WO2023274325A1 - 风象信息监测方法、装置、电子设备及存储介质 - Google Patents

风象信息监测方法、装置、电子设备及存储介质 Download PDF

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Publication number
WO2023274325A1
WO2023274325A1 PCT/CN2022/102498 CN2022102498W WO2023274325A1 WO 2023274325 A1 WO2023274325 A1 WO 2023274325A1 CN 2022102498 W CN2022102498 W CN 2022102498W WO 2023274325 A1 WO2023274325 A1 WO 2023274325A1
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Prior art keywords
wind
information
area
monitoring
monitoring sub
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PCT/CN2022/102498
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English (en)
French (fr)
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彭继文
谢军
张扬
董梁
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浙江三一装备有限公司
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Priority to DE112022002506.9T priority Critical patent/DE112022002506T5/de
Publication of WO2023274325A1 publication Critical patent/WO2023274325A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/04Forecasting or optimisation specially adapted for administrative or management purposes, e.g. linear programming or "cutting stock problem"
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • G06Q10/063Operations research, analysis or management
    • G06Q10/0639Performance analysis of employees; Performance analysis of enterprise or organisation operations
    • G06Q10/06393Score-carding, benchmarking or key performance indicator [KPI] analysis
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A90/00Technologies having an indirect contribution to adaptation to climate change
    • Y02A90/10Information and communication technologies [ICT] supporting adaptation to climate change, e.g. for weather forecasting or climate simulation

Definitions

  • the application relates to the field of wind monitoring, in particular to a method for monitoring wind information.
  • the present application also relates to a wind information monitoring device, an electronic device and a storage medium.
  • Existing wind information monitoring schemes are generally: monitor real-time wind speeds in different regions by region, and obtain real-time wind speeds in different regions. For engineering equipment that performs complex operations, it takes a certain amount of time to prepare for suspending or stopping construction. By obtaining real-time wind speeds in different areas, early warning of engineering equipment often leads to low working safety of engineering equipment.
  • the application provides a wind information monitoring method, a wind information monitoring device, an electronic device and a storage medium, so as to improve the working safety of engineering equipment.
  • An embodiment of the present application provides a method for monitoring wind information, including:
  • a second wind monitoring sub-area adjacent to the first wind monitoring sub-area is obtained in the target wind monitoring sub-area, and the second The wind information of the wind monitoring sub-area.
  • the preset monitoring conditions include a first wind speed threshold
  • the obtaining of the first wind monitoring sub-area whose wind information meets the preset monitoring conditions in the target wind monitoring area includes:
  • the monitoring sub-area corresponding to the to-be-judged wind speed information whose wind speed value reaches the first wind speed threshold is used as the first wind phenomenon monitoring sub-area.
  • the second wind monitoring sub-area adjacent to the first wind monitoring sub-area is obtained in the target wind monitoring area.
  • the area includes: obtaining the second wind monitoring sub-area according to the wind direction information corresponding to the wind information in the first wind monitoring sub-area.
  • the wind direction information monitoring method provided in the embodiment of the present application further includes: according to the wind information in the second wind monitoring sub-area, obtaining the target engineering equipment in the second wind monitoring sub-area that needs to be executed target action information.
  • said obtaining the wind information of the second wind monitoring sub-region includes:
  • the terrain information and the first wind speed information and/or first wind direction information corresponding to the wind information in the first wind monitoring sub-area obtain the first wind information corresponding to the wind information in the second wind monitoring sub-area Second wind speed information and/or second wind direction information;
  • obtaining the target action information to be executed by the target engineering equipment in the second wind monitoring sub-area includes: according to the second wind speed information and/or Or the second wind direction information to obtain the target action information.
  • the target action information includes one of the following action information:
  • Second target action information used to instruct the target engineering equipment to perform a specified action.
  • the wind direction information monitoring method provided in the embodiment of the present application further includes: obtaining risk information of the target engineering equipment according to the second wind speed information and/or the second wind direction information.
  • FIG. 1 Another embodiment of the present application also provides a wind information monitoring device, including:
  • the first wind monitoring sub-area obtaining unit is used to obtain the first wind monitoring sub-area in the target wind monitoring area whose wind information satisfies the preset monitoring conditions, and the wind information includes at least wind speed information and wind direction information;
  • a wind information monitoring unit configured to obtain, in the target wind monitoring area, a second wind adjacent to the first wind monitoring sub-area according to the wind information in the first wind monitoring sub-area The sub-region is monitored, and the wind information of the second wind monitoring sub-region is obtained.
  • Another embodiment of the present application further provides an electronic device, including:
  • the memory is used to store the program of the method. After the device is powered on and runs the program of the method through the processor, the method provided in the embodiment of the present application is executed.
  • Another embodiment of the present application further provides a storage medium, the storage medium stores a computer program, and the computer program is run by a processor to execute the method provided in the embodiment of the present application.
  • the wind information monitoring method provided in the embodiment of the present application can improve the safety of engineering equipment, and will be described in detail below in conjunction with specific implementation methods.
  • FIG. 1 is a schematic diagram of a first application scenario of a method for monitoring wind information provided by an embodiment of the present application.
  • Fig. 2 is a schematic diagram of a second application scenario of the wind information monitoring method provided by the embodiment of the present application.
  • Fig. 3 is a flow chart of the wind information monitoring method provided in the first embodiment of the present application.
  • Fig. 4 is a flow chart of the method for obtaining the first wind monitoring sub-area provided in the first embodiment of the present application.
  • Fig. 5 is a schematic diagram of a wind information monitoring device provided in the second embodiment of the present application.
  • FIG. 6 is a schematic diagram of an electronic device provided in an embodiment of the present application.
  • the wind information monitoring method provided in the present application can be applied to the scene where the wind information is monitored in the area where the lifting equipment is located.
  • the so-called target engineering equipment is: lifting equipment.
  • the lifting equipment specifically includes but not limited to cranes and tower cranes.
  • the execution subject of the wind information monitoring method provided in the embodiment of the present application may be a client installed with software or programs capable of executing the wind information monitoring method provided in the present application.
  • the so-called client is generally an electronic device that can display information through a human-computer interaction interface, such as a mobile phone, a computer, etc., and the client can also be an electronic device that is directly installed on the target engineering device.
  • the execution subject of the wind information monitoring method provided in the embodiment of the present application may be a server that provides data services for the client end of the software or program that executes the wind information monitoring method provided in the present application.
  • the general implementation of the server The mode is server or server cluster.
  • the following specifically takes the target engineering equipment as a crane as an example to describe the application scenario of the wind information monitoring method provided by the embodiment of the present application.
  • the application scenario of the wind information monitoring method when the target engineering equipment is other engineering equipment other than cranes please refer to the application scenario of the wind information monitoring method when the target engineering equipment is a crane, and details will not be repeated here.
  • FIG. 1 is a schematic diagram of a first application scenario of the wind information monitoring method provided by the embodiment of the present application.
  • FIG. 1 includes: a server 101 , a client 102 and a crane 103 .
  • the target wind monitoring area is determined, the target wind monitoring area is pre-divided into a plurality of different wind monitoring sub-areas according to the latitude and longitude information, and the adjacent wind monitoring sub-areas of each wind monitoring sub-area are obtained, and store.
  • wind information refers to information used to describe wind conditions, including but not limited to wind speed information and wind direction information.
  • the server 101 may obtain the first wind monitoring sub-area in the target wind monitoring area whose wind information satisfies the preset monitoring condition.
  • the so-called preset monitoring conditions are monitoring conditions preset according to prior values and used to screen wind monitoring sub-regions, generally including wind speed thresholds and the like.
  • the server 101 obtains the wind monitoring sub-area adjacent to the first wind monitoring sub-area and meeting the wind direction information in the target wind monitoring area as the second wind monitoring sub-area, and according to the first wind monitoring sub-area, The wind information of the first wind monitoring sub-area is obtained to obtain the wind information of the second wind monitoring sub-area.
  • the first wind monitoring sub-area can be any wind monitoring sub-area that meets the preset monitoring conditions in the target wind monitoring area (including wind monitoring sub-areas 1-8 and the wind monitoring sub-area marked with an asterisk). Wind monitoring sub-area.
  • the first wind monitoring sub-area is specifically used as the central sub-area (the wind monitoring sub-area labeled as an asterisk) in the target wind monitoring area as an example, and the first wind monitoring sub-area is the target
  • the central sub-area in the wind monitoring area if the wind direction corresponding to the wind information in the first wind monitoring sub-area faces east, then the wind monitored in the first wind monitoring sub-area can only be compared to the first wind monitoring sub-area.
  • the adjacent wind monitoring sub-area on the east side of a wind monitoring sub-area has an impact.
  • the second wind monitoring sub-area is the sub-areas 3, 5 and 8 within the target wind monitoring area. That is to say, when determining the second wind monitoring sub-area, the first wind direction information corresponding to the wind information of the first wind monitoring sub-area needs to be considered.
  • the server end 101 When the user end 102 sends an action information acquisition request message to the server end 101, the server end 101 will obtain the information required by the target engineering equipment 103 in the second wind monitoring sub-area according to the second wind information. The target action information is executed, and the target action information is sent to the user terminal 102 according to the action information acquisition request information.
  • the server 101 can also obtain the risk information of the target engineering equipment according to the second wind information, and mark it after the target action information to remind relevant personnel.
  • the user terminal 102 After the user terminal 102 obtains the target action information, it will display the target action information through the human-computer interaction interface to instruct the user to operate the target engineering equipment 103 to perform actions according to the target action information.
  • the so-called target action information includes, but is not limited to, first target action information for instructing the target engineering equipment to perform a normal action, and second target action information for instructing the target engineering equipment to perform a specified action.
  • the so-called specified action includes but not limited to the action of suspending the work of the target engineering equipment, the action of adjusting the position and posture of the target engineering equipment, the action of reinforcing the target engineering equipment, and the action of transferring the target engineering equipment.
  • the user After the user obtains the target action information, he can execute the specified action according to the target action information to ensure the working safety of the target engineering equipment.
  • the target action information can also be input into the controller used to control the target engineering equipment, and then the target engineering equipment is controlled to perform corresponding specified actions through the controller, so as to ensure the working safety of the target engineering equipment.
  • the application scenarios of the electric wind phenomenon information monitoring method provided in the embodiment of the present application are not specifically limited.
  • the electric wind phenomenon information monitoring method provided in the present application can also be applied to other engineering equipment. Let me repeat them one by one.
  • the examples corresponding to the application scenarios of the above electric wind weather information monitoring method are provided for the purpose of facilitating understanding of the electric wind weather information monitoring method provided in this application, and are not intended to limit the electric wind weather information monitoring method provided in this application.
  • the first embodiment of the present application provides a method for monitoring wind information.
  • the method for monitoring wind information provided by the first embodiment of the present application will be described in detail below with reference to FIG. 3 .
  • Fig. 3 is a flow chart of the wind information monitoring method provided by the first embodiment of the present application.
  • step S301 a first wind monitoring sub-area whose wind information satisfies a preset monitoring condition in the target wind monitoring area is obtained, and the wind information includes at least wind speed information and wind direction information.
  • wind information refers to information used to describe wind conditions, including but not limited to wind speed information and wind direction information.
  • the so-called target wind monitoring area is a wind monitoring area pre-divided according to requirements or actual geographical environment, and the target wind monitoring area can also be divided into a plurality of different wind monitoring sub-areas according to geographic location information. Specifically, the target wind monitoring area may be divided into a plurality of different wind monitoring sub-areas according to location information corresponding to different terrains.
  • different wind monitoring sub-regions correspond to different terrains, which can make monitoring of wind information more convenient.
  • the target wind monitoring area may be divided into a plurality of different wind monitoring sub-areas according to the latitude and longitude information of the geographic location information.
  • each wind monitoring sub-area has 8 adjacent wind monitoring sub-areas, but for the wind monitoring sub-area at the edge of the target wind monitoring area, the number of adjacent wind monitoring sub-areas Probably less than 8.
  • the number of adjacent wind monitoring sub-areas of each wind monitoring sub-area is not limited, but needs to be determined according to the division method corresponding to the specific division requirements .
  • the preset monitoring conditions include a first wind speed threshold, which is set according to the wind speed requirements of the equipment in the first wind monitoring sub-area.
  • Step S401 Obtain the wind information of the monitoring sub-area in the target wind monitoring area.
  • the wind information of the so-called monitoring sub-area can be obtained by the wind information monitoring equipment installed in the corresponding monitoring sub-area for wind information monitoring.
  • Step S402 Obtain the wind speed information corresponding to the wind information in the monitored sub-area as the wind speed information to be determined.
  • Step S403 Determine whether the wind speed value corresponding to the wind speed information to be judged reaches the first wind speed threshold within a specified time interval.
  • Step S404 The monitoring sub-area corresponding to the wind speed information to be determined whose wind speed value reaches the first wind speed threshold is used as the first wind phenomenon monitoring sub-area.
  • step S302 according to the wind information of the first wind monitoring sub-area, the second wind monitoring sub-area adjacent to the first wind monitoring sub-area is obtained in the target wind monitoring area , and obtain the wind information of the second wind monitoring sub-region.
  • the so-called target engineering equipment includes but not limited to lifting equipment.
  • the lifting equipment specifically includes but not limited to cranes, tower cranes and the like.
  • the specific implementation process of obtaining the second wind monitoring sub-area is as follows: first, obtaining the wind direction information corresponding to the wind information in the first wind monitoring sub-area; then, according to the first wind monitoring sub-area The wind direction information corresponding to the wind information in the area, and the wind monitoring sub-area adjacent to the first wind monitoring sub-area and conforming to the wind direction corresponding to the wind direction information is obtained in the target wind monitoring area as the second wind monitoring sub-area . That is, according to the first wind direction information corresponding to the wind information in the first wind monitoring sub-area, the second wind monitoring sub-area is obtained.
  • the first wind direction information may be specifically obtained through at least one device with a wind direction monitoring function set in the first wind monitoring area.
  • the first wind monitoring sub-area has eight or other number of adjacent wind monitoring sub-areas, if the wind direction is eastward, then the wind monitored in the first wind monitoring sub-area can only be located in the first wind monitoring sub-area.
  • the adjacent wind monitoring sub-area to the east of the wind monitoring sub-area has an impact.
  • the second wind monitoring sub-area is an adjacent wind monitoring sub-area located to the east of the first wind monitoring sub-area.
  • the second wind monitoring sub-area may also be an adjacent wind monitoring sub-area located in the entire first wind monitoring sub-area.
  • the specific realization of the so-called acquisition of target action information is as follows: firstly, according to the wind information of the first wind monitoring sub-area, the wind information of the second wind monitoring sub-area is obtained. Then, according to the wind information of the second wind monitoring sub-area, the target action information is obtained.
  • the so-called wind information according to the first wind monitoring sub-region obtaining the wind information of the second wind monitoring sub-region specifically refers to: according to the wind information of the first wind monitoring sub-region, the second wind monitoring sub-region Regional wind information for forecasting.
  • the forecasting process includes: obtaining second wind speed information corresponding to the wind information in the second wind monitoring sub-area according to the first wind speed information corresponding to the wind information in the first wind monitoring sub-area.
  • the forecasting process further includes: obtaining second wind direction information corresponding to the wind information in the second wind monitoring sub-area according to the first wind direction information corresponding to the wind information in the first wind monitoring sub-area.
  • the specific implementation manner of obtaining the wind information of the second wind monitoring sub-area is as follows: first, obtaining the terrain between the second wind monitoring sub-area and the first wind monitoring sub-area information; then, according to the terrain information and the first wind speed information and/or the first wind direction information corresponding to the wind information in the first wind monitoring sub-region, obtain the second wind speed corresponding to the wind information in the second wind monitoring sub-region information and/or second wind direction information.
  • the wind information of the second wind monitoring sub-area is predicted according to the distance information between the first wind monitoring sub-area and the second wind monitoring sub-area, terrain information, and the like.
  • the so-called terrain information includes obstacle information between the first wind monitoring sub-area and the second wind monitoring sub-area.
  • the obstacle may specifically refer to: a mountain peak, a building, a canyon, etc., and the obstacle information includes an obstacle height value.
  • the terrain information between the second wind monitoring sub-area and the first wind monitoring sub-area can be obtained specifically To: obtain terrain information between the wind monitoring point in the first wind monitoring sub-region and the target engineering equipment. That is to say, in the first embodiment of the present application, the terrain information between the second wind monitoring sub-region and the first wind monitoring sub-region can specifically be the wind monitoring points and targets in the first wind monitoring sub-region. Terrain information among engineering equipment.
  • the specific implementation process of obtaining the second wind speed information corresponding to the wind information in the second wind monitoring sub-area is as follows: first, obtain the corresponding wind speed information of the obstacle information The obstacle height value. Then, it is judged whether the obstacle height value corresponding to the obstacle information reaches the preset height value. Finally, if the obstacle height value corresponding to the obstacle information reaches the preset height value, it is determined that the wind speed value corresponding to the second wind speed information is less than the second wind speed threshold value. At this time, the specific wind speed value corresponding to the second wind speed information can also be obtained. value, or the specific value of the wind speed value corresponding to the second wind speed information may not be acquired.
  • the wind speed corresponding to the second wind speed information can be calculated according to the wind speed value corresponding to the first wind speed information and the obstacle height value corresponding to the obstacle information. value.
  • the wind information obtained by setting the wind information monitoring equipment used for wind information monitoring in the corresponding monitoring sub-area can be obtained, but also the wind information of the first wind monitoring sub-area can be obtained.
  • information, predicting the wind information of the second wind monitoring sub-region are provided in the first embodiment of the present application, so that the flexibility of obtaining wind information can be improved.
  • forecasting the wind information of the second wind monitoring sub-area through the wind information of the first wind monitoring sub-area can also improve the convenience of obtaining the wind information.
  • the wind information monitoring method provided in the first embodiment of the present application further includes: obtaining the target in the second wind monitoring sub-area according to the wind information in the second wind monitoring sub-area The target action information that engineering equipment needs to execute.
  • the so-called target action information includes, but is not limited to, the first target action information used to instruct the target engineering equipment to perform a normal action, and the second target action information used to instruct the target engineering equipment to perform a specified action.
  • the so-called specified action includes but not limited to the action of suspending the work of the target engineering equipment, the action of adjusting the position and posture of the target engineering equipment, the action of reinforcing the target engineering equipment, and the action of transferring the target engineering equipment.
  • the specific implementation method of obtaining the target action information that the target engineering equipment in the second wind monitoring sub-area needs to execute is as follows: first, according to The first wind speed information is used to obtain the second wind speed information corresponding to the wind information in the second wind monitoring sub-region; and then, the target action information is obtained according to the second wind speed information.
  • Obtaining the second wind speed information has been introduced, and the following is an introduction to the process of obtaining target action information according to the second wind speed information. This process can be divided into the following two different processes:
  • the first process is: the height value of the obstacle corresponding to the obstacle information reaches the preset height value. At this time, it is determined that the wind speed value corresponding to the second wind speed information has not reached the second wind speed threshold, and the information used to indicate that the target engineering equipment is performing normally is obtained. The first target action information of the action.
  • the so-called second wind speed threshold is a wind speed threshold set according to the wind speed requirements of the equipment in the second wind monitoring sub-area.
  • the so-called normal action includes: lifting action of the lifting equipment, arm swinging action of the lifting equipment, and the like.
  • the second process is: the obstacle height value corresponding to the obstacle information does not reach the preset height value, at this time, the wind speed value corresponding to the second wind speed information can be obtained, and it is judged whether the wind speed value corresponding to the second wind speed information reaches the second The wind speed threshold, and according to the judgment result, to obtain the target action information, the details are as follows: if the wind speed value corresponding to the second wind speed information reaches the second wind speed threshold, then according to the wind information of the second wind monitoring sub-area, obtain the information for indicating The second target action information of the target engineering equipment executing the specified action. If the wind speed value corresponding to the second wind speed information does not reach the second wind speed threshold, the first target action information is obtained.
  • the wind direction corresponding to the second wind speed information will affect the action corresponding to the target action information. For example, if the wind direction faces east and there are items that are easily blown down by the wind on the west side of the crane, the action corresponding to the target action information should be to move away from the item action etc.
  • the specific implementation process of obtaining the second target action information used to instruct the target engineering equipment to perform a specified action is as follows: first, according to the wind speed value corresponding to the second wind speed information, obtain the wind speed corresponding to the wind information in the second wind monitoring sub-region grade. Then, the corresponding relationship between the wind speed level and the specified action is obtained. Finally, according to the wind speed level and the corresponding relationship, the second target action information is obtained.
  • wind speed grades can be divided into seventeen grades according to the international wind speed classification standard, or they can be divided independently according to the work safety requirements of the equipment.
  • specified actions include, but are not limited to, actions to suspend the work of the target engineering equipment, adjust the position and posture of the target engineering equipment, reinforce the target engineering equipment, and transfer the target engineering equipment.
  • different specified actions are determined for different wind speed levels. That is, it can be guaranteed to take different actions according to the wind speed level to ensure the working safety of the target engineering equipment. In this way, the working safety of the target engineering equipment can be ensured for different wind speed levels, and it can also be based on ensuring the working safety of the target engineering equipment. On the one hand, it improves the flexibility of performing actions on the target engineering equipment.
  • the target action information when the obstacle height value corresponding to the obstacle information does not reach the preset height value, the target action information can also be obtained through the following steps:
  • the difference between the wind speed value corresponding to the first wind speed information and the wind speed value corresponding to the second wind speed information is obtained.
  • the time interval for obtaining wind information can be reduced, and the frequency of obtaining wind information can be increased, so as to closely It monitors what target action needs to be performed on the target engineering equipment, thereby further improving the work safety of the engineering equipment.
  • the wind information monitoring method provided in the first embodiment of the present application can also obtain the risk information of the target engineering equipment according to the second wind information, and mark it after the target action information to remind relevant personnel.
  • the execution subject of the wind information monitoring method provided in the first embodiment of the present application may be: a user terminal installed with software or programs capable of executing the wind information monitoring method provided in the present application.
  • this application The wind information monitoring method provided in the first embodiment of the application can also display target action information.
  • the execution subject of the wind information monitoring method provided in the first embodiment of the present application may also be: a server for providing data services to clients installed with software or programs that realize the target action information query function, at this time
  • the target action information is sent to the user terminal for the action information acquisition request information.
  • the wind information monitoring method provided in the first embodiment of the present application can display target action information, ensure that relevant personnel can obtain the target action information, and perform corresponding actions on the target engineering equipment according to the target action information, thereby ensuring Ensure the real-time performance of the work safety of engineering equipment.
  • the wind information monitoring method provided in the first embodiment of the present application divides the target wind monitoring area into different wind monitoring sub-areas, and there are wind monitoring sub-areas that meet the preset monitoring conditions in the target wind monitoring area , according to the wind information in the first wind monitoring sub-area, the second wind monitoring sub-area is obtained in the adjacent wind monitoring sub-area of the first wind monitoring sub-area, and the second wind monitoring sub-area is obtained in advance In this way, according to the wind information of the second wind monitoring sub-area obtained in advance, the engineering equipment in the second wind monitoring sub-area is given an early warning, which can improve the working safety of the engineering equipment.
  • the second embodiment of the present application further provides a wind information monitoring device. Since the device embodiment is basically similar to the embodiment corresponding to the application scenario and the first embodiment, the description is relatively simple. For related details, refer to the description of the embodiment corresponding to the application scenario and the first embodiment.
  • the device embodiments described below are illustrative only.
  • FIG. 5 is a schematic diagram of a wind information monitoring device provided in the second embodiment of the present application.
  • the first wind monitoring sub-area obtaining unit 501 configured to obtain the first wind monitoring sub-area in the target wind monitoring area whose wind information satisfies preset monitoring conditions, the wind information includes at least wind speed information and wind direction information;
  • a wind information monitoring unit 502 configured to obtain, in the target wind monitoring area, a second wind area adjacent to the first wind monitoring sub area according to the wind information in the first wind monitoring sub area. weather monitoring sub-area, and obtain the wind information of the second wind weather monitoring sub-area.
  • the preset monitoring conditions include a first wind speed threshold
  • the first wind monitoring sub-area obtaining unit 501 is specifically configured to obtain the wind information of the monitoring sub-area in the target wind monitoring area; obtain the wind speed information corresponding to the wind information of the monitoring sub-area as the wind speed information to be judged. Wind speed information; judging whether the wind speed value corresponding to the wind speed information to be judged reaches the first wind speed threshold within a specified time interval; The first wind monitoring sub-area.
  • the wind information monitoring unit 502 is specifically configured to obtain the second wind monitoring sub-area according to the first wind direction information corresponding to the wind information in the first wind monitoring sub-area.
  • the wind information monitoring device provided in the second embodiment of the present application further includes: a target action information obtaining unit, configured to obtain the second wind information according to the wind information in the second wind monitoring sub-area.
  • a target action information obtaining unit configured to obtain the second wind information according to the wind information in the second wind monitoring sub-area.
  • the target action information that needs to be executed to monitor the target engineering equipment in the sub-area.
  • the wind information monitoring unit 502 is specifically configured to obtain terrain information between the second wind monitoring sub-region and the first wind monitoring sub-region; according to the terrain information and the first wind monitoring sub-region The first wind speed information and/or the first wind direction information corresponding to the wind information in a wind monitoring sub-area, and the second wind speed information and/or the second wind direction corresponding to the wind information in the second wind monitoring sub-area information;
  • the target action information obtaining unit is specifically configured to obtain the target action information according to the second wind speed information and/or the second wind direction information.
  • the target action information includes one of the following action information:
  • Second target action information used to instruct the target engineering equipment to perform a specified action.
  • the target action information obtaining unit is further configured to obtain risk information of the target engineering equipment according to the second wind speed information and/or the second wind direction information.
  • the third embodiment of the present application further provides an electronic device. Since the third embodiment is basically similar to the embodiment corresponding to the application scenario and the first embodiment, the description is relatively simple. For relevant information, please refer to the description of the embodiment corresponding to the application scenario and the first embodiment.
  • the third embodiment described below is merely illustrative.
  • FIG. 6 is a schematic diagram of an electronic device provided in an embodiment of the present application.
  • the electronic device includes: a processor 601; and a memory 602, which is used to store the program of the wind information monitoring method. After the device is powered on and runs the program of the wind information monitoring method through the processor, it executes the above-mentioned implementation of the present application.
  • the wind information monitoring method provided in the example.
  • the fourth embodiment of the present application further provides a storage medium. Since the fourth embodiment is basically similar to the embodiment corresponding to the application scenario and the first embodiment, the description is relatively simple. For relevant details, refer to the description of the embodiment corresponding to the application scenario and the first embodiment.
  • the fourth embodiment described below is merely illustrative.
  • the storage medium stores a computer program, and the computer program is run by a processor to execute the wind information monitoring method provided in the first embodiment of the present application.

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Abstract

提供了一种风象信息监测方法、装置、电子设备以及存储介质。该方法包括:获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,风象信息至少包括风速信息以及风向信息(S301);根据第一风象监测子区域的风象信息,在目标风象监测区域中获得与第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息(S302)。能够根据提前获得的第二风象监测子区域的风象信息,对第二风象监测子区域内的工程设备进行提前预警,提高工程设备的工作安全性。

Description

风象信息监测方法、装置、电子设备及存储介质
本申请要求在2021年06月30日提交中国专利局、申请号为202110738256.2、发明名称为“风象信息监测方法、装置、电子设备及存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及风象监测领域,具体涉及一种风象信息监测方法。本申请同时涉及一种风象信息监测装置、一种电子设备以及一种存储介质。
背景技术
在工程设备的工作过程中,往往会受到气象条件的影响,从而导致工程设备的工作精度以及工作安全性都会受到影响,如:对于进行高空作业的工程设备来说,风速不仅仅会对其操作效率与精度造成较大影响,还有可能造成安全风险。因此,为了保障工程设备能够避免由风速带来的工作精度以及工作安全度,往往需要基于风象信息监测,来对工程设备的工作进行暂停或者停止施工的指导。
现有的风象信息监测的方案一般为:分区域监测不同区域的实时风速,获得不同区域的实时风速。对于进行复杂作业的工程设备而言,暂停或者停止施工都需要一定的时间准备,通过获得不同区域的实时风速,对工程设备进行预警,往往会导致工程设备的工作安全性较低。
发明内容
本申请提供一种风象信息监测方法、一种风象信息监测装置、一种电子设备以及一种存储介质,以提高工程设备的工作安全性。
本申请实施例提供一种风象信息监测方法,包括:
获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,所述风象信息至少包括风速信息以及风向信息;
根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一 风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息。
可选的,所述预设监测条件包括第一风速阈值;
所述获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,包括:
获得所述目标风象监测区域中的监测子区域的风象信息;
获得所述监测子区域的风象信息对应的风速信息作为待判断风速信息;
判断在指定时间区间内所述待判断风速信息对应的风速值是否达到所述第一风速阈值;
将风速值达到所述第一风速阈值的所述待判断风速信息对应的监测子区域作为所述第一风象监测子区域。
可选的,所述根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,包括:根据所述第一风象监测子区域的风象信息对应的风向信息,获得所述第二风象监测子区域。
可选的,本申请实施例提供的风向信息监测方法,还包括:根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息。
可选的,所述获得第二风象监测子区域的风象信息,包括:
获得所述第二风象监测子区域与所述第一风象监测子区域之间的地形信息;
根据所述地形信息以及所述第一风象监测子区域的风象信息对应的第一风速信息和/或第一风向信息,获得所述第二风象监测子区域的风象信息对应的第二风速信息和/或第二风向信息;
所述根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息,包括:根据所述第二风速信息和/或所述第二风向信息,获得所述目标动作信息。
可选的,所述目标动作信息包括以下动作信息中的一种:
用于指示所述目标工程设备执行正常动作的第一目标动作信息;
用于指示所述目标工程设备执行指定动作的第二目标动作信息。
可选的,本申请实施例提供的风向信息监测方法,还包括:根据所述第二风速信息和/或所述第二风向信息,获得所述目标工程设备存在的风险信息。
本申请另一实施例,还提供一种风象信息监测装置,包括:
第一风象监测子区域获得单元,用于获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,所述风象信息至少包括风速信息以及风向信息;
风象信息监测单元,用于根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测 子区域的风象信息。
本申请另一实施例,还提供一种电子设备,包括:
处理器;以及
存储器,用于存储方法的程序,该设备通电并通过所述处理器运行该方法的程序后,执行本申请实施例提供的方法。
本申请另一实施例,还提供一种存储介质,该存储介质存储有计算机程序,该计算机程序被处理器运行,执行本申请实施例提供的方法。
与现有技术相比,本申请具有以下优点:
本申请实施例提供的风象信息监测方法,能提高工程设备的工作安全性,以下结合具体实施方式进行详细说明。
附图说明
为了更清楚地说明本申请具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的风象信息监测方法的第一应用场景示意图。
图2为本申请实施例提供的风象信息监测方法的第二应用场景示意图。
图3为本申请第一实施例提供的风象信息监测方法的流程图。
图4为本申请第一实施例提供的第一风象监测子区域获得方法的流程图。
图5为本申请第二实施例中提供的一种风象信息监测装置的示意图。
图6为本申请实施例中提供的一种电子设备的示意图。
具体实施方式
下面将结合附图对本申请的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在本申请的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。此外,术语“第一”、“第二”、 “第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
为了更清楚地展示本申请实施例提供的风象信息监测方法,首先介绍一下本申请实施例提供的风象信息监测方法的应用场景。
在实际应用中,本申请提供的风象信息监测方法可以应用于对起重设备所在的区域进行风象信息监测的场景。此时,所谓目标工程设备为:起重设备。其中,起重设备具体包括但不限于起重机以及塔吊等。
本申请实施例提供的风象信息监测方法的执行主体可以为安装有能够执行本申请提供的风象信息监测方法的软件或者程序的用户端。所谓用户端一般为可通过人机交互界面展示信息的电子设备,如手机、电脑等,该用户端还可以为直接安装在目标工程设备上的电子设备。
另外,本申请实施例提供的风象信息监测方法的执行主体可以为用于为执行本申请提供的风象信息监测方法的软件或者程序的用户端提供数据服务的服务端,该服务端的一般实现方式为服务器或者服务器集群。
以下具体以目标工程设备为起重机为例,对本申请实施例提供的风象信息监测方法的应用场景进行说明,对于目标工程设备为起重机之外的其他工程设备时的风象信息监测方法的应用场景,请参照对目标工程设备为起重机时的风象信息监测方法的应用场景,在此不再一一赘述。
请参照图1,其为本申请实施例提供的风象信息监测方法的第一应用场景示意图,图1中包括:服务器101、用户端102以及起重机103。
首先,确定目标风象监测区域,将该目标风象监测区域按照经纬度信息预先划分为多个不同的风象监测子区域,并且获得每一风象监测子区域相邻的风象监测子区域,并存储。
其次,通过设置在目标风象监测区域内的风象监测设备对目标风象监测区域进行风象信息的监测,获得目标风象监测区域中的风象监测子区域的风象信息;将该风象监测子区域的风象信息发送给服务器101。
所谓风象信息是指用于描述风象情况的信息,包括但不限于风速信息以及风向信息。
服务器101在获得风象监测子区域的风象信息后,可以获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域。
所谓预设监测条件为根据先验值预先设定的、用于筛选风象监测子区域的监测条件,一般包括风速阈值等。
再次,服务器101会根据风向信息,在目标风象监测区域中获得与第一风象监测子区域相邻、且满足风向信息的风象监测子区域作为第二风象监测子区域,并根据第一风象监测子 区域的风象信息,获得第二风象监测子区域的风象信息。
请参照图2,其为本申请实施例提供的风象信息监测方法的第二应用场景示意图。在具体实现过程中,第一风象监测子区域可以为目标风象监测区域(包括风象监测子区域1-8以及标号为星号的风象监测子区域)内满足预设监测条件的任意风象监测子区域。
本申请实施例中具体以第一风象监测子区域为目标风象监测区域内的中心子区域(标号为星号的风象监测子区域)为例,在第一风象监测子区域为目标风象监测区域内的中心子区域时,如果第一风象监测子区域的风象信息对应的风向朝东,那么,在第一风象监测子区域监测到的风象,仅能对位于第一风象监测子区域东侧的相邻风象监测子区域造成影响。此时,第二风象监测子区域为目标风象监测区域内子区域3、5以及8。也就是说,在确定第二风象监测子区域时,需要考虑到第一风象监测子区域的风象信息对应的第一风向信息。
最后,请再参照图1,在用户端102向服务端101发送动作信息获取请求信息时,服务端101会根据第二风象信息,获得第二风象监测子区域内的目标工程设备103需要执行的目标动作信息,并针对动作信息获取请求信息,将目标动作信息发送给用户端102。
另外,服务端101还可以根据第二风象信息,获得目标工程设备存在的风险信息,标注在目标动作信息后,以提示相关人员。
在用户端102获得目标动作信息后会通过人机交互界面进行目标动作信息的展示,用于指示用户根据目标动作信息操作目标工程设备103执行动作。
所谓目标动作信息包括但不限于用于指示目标工程设备执行正常动作的第一目标动作信息,以及用于指示目标工程设备执行指定动作的第二目标动作信息。所谓指定动作包括但不限于暂停目标工程设备工作的动作、调整目标工程设备站位姿态的动作、加固目标工程设备的动作以及转移目标工程设备的动作。
用户在获得目标动作信息后,可以根据目标动作信息来执行指定动作,以确保目标工程设备的工作安全性。此外,还可以先将目标动作信息输入用于控制目标工程设备的控制器,再通过控制器来控制目标工程设备执行相应的指定动作,以确保目标工程设备的工作安全性。
本申请实施例中不对本申请实施例中提供的电风象信息监测方法的应用场景做具体的限定,如:本申请提供的电风象信息监测方法还可以应用于其他工程设备,在此不再一一赘述。提供上述电风象信息监测方法的应用场景对应的实施例,是为了便于理解本申请提供的电风象信息监测方法,而并非用于限定本申请提供的电风象信息监测方法。
第一实施例
本申请第一实施例中提供一种风象信息监测方法,以下结合图3对本申请第一实施例提供的风象信息监测方法进行详细的介绍。图3为本申请第一实施例提供的风象信息监测方 法的流程图。
在步骤S301中,获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,风象信息至少包括风速信息以及风向信息。
所谓风象信息是指用于描述风象情况的信息,包括但不限于风速信息以及风向信息。
所谓目标风象监测区域为根据需求或者实际地理环境,预先划分出来的风象监测区域,该目标风象监测区域具体还可以按照地理位置信息被划分为了多个不同的风象监测子区域。具体的,可以将目标风象监测区域按照不同地形对应的位置信息,将目标风象监测区域划分为多个不同的风象监测子区域。
本申请实施例中,不同的风象监测子区域对应不同的地形,能够使风象信息的监测更为方便。
在具体实现过程中,可以根据地理位置信息的经纬度信息来将目标风象监测区域划分为多个不同的风象监测子区域。一般情况下,每一风象监测子区域具有8个相邻的风象监测子区域,但是对于处于目标风象监测区域边缘位置的风象监测子区域,相邻的风象监测子区域的数目可能少于8个。另外,需要说明的是,本申请第一实施例中,不对每一风象监测子区域的相邻风象监测子区域的数目进行限定,而是需要根据具体的划分需求对应的划分方式来确定。本申请第一实施例中,预设监测条件包括第一风速阈值,该第一风速阈值是根据第一风象监测子区域内设备对于风速的要求来设置的风速阈值。
在预设监测条件包括第一风速阈值时,所谓获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域的具体实现过程如图4所示,其为本申请第一实施例提供的第一风象监测子区域获得方法的流程图。
步骤S401:获得目标风象监测区域中的监测子区域的风象信息。
所谓监测子区域的风象信息可以通过设置在相应监测子区域内用于风象信息监测的风象信息监测设备来获得。
步骤S402:获得监测子区域的风象信息对应的风速信息作为待判断风速信息。
步骤S403:判断在指定时间区间内待判断风速信息对应的风速值是否达到第一风速阈值。
步骤S404:将风速值达到第一风速阈值的待判断风速信息对应的监测子区域作为第一风象监测子区域。
请再参照图3,在步骤S302中,根据第一风象监测子区域的风象信息,在目标风象监测区域中获得与第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息。
所谓目标工程设备包括但不限于起重设备。其中,起重设备具体包括但不限于起重机、塔吊等。本申请第一实施例中,获得第二风象监测子区域的具体实现过程为:首先,获得第一风象监测子区域的风象信息对应的风向信息;然后,根据第一风象监测子区域的风象信息对应的风向信息,在目标风象监测区域中获得与第一风象监测子区域相邻、且符合风向信息对应的风向的风象监测子区域作为第二风象监测子区域。即,根据第一风象监测子区域的风象信息对应的第一风向信息,获得第二风象监测子区域。
对于第一风向信息,具体可以通过设置在第一风象监测区域的至少一个具有风向监测功能的设备来获得。
如果第一风象监测子区域具有八个或者其他数目的相邻风象监测子区域,那么如果风向朝东,那么,在第一风象监测子区域监测到的风象仅能对位于第一风象监测子区域东侧的相邻风象监测子区域造成影响。此时,第二风象监测子区域为位于第一风象监测子区域东侧的相邻风象监测子区域。
另外,如果不对风向进行限定或者风向不定,那么,第二风象监测子区域还可以为位于第一风象监测子全部的相邻风象监测子区域。
所谓获得目标动作信息的具体实现方式为:首先,根据第一风象监测子区域的风象信息,获得第二风象监测子区域的风象信息。然后,根据第二风象监测子区域的风象信息,获得目标动作信息。
所谓根据第一风象监测子区域的风象信息,获得第二风象监测子区域的风象信息具体是指:根据第一风象监测子区域的风象信息,对第二风象监测子区域的风象信息进行预测。预测过程包括:根据第一风象监测子区域的风象信息对应的第一风速信息,获得第二风象监测子区域的风象信息对应的第二风速信息。预测过程还包括:根据第一风象监测子区域的风象信息对应的第一风向信息,获得第二风象监测子区域的风象信息对应的第二风向信息。即,本申请第一实施例中,获得第二风象监测子区域的风象信息的具体实现方式为:首先,获得第二风象监测子区域与第一风象监测子区域之间的地形信息;然后,根据地形信息以及第一风象监测子区域的风象信息对应的第一风速信息和/或第一风向信息,获得第二风象监测子区域的风象信息对应的第二风速信息和/或第二风向信息。
具体的,根据第一风象监测子区域与第二风象监测子区域之间的距离信息、地形信息等来对第二风象监测子区域的风象信息进行预测。
所谓地形信息包括第一风象监测子区域与第二风象监测子区域之间的障碍物信息。其中,障碍物具体可以是指:山峰、建筑物以及峡谷等,障碍物信息包括障碍物高度值。
本申请第一实施例中,由于目标工程设备为第二风象监测子区域内的工程设备,因此, 获得第二风象监测子区域与第一风象监测子区域之间的地形信息具体可以为:获得第一风象监测子区域内的风象监测点与目标工程设备之间的地形信息。也就是说,本申请第一实施例中,第二风象监测子区域与第一风象监测子区域之间的地形信息具体可以为第一风象监测子区域内的风象监测点与目标工程设备之间的地形信息。根据第一风象监测子区域的风象信息对应的第一风速信息,获得第二风象监测子区域的风象信息对应的第二风速信息的具体实现过程为:首先,获得障碍物信息对应的障碍物高度值。然后,判断障碍物信息对应的障碍物高度值是否达到预设高度值。最后,若障碍物信息对应的障碍物高度值达到预设高度值,则判定第二风速信息对应的风速值小于第二风速阈值,此时,还可以获得第二风速信息对应的风速值的具体值,也可以不获取第二风速信息对应的风速值的具体值。
另外,若障碍物信息对应的障碍物高度值未达到预设高度值,则可以根据第一风速信息对应的风速值以及障碍物信息对应的障碍物高度值,来计算第二风速信息对应的风速值。
本申请第一实施例中,不仅可以通过设置在相应监测子区域内用于风象信息监测的风象信息监测设备来获得的风象信息,还可以根据第一风象监测子区域的风象信息,对第二风象监测子区域的风象信息进行预测。也就是说,本申请第一实施例中提供了不同类型的风象信息获得方法,这样,能够提高风象信息获得的灵活性。
另外,通过第一风象监测子区域的风象信息,对第二风象监测子区域的风象信息进行预测也能够提高风象信息获得的便利性。
在步骤S302之后,本申请第一实施例提供的风象信息监测方法,还包括:根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息。
本申请第一实施例中,所谓目标动作信息包括但不限于用于指示目标工程设备执行正常动作的第一目标动作信息,以及用于指示目标工程设备执行指定动作的第二目标动作信息。所谓指定动作包括但不限于暂停目标工程设备工作的动作、调整目标工程设备站位姿态的动作、加固目标工程设备的动作以及转移目标工程设备的动作。本申请第一实施例中,所谓根据第二风象监测子区域的风象信息,获得第二风象监测子区域内的目标工程设备需要执行的目标动作信息的具体实现方式为:首先,根据第一风速信息,获得第二风象监测子区域的风象信息对应的第二风速信息;然后,根据第二风速信息,获得目标动作信息。获得第二风速信息的已经介绍,以下对根据第二风速信息,获得目标动作信息的过程进行介绍,该过程可以分为如下两种不同的过程:
第一种过程为:障碍物信息对应的障碍物高度值达到预设高度值,此时,判定第二风速信息对应的风速值未达到第二风速阈值,并获得用于指示目标工程设备执行正常动作的第一 目标动作信息。
所谓第二风速阈值是根据第二风象监测子区域内设备对于风速的要求来设置的风速阈值。
以目标工程设备为起重设备为例,所谓正常动作包括:起重设备的起重动作,起重设备的摆臂动作等。
第二种过程为:障碍物信息对应的障碍物高度值未达到预设高度值,此时,可以获得第二风速信息对应的风速值,并判断第二风速信息对应的风速值是否达到第二风速阈值,并根据判断结果,来获得目标动作信息,详情如下:若第二风速信息对应的风速值达到第二风速阈值,则根据第二风象监测子区域的风象信息,获得用于指示目标工程设备执行指定动作的第二目标动作信息。若第二风速信息对应的风速值未达到第二风速阈值,则获得第一目标动作信息。
需要说明的是,无论是采用第一种获得目标动作信息的过程,还是采用第二种获得目标动作信息的过程,都需要在考虑第二风速信息的同时,考虑第二风向信息对目标动作信息的影响。即,第二风速信息对应的风向,会影响目标动作信息对应的动作,如:风向朝东且起重机的西侧有容易被风刮倒的物品,则目标动作信息对应的动作应为远离该物品的动作等。
所谓获得用于指示目标工程设备执行指定动作的第二目标动作信息具体的实现过程为:首先,根据第二风速信息对应的风速值,获得第二风象监测子区域的风象信息对应的风速等级。然后,获得风速等级与指定动作之间的对应关系。最后,根据风速等级以及对应关系,获得第二目标动作信息。
所谓风速等级可分为按照国际风速划分标准依次将风速划分为十七个等级,也可以按照设备的工作安全需求进行自主划分。
不同风速等级对应的指定动作不同,所谓指定动作包括但不限于暂停目标工程设备工作的动作、调整目标工程设备站位姿态的动作、加固目标工程设备的动作以及转移目标工程设备的动作。
本申请第一实施例中,针对不同的风速等级,确定的指定动作不同。即,能够保障根据风速等级来采取不同的动作来确保目标工程设备的工作安全,这样,针对不同风速等级都能够确保目标工程设备的工作安全,而且还能在确保目标工程设备的工作安全的基础上,提高对目标工程设备执行动作的灵活性。
本申请第一实施例中,在障碍物信息对应的障碍物高度值未达到预设高度值时,还可以通过如下步骤来获得目标动作信息:
首先,获得第一风速信息对应的风速值与第二风速信息对应的风速值之间的差值。
然后,判断差值是否达到预设差值;
最后,若是,则获得用于指示目标工程设备执行指定动作的第二目标动作信息;若差值未达到预设差值,则获得用于指示目标工程设备执行正常动作的第一目标动作信息。
另外,在差值是达到预设差值或者第一风速信息对应的风速值大于第一风速阈值时,都可以减少获得风象信息的时间间隔,提高获得风象信息的频率,以此来密切监测需要对目标工程设备执行何种目标动作,从而进一步提高工程设备的工作安全性。
此外,本申请第一实施例提供的风象信息监测方法,还可以根据第二风象信息,获得目标工程设备存在的风险信息,标注在目标动作信息后,用以提示相关人员。
需要说明的是,本申请第一实施例中提供的风象信息监测方法的执行主体可以为:安装有能够执行本申请提供的风象信息监测方法的软件或者程序的用户端,此时,本申请第一实施例中提供的风象信息监测方法,还可以展示目标动作信息。
另外,本申请第一实施例中提供的风象信息监测方法的执行主体还可以为:用于为安装有实现目标动作信息查询功能的软件或者程序的用户端提供数据服务的服务端,此时,本申请第一实施例中提供的风象信息监测方法,在获得用户端发送的动作信息获取请求信息后,针对动作信息获取请求信息,将目标动作信息发送给用户端。
本申请第一实施例中提供的风象信息监测方法,能够展示目标动作信息,能够确保相关人员可以获得该目标动作信息,并针对目标动作信息,对目标工程设备执行相应的动作,从而能够保证确保工程设备的工作安全性的实时性。
本申请第一实施例提供的风象信息监测方法,将目标风象监测区域划分为了不同的风象监测子区域,并且在目标风象监测区域中有满足预设监测条件的风象监测子区域时,根据第一风象监测子区域的风象信息,在该第一风象监测子区域的相邻风象监测子区域中获得第二风象监测子区域,并提前获得第二风象监测子区域的风象信息,这样,根据提前获得的第二风象监测子区域的风象信息,对第二风象监测子区域内的工程设备进行提前预警,能够提高工程设备的工作安全性。
第二实施例
与本申请提供的风象信息监测方法的应用场景对应的实施例以及第一实施例提供的风象信息监测方法相对应的,本申请第二实施例还提供了一种风象信息监测装置。由于装置实施例基本相似于应用场景对应的实施例以及第一实施例,所以描述得比较简单,相关之处参见应用场景对应的实施例以及第一实施例的部分说明即可。下述描述的装置实施例仅仅是示意性的。
请参照图5,其为本申请第二实施例中提供的一种风象信息监测装置的示意图。
本申请第二实施例中提供的风象信息监测装置,包括:
第一风象监测子区域获得单元501,用于获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,所述风象信息至少包括风速信息以及风向信息;
风象信息监测单元502,用于根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息。
可选的,所述预设监测条件包括第一风速阈值;
所述第一风象监测子区域获得单元501具体用于获得所述目标风象监测区域中的监测子区域的风象信息;获得所述监测子区域的风象信息对应的风速信息作为待判断风速信息;判断在指定时间区间内所述待判断风速信息对应的风速值是否达到所述第一风速阈值;将风速值达到所述第一风速阈值的所述待判断风速信息对应的作为所述第一风象监测子区域。
可选的,所述风象信息监测单元502具体用于根据所述第一风象监测子区域的风象信息对应的第一风向信息,获得所述第二风象监测子区域。
可选的,本申请第二实施例提供的风象信息监测装置,还包括:目标动作信息获得单元,用于根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息。
可选的,所述风象信息监测单元502具体用于获得所述第二风象监测子区域与所述第一风象监测子区域之间的地形信息;根据所述地形信息以及所述第一风象监测子区域的风象信息对应的第一风速信息和/或第一风向信息,获得所述第二风象监测子区域的风象信息对应的第二风速信息和/或第二风向信息;
所述目标动作信息获得单元具体用于根据所述第二风速信息和/或所述第二风向信息,获得所述目标动作信息。
可选的,所述目标动作信息包括以下动作信息中的一种:
用于指示所述目标工程设备执行正常动作的第一目标动作信息;
用于指示所述目标工程设备执行指定动作的第二目标动作信息。
可选的,所述目标动作信息获得单元还用于根据所述第二风速信息和/或所述第二风向信息,获得所述目标工程设备存在的风险信息。
第三实施例
与本申请提供的风象信息监测方法的应用场景对应的实施例以及第一实施例提供的风象信息监测方法相对应的,本申请第三实施例还提供了一种电子设备。由于第三实施例基本相似于应用场景对应的实施例以及第一实施例,所以描述得比较简单,相关之处参见应用场 景对应的实施例以及第一实施例的部分说明即可。下述描述的第三实施例仅仅是示意性的。
请参照图6,其为本申请实施例中提供的一种电子设备的示意图。
该电子设备,包括:处理器601;以及存储器602,用于存储风象信息监测方法的程序,该设备通电并通过所述处理器运行该风象信息监测方法的程序后,执行本申请上述实施例中提供的风象信息监测方法。
需要说明的是,本申请第三实施例提供的电子设备的详细描述,可以参考对本申请提供的上述第一实施例的相关描述,这里不再赘述。
第四实施例
与本申请提供的风象信息监测方法的应用场景对应的实施例以及第一实施例提供的风象信息监测方法相对应的,本申请第四实施例还提供了一种存储介质。由于第四实施例基本相似于应用场景对应的实施例以及第一实施例,所以描述得比较简单,相关之处参见应用场景对应的实施例以及第一实施例的部分说明即可。下述描述的第四实施例仅仅是示意性的。
该存储介质存储有计算机程序,该计算机程序被处理器运行,执行本申请第一实施例中提供的风象信息监测方法。
需要说明的是,本申请第四实施例提供的存储介质的详细描述,可以参考对本申请提供的第一方法实施例的相关描述,这里不再赘述。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本发明创造的保护范围之中。

Claims (10)

  1. 一种风象信息监测方法,其特征在于,包括:
    获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,所述风象信息至少包括风速信息以及风向信息;
    根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息。
  2. 根据权利要求1所述的方法,其特征在于,所述预设监测条件包括第一风速阈值;
    所述获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,包括:
    获得所述目标风象监测区域中的监测子区域的风象信息;
    获得所述监测子区域的风象信息对应的风速信息作为待判断风速信息;
    判断在指定时间区间内所述待判断风速信息对应的风速值是否达到所述第一风速阈值;
    将风速值达到所述第一风速阈值的所述待判断风速信息对应的监测子区域作为所述第一风象监测子区域。
  3. 根据权利要求1所述的方法,其特征在于,所述根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,包括:根据所述第一风象监测子区域的风象信息对应的第一风向信息,获得所述第二风象监测子区域。
  4. 根据权利要求1所述的方法,其特征在于,还包括:根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息。
  5. 根据权利要求4所述的方法,其特征在于,所述获得第二风象监测子区域的风象信息,包括:
    获得所述第二风象监测子区域与所述第一风象监测子区域之间的地形信息;
    根据所述地形信息以及所述第一风象监测子区域的风象信息对应的第一风速信息和/或第一风向信息,获得所述第二风象监测子区域的风象信息对应的第二风速信息和/或第二风 向信息;
    所述根据所述第二风象监测子区域的风象信息,获得所述第二风象监测子区域内的目标工程设备需要执行的目标动作信息,包括:根据所述第二风速信息和/或所述第二风向信息,获得所述目标动作信息。
  6. 根据权利要求5所述的方法,其特征在于,所述目标动作信息包括以下动作信息中的一种:
    用于指示所述目标工程设备执行正常动作的第一目标动作信息;
    用于指示所述目标工程设备执行指定动作的第二目标动作信息。
  7. 根据权利要求5所述的方法,其特征在于,还包括:根据所述第二风速信息和/或所述第二风向信息,获得所述目标工程设备存在的风险信息。
  8. 一种风象信息监测装置,其特征在于,包括:
    第一风象监测子区域获得单元,用于获得目标风象监测区域中风象信息满足预设监测条件的第一风象监测子区域,所述风象信息至少包括风速信息以及风向信息;
    风象信息监测单元,用于根据所述第一风象监测子区域的风象信息,在所述目标风象监测区域中获得与所述第一风象监测子区域相邻的第二风象监测子区域,并获得第二风象监测子区域的风象信息。
  9. 一种电子设备,其特征在于,包括:
    处理器;以及
    存储器,用于存储方法的程序,该设备通电并通过所述处理器运行该方法的程序后,执行权利要求1-7任意一项所述的方法。
  10. 一种存储介质,其特征在于,该存储介质存储有计算机程序,该计算机程序被处理器运行,执行权利要求1-7任意一项所述的方法。
PCT/CN2022/102498 2021-06-30 2022-06-29 风象信息监测方法、装置、电子设备及存储介质 WO2023274325A1 (zh)

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