshold. If it is determined that the data exceeds the preset threshold, it can be determined that there is an anomaly in the drainage network monitored by the monitoring equipment that reported the monitoring data, and step S103 is executed; if it is determined that the data does not exceed the threshold, it is determined that there is no anomaly in the drainage network monitored by the monitoring equipment, and the process ends.
[0040] S103. Send alarm information to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the alarm information.
[0041] Optionally, the server sends alarm information to the administrator's client, indicating that there is an anomaly in the drainage network monitored by the monitoring equipment. After viewing the alarm information through the administrator's client, the administrator can confirm the anomaly in the drainage network through video monitoring, instrument parameters, and other information. In other words, the administrator confirms that there is an anomaly in the alarmed drainage network based on the alarm information. For example, if the monitoring equipment detects an overflow in the network, the administrator can send verification information through the administrator's client, and the server will receive the verification information sent by the administrator.
[0042] S104. Receive verification information sent by the administrator's client.
[0043] The verification information may include the identification of the salesperson responsible for the verification and the identification of the drainage network to be verified.
[0044] Optionally, based on the spatial distribution of monitoring equipment, responsible personnel can be assigned to different areas for monitoring the drainage network. In this case, the responsible personnel will be different for different areas, and the responsible personnel for each area can be determined based on the identification area of the monitoring equipment.
[0045] S105. Based on the verification information, generate at least one verification work order, with each verification work order corresponding to one or more salespersons.
[0046] Each verification work order includes an identifier for the drainage network to be verified. This verification work order is used to instruct the corresponding salesperson to verify the drainage network to be verified.
[0047] S106. Send the verification work order to the salesperson's client corresponding to each verification work order.
[0048] Optionally, the server sends the generated verification work order to the salesperson's client corresponding to the work order. If the verification work order corresponds to one salesperson, the work order is sent to that salesperson's client, and the salesperson who receives the work order performs the verification of the drainage network to be verified. If the verification work order corresponds to multiple salespersons, the work order is sent to the clients of all multiple salespersons, and all multiple salespersons who receive the work order simultaneously perform the verification of the drainage network to be verified.
[0049] In this application, by monitoring the urban drainage network, alarm information can be promptly sent to the management personnel's client when anomalies occur. Upon receiving the alarm information, the management personnel's client sends verification information and a verification work order to the corresponding business personnel's client. The business personnel can then promptly verify the anomalies. This allows for efficient handling of anomalies detected by the drainage network monitoring system, enabling responsible personnel to respond promptly based on the anomalies detected on their respective client devices, ensuring timely response and processing of anomaly information.
[0050] Figure 3 A flowchart illustrating another drainage network monitoring and processing method provided in this application embodiment is shown below. Figure 3 As shown, after sending the verification work order to the salesperson's client corresponding to each verification work order in step S106 above, it may include: S201. Receive verification result information sent by the salesperson's client.
[0051] The verification results may include the identification of drainage pipe networks that require repair after verification.
[0052] Optionally, after sending the verification work order to the business client of the business person corresponding to each verification work order in step S106 above, the corresponding business person receives the verification work order and verifies the drainage pipe network to be verified. After the verification is completed, the business person uploads the verification result information to the server on the business person's client, and the server receives the verification result information sent by the business person's client.
[0053] Optionally, the verification result information can confirm the alarm status of the drainage network to be verified and send the verification result information to the server. This verification result information can confirm that the alarm information is correct and the specific abnormal situation of the drainage network to be verified, such as verifying whether there is any illegal discharge in the drainage network. If illegal discharge is found, the illegal discharge problem of the verified drainage network will be uploaded to the server as verification result information. Alternatively, the verification result can confirm that the alarm information is incorrect and the drainage network to be verified is normal. If so, the verification result of the normal drainage network to be verified will be uploaded to the server. Upon receiving the normal verification result information, the verification work order can be closed.
[0054] S202. Based on the verification results, determine the target maintenance personnel.
[0055] Optionally, upon receiving a report of an anomaly in the drainage network to be inspected, a target maintenance personnel is determined based on the identifier of the drainage network to be repaired. This target maintenance personnel can be those specified in the inspection results, such as directly designating maintenance personnel A to repair the drainage network. Alternatively, after receiving the inspection results, the server can automatically match a suitable target maintenance personnel to the drainage network to be repaired based on a preset configuration table. This preset configuration table can include information such as the relationship between the monitoring area and the maintenance personnel's identifier, as well as the maintenance personnel's shift schedule.
[0056] S203. Send a repair work order to the target repairman's repairman client.
[0057] The maintenance work order may include an identifier for the drainage network to be maintained. The maintenance work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained and / or resolve the problem of illegal discharge.
[0058] Optionally, after identifying the target maintenance personnel, a maintenance work order is sent to their client. The target maintenance personnel then repair the drainage network to be repaired based on the identifier of the network in the received work order. Specifically, the source of any illegal discharge from the drainage network to be repaired can be traced to determine if it is a corporate discharge outlet. If it is, the responsible party for the pollution source is supervised to rectify the situation. If the network itself is damaged, the illegally discharging drainage network is repaired, and the repair results are sent back to the server. The corresponding salesperson confirms whether the repair is satisfactory. If the repair is satisfactory, a satisfactory repair result is sent back to the server. If the repair is unsatisfactory, an unsatisfactory repair result is sent to the target maintenance personnel's client, prompting the maintenance personnel to continue repairing until the repair result is satisfactory. Once the satisfactory repair result is received, it is sent back to the server. After receiving the satisfactory repair result, the manager's client closes the verification work order.
[0059] Figure 4 A flowchart illustrating another drainage network monitoring and processing method provided in this application embodiment is shown below. Figure 4 As shown, after sending the alarm information to the administrator's client in step S103 above, it may also include: S301: Receives dispatch instructions sent by the administrator's client.
[0060] The dispatch instruction may include the identifier of the drainage network to be confirmed.
[0061] Optionally, when the manager receives an alarm message and is unable to remotely determine the abnormality of the drainage network to be confirmed through information such as time and frequency monitoring, the manager can directly send a dispatch instruction through the manager's client, so that the maintenance personnel can confirm the drainage network to be confirmed according to the identifier of the drainage network to be confirmed in the dispatch instruction.
[0062] S302. Send a dispatch instruction to the maintenance personnel's client.
[0063] The dispatch instruction is used to instruct the maintenance personnel executing the dispatch instruction to confirm the abnormal information of the drainage pipe network to be confirmed. The maintenance personnel who receive the dispatch instruction can go to the site of the drainage pipe network to be confirmed to make a judgment and handle it. If the drainage pipe network is confirmed to be abnormal, it will be repaired; if it is confirmed that there is no problem, the confirmation result will also be fed back to the server.
[0064] S303, Receive the dispatch execution result sent by the maintenance personnel's client from the maintenance personnel who executed the dispatch instruction.
[0065] The execution result of this dispatch can be either an execution result indicating that the drainage network to be confirmed has an anomaly and has been repaired normally, or an execution result indicating that the drainage network to be confirmed has no anomalies.
[0066] S304. Send the dispatch execution result to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the dispatch execution result.
[0067] Optionally, after receiving the work order execution result from the maintenance personnel, the management personnel shall confirm the abnormal information of the drainage network based on the work order execution result and close the work order with the work order instruction.
[0068] In this embodiment, by dispatching emergency work orders for alarm information that cannot be remotely determined, and having emergency maintenance personnel carry out repairs, the efficiency of emergency measures for drainage pipe networks can be improved.
[0069] To more clearly illustrate the above management process for drainage pipe networks, through... Figure 5 To provide a complete explanation, Figure 5 This is a schematic diagram of a complete process for monitoring and processing a drainage network, provided in an embodiment of this application. The specific steps in the diagram have been described in detail in the above specific embodiments and will not be repeated here.
[0070] In addition to monitoring and managing the drainage network, this embodiment of the application can also implement an inspection process. This inspection process involves management personnel, inspection personnel, emergency response personnel, and maintenance personnel. These personnel can handle any abnormal situations encountered during the inspection process through their respective client applications. The details are explained below.
[0071] Figure 6 This is a schematic flowchart of a drainage pipe network treatment method provided in an embodiment of this application, as shown below. Figure 6 As shown, the method also includes: S401: Receive inspection plan information sent by the management personnel client.
[0072] The inspection plan information may include the area to be inspected and the identification of the drainage pipe network to be inspected.
[0073] Specifically, managers can send inspection plan information through the manager's client.
[0074] S402. Generate at least one inspection work order based on the inspection plan information.
[0075] Each inspection work order can correspond to one or more inspectors. The inspection work order can include the area to be inspected and the identification of the drainage pipe network to be inspected. The inspection work order is used to instruct the corresponding inspectors to inspect the drainage pipe network to be inspected.
[0076] S403. Send the inspection work order to the inspection personnel's client corresponding to each inspection work order.
[0077] Optionally, the server can generate an inspection work order and send it to the corresponding inspection personnel's client. After receiving the inspection work order, the inspection personnel will conduct on-site inspections of the area to be inspected and the drainage pipe network to be inspected. If any abnormalities are found, the abnormal information can be uploaded to the server as inspection data. For example, the abnormal drainage pipe network can be photographed for evidence, and the image information and the description of the event can be uploaded.
[0078] S404: Receive inspection data sent by the inspection personnel's client, parse the inspection data, and determine the event type corresponding to the inspection data.
[0079] The event types can include regular event types and emergency event types, and the inspection data can include the identification of the drainage network to be inspected and abnormal information of the drainage network to be inspected.
[0080] Optionally, when receiving inspection data sent by inspection personnel, the inspection data is parsed. Specifically, the judgment can be made based on the image information and abnormal description sent by the inspection personnel, and the corresponding event type can be determined based on the abnormal information in the inspection data.
[0081] S405. Generate an event work order corresponding to the event type based on the event type.
[0082] The event work order may include an identifier for the drainage network to be repaired.
[0083] Optionally, if it is determined that the inspection data sent by the inspection personnel is indeed a routine event type, a routine event work order is generated; if it is determined that the inspection data sent by the inspection personnel is an emergency event type, an emergency event work order is generated.
[0084] S406. Send the event work order to the maintenance personnel's client or the management personnel's client, depending on the event type.
[0085] Optionally, the sender of an event work order may differ depending on the event type. The recipient of the event work order can be either a maintenance worker or an administrator.
[0086] Optionally, the step S406 above, which involves sending the event work order to the maintenance personnel's client or the management personnel's client based on the event type, may include: Optionally, if the event type is a regular event type, a regular event work order is sent to the maintenance personnel's client corresponding to the regular event type; if the event type is an emergency event type, an emergency event work order is sent to the management personnel's client.
[0087] Optionally, if the event type is a regular event type, a regular event work order will be sent to the maintenance personnel's client corresponding to the regular event type. This may include: Optionally, if the event type is a regular event type, the target maintenance personnel are determined based on the inspection data. The inspection data includes the identification of the drainage network with inspection abnormalities, that is, the identification of the drainage network to be repaired. The target maintenance personnel can be one maintenance personnel or multiple maintenance personnel.
[0088] Optionally, a routine event work order can be sent to the target maintenance personnel's maintenance personnel client. The routine event work order may include an identifier of the drainage network to be maintained. The routine event work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained.
[0089] Optionally, when the target maintenance personnel receive a routine event work order, they perform maintenance on the drainage pipe network to be maintained. After the maintenance is completed, they send the maintenance results to the server. After the administrator receives the maintenance completion results, the routine event work order is closed.
[0090] Figure 7 A schematic flowchart of another drainage network treatment method provided in this application embodiment is shown below. Figure 7 As shown, after sending the emergency event ticket to the administrator's client, the process may also include: S501: Receive confirmation information sent by the administrator's client.
[0091] The information to be confirmed may include the identifier of the drainage network to be confirmed and the level of the emergency event work order. The emergency event may include multiple levels of emergency event work orders, such as Level 1 emergency event work orders, Level 2 emergency event work orders, Level 3 emergency event work orders, etc. The Level 1 emergency event work order can be set to have the highest emergency level, the Level 2 emergency event work order to have the next highest emergency level, and so on.
[0092] Optionally, managers can obtain abnormal information about the drainage network to be checked uploaded by the inspectors through the identifier of the drainage network to be checked. Based on the abnormal information uploaded by the inspectors, the level of the emergency event work order can be confirmed. If the situation is serious and urgent, the emergency event level can be confirmed as Level 1.
[0093] S502. Generate the corresponding scheduling request based on the information to be confirmed.
[0094] The dispatch request may include identification of the target emergency personnel, target emergency vehicles, target emergency supplies, and drainage pipe network to be repaired.
[0095] Optionally, the server can generate a corresponding dispatch request based on the level of the emergency event work order in the above-mentioned information to be confirmed. Then, different target emergency personnel, target emergency vehicles, and target emergency supplies can be determined according to the level of the emergency event work order to repair the drainage pipe network to be repaired.
[0096] S503: Send a dispatch request to the target emergency personnel's client to execute the dispatch request.
[0097] The dispatch request is used to instruct the target emergency personnel executing the dispatch request to repair the drainage network under repair.
[0098] S504: Receive the scheduling execution result sent by the target emergency personnel client that executed the scheduling request.
[0099] Optionally, when the target emergency personnel receive a dispatch request, they carry out emergency repairs on the drainage pipe network to be repaired and send the repair results back to the server, which then receives the dispatch execution results.
[0100] S505. Send the scheduling execution result to the management personnel client so that the management personnel can close the emergency event work order based on the scheduling execution result.
[0101] Optionally, after receiving feedback from the target emergency personnel that the repair has been completed, the administrator client can close the emergency work order to indicate that the emergency has been resolved.
[0102] To more clearly illustrate the above management process for drainage pipe networks, through... Figure 8 To provide a complete explanation, Figure 8 This is a complete flowchart of a drainage network treatment method provided in an embodiment of this application. The steps in the figure have been specifically described in the above specific embodiments and will not be repeated here.
[0103] Figure 9 This is a schematic diagram of an apparatus for a drainage network monitoring and processing method provided in an embodiment of this application, as shown below. Figure 9 As shown, the device includes: The acquisition module 601 is used to acquire monitoring data reported by pipeline monitoring equipment set in the monitoring area; The determination module 602 is used to parse the monitoring data and determine whether there is any abnormality in the drainage pipe network of the monitoring area; The sending module 603 is used to send alarm information to the management personnel client if the alarm information is true, so that the management personnel can confirm the abnormal information of the drainage network based on the alarm information. The receiving module 604 is used to receive the verification information sent by the management personnel client. The verification information includes: the identifier of the business person responsible for the verification and the identifier of the drainage network to be verified. The generation module 605 is used to generate at least one verification work order based on the verification information. Each verification work order corresponds to one or more salespersons. The verification work order includes an identifier of the drainage pipe network to be verified. The verification work order is used to instruct the corresponding salesperson to verify the drainage pipe network to be verified. The sending module 603 is used to send the verification work order to the salesperson's client corresponding to each verification work order.
[0104] Optionally, the sending module 603 is specifically used for: Receive verification result information sent by the salesperson's client, the verification result information including: the identifier of the drainage pipe network that needs to be repaired after verification; Based on the verification results, the target maintenance personnel were identified; A maintenance work order is sent to the maintenance personnel's client. The maintenance work order includes the identifier of the drainage network to be maintained. The maintenance work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained and / or resolve the problem of illegal discharge.
[0105] Optionally, the sending module 603 is specifically used for: Receive a dispatch instruction sent by the management personnel client, the dispatch instruction including an identifier of the drainage network to be confirmed; The dispatch instruction is sent to the maintenance personnel's client to instruct the maintenance personnel executing the dispatch instruction to confirm the abnormal information of the drainage network to be confirmed. The dispatch execution result is sent by the maintenance personnel client to the maintenance personnel who executed the dispatch instruction; The dispatch execution result is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the dispatch execution result.
[0106] Optionally, the generation module 605 is specifically used for: Receive inspection plan information sent by the management personnel client; Based on the inspection plan information, at least one inspection work order is generated. Each inspection work order corresponds to one or more inspection personnel. The inspection work order includes the area to be inspected and the identification of the drainage pipe network to be inspected. The inspection work order is used to instruct the corresponding inspection personnel to inspect the drainage pipe network to be inspected. Send the inspection work order to the inspection personnel corresponding to the inspection work order; The system receives inspection data sent by the inspection personnel's client, parses the inspection data, and determines the event type corresponding to the inspection data. The event type includes regular event types and emergency event types. An event work order corresponding to the event type is generated based on the event type, and the event work order includes the identifier of the drainage pipe network to be repaired; The event work order is sent to the maintenance personnel's client or the management personnel's client corresponding to the event work order, based on the event type.
[0107] Optionally, the sending module 603 is specifically used to: if the event type is a regular event type, send the regular event work order to the maintenance personnel client of the maintenance personnel corresponding to the regular event type; If the event type is an emergency event, an emergency event work order is sent to the administrator's administrator client.
[0108] Optionally, the sending module 603 is specifically used for: If the event type is a routine event type, the target maintenance personnel are determined based on the inspection data; A routine event work order is sent to the maintenance personnel's client. The routine event work order includes an identifier of the drainage network to be repaired. The routine event work order is used to instruct the target maintenance personnel to repair the drainage network to be repaired.
[0109] Optionally, the sending module 603 is specifically used for: Receive confirmation information sent by the management personnel client, the confirmation information including the identifier of the drainage network to be confirmed and the level of the emergency event work order; A corresponding dispatch request is generated based on the information to be confirmed. The dispatch request includes the identifiers of the target emergency personnel, target emergency vehicles, target emergency supplies, and the drainage pipe network to be repaired. The dispatch request is sent to the target emergency personnel client of the target emergency personnel executing the dispatch request. The dispatch request is used to instruct the target emergency personnel executing the dispatch request to repair the drainage pipe network to be repaired. Receive the scheduling execution result sent by the target emergency personnel client that executed the scheduling request; The scheduling execution result is sent to the administrator's client so that the administrator can close the emergency event work order based on the scheduling execution result.
[0110] Figure 10 This is a structural block diagram of an electronic device 700 provided in an embodiment of this application. (See diagram below.) Figure 5 As shown, the electronic device may include: a processor 701 and a memory 702.
[0111] Optionally, a bus 703 may also be included, wherein the memory 702 is used to store machine-readable instructions executable by the processor 701. When the electronic device 700 is running, the processor 701 and the memory 702 communicate via the bus 703. When the machine-readable instructions are executed by the processor 701, the method steps in the above method embodiments are performed.
[0112] This application also provides a computer-readable storage medium storing a computer program, which, when run by a processor, executes the method steps described in the above-described drainage network monitoring and processing method embodiment.
[0113] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems and devices described above can be referred to the corresponding processes in the method embodiments, and will not be repeated here. In the several embodiments provided in this application, it should be understood that the disclosed systems, devices, and methods can be implemented in other ways. The device embodiments described above are merely illustrative. For example, the division of modules is only a logical functional division, and in actual implementation, there may be other division methods. Furthermore, multiple modules or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed mutual coupling or direct coupling or communication connection can be through some communication interfaces; the indirect coupling or communication connection of devices or modules can be electrical, mechanical, or other forms.
[0114] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. If the functions are implemented as software functional units and sold or used as independent products, they can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this application. The aforementioned storage medium includes: USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, optical disks, and other media capable of storing program code.
[0115] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application.
Claims
1. A method for monitoring and processing drainage pipe networks, characterized in that, The method includes: Obtain monitoring data reported by pipeline monitoring equipment installed within the monitoring area; The monitoring data is analyzed to determine whether there are any abnormalities in the drainage pipe network of the monitoring area; If so, an alarm message is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the alarm message; The system receives verification information sent by the management personnel client, which includes: the identifier of the salesperson responsible for the verification and the identifier of the drainage network to be verified; Based on the verification information, at least one verification work order is generated. Each verification work order corresponds to one or more salespersons. The verification work order includes the identifier of the drainage pipe network to be verified. The verification work order is used to instruct the corresponding salesperson to verify the drainage pipe network to be verified. The verification work order is sent to the salesperson's client corresponding to each verification work order.
2. The drainage pipe network monitoring and processing method according to claim 1, characterized in that, After sending the verification work order to the salesperson's client corresponding to each verification work order, the process also includes: Receive verification result information sent by the salesperson's client, the verification result information including: the identifier of the drainage pipe network that needs to be repaired after verification; Based on the verification results, the target maintenance personnel were identified; A maintenance work order is sent to the maintenance personnel's client. The maintenance work order includes the identifier of the drainage network to be maintained. The maintenance work order is used to instruct the target maintenance personnel to maintain the drainage network to be maintained and / or resolve the problem of illegal discharge.
3. The drainage pipe network monitoring and processing method according to claim 1, characterized in that, After sending the alarm information to the administrator's client, the process also includes: Receive a dispatch instruction sent by the management personnel client, the dispatch instruction including an identifier of the drainage network to be confirmed; The dispatch instruction is sent to the maintenance personnel's client to instruct the maintenance personnel executing the dispatch instruction to confirm the abnormal information of the drainage network to be confirmed. The dispatch execution result is sent by the maintenance personnel client to the maintenance personnel who executed the dispatch instruction; The dispatch execution result is sent to the management personnel's client so that the management personnel can confirm the abnormal information of the drainage network based on the dispatch execution result.
4. The drainage pipe network monitoring and processing method according to claim 1, characterized in that, The method further includes: Receive inspection plan information sent by the management personnel client; Based on the inspection plan information, at least one inspection work order is generated. Each inspection work order corresponds to one or more inspection personnel. The inspection work order includes the area to be inspected and the identification of the drainage pipe network to be inspected. The inspection work order is used to instruct the corresponding inspection personnel to inspect the drainage pipe network to be inspected. Send the inspection work order to the client of the inspection personnel corresponding to the inspection work order; The system receives inspection data sent by the inspection personnel's client, parses the inspection data, and determines the event type corresponding to the inspection data. The event type includes regular event types and emergency event types. An event work order corresponding to the event type is generated based on the event type, and the event work order includes the identifier of the drainage pipe network to be repaired; The event work order is sent to the maintenance personnel's client or the management personnel's client corresponding to the event work order, based on the event type.
5. The drainage pipe network monitoring and processing method according to claim 4, characterized in that, Sending the event work order to the maintenance personnel or emergency personnel corresponding to the event work order of the event type includes: if the event type is a regular event type, then sending the regular event work order to the maintenance personnel client of the maintenance personnel corresponding to the regular event type; If the event type is an emergency event, an emergency event work order is sent to the administrator's administrator client.
6. The drainage pipe network monitoring and processing method according to claim 5, characterized in that, If the event type is a regular event type, then send the regular event work order to the maintenance personnel's client corresponding to the regular event type, including: If the event type is a routine event type, the target maintenance personnel are determined based on the inspection data; A routine event work order is sent to the maintenance personnel's client. The routine event work order includes an identifier of the drainage network to be repaired. The routine event work order is used to instruct the target maintenance personnel to repair the drainage network to be repaired.
7. The drainage pipe network monitoring and processing method according to claim 5, characterized in that, After sending an emergency event ticket to the administrator's client, it also includes: Receive confirmation information sent by the management personnel client, the confirmation information including the identifier of the drainage network to be confirmed and the level of the emergency event work order; A corresponding dispatch request is generated based on the information to be confirmed. The dispatch request includes the identifiers of the target emergency personnel, target emergency vehicles, target emergency supplies, and the drainage pipe network to be repaired. The dispatch request is sent to the target emergency personnel client of the target emergency personnel executing the dispatch request. The dispatch request is used to instruct the target emergency personnel executing the dispatch request to repair the drainage pipe network to be repaired. Receive the scheduling execution result sent by the target emergency personnel client that executed the scheduling request; The scheduling execution result is sent to the administrator's client so that the administrator can close the emergency event work order based on the scheduling execution result.
8. A drainage pipe network monitoring and processing device, characterized in that, include: The acquisition module is used to acquire monitoring data reported by pipeline monitoring equipment set up within the monitoring area; The determination module is used to parse the monitoring data and determine whether there are any abnormalities in the drainage pipe network of the monitoring area; The sending module is used to send alarm information to the management personnel client if the alarm information is present, so that the management personnel can confirm the abnormal information of the drainage network based on the alarm information. The receiving module is used to receive verification information sent by the management personnel client. The verification information includes: the identifier of the business person responsible for the verification and the identifier of the drainage network to be verified. The generation module is used to generate at least one verification work order based on the verification information. Each verification work order corresponds to one or more salespersons. The verification work order includes the identifier of the drainage pipe network to be verified. The verification work order is used to instruct the corresponding salesperson to verify the drainage pipe network to be verified. The sending module is used to send the verification work order to the salesperson's client corresponding to each verification work order.
9. An electronic device, characterized in that, It includes a memory and a processor, the memory storing a computer program executable by the processor, and the processor executing the computer program to implement the steps of the drainage network monitoring and processing method according to any one of claims 1-7.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that, when executed by a processor, performs the steps of the drainage network monitoring and processing method as described in any one of claims 1-7.