CN113469652A - Existing building damage recording system based on cloud platform - Google Patents

Existing building damage recording system based on cloud platform Download PDF

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Publication number
CN113469652A
CN113469652A CN202110738975.4A CN202110738975A CN113469652A CN 113469652 A CN113469652 A CN 113469652A CN 202110738975 A CN202110738975 A CN 202110738975A CN 113469652 A CN113469652 A CN 113469652A
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damage
existing building
module
item
project
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刘辉
王卓琳
曹东升
唐寅
王易豪
龚治国
李占鸿
李勇生
郑士举
金艳萍
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Shanghai Building Science Research Institute Co Ltd
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    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/25Integrating or interfacing systems involving database management systems
    • G06F16/252Integrating or interfacing systems involving database management systems between a Database Management System and a front-end application
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
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    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/27Replication, distribution or synchronisation of data between databases or within a distributed database system; Distributed database system architectures therefor
    • 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
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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
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/08Construction

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Abstract

The invention relates to an existing building damage recording system based on a cloud platform. The mobile terminal comprises a first item list module, a first item configuration module and a damage recording module, wherein the first item list module is used for displaying an item list of an existing building in a form or a map form and providing an item retrieval window taking the item list as an object. The first project configuration module is used for configuring project basic information of an existing building. The damage recording module is used for recording damage recording information of the existing building. The damage recording module carries out damage word recording of the existing building based on the damage description knowledge base, the application of the mobile terminal is deployed in a public cloud, and the damage word recording and the damage position marking are stored in the public cloud. Above-mentioned existing building damage record system based on cloud platform avoids the drawback of many people's repeated detection of an existing building damage detection project, has reduced the data inconsistency.

Description

Existing building damage recording system based on cloud platform
Technical Field
The invention relates to the field of building damage assessment, in particular to an existing building damage recording system based on a cloud platform.
Background
Urban infrastructure is a necessary foundation for national economic development, and China invests a large amount of capital every year to build the infrastructure. In the process of developing infrastructure construction, particularly underground engineering operation is involved, and the evaluation of the influence of the existing building is a common concern of owners, design houses, construction parties and government supervision departments. The development of data acquisition of the existing building damage condition is an important basis for comprehensive detection and scientific evaluation of the house. Under the current situation, a government regulatory department commits a detection mechanism of a third party to record the damage of the existing building in a form of characters and pictures, and carries out evaluation identification and the like so as to carry out evaluation on the influence of the existing building before and after construction. The detection personnel of the detection mechanism of the third party carry out on-the-spot record with the form of paper simultaneously to the detection project, many detection personnel, mainly include: the house is characterized by comprising the following steps of building structure type, floor number, reconstruction and construction conditions, building area and the like, and recording main damage conditions of the house by taking characters and pictures as main forms. After the field recording, the detection personnel arrange the paper record into an electronic plate to form a corresponding evaluation report according to the field.
With the continuous deepening of novel urbanization construction and city updating, the existing building damage recording mode has the following problems: (1) the increase of damage record items leads to the increase of workload of paper records, the workload of subsequent electronic report input is correspondingly increased, and meanwhile, the inconsistent condition of damage records is easy to occur in the process of arranging and outputting detection reports. (2) The lack of a mechanism for the cooperation of a plurality of inspectors easily causes the inspection of a plurality of inspectors on one project, and forms unnecessary recording work.
Disclosure of Invention
Based on this, it is necessary to provide an existing building damage recording system based on a cloud platform, which has low recording workload, low inconsistency of damage records and avoids repeated detection, aiming at the problems that paper recording workload is large, and the damage records are easy to be inconsistent and easy to be repeatedly checked.
An existing building damage recording system based on a cloud platform comprises a mobile terminal and the cloud platform, wherein the cloud platform and the mobile terminal are in data synchronization,
the mobile terminal comprises
The system comprises a first item list module, a second item list module and a third item search module, wherein the first item list module is used for displaying an item list of an existing building in a form or a map form and providing an item search window taking the item list as an object, and the item list comprises an item name, a geographic position, an item leader and a detector;
the system comprises a first project configuration module, a second project configuration module and a third project configuration module, wherein the first project configuration module is used for configuring project basic information of an existing building, and the project basic information comprises a project name, total floor number and number of households in each floor; and
the damage recording module is used for recording damage recording information of the existing building, wherein the damage recording information comprises damage character records;
the cloud platform comprises a public cloud and a damage description knowledge base, the damage recording module records damage characters of an existing building based on the damage description knowledge base, the application of the mobile terminal is deployed in the public cloud, and the damage characters and damage position marks are stored in the public cloud.
Further, the first item list module is further configured to edit and modify an item list of an existing building displayed in a form, collect damage records, download historical damage records, update and synchronize data of the damage record items, and change the existing building damage record items and synchronize the existing building damage record items with the public cloud.
Further, the damage recording information further comprises a damage picture record and a damage position mark, the cloud platform further comprises a damage report map, and the damage recording module is used for recording the damage picture and marking the damage position based on the damage report map.
Further, the cloud platform further comprises project configuration synchronization rules, wherein the project configuration synchronization rules are used for providing synchronization rules of project configuration information and damage record information, and the project configuration information comprises projects, layers/users and rooms.
Further, the cloud platform further comprises inspector coordination rules, wherein the inspector coordination rules are used for providing coordination strategies of the damage records of a plurality of inspectors on the items, the layers/the users and the rooms.
Further, the mobile terminal further comprises a report previewing module, wherein the report previewing module is used for providing report generation of the damage record information, providing electronic signatures of residents belonging to the existing building and feedback records of other problems of the residents, and providing data synchronization of the cloud platform.
Furthermore, the existing building damage recording system further comprises a PC end, the PC end is synchronized with the cloud platform data, the PC end comprises a second item list module, the second item list module is used for displaying an existing building damage item catalog in a form, configuring item retrieval and item export by taking the damage item catalog as an object, and viewing damage records and damage record summarization by drilling down a single item, and the damage item catalog comprises an item name, an inspector and creation time.
Further, the PC side further includes a second project configuration module, where the second project configuration module is configured to configure the damaged project information of the existing building, and configure project retrieval and project export by using the damaged project information as an object, and is further configured to update, edit, and delete by drilling down a single project, where the damaged project information includes a project name, a project principal, and creation time.
Furthermore, the PC terminal further comprises a recycle bin module and a staff management module, wherein the recycle bin module is used for providing the damaged item directory and the damaged item information deletion information, and the staff management module is used for providing basic information management of the inspector account and the role.
Further, the cloud platform further comprises an existing building damage public service platform, wherein the existing building damage public service platform is used for providing public service facing service objects, and the service objects comprise industry administration departments, residents and entrustment detection parties and other related parties.
According to the existing building damage recording system based on the cloud platform, the mobile terminal mainly based on damage field records and the cloud platform mainly based on damage detection related parties are established, multi-party collaboration of existing building damage records and knowledge records of the damage records are achieved, detection projects can be transparent to all testers, and the defect that multiple persons repeatedly detect one existing building damage detection project is overcome. In addition, the conversion from the manually managed electronic file to the paperless damage management system based on the cloud platform is a technical upgrade, so that the data safety is improved, the data redundancy is reduced, the data inconsistency is reduced, the concurrent access of multiple mobile terminals is supported, and the separation of the application and the data is really realized.
Drawings
Fig. 1 is a schematic diagram of an existing building damage recording system based on a cloud platform according to an embodiment;
FIG. 2 is a diagram of a lesion description knowledge base;
FIG. 3 is a wall crack report map of a damage report map;
FIG. 4 is another wall crack report map of the damage report map;
FIG. 5 is a windowed wall crack report map of a damage report map;
FIG. 6 is a gated wall crack report map of a damage report map;
fig. 7 is a roof fracture report of the damage report.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1, in an embodiment, an existing building damage recording system based on a cloud platform includes a mobile terminal 100 and a cloud platform 200, and the cloud platform 200 and the mobile terminal 100 are synchronized in data. The mobile terminal 100 includes a first item list module 110, a first item configuration module 120, and a damage recording module 130. The first item list module 110 is configured to display an item list of an existing building in a form of a form or a map, and provide an item search window with the item list as an object. The project list comprises project names, geographic positions, project responsible persons and testers. The first project configuration module 120 is configured to configure project basic information of an existing building, where the project basic information includes a project name, a total number of floors, and a number of households per floor. If the total number of floors is N floors, the project configuration provides room information configurations of non-standard floors, i.e., floor 01, and standard floors, i.e., floor 02 to N. The room information configuration from the 02 th layer to the N th layer can be used for realizing the quick configuration of the room information by a method of copying the room. And the damage recording module 130 is configured to record damage recording information of the existing building, where the damage recording information includes a damage text record. The cloud platform 200 includes a public cloud and impairment description repository (see fig. 2). The damage recording module 130 records damage text of the existing building based on the damage description knowledge base, and the damage text records provide a voice input form for convenient recording. The APP application of the mobile terminal 100 is deployed in the public cloud, and the damage text records and the damage position labels are stored in the public cloud.
The existing building damage recording system based on the cloud platform establishes the mobile terminal 100 mainly based on damage field records and the cloud platform 200 mainly based on damage detection related parties, so that multi-party collaboration of existing building damage records and knowledge recording of the damage records are realized, detection projects are transparent to all testers, and the defect of repeated detection of multiple people in one existing building damage detection project is overcome. In addition, the conversion from the manually managed electronic file to the paperless damage management system based on the cloud platform is a technical upgrade, so that the data safety is improved, the data redundancy is reduced, the data inconsistency is reduced, the concurrent access of multiple mobile terminals is supported, and the separation of the application and the data is really realized.
In this embodiment, the first item list module 110 is further configured to edit and modify an item list of an existing building shown in a form, summarize a damage record, download a historical damage record, update and synchronize data of a damage record item, and change an existing building damage record item and synchronize with a public cloud. In addition, the damage recording information further includes a damage picture recording and a damage position labeling, the cloud platform 200 further includes a damage report map (see fig. 3 to 7), and the damage recording module 130 performs the damage picture recording and the damage position labeling based on the damage report map.
In this embodiment, the cloud platform 200 further includes a project configuration synchronization rule, an inspector coordination rule, and a private cloud, where the project configuration synchronization rule is used to provide a synchronization rule of project configuration information and damage record information, and the project configuration information includes a project, a layer/a user, and a room. The inspector coordination rule is used for providing a coordination strategy of damage records of a plurality of inspectors on items, layers/users and rooms. The hybrid cloud deployment of the public cloud and the private cloud is based on the APP deployment of the existing building damage record mobile terminal 100 in the public cloud, meanwhile, characters and damage pictures recorded on site are stored in the public cloud preferentially, and the storage information of the public cloud can be backed up to the private cloud based on certain rules.
In this embodiment, the mobile terminal 100 further includes a report previewing module 140, and the report previewing module 140 is configured to provide report generation of the damage record information, provide an electronic signature of a resident to which the existing building belongs and a feedback record of other problems of the resident, and provide data synchronization of the cloud platform.
In this embodiment, the existing building damage recording system further includes a PC terminal 300, the PC terminal 300 and the cloud platform 200 synchronize data, and the PC terminal 300 is deployed in a public cloud. The PC 300 includes a second item list module 310, a second item configuration module 320, a recycle bin module 330, and a staff member management module 340, where the second item list module 310 is configured to display an existing building damage item catalog in a form, configure item retrieval and item export with the damage item catalog as an object, and view damage records and damage record summarization by drilling down a single item. The damage item directory comprises item names, inspectors and creation time, and the damage records are summarized to provide statistical information such as total number of users, completed users, unavailable users, unattended users and user entry rate. The second project configuration module 320 is configured to configure the damaged project information of the existing building, configure project retrieval and project export by using the damaged project information as an object, and update, edit, and delete by drilling down a single project. The damage item information includes an item name, an item principal, and a creation time. The recycle bin module 330 is used to provide the damaged item directory and the deleted information of the damaged item information. The staff member management module 340 is used for providing basic information management of the inspector account and role.
In fig. 2, the damage description knowledge base provides different types of damage categories to support the APP of the mobile terminal 100 and the application of the PC terminal 300 for background management of existing building damage records.
Fig. 3 to 7 are preset mapping relationships between various types of damage records and damage labels according to detection requirements after providing damage records for the damage report map.
In this embodiment, the cloud platform 200 further includes an existing building damage public service platform for providing a service object-oriented public service. The service objects comprise industry governing departments, residents and entrustment detection parties. The mixed cloud existing building damage record deployment mode based on the combination of public cloud and privatization can realize the cooperation of projects and inspectors and the method for defining synchronization rules, presets a damage description knowledge base and a damage report map, and simultaneously can provide public services for relevant parties including industry governing departments, residents and entrusted detection parties.
The invention establishes a mobile terminal APP mainly based on damage field recording, a PC terminal mainly based on damage recording background management and a public service cloud platform mainly based on damage detection related parties based on a hybrid cloud architecture combining public cloud and private cloud, and realizes multi-party collaboration of existing building damage recording and knowledge recording of damage recording. Meanwhile, the detection project is transparent to all inspectors, and the defect that multiple persons repeatedly detect the existing building damage detection project is overcome. According to the business requirements, a plurality of inspectors can also detect different floors/households of the same building at the same time, and the inspectors always know whether the detection is being carried out or not repeatedly through the cooperation rule. In addition, a deployment mode based on the mixed cloud guarantees the safety and reliability of a data storage mode, realizes the full life cycle management of damage record data, and forms a complete damage knowledge base; historical damage record data can be searched, copied, edited and stored at any time, and the processing speed and quality of the damage records and the damage reports are greatly improved. Moreover, the conversion from manually managed electronic files to a paperless damage management system based on a cloud platform is realized, the technology is updated, the data safety is improved, the data redundancy is reduced, the data inconsistency is reduced, the concurrent access of multiple clients is supported, and the separation of application and data is really realized.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. An existing building damage recording system based on a cloud platform is characterized by comprising a mobile terminal and the cloud platform, wherein the cloud platform and the mobile terminal are in data synchronization,
the mobile terminal comprises
The system comprises a first item list module, a second item list module and a third item search module, wherein the first item list module is used for displaying an item list of an existing building in a form or a map form and providing an item search window taking the item list as an object, and the item list comprises an item name, a geographic position, an item leader and a detector;
the system comprises a first project configuration module, a second project configuration module and a third project configuration module, wherein the first project configuration module is used for configuring project basic information of an existing building, and the project basic information comprises a project name, total floor number and number of households in each floor; and
the damage recording module is used for recording damage recording information of the existing building, wherein the damage recording information comprises damage character records;
the cloud platform comprises a public cloud and a damage description knowledge base, the damage recording module records damage characters of an existing building based on the damage description knowledge base, the application of the mobile terminal is deployed in the public cloud, and the damage characters and damage position marks are stored in the public cloud.
2. The cloud platform-based existing building damage recording system according to claim 1, wherein the first item list module is further configured to edit and modify an item list of an existing building displayed in a form, collect damage records, download historical damage records, update and synchronize data of damage record items, and change an existing building damage record item and synchronize with the public cloud.
3. The cloud platform based existing building damage recording system of claim 1, wherein the damage recording information further includes damage picture recording and damage location labeling, the cloud platform further includes a damage report map, and the damage recording module performs damage picture recording and damage location labeling based on the damage report map.
4. The cloud platform based existing building damage recording system of claim 1, wherein the cloud platform further comprises project configuration synchronization rules for providing synchronization rules of project configuration information including project, floor/house and room with damage recording information.
5. The cloud platform based existing building damage recording system of claim 4, wherein the cloud platform further comprises inspector coordination rules for providing coordination policies for damage recording of multiple inspectors on projects, floors/households, and rooms.
6. The cloud platform-based existing building damage recording system according to claim 1, wherein the mobile terminal further comprises a report previewing module, the report previewing module is configured to provide report generation of the damage recording information, provide an electronic signature of a resident of an existing building and a feedback record of other problems of the resident, and provide data synchronization of the cloud platform.
7. The cloud platform-based existing building damage recording system according to any one of claims 1 to 6, wherein the existing building damage recording system further comprises a PC side, the PC side is synchronized with the cloud platform data, the PC side comprises a second item list module, the second item list module is configured to show an existing building damage item catalog in a form, configure item retrieval and item export for a target with the damage item catalog, and view damage records and damage record summary by drilling down a single item, the damage item catalog includes an item name, a checker, and a creation time.
8. The cloud platform-based existing building damage recording system according to claim 7, wherein the PC further includes a second project configuration module, the second project configuration module is configured to configure damage project information of an existing building, retrieve and export a project with the damage project information as an object configuration project, and update, edit and delete by drilling down a single project, the damage project information includes a project name, a project principal and a creation time.
9. The cloud platform-based existing building damage recording system according to claim 8, wherein the PC terminal further includes a recycle bin module and an employee management module, the recycle bin module is configured to provide the damage item directory and the damage item information deletion information, and the employee management module is configured to provide basic information management of inspector accounts and roles.
10. The cloud platform-based existing building damage recording system of claim 9, wherein the cloud platform further comprises an existing building damage public service platform for providing public services oriented to service objects including industry governing departments, residents, and commissioned detection parties.
CN202110738975.4A 2021-06-30 2021-06-30 Existing building damage recording system based on cloud platform Pending CN113469652A (en)

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CN106556605A (en) * 2016-11-25 2017-04-05 交通运输部公路科学研究所 The digitized representation system of bridge Site Detection typical disease
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