Intelligent monitoring and early warning method, device and equipment and storage medium
The BIM platform processes urban ground information, automatically monitors and marks the collapse warning level, solving the problem of cumbersome acquisition process and susceptible to manual intervention in the existing technology, and achieving efficient and reliable early warning level acquisition.
Patent Information
- Application Number
- CN202510369111.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-07-11
AI Technical Summary
In the prior art, the acquisition process of the target area collapse warning level is cumbersome, resulting in low acquisition efficiency and susceptible to manual intervention.
By obtaining BIM model files for urban ground information, using the BIM platform to process and generate a three-dimensional model, selecting municipal roads and sidewalk locations as target areas, monitoring data such as static level, inclination, groundwater level, groundwater pressure, deep displacement, air pressure and rainfall, and automatically marking the background colors and levels of different warning levels.
It realizes automated early warning level acquisition without manual intervention, reduces time consumption, improves acquisition efficiency and improves the reliability of the early warning level.
Smart Images

Figure CN120299175A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of information technology, and in particular, to an intelligent monitoring and early warning method, device, equipment, and storage medium. Background Art
[0002] Ground collapse refers to a phenomenon or process in which surface rocks and soil masses collapse downward under the action of natural factors or human engineering activities, and collapse pits are formed on the ground, causing disasters. In cities, the population and buildings are densely distributed. Once ground collapse occurs, it is very easy to cause casualties and property losses. Therefore, it is necessary to prevent and control ground collapse. In the process of preventing and controlling ground collapse, it is crucial to understand the collapse early warning level corresponding to the target area, because the collapse early warning level is not only a quantitative expression of the ground collapse risk degree, but also an important basis for guiding prevention and control actions.
[0003] However, the existing process of obtaining the collapse early warning level corresponding to the target area is cumbersome, which is not conducive to improving the efficiency of obtaining the collapse early warning level. The reason is that the existing technology mainly adopts the manual acquisition method to obtain the collapse early warning level corresponding to the target area, and the manual acquisition method will consume a large amount of human resources and time resources, increase the time for obtaining the collapse early warning level, and is easily affected by manual intervention. Therefore, it is not conducive to improving the efficiency of obtaining the collapse early warning level. Summary of the Invention
[0004] The present invention provides an intelligent monitoring and early warning method, device, computer equipment, and storage medium to solve the technical problem that the existing process of obtaining the collapse early warning level corresponding to the target area is cumbersome and not conducive to improving the efficiency of obtaining the collapse early warning level.
[0005] In the first aspect, an intelligent monitoring and early warning method is provided, including:
[0006] Obtain a BIM model file corresponding to urban ground information;
[0007] Access the BIM platform and import the BIM model file into the BIM platform;
[0008] Process the BIM model file through the BIM platform to obtain a three-dimensional BIM model;
[0009] Select the municipal road position and the sidewalk position in the urban ground information as the target positions, obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area;
[0010] Obtain the monitoring data of the target area, and select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value;
[0011] When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow, and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange, and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red, and mark the corresponding collapse warning level of the target area as the alarm level.
[0012] Further, the accessing the BIM platform and importing the BIM model file into the BIM platform includes:
[0013] Access the BIM platform to obtain an import instruction;
[0014] Execute the import instruction to import the BIM model file into the BIM platform.
[0015] Further, the processing the BIM model file through the BIM platform to obtain a three-dimensional BIM model includes:
[0016] Obtain the current data volume of the BIM model file;
[0017] If the current data volume is less than the preset data volume, process the BIM model file through the BIM platform to obtain a three-dimensional BIM model.
[0018] Further, the selecting the municipal road position and the sidewalk position in the urban ground information as the target positions, obtaining the positioning coordinates of the target positions, obtaining the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and selecting the model area corresponding to the positioning coordinates as the target area includes:
[0019] Obtain the municipal road position and the sidewalk position in the urban ground information, and select the municipal road position and the sidewalk position in the urban ground information as the target positions;
[0020] Locate the target positions to obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area.
[0021] Further, the obtaining of the monitoring data of the target area and the selection of the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value include:
[0022] Connect the monitoring equipment installed at the target location, receive the data file sent by the monitoring equipment, and read the monitoring data of the target area in the data file;
[0023] Select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value.
[0024] Further, when the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level; when the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level; when the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level. This includes:
[0025] Read the first warning value, second warning value, and third warning value in the preset file;
[0026] When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level; when the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level; when the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level.
[0027] Further, after when the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level; when the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level; when the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level, the intelligent monitoring and warning method includes:
[0028] Create a display window and display the warning information of the target area through the display window.
[0029] In a second aspect, an intelligent monitoring and early warning device is provided, including:
[0030] A first acquisition module, configured to acquire a BIM model file corresponding to urban ground information;
[0031] An import module, configured to access a BIM platform and import the BIM model file into the BIM platform;
[0032] A processing module, configured to process the BIM model file through the BIM platform to obtain a three-dimensional BIM model;
[0033] A second acquisition module, configured to select the positions of municipal roads and sidewalks in the urban ground information as target positions, acquire the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area;
[0034] A third acquisition module, configured to acquire the monitoring data of the target area, and select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value;
[0035] An early warning module, configured to, when the target monitoring value is greater than the first early warning value and not greater than the second early warning value, mark the background color of the target area as yellow and mark the corresponding collapse early warning level of the target area as the warning level; when the target monitoring value is greater than the second early warning value and not greater than the third early warning value, mark the background color of the target area as orange and mark the corresponding collapse early warning level of the target area as the alert level; when the target monitoring value is greater than the third early warning value, mark the background color of the target area as red and mark the corresponding collapse early warning level of the target area as the alarm level.
[0036] In a third aspect, a computer device is provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the above intelligent monitoring and early warning method are implemented.
[0037] In a fourth aspect, a computer-readable storage medium is provided. The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the above intelligent monitoring and early warning method are implemented.
[0038] The present application provides an intelligent monitoring and early warning method, device, computer device and storage medium. It acquires a BIM model file corresponding to urban ground information; accesses a BIM platform and imports the BIM model file into the BIM platform; processes the BIM model file through the BIM platform to obtain a three-dimensional BIM model; selects the positions of municipal roads and sidewalks in the urban ground information as target positions, acquires the positioning coordinates of the target positions, obtains the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and selects the model area corresponding to the positioning coordinates as the target area; acquires the monitoring data of the target area, and selects the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value; when the target monitoring value is greater than the first early warning value and not greater than the second early warning value, marks the background color of the target area as yellow and marks the corresponding collapse early warning level of the target area as the warning level, when the target monitoring value is greater than the second early warning value and not greater than the third early warning value, marks the background color of the target area as orange and marks the corresponding collapse early warning level of the target area as the alert level, when the target monitoring value is greater than the third early warning value, marks the background color of the target area as red and marks the corresponding collapse early warning level of the target area as the alarm level. The beneficial effects are in two aspects. On the one hand, when the target monitoring value is greater than the first early warning value and not greater than the second early warning value, marks the background color of the target area as yellow and marks the corresponding collapse early warning level of the target area as the warning level, when the target monitoring value is greater than the second early warning value and not greater than the third early warning value, marks the background color of the target area as orange and marks the corresponding collapse early warning level of the target area as the alert level, when the target monitoring value is greater than the third early warning value, marks the background color of the target area as red and marks the corresponding collapse early warning level of the target area as the alarm level. Since it does not require manual acquisition, the time for obtaining the collapse early warning level corresponding to the target area is reduced, which is beneficial to improving the acquisition efficiency of the collapse early warning level corresponding to the target area. On the other hand, since the collapse early warning level is automatically obtained and is not affected by manual intervention, it is beneficial to improve the reliability of the obtained collapse early warning level corresponding to the target area. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments of the present invention will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0040] Figure 1 It is a schematic diagram of the application environment of the intelligent monitoring and early warning method in an embodiment of the present invention;
[0041] Figure 2 A flowchart of an intelligent monitoring and early warning method provided by an embodiment of the present invention;
[0042] Figure 3 Is Figure 2 A flowchart of step S23 in
[0043] Figure 4 Is Figure 2 A flowchart of step S25 in
[0044] Figure 5 Is Figure 2 A flowchart of step S26 in
[0045] Figure 6 A schematic structural diagram of an intelligent monitoring and early warning device in an embodiment of the present invention;
[0046] Figure 7 A schematic structural diagram of a computer device in an embodiment of the present invention. Detailed implementation manners
[0047] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0048] Please refer to Figure 1 , Figure 1 is a schematic diagram of the application environment of the intelligent monitoring and early warning method in an embodiment of the present invention. The intelligent monitoring and early warning method provided by the embodiment of the present invention can be applied in an application environment such as Figure 1 . Among them, the client communicates with the server through the network.
[0049] The server obtains the BIM model file corresponding to the urban ground information through the client;
[0050] Access the BIM platform and import the BIM model file into the BIM platform;
[0051] Process the BIM model file through the BIM platform to obtain a three-dimensional BIM model;
[0052] Select the municipal road position and the sidewalk position in the urban ground information as the target positions, obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area;
[0053] Obtain the monitoring data of the target area, and select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value;
[0054] When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow, and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange, and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red, and mark the corresponding collapse warning level of the target area as the alarm level.
[0055] In the solution implemented by the above intelligent monitoring and warning method, device, equipment and medium, the beneficial effects are in two aspects. On the one hand, when the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow, and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange, and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red, and mark the corresponding collapse warning level of the target area as the alarm level. Since it is not necessary to obtain manually, the acquisition time of the corresponding collapse warning level of the target area is reduced, which is beneficial to improving the acquisition efficiency of the corresponding collapse warning level of the target area. On the other hand, since the collapse warning level is automatically obtained and is not affected by manual intervention, it is beneficial to improve the reliability of the obtained collapse warning level corresponding to the target area.
[0056] Among them, the device running the client is simply referred to as: client device.
[0057] Among them, the device running the server is simply referred to as: server device.
[0058] Among them, the client device includes but is not limited to smart phones, personal computers, vehicle networking terminals, tablet computers and portable wearable devices.
[0059] Among them, the server device can be implemented by an independent server or a server cluster composed of multiple servers. The present invention will be described in detail below through specific embodiments. Please refer to Figure 2 , Figure 2 is a schematic flowchart of an intelligent monitoring and warning method provided by an embodiment of the present invention, including the following steps:
[0060] S21, obtain the BIM model file corresponding to the urban ground information;
[0061] Exemplarily, obtaining the BIM model file corresponding to the urban ground information includes:
[0062] Obtaining the urban identifier in the urban ground information, and when the urban identifier is a preset identifier, obtaining a file set;
[0063] In the file set, according to the pre-established correspondence between the preset identifier and the preset model file, retrieving the preset model file corresponding to the preset identifier, and setting the preset model file corresponding to the preset identifier as the BIM model file corresponding to the urban ground information.
[0064] Among them, the BIM model file refers to a digital file generated based on the Building Information Modeling (BIM) technology. The BIM model file contains multi-dimensional information such as the geometric information, spatial relationship, material properties, construction progress, and cost data of a building or infrastructure project.
[0065] S22, accessing the BIM platform and importing the BIM model file into the BIM platform;
[0066] Among them, accessing the BIM platform and importing the BIM model file into the BIM platform includes:
[0067] Accessing the BIM platform to obtain an import instruction;
[0068] Executing the import instruction to import the BIM model file into the BIM platform.
[0069] S23, processing the BIM model file through the BIM platform to obtain a three-dimensional BIM model;
[0070] Among them, the BIM platform refers to a platform constructed based on the Building Information Modeling (BIM) technology. The BIM platform aims to provide integrated management and collaboration tools for the entire life cycle of building design, construction, operation and maintenance, etc. The BIM platform supports real-time collaboration among multi-disciplinary teams by integrating multi-dimensional resources such as three-dimensional models, engineering data, progress plans, and cost information, improving project efficiency and quality.
[0071] S24, selecting the municipal road position and the sidewalk position in the urban ground information as target positions, obtaining the positioning coordinates of the target positions, obtaining the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and selecting the model area corresponding to the positioning coordinates as the target area;
[0072] Among them, selecting the municipal road position and the sidewalk position in the urban ground information as the target positions, obtaining the positioning coordinates of the target positions, and obtaining the model area corresponding to the positioning coordinates in the 3D BIM model, and selecting the model area corresponding to the positioning coordinates as the target area, includes:
[0073] Obtain the municipal road position and the sidewalk position in the urban ground information, and select the municipal road position and the sidewalk position in the urban ground information as the target positions;
[0074] Locate the target positions to obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the 3D BIM model, and select the model area corresponding to the positioning coordinates as the target area.
[0075] Among them, because most of the ground collapse accidents occur at the municipal road positions and the sidewalk positions, selecting the municipal road positions and the sidewalk positions in the urban ground information as the target positions has strong pertinence and is conducive to improving the safety of the municipal road positions and the sidewalk positions.
[0076] S25, obtain the monitoring data of the target area, and select the static level monitoring value, the inclination monitoring value, the groundwater level monitoring value, the groundwater pressure monitoring value, the deep displacement monitoring value, the air pressure monitoring value or the rainfall monitoring value in the monitoring data as the target monitoring values;
[0077] Among them, the static level monitoring value is the monitoring value obtained by a static level instrument. The static level instrument is a precision measuring instrument that works based on the principle of communicating vessels and is used to measure the relative elevation change between two or more points. The static level monitoring value represents the elevation change of the monitoring point relative to the reference point. In the static level monitoring system, by measuring the relative change of the liquid level between two or more points, the elevation change of each monitoring point is accurately calculated. This change is usually in millimeters and can reflect the settlement or uplift of the monitoring point in real time.
[0078] Among them, the inclination monitoring value refers to the monitoring value obtained by real-time monitoring of the inclination angle of a structure by an inclination sensor. The inclination monitoring value reflects the inclination degree of the structure in the horizontal or vertical direction and is usually expressed in degrees. The definition of the inclination monitoring value is based on the evaluation requirements for the stability and safety of the structure. By continuously monitoring the inclination change, abnormal deformation or settlement of the structure can be detected in time, thereby warning potential safety risks. Among them, the structure includes but is not limited to buildings, bridges, and slopes.
[0079] Among them, the groundwater level monitoring value refers to the monitoring value obtained by measuring the height of the groundwater surface relative to the reference plane through a water level sensor. The groundwater level monitoring value reflects the reserves and dynamic changes of groundwater resources, and is usually expressed in meters. The groundwater level monitoring value is used to evaluate the distribution, recharge and consumption of groundwater resources, and is of great significance for geological disaster prevention.
[0080] Among them, the groundwater pressure monitoring value refers to the monitoring value obtained by measuring the pressure exerted by the groundwater on the surrounding rock and soil mass through a pressure sensor. The groundwater pressure monitoring value reflects the mechanical action of groundwater on underground engineering or rock and soil mass, and is usually expressed in kilopascals or megapascals. The groundwater pressure monitoring value is used to analyze the influence of groundwater on the stability of engineering structures. Especially in deep foundation pit excavation, tunnel construction or slope stability assessment, it can help predict and prevent engineering accidents caused by water pressure changes.
[0081] Among them, the deep displacement monitoring value refers to the monitoring value obtained by measuring the displacement changes of deep soil through displacement meters buried underground. The deep displacement monitoring value reflects the horizontal or vertical displacement within a certain depth range underground, and is usually expressed in millimeters. The deep displacement monitoring value is used to evaluate slope stability, foundation settlement, tunnel deformation, etc., and can help predict geological disasters or potential safety hazards of engineering structures, providing important basis for engineering design and disaster prevention and control.
[0082] Among them, the air pressure monitoring value refers to the data obtained by measuring the atmospheric pressure or the air pressure changes in a closed space in real time through an air pressure sensor. The air pressure monitoring value reflects the high and low changes of air pressure, and is usually expressed in pascals.
[0083] Among them, the rainfall monitoring value refers to the monitoring value obtained by measuring the rainfall amount within a certain period of time through a precipitation sensor. The rainfall monitoring value reflects the intensity and total amount of precipitation, and is usually expressed in millimeters. The definition of the rainfall monitoring value is based on the quantification requirement of the precipitation process. Through real-time or regular monitoring, the time distribution, spatial distribution and their change trends of precipitation can be grasped. These data play an important role in hydrological forecasting, flood warning, water resources management, agricultural production and urban drainage system design, and can help evaluate the impact of precipitation on the natural environment and social and economic activities, providing a scientific basis for disaster prevention and mitigation and optimal allocation of resources.
[0084] S26. When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding ground collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding ground collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding ground collapse warning level of the target area as the alarm level.
[0085] Among them, the first warning value, the second warning value, and the third warning value are different warning values.
[0086] Among them, the third warning value is greater than the first warning value and the second warning value, and the first warning value is greater than the second warning value.
[0087] Among them, the warning level, the alert level, and the alarm level are different levels in the warning system.
[0088] Among them, the warning level represents the level of warning, the alert level represents the level of alert, and the alarm level represents the level of alarm.
[0089] Among them, the urgency of the alarm level is higher than that of the alert level and the warning level, and the urgency of the alert level is higher than that of the warning level.
[0090] Among them, the ground collapse warning level is the warning level for ground collapse disasters. The warning level of ground collapse disasters directly reflects the urgency and potential harm degree of ground collapse disasters, provides key information for decision-makers, helps decision-makers quickly judge whether to initiate the emergency plan, as well as the level and scope of the emergency plan, which is conducive to improving the prevention efficiency and treatment efficiency of ground collapse disasters.
[0091] Among them, different ground collapse warning levels correspond to different response measures. For the convenience of explanation, the following are examples:
[0092] For example, when the corresponding ground collapse warning level of the target area is marked as the warning level, it means that the possibility of ground collapse is relatively low, but there are potential risks. At this time, the relevant departments should strengthen monitoring and inspections, remind the public to pay attention to safety, and make preliminary prevention preparations;
[0093] For example, when the corresponding ground collapse warning level of the target area is marked as the alert level, it means that the possibility of ground collapse is relatively high and may cause certain impacts on local areas. At this time, it is necessary to initiate part of the emergency plan, strengthen the control of dangerous areas, evacuate the residents who may be affected, and allocate resources to deal with possible disasters.
[0094] For example, when the collapse warning level corresponding to the target area is marked as the alarm level, it indicates that the threat of ground collapse is extremely urgent and may cause large-scale damage and casualties. At this time, the highest-level emergency response plan should be immediately activated, personnel in the dangerous area should be fully evacuated, the relevant area should be blocked, and multiple resources should be coordinated for emergency rescue and disaster control.
[0095] Therefore, by scientifically evaluating and obtaining the collapse warning level corresponding to the target area, it is possible to ensure that the prevention and control measures are more accurate and effective, avoiding both waste of resources caused by overreaction and missing the best prevention and control opportunity due to insufficient response, thus achieving effective management and control of ground collapse disasters.
[0096] Among them, when the target monitoring value is greater than the first warning value and not greater than the second warning value, the background color of the target area is marked as yellow, and the collapse warning level corresponding to the target area is marked as the warning level; when the target monitoring value is greater than the second warning value and not greater than the third warning value, the background color of the target area is marked as orange, and the collapse warning level corresponding to the target area is marked as the alert level; when the target monitoring value is greater than the third warning value, the background color of the target area is marked as red, and the collapse warning level corresponding to the target area is marked as the alarm level. After that, the intelligent monitoring and warning method includes:
[0097] Create a display window and display the warning information of the target area through the display window.
[0098] Exemplarily, creating a display window and displaying the warning information of the target area through the display window includes:
[0099] Obtain the ratios of the static level monitoring value to the static level preset value, the tilt monitoring value to the tilt preset value, the groundwater level monitoring value to the groundwater level preset value, the groundwater pressure monitoring value to the groundwater pressure preset value, the deep displacement monitoring value to the deep displacement preset value, the air pressure monitoring value to the air pressure preset value, and the rainfall monitoring value to the rainfall preset value;
[0100] Add the ratios of the static level monitoring value to the static level preset value, the tilt monitoring value to the tilt preset value, the groundwater level monitoring value to the groundwater level preset value, the groundwater pressure monitoring value to the groundwater pressure preset value, the deep displacement monitoring value to the deep displacement preset value, the air pressure monitoring value to the air pressure preset value, and the rainfall monitoring value to the rainfall preset value to obtain a comprehensive coefficient. When the comprehensive coefficient is greater than the preset coefficient, create a display window and display the warning information of the target area through the display window.
[0101] Among them, after creating a display window and displaying the warning information of the target area through the display window, the intelligent monitoring and warning method includes:
[0102] The warning information is packaged into a warning SMS and sent to external devices.
[0103] Among them, early warning text messages are sent to external devices so that they can be informed and take corresponding countermeasures at the first time. This instant information transmission mechanism greatly improves the speed and efficiency of emergency response, helps reduce losses, ensure safety, and ensure the smooth progress of various tasks.
[0104] In the embodiment of the present invention, the beneficial effects are in two aspects. On the one hand, when the target monitoring value is greater than the first warning value and not greater than the second warning value, the background color of the target area is marked as yellow, and the collapse warning level corresponding to the target area is marked as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, the background color of the target area is marked as orange, and the collapse warning level corresponding to the target area is marked as the alert level. When the target monitoring value is greater than the third warning value, the background color of the target area is marked as red, and the collapse warning level corresponding to the target area is marked as the alarm level. Since no manual acquisition is required, the acquisition time of the collapse warning level corresponding to the target area is reduced, which is beneficial to improving the acquisition efficiency of the collapse warning level corresponding to the target area. On the other hand, since the collapse warning level is automatically acquired and will not be affected by manual intervention, it is beneficial to improve the reliability of the acquired collapse warning level corresponding to the target area.
[0105] See also Figure 3 , Figure 3 yes Figure 2 The flow chart of step S23 is described in detail as follows:
[0106] S31, obtaining the current data volume of the BIM model file;
[0107] S32: If the current data volume is less than the preset data volume, the BIM model file is processed through the BIM platform to obtain a three-dimensional BIM model.
[0108] In an embodiment of the present invention, if the current data volume is less than the preset data volume, the BIM model file is processed through the BIM platform to obtain a three-dimensional BIM model. This can effectively avoid excessive consumption of system resources due to excessive data volume, ensure the stability and efficiency of the BIM platform operation, and reduce the risk of freeze or crash.
[0109] See also Figure 4 , Figure 4 yes Figure 2 The flow chart of step S25 is described in detail as follows:
[0110] S41, connecting to a monitoring device installed at a target location, receiving a data file sent by the monitoring device, and reading monitoring data of the target area in the data file;
[0111] Among them, the monitoring devices include but are not limited to static level gauges, tilt sensors, water level sensors, pressure sensors, displacement gauges, barometric pressure sensors, and precipitation sensors.
[0112] S42. Select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, barometric pressure monitoring value, or rainfall monitoring value in the monitoring data as the target monitoring value.
[0113] In the embodiment of the present invention, selecting the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, barometric pressure monitoring value, or rainfall monitoring value in the monitoring data as the target monitoring value can obtain the target monitoring value.
[0114] Please refer to Figure 5 , Figure 5 is Figure 2 the schematic flow chart of step S26 in
[0115] S51. Read the first warning value, second warning value, and third warning value in the preset file.
[0116] S52. When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level.
[0117] In the embodiment of the present invention, when the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level. Since it does not require manual acquisition, the acquisition time of the collapse warning level corresponding to the target area is reduced, which is beneficial to improving the acquisition efficiency of the collapse warning level corresponding to the target area.
[0118] Please refer to Figure 6 , Figure 6 is the structural schematic diagram of the intelligent monitoring and warning device in an embodiment of the present invention, as Figure 6As shown, the intelligent monitoring and early warning device includes a first acquisition module 101, an import module 102, a processing module 103, a second acquisition module 104, a third acquisition module 105, and an early warning module 106. The detailed description of each functional module is as follows:
[0119] The first acquisition module 101 is used to acquire the BIM model file corresponding to the urban ground information;
[0120] The import module 102 is used to access the BIM platform and import the BIM model file into the BIM platform;
[0121] The processing module 103 is used to process the BIM model file through the BIM platform to obtain a three-dimensional BIM model;
[0122] The second acquisition module 104 is used to select the municipal road position and the sidewalk position in the urban ground information as the target positions, acquire the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area;
[0123] The third acquisition module 105 is used to acquire the monitoring data of the target area and select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value, or rainfall monitoring value in the monitoring data as the target monitoring value;
[0124] The early warning module 106 is used to mark the background color of the target area as yellow and mark the corresponding collapse early warning level of the target area as the warning level when the target monitoring value is greater than the first early warning value and not greater than the second early warning value, mark the background color of the target area as orange and mark the corresponding collapse early warning level of the target area as the alert level when the target monitoring value is greater than the second early warning value and not greater than the third early warning value, and mark the background color of the target area as red and mark the corresponding collapse early warning level of the target area as the alarm level when the target monitoring value is greater than the third early warning value.
[0125] In the embodiments of the present invention, the beneficial effects are in two aspects. On the one hand, when the target monitoring value is greater than the first warning value and not greater than the second warning value, the background color of the target area is marked as yellow, and the corresponding collapse warning level of the target area is marked as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, the background color of the target area is marked as orange, and the corresponding collapse warning level of the target area is marked as the alert level. When the target monitoring value is greater than the third warning value, the background color of the target area is marked as red, and the corresponding collapse warning level of the target area is marked as the alarm level. Since it is not necessary to obtain manually, the acquisition time of the collapse warning level corresponding to the target area is reduced, which is beneficial to improving the acquisition efficiency of the collapse warning level corresponding to the target area. On the other hand, since the collapse warning level is automatically obtained and is not affected by manual intervention, it is beneficial to improve the reliability of the obtained collapse warning level corresponding to the target area.
[0126] For the specific limitations of the intelligent monitoring and warning device, reference can be made to the limitations of the intelligent monitoring and warning method in the above text, which will not be elaborated here.
[0127] Each module in the above intelligent monitoring and warning device can be implemented in whole or in part by software, hardware, and their combination. The above modules can be embedded in the processor of the computer device in hardware form or be independent of it, or can be stored in the memory of the computer device in software form, so as to facilitate the processor to call and execute the operations corresponding to the above modules.
[0128] Please refer to Figure 7 , Figure 7 FIG. is a schematic structural diagram of a computer device in an embodiment of the present invention. In one embodiment, a computer device is provided. The computer device is a server device or a client device, and its internal structural diagram can be as Figure 7 shown. The computer device includes a processor, a memory, a network interface, a display screen, and an input device connected through a system bus. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface of the computer device is used to communicate with external devices. When the computer program is executed by the processor, it can implement the functions or steps of an intelligent monitoring and warning method.
[0129] In one embodiment, a computer device is provided, including a memory, a processor, and a computer program stored on the memory and executable on the processor.
[0130] It should be noted that the functions or steps that can be achieved by the above computer-readable storage medium or computer device can be correspondingly referred to the relevant descriptions of the foregoing method embodiments. To avoid repetition, they will not be described one by one here.
[0131] The above-mentioned processor can be a general-purpose processor, including a Central Processing Unit (CPU for short), a Graphics Processing Unit (GPU for short), and a Network Processor (NP for short); it can also be a Digital Signal Processor (DSP for short), an Application Specific Integrated Circuit (ASIC for short), a Field-Programmable Gate Array (FPGA for short), or other programmable logic devices, discrete gate or transistor logic devices, and discrete hardware components.
[0132] The above description and the accompanying drawings fully illustrate the embodiments of the present disclosure, enabling those skilled in the art to practice them. In this article, the key points of each embodiment may be the differences from other embodiments, and the same or similar parts among the embodiments can be referred to each other. For the methods disclosed in the embodiments, if they correspond to the method parts disclosed in the embodiments, the relevant parts can be referred to the descriptions of the method parts.
[0133] Those skilled in the art can realize that the units and algorithm steps of each example described in combination with the embodiments disclosed in this article can be implemented by electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are executed in a hardware or software manner can depend on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods for each specific application to implement the described functions, but such implementation should not be considered to exceed the scope of the embodiments of the present disclosure. Those skilled in the art can clearly understand that for the convenience and conciseness of description, the specific working processes of the systems, devices, and units described above can refer to the corresponding processes in the foregoing method embodiments, and will not be repeated here.
[0134] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer programs according to embodiments of the present disclosure. In this regard, each block in the flowchart or block diagram may represent a module, a segment of a program, or a part of code, which contains one or more executable instructions for implementing the specified logical function. In some alternative implementations, the functions noted in the blocks may occur in a different order from that noted in the accompanying drawings. For example, two consecutive blocks may in fact be executed substantially in parallel, or they may sometimes be executed in the reverse order, depending on the functions involved. In the descriptions corresponding to the flowcharts and block diagrams in the accompanying drawings, the operations or steps corresponding to different blocks may also occur in a different order from that disclosed in the description, and sometimes there is no specific order between different operations or steps. For example, two consecutive operations or steps may in fact be executed substantially in parallel, or they may sometimes be executed in the reverse order, depending on the functions involved. Each block in the block diagram and / or flowchart, and combinations of blocks in the block diagram and / or flowchart, may be implemented by a dedicated hardware-based system that performs the specified functions or actions, or may be implemented by a combination of dedicated hardware and computer instructions.
Claims
1. An intelligent monitoring and early warning method, characterized in that, Including: Obtain the BIM model file corresponding to the urban ground information; Access the BIM platform and import the BIM model file into the BIM platform; Process the BIM model file through the BIM platform to obtain a 3D BIM model; Select the municipal road position and the sidewalk position in the urban ground information as the target positions, obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the 3D BIM model, and select the model area corresponding to the positioning coordinates as the target area; Obtain the monitoring data of the target area, and select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value; When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level.
2. The intelligent monitoring and early warning method according to claim 1, wherein The accessing the BIM platform and importing the BIM model file into the BIM platform includes: Access the BIM platform and obtain the import instruction; Execute the import instruction and import the BIM model file into the BIM platform.
3. The intelligent monitoring and early warning method according to claim 1, characterized in that The processing the BIM model file through the BIM platform to obtain a 3D BIM model includes: Obtain the current data volume of the BIM model file; If the current data volume is less than the preset data volume, process the BIM model file through the BIM platform to obtain a 3D BIM model.
4. The intelligent monitoring and early warning method according to claim 1, characterized in that, The selecting the municipal road position and the sidewalk position in the urban ground information as the target positions, obtaining the positioning coordinates of the target positions, obtaining the model area corresponding to the positioning coordinates in the 3D BIM model, and selecting the model area corresponding to the positioning coordinates as the target area includes: Obtain the municipal road position and the sidewalk position in the urban ground information, and select the municipal road position and the sidewalk position in the urban ground information as the target positions; Locate the target positions to obtain the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the 3D BIM model, and select the model area corresponding to the positioning coordinates as the target area.
5. The intelligent monitoring and early warning method according to claim 1, wherein The obtaining the monitoring data of the target area and selecting the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value includes: Connect to the monitoring equipment installed at the target positions, receive the data file sent by the monitoring equipment, and read the monitoring data of the target area in the data file; Select the static level monitoring value, tilt monitoring value, groundwater level monitoring value, groundwater pressure monitoring value, deep displacement monitoring value, air pressure monitoring value or rainfall monitoring value in the monitoring data as the target monitoring value.
6. The intelligent monitoring and early warning method according to claim 1, wherein When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level, including: Read the first warning value, the second warning value, and the third warning value from the preset file; When the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level.
7. The intelligent monitoring and early warning method according to claim 1, characterized in that After the step of when the target monitoring value is greater than the first warning value and not greater than the second warning value, mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level. When the target monitoring value is greater than the second warning value and not greater than the third warning value, mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level. When the target monitoring value is greater than the third warning value, mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level, the intelligent monitoring and warning method includes: Create a display window and display the warning information of the target area through the display window.
8. An intelligent monitoring and warning device, characterized in that, Including: The first acquisition module is used to acquire the BIM model file corresponding to the urban ground information; The import module is used to access the BIM platform and import the BIM model file into the BIM platform; The processing module is used to process the BIM model file through the BIM platform to obtain a three-dimensional BIM model; The second acquisition module is used to select the municipal road position and the sidewalk position in the urban ground information as the target positions, acquire the positioning coordinates of the target positions, obtain the model area corresponding to the positioning coordinates in the three-dimensional BIM model, and select the model area corresponding to the positioning coordinates as the target area; The third acquisition module is used to acquire the monitoring data of the target area, and select the static level monitoring value, the inclination monitoring value, the groundwater level monitoring value, the groundwater pressure monitoring value, the deep displacement monitoring value, the air pressure monitoring value, or the rainfall monitoring value in the monitoring data as the target monitoring value; The warning module is used to mark the background color of the target area as yellow and mark the corresponding collapse warning level of the target area as the warning level when the target monitoring value is greater than the first warning value and not greater than the second warning value; mark the background color of the target area as orange and mark the corresponding collapse warning level of the target area as the alert level when the target monitoring value is greater than the second warning value and not greater than the third warning value; and mark the background color of the target area as red and mark the corresponding collapse warning level of the target area as the alarm level when the target monitoring value is greater than the third warning value.
9. A computer device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of the intelligent monitoring and warning method according to any one of claims 1 to 7.
10. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the processor, it implements the steps of the intelligent monitoring and warning method according to any one of claims 1 to 7.