Remote monitoring and management method and system for irrigation and drainage pump station

By combining remote monitoring with the collaborative work of patrol personnel, the status of irrigation and drainage pumping station equipment can be assessed in real time, solving the problem of low efficiency of manual duty and achieving rapid response and effective management.

CN116357556BActive Publication Date: 2026-05-08HUAXIANG XIANGNENG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HUAXIANG XIANGNENG TECHNOLOGY CO LTD
Filing Date
2023-03-15
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing irrigation and drainage pumping stations require manual operation, which leads to low efficiency in handling abnormal problems and affects normal operation.

Method used

By acquiring image information and equipment operating status of the pumping and drainage areas, the system can monitor equipment operation in real time, identify abnormal equipment, and remotely call on-duty personnel for maintenance. Combined with patrol personnel's inspections, it can quickly respond to abnormal situations.

Benefits of technology

It enables rapid response and effective management of irrigation and drainage pumping stations, ensures normal equipment operation, and improves the efficiency of handling abnormal problems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of remote guard monitoring management method and system of irrigation and drainage pumping station, method includes: respectively obtaining first image information, second image information and each first real-time running state;According to first image information and second image information, the predicted running state of each device is determined;According to each predicted running state and each first real-time running state, it is judged whether each device is normal operation currently;When any device is not normal operation, at least one abnormal device is determined according to each device, each first real-time running state and each preset running state, and then device information is determined according to each abnormal device;Obtain guard personnel information, and send maintenance information and each device information according to guard personnel information.Through real-time monitoring pumping area, drainage area and the actual running state of each device, it is judged whether each device is normal operation, and in the case of not normal operation, call guard personnel to maintain, realize remote guard management irrigation and drainage pumping station, ensure the operation of irrigation and drainage pumping station.
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Description

Technical Field

[0001] This invention relates to the field of pumping station technology, and in particular to a remote monitoring and management method and system for irrigation and drainage pumping stations. Background Technology

[0002] An irrigation and drainage pumping station is a complex of pumping devices, inlet and outlet structures, pump houses, and auxiliary facilities installed for irrigation and drainage. Based on their installation and usage, irrigation and drainage pumping stations are classified into three types: fixed, semi-fixed, and mobile. Existing irrigation and drainage pumping stations require on-duty patrol personnel to conduct fixed-line inspections of the entire station to ensure its normal operation. Patrol personnel must report on the conditions of the pumping and drainage site, as well as the actual operating status of the switch cabinets, distribution boxes, and pumps, to ensure the normal operation of the entire station. In practice, the patrol personnel conduct inspections, report any abnormalities discovered, and then professional maintenance personnel perform maintenance. This process requires multiple transmissions of abnormal information, and manual on-duty personnel result in slow problem-solving speeds, affecting the normal operation of the irrigation and drainage pumping station. Summary of the Invention

[0003] The main objective of this invention is to provide a remote monitoring and management method and system for irrigation and drainage pumping stations, aiming to solve the problem of low efficiency in handling abnormal issues by manual monitoring.

[0004] To achieve the above objectives, the present invention provides a remote monitoring and management method for irrigation and drainage pumping stations, comprising:

[0005] The first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are acquired respectively.

[0006] Based on the first image information and the second image information, the predicted operating status of each device is determined;

[0007] Based on the predicted operating status and the first real-time operating status, it is determined whether each of the devices is currently operating normally;

[0008] When each of the devices is operating normally, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each of the devices are executed respectively.

[0009] When any of the devices is not operating normally, at least one abnormal device is determined based on each of the devices, each of the first real-time operating states and each of the preset operating states, and then device information is determined based on each of the abnormal devices.

[0010] Obtain the information of the on-duty personnel, and send maintenance information and information of each device to the corresponding on-duty terminal based on the information of the on-duty personnel.

[0011] Preferably, after the step of determining at least one abnormal device based on each of the devices, each of the first real-time operating states, and each of the preset operating states when any of the devices is not operating normally, and then determining device information based on each of the abnormal devices, the method includes:

[0012] Obtain patrol personnel information, and send inspection information and information of each device to the corresponding patrol terminal based on the patrol personnel information;

[0013] The system obtains feedback information and the second real-time operating status of the abnormal device through each patrol terminal, and determines whether the abnormal device has resumed normal operation based on the feedback information and the second real-time operating status.

[0014] Before the step of obtaining the on-duty personnel information and sending maintenance information and each of the device information to the corresponding on-duty terminal based on the on-duty personnel information, the following steps are included:

[0015] When the malfunctioning equipment resumes normal operation, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are executed after the first preset time period.

[0016] If any of the malfunctioning devices fails to return to normal operation, the process of obtaining the on-duty personnel information is executed, and maintenance information and information of each device are sent to the corresponding on-duty terminal based on the on-duty personnel information.

[0017] Preferably, the step of obtaining patrol personnel information and sending inspection information and equipment information based on the patrol personnel information includes:

[0018] Obtain information on patrol personnel, patrol routes, and current time;

[0019] Determine the device location information based on each of the aforementioned abnormal devices;

[0020] Based on the patrol personnel information, the patrol route, the current time, and the device location information, determine the information of the first person closest to the abnormal device;

[0021] Based on the first personnel information, the inspection information, the information of each device, and the location information of each device are sent to the corresponding patrol terminal.

[0022] Preferably, after the step of determining the first person closest to the abnormal device based on the patrol personnel information, the patrol route, the current time, and the device location information, the method further includes:

[0023] Based on the location information of each device and the first personnel information, a first inspection route is determined;

[0024] The step of sending the inspection information, each of the device information, and each of the device location information to the corresponding patrol terminal based on the first personnel information includes:

[0025] Based on the first personnel information, the inspection information, the first inspection route, and the information of each of the devices are sent to the corresponding patrol terminal, wherein the first inspection route includes the location information of each of the devices.

[0026] Preferably, after the step of determining the device location information based on each of the abnormal devices, the process includes:

[0027] Determine whether the current number of device location information items is greater than a preset number:

[0028] When the number of device location information is less than the preset number, the step of determining the first person information closest to the abnormal device is executed based on the patrol personnel information, the patrol route, the current time, and the device location information.

[0029] When the number of device location information exceeds a preset number, the information of each second person is determined based on the patrol personnel information;

[0030] Based on the patrol route, the information of each second person, and the location information of each device, determine the second inspection route for each second person.

[0031] After the step of sending the inspection information, each of the device information and each of the device location information according to the first personnel information, the method includes:

[0032] Based on the information of each of the second personnel, the inspection information, the second inspection route, and the information of each of the devices are sent to the corresponding patrol terminal.

[0033] Preferably, the step of determining abnormal devices based on each device when any device is not operating normally, and then determining device information based on each abnormal device, includes:

[0034] When any device is not operating normally, real-time images of each device are acquired, and the safety of each device is determined based on the real-time images.

[0035] When the real-time images are running safely, abnormal devices are identified based on each device, and then device information is determined based on each abnormal device.

[0036] When any of the real-time images is unsafe to operate, dangerous equipment is identified based on the real-time images, and dangerous areas are identified based on the dangerous equipment.

[0037] Warning information is sent to the central control center based on the dangerous equipment and the dangerous area.

[0038] Preferably, after the step of sending warning information to the central control center based on the hazardous equipment and the hazardous area, the method further includes:

[0039] Determine the safe area based on the described danger area;

[0040] Based on the security zone and each of the devices, determine the security devices located within the security zone;

[0041] The safety location information is determined based on the safety equipment, and each of the safety location information is sent to the central control center.

[0042] Furthermore, to achieve the above objectives, the present invention also provides a remote monitoring and management system for irrigation and drainage pumping stations, characterized in that the system is applied to any of the aforementioned remote monitoring and management methods for irrigation and drainage pumping stations, and the system includes a server, a processing module, and at least one monitoring terminal, wherein the server is signal-connected to the processing module and each of the monitoring terminals respectively.

[0043] The server is used to acquire first image information of the pumping area, second image information of the drainage area, and first real-time operating status of each device; determine the predicted operating status of each device based on the first image information and the second image information; acquire the information of the on-duty personnel; and send maintenance information and information of each device to the corresponding on-duty terminal based on the information of the on-duty personnel.

[0044] The processing module is used to determine whether each of the devices is operating normally based on the predicted operating status and the first real-time operating status; when each of the devices is operating normally, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each of the devices are executed; when any of the devices is not operating normally, at least one abnormal device is determined based on each of the devices, the first real-time operating status, and the preset operating status, and then device information is determined based on each abnormal device.

[0045] Each of the aforementioned duty terminals is used to receive the maintenance information and the information of each of the aforementioned devices, respectively.

[0046] By monitoring the pumping area, drainage area, and the actual operating status of each piece of equipment in real time, and then judging whether each piece of equipment is operating normally based on the preset status and the actual operating status, and calling on-duty personnel for maintenance in case of abnormal operation, remote on-duty management of irrigation and drainage pumping stations is realized, enabling rapid response and inspection, and effectively ensuring the normal operation of irrigation and drainage pumping stations. Attached Figure Description

[0047] Figure 1 This is a flowchart illustrating a remote monitoring and management method for irrigation and drainage pumping stations according to the present invention.

[0048] Figure 2 This is a schematic diagram of the functional modules of a remote monitoring and management system for irrigation and drainage pumping stations according to the present invention.

[0049] The objectives, features, and advantages of this invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0050] It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0051] In the following description, the use of suffixes such as "module," "part," or "unit" to denote elements is solely for the purpose of illustrative purposes and has no specific meaning in itself. Therefore, "module," "part," or "unit" may be used interchangeably.

[0052] Please see Figure 1 To achieve the above objectives, the first embodiment of the present invention provides a remote monitoring and management method for irrigation and drainage pumping stations, comprising:

[0053] Step S10: Obtain the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device;

[0054] Step S20: Determine the predicted operating status of each device based on the first image information and the second image information;

[0055] Step S30: Based on each predicted operating status and each first real-time operating status, determine whether each device is currently operating normally;

[0056] Step S40: When each device is operating normally, after the first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are executed respectively.

[0057] Step S50: When any device is not operating normally, at least one abnormal device is determined based on each device, each first real-time operating status and each preset operating status, and then device information is determined based on each abnormal device.

[0058] Step S60: Obtain the information of the on-duty personnel, and send maintenance information and information of each device to the corresponding on-duty terminal based on the information of the on-duty personnel.

[0059] By monitoring the pumping area, drainage area, and the actual operating status of each piece of equipment in real time, and then judging whether each piece of equipment is operating normally based on the preset status and the actual operating status, and calling on-duty personnel for maintenance in case of abnormal operation, remote on-duty management of irrigation and drainage pumping stations is realized, enabling rapid response and inspection, and effectively ensuring the normal operation of irrigation and drainage pumping stations.

[0060] Specifically, the first image data is an image of the pumping operation in the pumping area; the second image data is the second image data of the drainage area; and the equipment information is the basic information of each piece of equipment (for example, when the equipment is a water pump, the basic information includes at least the pump model, current flow rate, and running time).

[0061] Specifically, the first preset time period is a set value, which can be set to 5 minutes or 30 minutes, etc., according to the actual situation.

[0062] In the second embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on the first embodiment, after step S50, the method includes:

[0063] Step S51: Obtain patrol personnel information, and send inspection information and equipment information to the corresponding patrol terminal based on the patrol personnel information;

[0064] Step S52: Obtain feedback information and the second real-time operating status of the abnormal device through each patrol terminal; and determine whether the abnormal device has resumed normal operation based on the feedback information and the second real-time operating status.

[0065] Before step S60, the following are included:

[0066] Step S61: When the malfunctioning equipment resumes normal operation, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are executed respectively.

[0067] Step S62: If any malfunctioning device fails to return to normal operation, proceed to step S60.

[0068] First, patrol personnel conduct inspections and handle simple issues. If the patrol personnel are unable to handle the abnormal equipment, then the on-duty personnel will handle it.

[0069] In the third embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on the second embodiment, step S51 includes:

[0070] Step S53: Obtain patrol personnel information, patrol route, and current time;

[0071] Step S54: Determine the device location information based on each abnormal device;

[0072] Step S55: Based on the patrol personnel information, patrol route, current time, and equipment location information, determine the information of the first person closest to the abnormal equipment;

[0073] Step S56: Send inspection information, equipment information and equipment location information to the corresponding patrol terminal based on the first personnel information.

[0074] Multiple patrol teams are typically stationed within irrigation and drainage pumping stations. Based on the current time and patrol route, the team selects the nearest personnel for inspection, which effectively improves maintenance efficiency.

[0075] In the fourth embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on the third embodiment, after step S55, the method includes:

[0076] Step S57: Determine the first inspection route based on the location information of each device and the information of the first personnel;

[0077] Step S58, the step of sending inspection information, equipment information, and equipment location information based on the first personnel information, includes:

[0078] Step S59: Send inspection information, first inspection route and information of each device to the corresponding patrol terminal based on the first personnel information, wherein the first inspection route includes the location information of each device.

[0079] The first inspection route is formed based on the equipment location information and the first personnel information, which effectively standardizes the inspection process and improves inspection efficiency.

[0080] Specifically, step S57 includes:

[0081] Step S60: Determine the initial inspection plan based on the information of each device; determine the arrangement order of the device location information based on the information of each device and the location information of each device.

[0082] Step S61: Determine the first inspection route based on the arrangement order and the initial inspection plan.

[0083] By providing patrol personnel with maintenance plans for inspecting each device and a sequence of equipment based on its actual condition, a primary inspection route is formed, effectively improving the efficiency of the entire operation and accelerating the inspection speed.

[0084] In the fifth embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on the third embodiment, after step S54, the method includes:

[0085] Step S510: Determine whether the current number of location information for each device is greater than a preset number.

[0086] Step S511: When the number of location information for each device is less than the preset number, proceed to step S55.

[0087] Step S512: When the number of location information for each device is greater than the preset number, determine the information of each second person based on the patrol personnel information;

[0088] Step S513: Determine the second inspection route for each second person based on the patrol route, the information of each second person, and the location information of each device;

[0089] After step S56, the following is included:

[0090] Step S514: Based on the information of each second person, send the inspection information, the second inspection route, and the information of each device to the corresponding patrol terminal.

[0091] Based on the number of abnormal devices, it is determined whether multiple staff members are needed for inspection. Different inspection routes are provided to each staff member, which reduces inspection time.

[0092] Specifically, the first inspection route includes each of the second inspection routes.

[0093] In the sixth embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on any one of the second to fifth embodiments, step S50 includes:

[0094] Step S70: When any device is not operating normally, acquire real-time images of each device, and determine whether each device is operating safely based on the real-time images.

[0095] Step S71: When each real-time image is running safely, identify the abnormal device based on each device, and then determine the device information based on each abnormal device.

[0096] Step S72: When any real-time image is unsafe to operate, identify dangerous equipment based on the real-time image, and identify dangerous areas based on the dangerous equipment;

[0097] Step S73: Send warning information to the central control center based on the hazardous equipment and hazardous area.

[0098] The system acquires real-time images of each device to determine if any abnormal device poses a safety hazard (e.g., obvious sparks, electric arcs, or smoke). Once a safety hazard is identified, an alert is issued to alert the central control center to dispatch professionals for handling.

[0099] Specifically, after step S73, the following steps are included:

[0100] Step S74: Obtain the first image of the danger zone and determine whether there are non-rescue personnel in the first image;

[0101] Step S75: When non-rescue personnel are present in the first image, obtain information on the non-rescue personnel and issue an evacuation message;

[0102] Step S76: When there are no non-rescue personnel in the first image, step S74 is executed after the second preset time period.

[0103] Real-time monitoring of dangerous areas is crucial to prevent unauthorized personnel from entering and to avoid injuries.

[0104] Specifically, step S75 includes:

[0105] Step S76: When there are non-rescue personnel in the first image, determine whether the non-rescue personnel are staff members;

[0106] Step S77: When the rescuers are staff members, obtain information on non-rescue personnel and issue an evacuation message;

[0107] Step S78: When the rescuers are not staff members, send rescue information and first images to the rescuers.

[0108] To the greatest extent possible, ensure the safety of personnel and adhere to the principle of rescuing people before rescuing property.

[0109] Specifically, the staff includes rescue personnel, duty personnel, and rescue workers.

[0110] In the seventh embodiment of the remote monitoring and management method for irrigation and drainage pumping stations proposed in this invention, based on the sixth embodiment, after step S73, the method includes:

[0111] Step S80: Determine the safe area based on the hazardous area;

[0112] Step S81: Based on the safety zone and each device, determine the safety devices located within the safety zone;

[0113] Step S82: Determine the safety location information based on the safety equipment and send each safety location information to the central control center.

[0114] Specifically, after step S82, the following steps are included:

[0115] Step S83: Obtain a second image within the safe area and determine whether there are non-staff members within the second image.

[0116] Step S84: When there are no non-staff members in the second image, step S83 is executed after a third preset time period.

[0117] Step S85: When there are non-staff members in the second image, determine the location of the non-staff members, determine the search route based on the location of the non-staff members, and send the rescue route to the central control center.

[0118] The central control center persuades non-staff members to leave the safe area to prevent them from entering the dangerous area.

[0119] Please see Figure 2 A remote monitoring and management system for irrigation and drainage pumping stations is disclosed. The system is applied to any of the aforementioned remote monitoring and management methods for irrigation and drainage pumping stations. The system includes a server, a processing module, and at least one monitoring terminal. The server is signal-connected to both the processing module and each monitoring terminal.

[0120] The server is used to acquire first image information of the pumping area, second image information of the drainage area, and first real-time operating status of each device; determine the predicted operating status of each device based on the first image information and the second image information; acquire the information of the on-duty personnel; and send maintenance information and information of each device to the corresponding on-duty terminal based on the information of the on-duty personnel.

[0121] The processing module is used to determine whether each of the devices is operating normally based on the predicted operating status and the first real-time operating status; when each of the devices is operating normally, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each of the devices are executed; when any of the devices is not operating normally, at least one abnormal device is determined based on each of the devices, the first real-time operating status, and the preset operating status, and then device information is determined based on each abnormal device.

[0122] Each of the aforementioned duty terminals is used to receive the maintenance information and the information of each of the aforementioned devices, respectively.

[0123] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product is stored in a computer-readable storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above, and includes several instructions to cause a terminal device to enter the methods described in the various embodiments of the present invention.

[0124] In the description of this specification, references to terms such as "one embodiment," "another embodiment," "other embodiments," or "first embodiment to Xth embodiment," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, method steps, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0125] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or system. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or system that includes that element.

[0126] The sequence numbers of the above embodiments of the present invention are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0127] The above are merely preferred embodiments of the present invention and do not limit the scope of the patent. Any equivalent structural or procedural transformations made based on the description and drawings of the present invention, or direct or indirect applications in other related technical fields, are similarly included within the scope of patent protection of the present invention.

Claims

1. A method for remote monitoring and management of irrigation and drainage pumping stations, characterized in that, include: The first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are acquired respectively. Based on the first image information and the second image information, the predicted operating status of each device is determined; Based on the predicted operating status and the first real-time operating status, it is determined whether each of the devices is currently operating normally; When each of the devices is operating normally, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each of the devices are executed respectively. When any of the devices is not operating normally, at least one abnormal device is determined based on each of the devices, each of the first real-time operating states and each of the preset operating states, and then device information is determined based on each of the abnormal devices. Obtain the information of the on-duty personnel, and send maintenance information and information of each device to the corresponding on-duty terminal based on the on-duty personnel information; When any of the devices is not operating normally, after determining at least one abnormal device based on each of the devices, each of the first real-time operating states, and each of the preset operating states, and then determining device information based on each of the abnormal devices, the process includes: Obtain patrol personnel information, and send inspection information and information of each device to the corresponding patrol terminal based on the patrol personnel information; The system obtains feedback information and the second real-time operating status of the abnormal device through each patrol terminal, and determines whether the abnormal device has resumed normal operation based on the feedback information and the second real-time operating status. Before the step of obtaining the on-duty personnel information and sending maintenance information and each of the device information to the corresponding on-duty terminal based on the on-duty personnel information, the following steps are included: When the malfunctioning equipment resumes normal operation, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each device are executed after the first preset time period. If any of the malfunctioning devices fails to return to normal operation, the process of obtaining the on-duty personnel information is executed, and maintenance information and information of each device are sent to the corresponding on-duty terminal based on the on-duty personnel information.

2. The remote monitoring and management method for irrigation and drainage pumping stations according to claim 1, characterized in that, The steps of obtaining patrol personnel information and sending inspection information and equipment information based on the patrol personnel information include: Obtain information on patrol personnel, patrol routes, and current time; Determine the device location information based on each of the aforementioned abnormal devices; Based on the patrol personnel information, the patrol route, the current time, and the device location information, determine the information of the first person closest to the abnormal device; Based on the first personnel information, the inspection information, the information of each device, and the location information of each device are sent to the corresponding patrol terminal.

3. The remote monitoring and management method for irrigation and drainage pumping stations according to claim 2, characterized in that, After the step of determining the first person closest to the abnormal device based on the patrol personnel information, the patrol route, the current time, and the device location information, the following steps are included: Based on the location information of each device and the first personnel information, a first inspection route is determined; The step of sending the inspection information, each of the device information, and each of the device location information to the corresponding patrol terminal based on the first personnel information includes: Based on the first personnel information, the inspection information, the first inspection route, and the information of each of the devices are sent to the corresponding patrol terminal, wherein the first inspection route includes the location information of each of the devices.

4. The remote monitoring and management method for irrigation and drainage pumping stations according to claim 2, characterized in that, After determining the device location information based on each of the aforementioned abnormal devices, the process includes: Determine whether the current number of device location information items is greater than a preset number: When the number of device location information is less than the preset number, the step of determining the first person information closest to the abnormal device is executed based on the patrol personnel information, the patrol route, the current time, and the device location information. When the number of device location information exceeds a preset number, the information of each second person is determined based on the patrol personnel information; Based on the patrol route, the information of each of the second personnel, and the location information of each of the devices, a second inspection route for each of the second personnel information is determined; After the step of sending the inspection information, each of the device information and each of the device location information according to the first personnel information, the method includes: Based on the information of each of the second personnel, the inspection information, the second inspection route, and the information of each of the devices are sent to the corresponding patrol terminal.

5. A remote monitoring and management method for irrigation and drainage pumping stations according to any one of claims 1-4, characterized in that, The step of identifying abnormal devices based on the existing devices when any device is not operating normally, and then determining the information of each device based on the abnormal devices, includes: When any device is not operating normally, real-time images of each device are acquired, and the safety of each device is determined based on the real-time images. When the real-time images are running safely, abnormal devices are identified based on each device, and then device information is determined based on each abnormal device. When any of the real-time images is unsafe to operate, dangerous equipment is identified based on the real-time images, and dangerous areas are identified based on the dangerous equipment. Warning information is sent to the central control center based on the dangerous equipment and the dangerous area.

6. The remote monitoring and management method for irrigation and drainage pumping stations according to claim 5, characterized in that, After the step of sending warning information to the central control center based on the hazardous equipment and the hazardous area, the following steps are included: Determine the safe area based on the described danger area; Based on the security zone and each of the devices, determine the security devices located within the security zone; The safety location information is determined based on the safety equipment, and each of the safety location information is sent to the central control center.

7. A remote monitoring and management system for irrigation and drainage pumping stations, characterized in that, The system is used to implement the remote monitoring and management method for irrigation and drainage pumping stations according to any one of claims 1-6. The system includes a server, a processing module, and at least one monitoring terminal, wherein the server is signal-connected to the processing module and each of the monitoring terminals. The server is used to acquire first image information of the pumping area, second image information of the drainage area, and first real-time operating status of each device; and to determine the predicted operating status of each device based on the first image information and the second image information. Obtain the information of the on-duty personnel, and send maintenance information and information of each device to the corresponding on-duty terminal based on the on-duty personnel information; The processing module is used to determine whether each of the devices is operating normally based on the predicted operating status and the first real-time operating status; when each of the devices is operating normally, after a first preset time period, the steps of acquiring the first image information of the pumping area, the second image information of the drainage area, and the first real-time operating status of each of the devices are executed; when any of the devices is not operating normally, at least one abnormal device is determined based on each of the devices, the first real-time operating status, and the preset operating status, and then device information is determined based on each abnormal device. Each of the aforementioned duty terminals is used to receive the maintenance information and the information of each of the aforementioned devices, respectively.

Citation Information

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