CN113077229A - Multi-party information interaction system and method based on BIM - Google Patents

Multi-party information interaction system and method based on BIM Download PDF

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CN113077229A
CN113077229A CN202110340532.XA CN202110340532A CN113077229A CN 113077229 A CN113077229 A CN 113077229A CN 202110340532 A CN202110340532 A CN 202110340532A CN 113077229 A CN113077229 A CN 113077229A
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message
bim
engineering
information interaction
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CN113077229B (en
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徐伟程
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Guizhou Shuzhilian Cloud Engineering Technology Co ltd
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Guizhou Shuzhilian Cloud Engineering Technology Co ltd
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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
    • G06Q10/10Office automation; Time management
    • G06Q10/103Workflow collaboration or project management
    • 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
    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • G06Q10/06316Sequencing of tasks or work
    • 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
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/08Construction
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/10Network architectures or network communication protocols for network security for controlling access to devices or network resources

Abstract

The invention belongs to the technical field of information interaction systems, and particularly relates to a BIM-based multi-party information interaction system and a method, wherein the system comprises a login verification unit, an information input unit, a model construction unit, a message sending unit and a message receiving unit; the login verification unit is used for performing registration, login and identity verification; the information input unit is used for inputting design data and engineering data; the model construction unit is used for carrying out BIM modeling according to design data and is also used for carrying out engineering information association based on the BIM model; the message sending unit is used for issuing a message and appointing the subject type of the message; the message receiving unit is used for selecting the theme type of the received message and also used for receiving the message of the selected theme type. By using the system, the communication efficiency of each department can be effectively improved, and the problems of construction period and engineering quantity calculation caused by the communication problem are reduced.

Description

Multi-party information interaction system and method based on BIM
Technical Field
The invention belongs to the technical field of information interaction systems, and particularly relates to a BIM-based multi-party information interaction system and method.
Background
Because the engineering project has many processes and large volume, a plurality of responsible parties (construction, investigation, design, supervision, construction and the like) are usually involved, not only are the work of each responsible party more, but also the work among the responsible parties relates to a plurality of places needing communication and communication, the communication is improper, the progress of the engineering is influenced, and disputes are easily caused by calculation of various engineering quantities after the engineering is finished.
To avoid this, it is necessary for each responsible party to communicate effectively and in time. However, in the conventional software for project management, there are several problems in communication between departments (i.e., responsible parties) as follows:
first, the communication between each department is linear, the management structure is complex, when a certain department needs to find another department for communication, a complex flow needs to be taken, and the communication efficiency is low; secondly, although each department has own functions, because there are many departments and the functions of each department are many, the functions of some departments can be crossed, and many times, a worker cannot confirm which department a specific object should communicate with; secondly, because the existing management software is a storage and display mode combining a two-dimensional design drawing with related data, when different departments communicate, the calculation and checking work of the data is time-consuming and labor-consuming, and in other words, the management level and the technical level are disjointed during communication. For the reasons, the existing management software is used, so that the communication efficiency among all departments is very low, and the construction period and the subsequent engineering quantity calculation are affected in a negative way.
Therefore, a system and a method for multi-party information interaction based on BIM are needed, which can effectively improve the communication efficiency of each department and reduce the problem of construction period and engineering quantity calculation caused by the communication problem.
Disclosure of Invention
The invention aims to provide a BIM-based multi-party information interaction system and method, which can effectively improve the communication efficiency of each department and reduce the problem of construction period and engineering quantity calculation caused by the communication problem.
In order to solve the technical problem, the present application provides the following technical solutions:
a multi-party information interaction system based on BIM comprises a login verification unit, an information input unit, a model construction unit, a message sending unit and a message receiving unit;
the login verification unit is used for performing registration, login and identity verification;
the information input unit is used for inputting design data and engineering data;
the model construction unit is used for carrying out BIM modeling according to design data and is also used for carrying out engineering information association based on the BIM model;
the message sending unit is used for issuing a message and appointing the subject type of the message;
the message receiving unit is used for selecting the theme type of the received message and also used for receiving the message of the selected theme type.
The basic scheme principle and the beneficial effects are as follows:
when the system is used, the staff of each responsible party can carry out registration, identity authentication and login through the login authentication unit, and the identity of the staff can be verified in advance in such a way, so that irrelevant staff can be prevented from logging in the system.
Then, a worker of a designer can input design data through the information input unit, the model construction unit carries out BIM modeling according to the design data, and engineering display is carried out in a simulation mode; then, the staff of each responsible party can input engineering data through the information input unit, the model construction unit is associated based on the BIM model polarity engineering information, and in other words, the model construction unit can perform associated mounting on the input data (such as materials, sizes, quantities, construction period and the like) associated with the BIM model on each component of the BIM model. Therefore, through the BIM model of the associated engineering information, the staff of each responsible party can quickly and accurately acquire the required related information, and whether the data is reasonable or not can be easily known due to the simulation effect of the BIM model.
Because the contents of all responsible parties are different, in order to avoid the situation that the system pushes the theme information irrelevant to the system when the communication is carried out, the working personnel can select the theme type of the received message by the message receiving unit, and then the system can push the message of the theme type to the user end of the working personnel, so that the irrelevant information can be prevented from being received, meanwhile, the important information can be prevented from being missed, the recording is convenient, and when the processing is carried out, the processing sequence can be arranged according to the quantity and the specific contents of the recently received contents.
Similarly, when communication with other responsible parties (departments) is needed in some cases, and when communication contents are written clearly, the staff needs to establish the theme type of the message, so that even if the staff is not clear which department or departments (namely responsible parties) should be found for communication, the system can automatically push the message to the user side of the staff in the corresponding department according to the theme type. The condition that workers sending messages inquire responsible departments one by one is omitted, and time is saved.
Moreover, when the system is used for specific communication, because the system is provided with the BIM model after the engineering information is associated and mounted, in the communication content, two parties can communicate according to the specific BIM model and the associated and mounted content, so that the reason and the foundation can be realized, the technical understanding can be more visual and smooth due to high visualization and simulation degrees, and the required component content can be quickly obtained without excessive calculation and verification; the communication efficiency can be further improved while the communication effectiveness is ensured, and the effective integration of management and technology is realized.
In conclusion, the system can effectively improve the communication efficiency of each department and reduce the problem of construction period and the problem of engineering quantity calculation caused by the communication problem.
The system further comprises a prompting unit and a marking unit, wherein the prompting unit is used for sending out a prompt when receiving the information, and the marking unit is used for marking the received information.
And after receiving the message, sending a prompt to allow the staff to pay attention to the timely processing. However, since the engineering project has many items, a plurality of messages are often received in a short time. The staff can mark the message according to the received message content and the emergency or importance degree, so that the subsequent processing can be conveniently and programmatically carried out, and the overall working quality is improved.
Further, the message receiving unit is also used for selecting a reminding mode when receiving the messages of each theme type.
For each responsible party, the importance degrees of the messages with different subject types are different, some messages need emergency treatment, some messages can be slowly treated, and the situation that the messages need emergency treatment are omitted by staff can be prevented by setting a reminding mode.
The system further comprises a storage unit and a statistical unit, wherein the storage unit is used for storing the input design data and the engineering data, the statistical unit is used for generating an engineering standing book according to the stored engineering data, and the engineering standing book comprises a plan standing book and an actual standing book.
Through the statistical unit, the accounting of budget and actual engineering can be completed quickly, so that the time is saved, and the reliability is high.
Further, the project ledger also includes change fees.
When the budget cost is greatly deviated from the actual cost, the place/link where the deviation is generated can be quickly and comprehensively known.
Further, the message sending unit is also used for performing semantic analysis based on the content of the sent information and performing topic type recommendation based on the semantic analysis result.
The operation is more convenient, and the staff can find the subject type of the message conveniently and accurately, so that the message is pushed to relevant departments accurately.
Further, the message receiving unit is also used for modifying the theme type of the received message.
Due to the fact that part of workers may mistake the theme type of the received message and further receive the theme type which does not belong to own duty, through the setting, after the workers mistake the theme type, the theme type of the received message can be modified in time.
The invention also provides a multi-party information interaction method based on the BIM, and the multi-party information interaction system based on the BIM is used.
Drawings
Fig. 1 is a logic block diagram of a first embodiment of the invention.
Detailed Description
The following is further detailed by way of specific embodiments:
example one
As shown in fig. 1, a multi-party information interaction system based on BIM includes a login verification unit, an information entry unit, a model construction unit, a message sending unit, a message receiving unit, a storage unit, and a statistics unit.
The model building unit, the storage unit and the statistical unit are integrated in the server, and in the embodiment, the server is a cloud server; the login verification unit, the information entry unit, the message sending unit and the message receiving unit are integrated at the user side, in the embodiment, the user side is a smart phone loaded with a corresponding APP, and in other embodiments, the user side can also be a smart tablet loaded with the corresponding APP or a PC loaded with corresponding application software. Each responsible party and management department has their own user terminal.
The login authentication unit is used for performing registration, login and identity authentication. The information input unit is used for inputting design data and engineering data. The model building unit is used for carrying out BIM modeling according to the design data and is also used for carrying out engineering information association based on the BIM model.
The storage unit is used for storing the entered design data and the engineering data, the statistical unit is used for generating an engineering standing book according to the stored engineering data, and the engineering standing book comprises a plan standing book and an actual standing book. Through the statistical unit, the accounting of budget and actual engineering can be completed quickly, so that the time is saved, and the reliability is high. The project ledger also includes change fees. When the budget cost is greatly deviated from the actual cost, the place/link where the deviation is generated can be quickly and comprehensively known.
The message sending unit is used for issuing a message and appointing the subject type of the message; the message receiving unit is used for selecting the theme type of the received message and also used for receiving the message of the selected theme type. The message sending unit is also used for carrying out semantic analysis based on the content of the sent information and carrying out theme type recommendation based on the semantic analysis result. Therefore, the operation is more intelligent, and the staff can find the subject type of the message accurately, so that the message is pushed to relevant departments accurately. The message receiving unit is also used for modifying the theme type of the received message. Due to the fact that part of workers may mistake the theme type of the received message and further receive the theme type which does not belong to own duty, through the setting, after the workers mistake the theme type, the theme type of the received message can be modified in time.
The specific implementation process is as follows:
when the system is used, the staff of each responsible party can carry out registration, identity authentication and login through the login authentication unit, and the identity of the staff can be verified in advance in such a way, so that irrelevant staff can be prevented from logging in the system.
Then, a worker of a designer can input design data through the information input unit, the model construction unit carries out BIM modeling according to the design data, and engineering display is carried out in a simulation mode; then, the staff of each responsible party can input engineering data through the information input unit, the model construction unit is associated based on the BIM model polarity engineering information, and in other words, the model construction unit can perform associated mounting on the input data (such as materials, sizes, quantities, construction period and the like) associated with the BIM model on each component of the BIM model. Therefore, through the BIM model of the associated engineering information, the staff of each responsible party can quickly and accurately acquire the required related information, and whether the data is reasonable or not can be easily known due to the simulation effect of the BIM model.
Because the contents of all responsible parties are different, in order to avoid the situation that the system pushes the theme information irrelevant to the system when the communication is carried out, the working personnel can select the theme type of the received message by the message receiving unit, and then the system can push the message of the theme type to the user end of the working personnel, so that the irrelevant information can be prevented from being received, meanwhile, the important information can be prevented from being missed, the recording is convenient, and when the processing is carried out, the processing sequence can be arranged according to the quantity and the specific contents of the recently received contents.
Similarly, when communication with other responsible parties (departments) is needed in some cases, and when communication contents are written clearly, the staff needs to establish the theme type of the message, so that even if the staff is not clear which department or departments (namely responsible parties) should be found for communication, the system can automatically push the message to the user side of the staff in the corresponding department according to the theme type. The condition that workers sending messages inquire responsible departments one by one is omitted, and time is saved.
Moreover, when the system is used for specific communication, because the system is provided with the BIM model after the engineering information is associated and mounted, in the communication content, two parties can communicate according to the specific BIM model and the associated and mounted content, so that the reason and the foundation can be realized, the technical understanding can be more visual and smooth due to high visualization and simulation degrees, and the required component content can be quickly obtained without excessive calculation and verification; the communication efficiency can be further improved while the communication effectiveness is ensured, and the effective integration of management and technology is realized.
In conclusion, the system can effectively improve the communication efficiency of each department and reduce the problem of construction period and the problem of engineering quantity calculation caused by the communication problem.
The invention also provides a multi-party information interaction method based on the BIM, and the multi-party information interaction system based on the BIM is used.
Example two
The difference between this embodiment and the first embodiment is that, in this embodiment, the apparatus further includes a prompting unit and a marking unit, where the prompting unit is configured to send a prompt when receiving the information, and the marking unit is configured to mark the received information. The message receiving unit is also used for selecting a reminding mode when receiving the messages of each theme type.
And after receiving the message, sending a prompt to allow the staff to pay attention to the timely processing. However, since the engineering project has many items, a plurality of messages are often received in a short time. The staff can mark the message according to the received message content and the emergency or importance degree, so that the subsequent processing can be conveniently and programmatically carried out, and the overall working quality is improved. On the other hand, as the importance degrees of the messages with different subject types are different for all responsible parties, some messages need to be processed in an emergency, and some messages can be processed slowly, and the situation that the messages needing to be processed in an emergency are omitted by staff can be prevented by setting a reminding mode.
EXAMPLE III
Sometimes, a plurality of departments need to cooperate cooperatively, and the processing content of some departments can influence the processing content of other departments; for example, when calculating the amount, the calculation result of a certain department for a certain link may be used as the calculation condition of another department, and in some cases, the complex situation of cross processing among a plurality of departments may occur. Upon receiving these tasks that require collaboration, it is often difficult for departments to know whether they are able to perform their current tasks, and which of these tasks should begin first. Therefore, such work requiring cooperative processing is often slow to develop.
Different from the first embodiment, in the present embodiment, the user side includes a PC loaded with corresponding software and a smart phone loaded with corresponding APP, and the smart phone is configured to obtain real-time positioning of the user side and send the user side to the server; the server stores the working coordinates of each user side;
the user side is also used for sending the cooperative processing task to the server, and the server is also used for splitting the cooperative processing task into a plurality of processing items after receiving the cooperative processing task; the server stores the incidence relation and the sequence of each processing item in each cooperative processing task;
the server is also used for acquiring the real-time positioning of each user end after receiving the cooperative processing task, and marking the department corresponding to a certain user end as a department capable of working if the distance between the real-time positioning of the certain user end and the working coordinate of the working department corresponding to the certain user end is not more than the preset distance;
the server is also used for analyzing the processing items which can be processed currently according to the departments which can work, and combing a processing sequence table by combining the incidence relation and the sequence of each processing item, wherein the processing sequence table comprises a plurality of task sequence chains, and each task sequence chain comprises a plurality of specific tasks which are sequenced in sequence; the server also matches the concrete tasks which can be processed by each department currently and the position of each concrete task in the corresponding task sequencing chain;
the server also prestores the predicted time of each specific task; the server is also used for predicting the processing start time of each specific task of each department according to the predicted time of each specific task, and performing first sequencing on the specific tasks of each department according to the processing start time and the sequence; when the difference value of the processing start time between two or more specific tasks of a certain door is smaller than a first threshold value, and the difference value of the processing start time between the first specific task and the last specific task is smaller than a second threshold value, the server is also used for carrying out second sequencing on the specific tasks, when the second sequencing is carried out, the server sequences the specific tasks from most to least according to the number of the subsequent specific tasks in the corresponding task sequencing chain, and if the number of the subsequent specific tasks is consistent, the specific tasks are sequenced from most to least according to the estimated total sum of the subsequent specific tasks; wherein each specific task is only subjected to secondary sequencing at most once;
the server is also used for generating a specific task sequencing list of each department according to the first sequencing and the second sequencing and respectively sending the specific task sequencing list to the corresponding user side of each department capable of working.
The specific implementation process is as follows:
when the system is used, when a cooperative processing task requiring cooperative cooperation of a plurality of departments occurs, firstly, the server judges which departments can carry out the current cooperative cooperation work according to the real-time positioning and the working coordinates of the user end of each department. Then, the server analyzes the processing items which can be currently processed according to the departments which can work, so that the departments which can work can concentrate on the processing items which can be currently processed, and the time can be used for the processing items which can be currently processed.
By subsequently performing the first ranking on the specific tasks of each department, it is possible to rank the approximate ranking of the specific tasks that each department can handle. Through the second sorting, the sorting optimization can be carried out on the basis of the first sorting, and the specific conditions of each task sorting chain are referred while the internal processing efficiency of a department is not influenced basically, so that the overall processing efficiency of the whole cooperative processing task can be improved.
And then, the server generates a specific task sequencing list of each department according to the first sequencing and the second sequencing and respectively sends the specific task sequencing list to corresponding clients of each department capable of working. Each workable department can start the work which can be started correctly as soon as possible. The cooperative processing task is completed in general as far as possible, and after all, the subsequent tasks (departments which cannot work at present) are few, and the communication is also convenient on the basis that the general work is completed.
In conclusion, by using the system, the completion efficiency of the cooperative processing task requiring cooperative cooperation of a plurality of departments can be greatly improved.
The above are merely examples of the present invention, and the present invention is not limited to the field related to this embodiment, and the common general knowledge of the known specific structures and characteristics in the schemes is not described herein too much, and those skilled in the art can know all the common technical knowledge in the technical field before the application date or the priority date, can know all the prior art in this field, and have the ability to apply the conventional experimental means before this date, and those skilled in the art can combine their own ability to perfect and implement the scheme, and some typical known structures or known methods should not become barriers to the implementation of the present invention by those skilled in the art in light of the teaching provided in the present application. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several changes and modifications can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (8)

1. A multi-party information interaction system based on BIM is characterized in that: the system comprises a login verification unit, an information input unit, a model construction unit, a message sending unit and a message receiving unit;
the login verification unit is used for performing registration, login and identity verification;
the information input unit is used for inputting design data and engineering data;
the model construction unit is used for carrying out BIM modeling according to design data and is also used for carrying out engineering information association based on the BIM model;
the message sending unit is used for issuing a message and appointing the subject type of the message;
the message receiving unit is used for selecting the theme type of the received message and also used for receiving the message of the selected theme type.
2. The BIM-based multiparty information interaction system of claim 1, wherein: the system also comprises a prompting unit and a marking unit, wherein the prompting unit is used for sending out a prompt when receiving the information, and the marking unit is used for marking the received information.
3. The BIM-based multiparty information interaction system of claim 2, wherein: the message receiving unit is also used for selecting a reminding mode when receiving the messages of each theme type.
4. The BIM-based multiparty information interaction system of claim 1, wherein: the system comprises a storage unit and a statistical unit, wherein the storage unit is used for storing input design data and engineering data, the statistical unit is used for generating an engineering standing book according to the stored engineering data, and the engineering standing book comprises a plan standing book and an actual standing book.
5. The BIM-based multi-party information interaction system of claim 4, wherein: the project ledger also includes change fees.
6. The BIM-based multiparty information interaction system of claim 1, wherein: the message sending unit is also used for performing semantic analysis based on the content of the sent information and performing theme type recommendation based on the semantic analysis result.
7. The BIM-based multi-party information interaction system of claim 6, wherein: the message receiving unit is also used for modifying the theme type of the received message.
8. A multi-party information interaction method based on BIM is characterized in that: use of a BIM based multi-party information interaction system as claimed in any one of claims 1-7.
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