Dummy resource renovation task intelligent scheduling system based on GIS (Geographic Information System)

Through the GIS-based intelligent scheduling system for dumb resource remediation tasks, the problem of insufficient progress control accuracy of dumb resource remediation lines has been solved, and efficient scheduling and improvement of remediation efficiency of dumb resource lines have been achieved.

CN120654981APending Publication Date: 2025-09-16中国联合网络通信有限公司广东省分公司
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Patent Information

Application Number
CN202510550492.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

In the existing technology, the remediation progress of dumb resource remediation lines is affected by multiple factors, resulting in insufficient control accuracy and inability to dispatch in a timely manner, which affects the remediation efficiency.

Method used

A GIS-based intelligent scheduling system for dumb resource remediation tasks is adopted. Data is collected and visualized through the GIS module. Combined with demand reception, plan construction, progress confirmation, progress analysis and scheduling units, intelligent scheduling and progress control of dumb resource lines are achieved, including progress determination, parameter adjustment and issuance of scheduling instructions.

Benefits of technology

It improves the control accuracy and efficiency of dumb resource line remediation, optimizes resource utilization, reduces the complexity of manual scheduling, and ensures the timely completion of remediation tasks.

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Abstract

The invention relates to the technical field of dumb resource renovation, in particular to a GIS-based dumb resource renovation task intelligent scheduling system, which periodically monitors the renovation condition of a dumb resource line and determines the renovation progress according to the completion condition of the number of dumb resources in a single dumb resource line. Whether the renovation of a single dumb resource line is qualified or not is analyzed according to the renovation progress, and in consideration of the fact that the renovation complexity can be increased and the renovation duration is influenced by mounting parts, whether the renovation of the dumb resource line is qualified or not is secondarily judged according to the mounting number of the parts in the dumb resource line; therefore, the control precision of the renovation condition of the dumb resource line is improved, the renovation of a single dumb resource line is judged to be unqualified when the number of finished dumb resources is very small, the reason for the unqualified renovation is analyzed according to the renovation progress, and then scheduling processing is carried out in time according to the analysis result, so that the renovation efficiency of the dumb resource line is ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of dumb resource remediation, and in particular to a GIS-based dumb resource remediation task intelligent scheduling system. Background Art

[0002] By combining geographic information system (GIS) technology, the intelligent scheduling and progress visualization of dumb resource remediation tasks are achieved. The system automatically plans the optimal remediation path based on the geographical location, resource distribution, and task priority of the remediation task, and dynamically adjusts task allocation. Existing technologies generate fault handling work orders based on dumb resource information and related information about the fault. Based on the fault handling work order, the faulty optical cable, the fault location, and the fault type of the optical cable are understood. This allows maintenance personnel to quickly handle the optical cable fault according to the fault handling work order, thereby improving the efficiency of optical cable maintenance and management. However, the remediation progress of dumb resource remediation lines is affected by various factors. Due to insufficient control accuracy of the remediation progress, timely scheduling cannot be carried out, thus affecting the remediation efficiency.

[0003] Chinese patent application number: CN202311830425.0 discloses a dumb resource monitoring and management platform for optical cables. The monitoring and management platform obtains the location information and label information of the dumb resources respectively through the resource location acquisition module and the resource label acquisition module, associates the location information and label information and stores them; analyzes the vibration signal of the optical cable collected by the status analysis module in real time through the status analysis module, obtains the optical cable where the fault occurs, the fault location and the fault type of the optical cable, and generates a fault work order; retrieves the dumb resource information corresponding to the faulty optical cable according to the fault work order through the work order scheduling module, generates a fault handling work order with the dumb resource information and related information of the fault, and can understand the faulty optical cable, the fault location and the fault type of the optical cable according to the fault handling work order, so that maintenance personnel can quickly handle the optical cable fault according to the fault handling work order, thereby improving the efficiency of optical cable maintenance and management.

[0004] However, the prior art still has the following problems:

[0005] The progress of dumb resource remediation lines is affected by many factors. Due to insufficient control accuracy of the remediation progress, timely scheduling cannot be carried out, thus affecting the remediation efficiency. Summary of the Invention

[0006] To this end, the present invention provides a GIS-based intelligent scheduling system for dumb resource remediation tasks to overcome the problem in the prior art that the remediation progress of dumb resource remediation lines is affected by multiple factors, and the lack of control accuracy for the remediation progress leads to the inability to schedule in a timely manner, thereby affecting the remediation efficiency.

[0007] To achieve the above objectives, the present invention provides a GIS-based intelligent scheduling system for dumb resource remediation tasks. It includes:

[0008] GIS module, which is used to collect dumb resource data and visualize the dumb resources to be renovated;

[0009] A demand receiving unit, connected to the GIS module, for receiving dumb resource remediation demands;

[0010] a plan construction unit connected to the demand receiving unit, for constructing a regulation plan standard for each dumb resource line based on the dumb resource regulation demand received by the demand receiving unit;

[0011] a progress confirmation unit, connected to the GIS module and the plan construction unit, respectively, for determining the progress of the regulation of a single dumb resource line based on the dumb resource data obtained by the GIS module;

[0012] a progress analysis unit, connected to the GIS module, the demand receiving unit, the plan building unit, and the progress confirmation unit, respectively, for determining whether the renovation of a single dumb resource line is qualified based on the determined renovation progress; if the renovation of the single dumb resource line is initially determined to be unqualified, performing a secondary determination on whether the renovation of the single dumb resource line is qualified based on the number of installed components; or analyzing the reasons for the unqualified renovation of the single dumb resource line based on the renovation progress;

[0013] an adjusting unit connected to the progress analysis unit, for adjusting corresponding parameters to corresponding values ​​based on the determination result of the progress analysis unit, the parameters including: a first preset remediation progress and a noise reduction ratio;

[0014] The scheduling unit is connected to the schedule analysis unit and is used to determine the scheduling scale and send a scheduling signal based on the scheduling instruction of the schedule analysis unit.

[0015] Furthermore, the progress analysis unit is used to determine whether the remediation of a single dumb resource line is qualified based on the determined remediation progress, including:

[0016] The progress confirmation unit is used to calculate the ratio of the number of completed dumb resources to be rectified to the total number of dumb resources to be rectified, and obtain the remediation progress.

[0017] If the remediation progress is greater than or equal to the first preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is qualified;

[0018] If the remediation progress is less than the first preset remediation progress and greater than or equal to the second preset remediation progress, the progress analysis unit preliminarily determines that the remediation of the single dumb resource line is unqualified, and performs a secondary determination on whether the remediation of the single dumb resource line is qualified based on the number of components installed;

[0019] If the remediation progress is less than the second preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

[0020] Furthermore, the progress analysis unit is used to make a secondary determination on whether the renovation of a single dumb resource line is qualified based on the number of components installed, including:

[0021] The progress analysis unit is used to calculate the ratio of the number of components installed in the current remediation cycle to the total number of components planned to be installed, and obtain the component installation progress.

[0022] If the component installation progress is greater than or equal to the preset component installation progress, the progress analysis unit determines that the dumb resource remediation progress is affected by the installation of the component;

[0023] If the component installation progress is less than the preset component installation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

[0024] Furthermore, the adjustment unit is used to calculate the difference between the component installation progress and the preset component installation progress under the condition that the dumb resource remediation progress is affected by the installation component, obtain the installation progress deviation, and adjust the first preset remediation progress based on the installation progress deviation, wherein the reduction in the first preset remediation progress is positively correlated with the installation progress deviation.

[0025] Furthermore, the progress analysis unit is used to analyze the reasons for the failure of the remediation of a single dumb resource line based on the remediation progress, including:

[0026] The progress analysis unit is used to calculate the difference between the remediation progress and the second preset remediation progress to obtain the remediation progress deviation.

[0027] If the remediation progress deviation is less than or equal to the preset remediation progress deviation, the progress analysis unit determines to issue a dispatch instruction;

[0028] If the remediation progress deviation is greater than the preset remediation progress deviation, the progress analysis unit determines that the reason for the unqualified remediation of the single dumb resource line is unqualified generation of the GIS.

[0029] Furthermore, the scheduling unit is used to, under the condition of determining whether to issue a scheduling instruction,

[0030] Obtain data information of other dumb resource lines, and extract dumb resource lines whose remediation progress within the same remediation cycle is greater than the first preset remediation progress, and mark them as lines to be scheduled.

[0031] Determine the corresponding rectification team for each line to be dispatched, and obtain the team to be dispatched.

[0032] Calculate the difference between the regulation progress of each line to be dispatched and the first preset regulation progress to obtain the saturation progress deviation.

[0033] The scheduling scale of each team to be scheduled is positively correlated with the saturation progress deviation.

[0034] Furthermore, the scheduling unit is further configured to modify the scheduling scale based on the total number of components to be installed on the dummy resource circuit, wherein:

[0035] The increase in the dispatch size is positively correlated with the total number of components planned to be installed.

[0036] Furthermore, the adjustment unit is also used to calculate the ratio of the length of the dummy resource line in the GIS to the actual length of the dummy resource line under the condition that the GIS generation is determined to be unqualified, to obtain the length ratio, and to adjust the noise reduction factor for image processing of the map generated by the GIS based on the length ratio, wherein the increase in the noise reduction factor is positively correlated with the length ratio.

[0037] Compared with the prior art, the beneficial effect of the present invention lies in that the present invention periodically monitors the remediation of dumb resource lines, determines the remediation progress according to the completion status of the number of dumb resources in a single dumb resource line, and analyzes whether the remediation of a single dumb resource line is qualified according to the remediation progress. Taking into account that installing components will increase the complexity of remediation and affect the remediation time, the present invention makes a secondary judgment on whether the remediation of the dumb resource line is qualified according to the number of installed components in the dumb resource line, thereby improving the control accuracy of the remediation of the dumb resource line, and judges that the remediation of a single dumb resource line is unqualified when the completed number of dumb resources is particularly small, analyzes the reasons for the unqualified remediation according to the remediation progress, and then performs scheduling processing in a timely manner according to the analysis results, thereby ensuring the remediation efficiency of the dumb resource line.

[0038] Furthermore, the present invention uses GIS maps to display the real-time progress, resource status and task completion status of remediation tasks, providing intuitive decision support for managers. This method can significantly improve remediation efficiency, optimize resource utilization, and reduce the complexity of manual scheduling.

[0039] Furthermore, the present invention first preliminarily analyzes whether the remediation of the dumb resource line is qualified based on the remediation progress of a single dumb resource line. When it is determined that the remediation is unqualified, the reason for the unqualified is analyzed based on the remediation progress. When it is determined that scheduling is required, the line to be scheduled is determined based on the remediation progress of other remediation lines, and the team to be remediated is determined. Then, the scheduling scale is determined based on the remediation progress of the line to be adjusted, thereby ensuring the remediation efficiency of the line to be scheduled while improving the remediation efficiency of the dumb resource line whose current remediation progress is unqualified. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Figure 1 This is a structural diagram of the GIS-based intelligent scheduling system for dumb resource remediation tasks of the present invention;

[0041] Figure 2 A flow chart for determining whether the remediation of a single dumb resource line is qualified;

[0042] Figure 3 A flow chart for secondary determination of whether the regulation of a single dumb resource line is qualified;

[0043] Figure 4 A flow chart for analyzing the reasons why a single dumb resource line fails to meet the remediation standards. DETAILED DESCRIPTION

[0044] In order to make the objects and advantages of the present invention more clearly understood, the present invention is further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are merely used to explain the present invention and are not intended to limit the present invention.

[0045] It should be noted that the data in this embodiment are obtained by comprehensive analysis and evaluation of the historical data of the six months before the current determination and the corresponding historical determination results by the system of the present invention. It can be understood by those skilled in the art that the system of the present invention can determine the above parameters for each of the above parameters by selecting the value with the highest proportion as the preset standard parameter based on the data distribution, using weighted summation to use the obtained value as the preset standard parameter, substituting each historical data into a specific formula and using the value obtained by the formula as the preset standard parameter, or other selection methods, as long as the system of the present invention can clearly define the different specific situations in the single determination process through the obtained values.

[0046] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.

[0047] It should be noted that, in the description of the present invention, terms such as "up", "down", "left", "right", "inside", and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present invention.

[0048] Furthermore, it should be noted that, in the description of the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0049] See also Figure 1 As shown, it is a structural block diagram of the GIS-based dumb resource remediation task intelligent scheduling system of the present invention.

[0050] The GIS-based intelligent scheduling system for dumb resource remediation tasks provided in this embodiment includes:

[0051] GIS module, which is used to collect dumb resource data and visualize the dumb resources to be renovated;

[0052] A demand receiving unit, connected to the GIS module, for receiving dumb resource remediation demands;

[0053] a plan construction unit connected to the demand receiving unit, for constructing a regulation plan standard for each dumb resource line based on the dumb resource regulation demand received by the demand receiving unit;

[0054] a progress confirmation unit, connected to the GIS module and the plan construction unit, respectively, for determining the progress of the regulation of a single dumb resource line based on the dumb resource data obtained by the GIS module;

[0055] a progress analysis unit, connected to the GIS module, the demand receiving unit, the plan building unit, and the progress confirmation unit, respectively, for determining whether the renovation of a single dumb resource line is qualified based on the determined renovation progress; if the renovation of the single dumb resource line is initially determined to be unqualified, performing a secondary determination on whether the renovation of the single dumb resource line is qualified based on the number of installed components; or analyzing the reasons for the unqualified renovation of the single dumb resource line based on the renovation progress;

[0056] an adjusting unit connected to the progress analysis unit, for adjusting corresponding parameters to corresponding values ​​based on the determination result of the progress analysis unit, the parameters including: a first preset remediation progress and a noise reduction ratio;

[0057] The scheduling unit is connected to the schedule analysis unit and is used to determine the scheduling scale and send a scheduling signal based on the scheduling instruction of the schedule analysis unit.

[0058] Specifically, in this embodiment, the dumb resource remediation requirements include: line length, remediation time, and installation data information of other components.

[0059] Specifically, there is no limitation on the specific structures of the demand receiving unit, plan building unit, progress confirmation unit, progress analysis unit, adjustment unit and scheduling unit, which can be composed of logical components, including field programmable processors, computers and microprocessors in computers.

[0060] The present invention periodically monitors the remediation of dumb resource lines, determines the remediation progress based on the completion status of the number of dumb resources in a single dumb resource line, and analyzes whether the remediation of a single dumb resource line is qualified based on the remediation progress. Considering that installing components will increase the complexity of remediation and affect the remediation time, the present invention performs a secondary judgment on whether the remediation of the dumb resource line is qualified based on the number of installed components in the dumb resource line, thereby improving the control accuracy of the remediation of the dumb resource line. When the completed number of dumb resources is particularly small, the remediation of the single dumb resource line is judged to be unqualified, and the reasons for the unqualified remediation are analyzed based on the remediation progress. Then, scheduling and processing are carried out in a timely manner based on the analysis results, thereby ensuring the remediation efficiency of the dumb resource line.

[0061] The present invention uses GIS maps to display the real-time progress, resource status and task completion status of remediation tasks, providing intuitive decision support for managers. This method can significantly improve remediation efficiency, optimize resource utilization, and reduce the complexity of manual scheduling.

[0062] See also Figure 2 As shown, it is a flow chart for determining whether the remediation of a single dumb resource line is qualified.

[0063] Specifically, the progress analysis unit is used to determine whether the remediation of a single dumb resource line is qualified based on the determined remediation progress, including:

[0064] The progress confirmation unit is used to calculate the ratio of the number of completed dumb resources to be rectified to the total number of dumb resources to be rectified, and obtain the remediation progress.

[0065] If the remediation progress is greater than or equal to the first preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is qualified;

[0066] If the remediation progress is less than the first preset remediation progress and greater than or equal to the second preset remediation progress, the progress analysis unit preliminarily determines that the remediation of the single dumb resource line is unqualified, and performs a secondary determination on whether the remediation of the single dumb resource line is qualified based on the number of components installed;

[0067] If the remediation progress is less than the second preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

[0068] Specifically, in this embodiment, the first preset remediation progress and the second preset remediation progress are obtained in advance, and data information of several completed dumb resource remediation lines are obtained, and dumb resource remediation lines with the same total number of dumb resources to be rectified are extracted. The remediation progress corresponding to each remediation line and the current remediation cycle is obtained, and the average remediation progress is calculated. The first preset remediation progress is 0.95 to 1.1 times the average remediation progress, and the second preset remediation progress is 0.75 to 0.85 times the average remediation progress.

[0069] See also Figure 3 As shown, it is a determination flow chart for secondary determination of whether the regulation of a single dumb resource line is qualified.

[0070] Specifically, the progress analysis unit is used to make a secondary determination on whether the renovation of a single dumb resource line is qualified based on the number of components installed, including:

[0071] The progress analysis unit is used to calculate the ratio of the number of components installed in the current remediation cycle to the total number of components planned to be installed, and obtain the component installation progress.

[0072] If the component installation progress is greater than or equal to the preset component installation progress, the progress analysis unit determines that the dumb resource remediation progress is affected by the installation of the component;

[0073] If the component installation progress is less than the preset component installation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

[0074] Specifically, in this embodiment, the preset component installation progress is obtained by pre-measurement, obtaining component installation data of several completed dummy resource lines, and calculating the average component installation progress of each remediation cycle to obtain the preset component installation progress.

[0075] Specifically, the adjustment unit is used to calculate the difference between the component installation progress and the preset component installation progress under the condition that it is determined that the dumb resource remediation progress is affected by the installation component, obtain the installation progress deviation, and adjust the first preset remediation progress based on the installation progress deviation, wherein the reduction in the first preset remediation progress is positively correlated with the installation progress deviation.

[0076] In this embodiment, optionally,

[0077] Compare the installation progress deviation with the first preset installation progress deviation and the second preset installation progress deviation,

[0078] If the installation progress deviation is less than or equal to the first preset installation progress deviation, the first preset remediation progress is adjusted to 0.95 times the initial value;

[0079] If the installation progress deviation is greater than the first preset installation progress deviation and less than or equal to the second preset installation progress deviation, the first preset remediation progress is adjusted to 0.9 times the initial value;

[0080] If the installation progress deviation is greater than the second preset installation progress deviation, the first preset remediation progress is adjusted to 0.85 times the initial value;

[0081] The first preset installation progress deviation is 0.1 times the preset component installation progress, and the second preset installation progress deviation is 0.15 times the preset component installation progress, wherein the first preset remediation progress is greater than the second preset remediation progress.

[0082] See also Figure 4 As shown, it is a flow chart for analyzing the reasons why the remediation of a single dumb resource line fails.

[0083] Specifically, the progress analysis unit is used to analyze the reasons why the remediation of a single dumb resource line fails based on the remediation progress, including:

[0084] The progress analysis unit is used to calculate the difference between the remediation progress and the second preset remediation progress to obtain the remediation progress deviation.

[0085] If the remediation progress deviation is less than or equal to the preset remediation progress deviation, the progress analysis unit determines to issue a dispatch instruction;

[0086] If the remediation progress deviation is greater than the preset remediation progress deviation, the progress analysis unit determines that the reason for the unqualified remediation of the single dumb resource line is unqualified generation of the GIS.

[0087] Specifically, in this embodiment, the preset remediation progress deviation is 0.2 to 0.5 times the second preset remediation progress.

[0088] Specifically, the scheduling unit is used to determine the conditions for issuing a scheduling instruction.

[0089] Obtain data information of other dumb resource lines, and extract dumb resource lines whose remediation progress within the same remediation cycle is greater than the first preset remediation progress, and mark them as lines to be scheduled.

[0090] Determine the corresponding rectification team for each line to be dispatched, and obtain the team to be dispatched.

[0091] Calculate the difference between the regulation progress of each line to be dispatched and the first preset regulation progress to obtain the saturation progress deviation.

[0092] The scheduling scale of each team to be scheduled is positively correlated with the saturation progress deviation.

[0093] In this embodiment, optionally,

[0094] Compare the saturation progress deviation with the first preset saturation progress deviation and the second preset saturation progress deviation,

[0095] If the saturation progress deviation is less than or equal to the first preset saturation progress deviation, the dispatch scale is determined to be 0.15 times the total scale of the team to be dispatched;

[0096] If the saturation progress deviation is greater than the first preset saturation progress deviation and less than or equal to the second preset saturation progress deviation, the dispatch scale is determined to be 0.18 times the total scale of the team to be dispatched;

[0097] If the saturation progress deviation is greater than the second preset saturation progress deviation, the dispatching scale is determined to be 0.2 times the total scale of the team to be dispatched;

[0098] The first preset saturation progress deviation is 0.15 times the first preset remediation progress, and the second preset saturation progress deviation is 0.25 times the first preset remediation progress.

[0099] In the present invention, a preliminary analysis is first performed on whether the remediation of a dumb resource line is qualified based on the remediation progress of a single dumb resource line. When it is determined that the remediation is unqualified, the reason for the unqualified is analyzed based on the remediation progress. When it is determined that scheduling is required, the line to be scheduled is determined based on the remediation progress of other remediation lines, and the team to be remediated is determined. Then, the scheduling scale is determined based on the remediation progress of the line to be adjusted. In this way, while ensuring the remediation efficiency of the line to be scheduled, the remediation efficiency of the dumb resource line whose current remediation progress is unqualified is improved.

[0100] Specifically, the scheduling unit is further configured to modify the scheduling scale based on the total number of components to be installed on the dummy resource circuit, wherein:

[0101] The increase in the dispatch size is positively correlated with the total number of components planned to be installed.

[0102] In this embodiment, optionally,

[0103] Compare the total number of planned installation components with the first preset total number of planned installation components and the second preset total number of planned installation components,

[0104] If the total number of planned installation components is less than or equal to the first preset total number of planned installation components, the scheduling scale is adjusted to 1.05 times the initial value;

[0105] If the total number of planned installation components is greater than the first preset total number of planned installation components and less than or equal to the second preset total number of planned installation components, the scheduling scale is adjusted to 1.1 times the initial value;

[0106] If the total number of planned installation components is greater than the second preset total number of planned installation components, the scheduling scale is adjusted to 1.15 times the initial value;

[0107] Among them, the first preset total number of planned installation components and the second preset total number of planned installation components are obtained in advance. Data information of several completed dumb resource remediation lines is obtained, the total number of planned installation components for each remediation line is determined, and the average value of the total number of planned installation components is solved. The first preset total number of planned installation components is 0.9 to 1.1 times the average value, and the second preset total number of planned installation components is 1.15 to 1.2 times the average value.

[0108] Specifically, the adjustment unit is also used to calculate the ratio of the length of the dummy resource line in the GIS to the actual length of the dummy resource line under the condition that the GIS generation is determined to be unqualified, to obtain the length ratio, and to adjust the noise reduction factor for image processing of the map generated by the GIS based on the length ratio, wherein the increase in the noise reduction factor is positively correlated with the length ratio.

[0109] In this embodiment, optionally,

[0110] Comparing the length ratio with the first preset length ratio and the second preset length ratio,

[0111] If the length ratio is less than or equal to the first preset length ratio, the noise reduction ratio is adjusted to 1.05 times the initial value;

[0112] If the length ratio is greater than the first preset length ratio and less than or equal to the second preset length ratio, the noise reduction ratio is adjusted to 1.1 times the initial value;

[0113] If the length ratio is greater than the second preset length ratio, the construction ratio is adjusted to 1.2 times the initial value;

[0114] The first preset length ratio and the second preset length ratio are obtained in advance by obtaining information of a number of qualified dummy resource lines, determining the length ratio of each line information, and solving the average value of each length ratio. The first preset length ratio is 0.85 to 0.95 times the average value, and the second preset length ratio is 1.1 to 1.2 times the average value.

[0115] Thus far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present invention.

[0116] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.

Claims

1. A GIS-based intelligent scheduling system for dumb resource remediation tasks, characterized by: include: GIS module, which is used to collect dumb resource data and visualize the dumb resources to be renovated; A demand receiving unit, connected to the GIS module, for receiving dumb resource remediation demands; a plan construction unit connected to the demand receiving unit, for constructing a regulation plan standard for each dumb resource line based on the dumb resource regulation demand received by the demand receiving unit; a progress confirmation unit, connected to the GIS module and the plan construction unit, respectively, for determining the progress of the regulation of a single dumb resource line based on the dumb resource data obtained by the GIS module; a progress analysis unit, connected to the GIS module, the demand receiving unit, the plan building unit, and the progress confirmation unit, respectively, for determining whether the renovation of a single dumb resource line is qualified based on the determined renovation progress; if the renovation of the single dumb resource line is initially determined to be unqualified, performing a secondary determination on whether the renovation of the single dumb resource line is qualified based on the number of installed components; or analyzing the reasons for the unqualified renovation of the single dumb resource line based on the renovation progress; an adjusting unit connected to the progress analysis unit, for adjusting corresponding parameters to corresponding values ​​based on the determination result of the progress analysis unit, the parameters including: a first preset remediation progress and a noise reduction ratio; The scheduling unit is connected to the schedule analysis unit and is used to determine the scheduling scale and send a scheduling signal based on the scheduling instruction of the schedule analysis unit.

2. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 1 is characterized in that: The progress analysis unit is used to determine whether the remediation of a single dumb resource line is qualified based on the determined remediation progress, including: The progress confirmation unit is used to calculate the ratio of the number of completed dumb resources to be rectified to the total number of dumb resources to be rectified, and obtain the remediation progress. If the remediation progress is greater than or equal to the first preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is qualified; If the remediation progress is less than the first preset remediation progress and greater than or equal to the second preset remediation progress, the progress analysis unit preliminarily determines that the remediation of the single dumb resource line is unqualified, and performs a secondary determination on whether the remediation of the single dumb resource line is qualified based on the number of components installed; If the remediation progress is less than the second preset remediation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

3. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 2 is characterized in that: The progress analysis unit is used to make a secondary determination on whether the renovation of a single dumb resource line is qualified based on the number of components installed, including: The progress analysis unit is used to calculate the ratio of the number of components installed in the current remediation cycle to the total number of components planned to be installed, and obtain the component installation progress. If the component installation progress is greater than or equal to the preset component installation progress, the progress analysis unit determines that the dumb resource remediation progress is affected by the installation of the component; If the component installation progress is less than the preset component installation progress, the progress analysis unit determines that the remediation of the single dumb resource line is unqualified, and analyzes the reason for the unqualified remediation of the single dumb resource line based on the remediation progress.

4. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 3 is characterized in that: The adjustment unit is used to calculate the difference between the component installation progress and the preset component installation progress under the condition that it is determined that the dumb resource remediation progress is affected by the installation component, obtain the installation progress deviation, and adjust the first preset remediation progress based on the installation progress deviation, wherein the reduction amplitude of the first preset remediation progress is positively correlated with the installation progress deviation.

5. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 3 is characterized in that: The progress analysis unit is used to analyze the reasons for the failure of the remediation of a single dumb resource line based on the remediation progress, including: The progress analysis unit is used to calculate the difference between the remediation progress and the second preset remediation progress to obtain the remediation progress deviation. If the remediation progress deviation is less than or equal to the preset remediation progress deviation, the progress analysis unit determines to issue a dispatch instruction; If the remediation progress deviation is greater than the preset remediation progress deviation, the progress analysis unit determines that the reason for the unqualified remediation of the single dumb resource line is unqualified generation of the GIS.

6. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 5 is characterized in that: The scheduling unit is used to determine the conditions for issuing a scheduling instruction. Obtain data information of other dumb resource lines, and extract dumb resource lines whose remediation progress within the same remediation cycle is greater than the first preset remediation progress, and mark them as lines to be scheduled. Determine the corresponding rectification team for each line to be dispatched, and obtain the team to be dispatched. The difference between the regulation progress of each line to be dispatched and the first preset regulation progress is calculated respectively to obtain the saturation progress deviation. The dispatch scale of each team to be dispatched is positively correlated with the saturation progress deviation.

7. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 6 is characterized in that: The scheduling unit is further configured to modify the scheduling scale based on the total number of components to be installed on the dummy resource circuit, wherein: The increase in the dispatch size is positively correlated with the total number of components planned to be installed.

8. The GIS-based intelligent scheduling system for dumb resource remediation tasks according to claim 5 is characterized in that: The adjustment unit is further configured to calculate, under the condition that the generation of the GIS is determined to be unqualified, a ratio of the length of the dummy resource line in the GIS to the actual length of the dummy resource line to obtain a length ratio, and adjust a noise reduction factor for image processing of the map generated by the GIS based on the length ratio, wherein an increase in the noise reduction factor is positively correlated with the length ratio.

Citation Information

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