CN116934437A - Bidding platform bidding integrated management system - Google Patents

Bidding platform bidding integrated management system Download PDF

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CN116934437A
CN116934437A CN202210803795.4A CN202210803795A CN116934437A CN 116934437 A CN116934437 A CN 116934437A CN 202210803795 A CN202210803795 A CN 202210803795A CN 116934437 A CN116934437 A CN 116934437A
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曾祥豪
蔡绪泽
刘姿
张思慧
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Shenzhen Gaoxing Project Management Co ltd
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Shenzhen Gaoxing Project Management Co ltd
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Abstract

The invention discloses a bid integrated management system of a bid-bidding platform, which belongs to the technical field of bid-bidding platform systems and solves the problem of data resource sharing, and the technical scheme is characterized by comprising a newly-built bidding module, a copy bidding module and a construction diary module, wherein the newly-built bidding module is used for enterprises to manufacture new bid-bidding files; the replication bidding document module is used for directly selecting a typical bidding document template suitable for the replication bidding document module from a bidding document database and calling the template into the newly-built bidding document; and the construction diary module is used for carrying out management and recording in the construction stage according to the requirements of the bidding documents and the bidding documents, so that the effect of being convenient for users to carry out data butt joint and sharing is achieved.

Description

Bidding platform bidding integrated management system
Technical Field
The invention relates to the field of bidding platform systems, in particular to a bidding platform bidding integrated management system.
Background
At present, with the rapid development of computer technology, informatization has become a hot spot research object in the field of engineering construction, and as an important application of informatization of engineering construction, an electronic bidding system is also becoming a hot spot of research.
The realization of the electronic bidding system has a great practical significance, on one hand, the principles of fairness, fairness and disclosure can be better embodied, meanwhile, the working efficiency of bidding departments is improved, and the cost of bidding work is reduced; on the other hand, the bidder can participate in bidding activities conveniently, more bidders can know bidding information, and manpower, financial resources and the like of the bidder are saved. However, how to organically combine bidding and bidding together while performing bidding activities, achieving integration and sharing of data is a technical problem that must be considered. The contradiction that bidding systems are respectively used for war, can not be mutually identified and can not share resources at present is a technical problem.
Disclosure of Invention
The invention aims to solve the technical problems in the related art to at least a certain extent, and provides a bid integrated management system of a bid-inviting platform.
In order to solve the technical problems, the technical scheme of the invention is as follows: a bid integrated management system of a bid-bidding platform, which comprises a newly-built bidding module, a copy bidding module and a construction diary module,
the new bidding document module is used for enterprises to manufacture new bidding documents;
the replication bidding document module is used for directly selecting a typical bidding document template suitable for the replication bidding document module from a bidding document database and calling the template into the newly-built bidding document;
and the construction diary module is used for managing and recording construction stages according to requirements of the bid-inviting file and the bid-bidding file.
Preferably, the newly-built bidding module comprises a bidding preservation module, a bidding template module and a bidding manufacturing module;
the mark preservation module is used for preserving the newly-built mark and inputting the newly-built mark database of the enterprise, and the content comprises: the method comprises the steps of marking a book ID, marking a book name, manufacturing date, manufacturing person name, marking number, manufacturing cost, selling price, amount to be received, real receipt amount, purchasing person name and remarks;
the template module of the bidding document, is used for storing the typical bidding document already compiled by enterprises, the content includes the template ID of the bidding document, template name, name of the template producer, date of manufacture, template quantity, template serial number;
the mark making module is used for making marks, so that a user searches a typical mark template database which is stored for a proper template, and the mark making module is inquired according to mark types, template IDs and names of mark makers, and is directly called or copied after the inquiry is finished.
Preferably, the copy standard book module comprises a newly-built template module, a template calling module and a template inquiring module;
the new template module is used for storing a manufactured template into the template database, and the content comprises a template ID, a new template name, storage positions and the number;
the template calling module is used for calling the selected typical template into the current bidding document according to the current template database and the appointed database;
and the template query module is used for querying an enterprise typical template database and supporting keyword query, and comprises query through template ID, template name, template type and template producer conditions.
Preferably, the construction diary module manages the construction stage according to the requirements of the bidding document and the bidding document, and the main contents are as follows: progress management, problems, quality management, past and future meaning, meeting address book, change visa, material equipment, construction equipment and hydropower situation.
Preferably, the method further comprises: the monitoring module is used for monitoring the operation call of all the functional modules and marking the call of each functional module and collecting the data volume;
the power distribution module is used for supplying power to the monitoring module so as to keep normal operation in the monitoring period;
the database module is used for respectively storing the data of the single functional module and simultaneously calculating the feedback storage data density, wherein the storage data density is the ratio of the current storage data amount to the data capacity which can be stored on the current functional module;
when the data in the single functional module is stored, the plurality of functional modules are arranged according to the data density, the data of each functional module are divided and stored, whether the data volume of the corresponding functional module is aligned with the data volume of the storage unit is judged during storage, if so, the data is directly stored in the current storage space, and if the data volume stored at present is smaller than the data volume of the storage unit, the data is stored in the buffer area to wait for the supplement of the data volume of the next period and then is compared again.
Preferably, the system also comprises a memory allocation setting module, the memory allocation setting module acquires the power supply quantity of the current power distribution module in real time, the functional module is set with first-gear electric quantity, second-gear electric quantity and third-gear electric quantity which are sequentially from small to large,
if the current power supply quantity of the power distribution module is smaller than or equal to the first-gear electric quantity, reducing the stored data capacity value;
if the current power supply quantity of the power distribution module is between the first-gear electric quantity and the second-gear electric quantity, the stored data capacity is kept unchanged;
if the current power supply quantity of the power distribution module is between the second-gear electric quantity and the third-gear electric quantity, expanding the data storage capacity by a1 time;
and if the current power supply quantity of the power distribution module is larger than the third-gear electric quantity, expanding the storage data capacity by a2 times, wherein a2 is larger than a1.
Preferably, the power supply system further comprises a power supply module, the power supply module starts to allocate the number of the power distribution modules according to the number of the started functional modules, wherein the total number of the functional modules is m, the number of the started functional modules is n, the total number of the power distribution modules is B, the number of the current work of the power distribution modules is determined to be b=n/m×B, B, n, m, B is an integer, and the rounding method with the decimal point later is an integer.
Compared with the background art, the invention has the technical effects that:
1. the system is characterized in that a newly built bidding module, a copy bidding module and a construction diary module are utilized to realize the butt joint and management of bidding materials, and users can butt joint on a unified platform, so that the aim of resource sharing is fulfilled;
2. for different functional modules, the respective data storage and calling modes are independently configured, wherein the data storage is carried out by utilizing a physical database module, the storage space is effectively allocated, and the allocation amount of the storage space and the storage data amount are mutually corresponding, so that the storage space resource is utilized, and the charge and the surplus are avoided;
3. setting grading distribution storage capacity for comparison of electric quantity, and changing data storage quantity in time when the electric quantity of the power distribution module changes so as to reserve more important data and delete storage space, thereby meeting the requirement of users;
4. according to the number of functional module starting, the method is realized: the power supply module is used for configuring the power supply of the power distribution module, so that the power distribution module can be effectively adapted to the matching of the current function operation quantity and the electric quantity and the matching of the current function operation quantity and the storage space.
Drawings
FIG. 1 is a block diagram of functional modules in an embodiment;
fig. 2 is a schematic diagram of a hardware module in an embodiment.
1. Newly-built bidding modules; 11. a mark storage module; 12. a book marking template module; 13. a mark making module; 2. copying a book marking module; 21. newly-built template modules; 22. a template calling module; 23. A template inquiry module; 3. a construction diary module; 4. a monitoring module; 5. a power distribution module; 6. a database module; 7. a memory allocation setting module; 8. and a power supply module.
Detailed Description
The following detailed description of the invention is provided in connection with the accompanying drawings to facilitate understanding and grasping of the technical scheme of the invention.
Examples:
a bid integrated management system of a bid-bidding platform is shown with reference to fig. 1, and comprises a newly-built bidding module 1, a copy bidding module 2 and a construction diary module 3.
And the new bidding module 1 is used for enterprises to manufacture new bidding documents. The newly-built bidding module 1 comprises a bidding preservation module 11, a bidding template module 12 and a bidding manufacturing module 13.
The bid book storing module 11 is used for storing a new bid book and inputting the new bid book database of an enterprise, and the content comprises: the method comprises the steps of marking a book ID, marking a book name, manufacturing date, manufacturing name, marking number, marking serial number, manufacturing cost, selling price, amount to be received, real receipt amount, purchasing name and remarks.
The template module 12 is used for storing typical templates which are already compiled by enterprises, and the content comprises a template ID, a template name, a template maker name, a date of manufacture, the number of templates and a template serial number.
The label making module 13 is configured to make a label, and allow a user to find a template suitable for the user from a database of typical label templates already stored, where the user is able to query the template according to a label type, a template ID, and a name of a person making the template, and directly call or copy the template after the query is completed.
The copy bidding module 2 is used for directly selecting a typical bidding document template suitable for the user from the bidding database and calling the template into the newly-built bidding document. The copy specification module 2 comprises a new template module 21, a template calling module 22 and a template query module 23.
A new template module 21, configured to store a manufactured template in a template database, where the content includes a template ID, a new template name, a storage location, and a number of new templates;
the template calling module 22 calls the selected typical template into the current bidding document according to the current template database and the appointed database;
the template query module 23 is configured to query an enterprise typical template database, and support keyword query, including query by template ID, template name, template type, and template maker condition.
The construction diary module 3 performs management and recording of construction stages according to the requirements of the bid file and the bid file. The construction diary module 3 manages construction stages according to requirements of bidding documents and bidding documents, and comprises the following main contents: progress management, problems, quality management, past and future meaning, meeting address book, change visa, material equipment, construction equipment and hydropower situation.
Supplementary explanation of the above:
a login module: the system login module is designed in an open mode, and the system function special interface can be accessed by directly double-clicking the operation icon of the system. And a function main interface calling module: the system is a window entering each functional module and is responsible for calling each functional module of the system.
The tagbook saving module 11: according to the designed mark ID, the well-made mark can be stored in a specified database, and the operations of priority sorting, changing, searching and the like can be performed on the mark.
The tagboard module 12: according to the designed template ID of the book, the prepared template can be stored in a specified template database, and the operations of priority ordering, changing, searching and the like can be performed on the template.
The mark making module 13: the system is one of core modules of work tasks, and by means of a double word embedding technology, word contents of a catalog are changed without waiting time, screen flashing is avoided, a target book and materials are simultaneously and parallelly displayed, and when the target book is made, the target book can be directly referred to each other, and part of characters or pictures of the materials can be copied and pasted into the engineering target book. The object of the marking module 13 is mainly a large amount of single data, the main body of the program is also composed of a large amount of program codes, the program design adopts a high-level modularized design, and a small amount of frames are added for mainly setting the system, inputting data, displaying information and the like. The system module design process expression can be more visual.
New template module 21: the user can make a typical template according to the requirements of a company or a customer, can call the original template in the original template database, edit the original template in terms, allocate an ID for the original template, and store the ID in the template database.
And a template calling module: the invocation of the templates is achieved through the exchange of data.
Template query module 23: typical templates in a template database may be queried by template ID, template maker, content, etc.
The system has inquiry functions in modules such as newly-built books, template inquiry and template calling, and the related inquiry module program flow: initializing an interface, providing a query condition input window for a user, acquiring query information input by the user, displaying all templates if the query information is empty, starting a result display window if the query information is not empty, displaying a query result if returned information is error-free, and prompting the reason of operation failure if the returned information is error-free.
The construction diary module 3 program flow: initializing an interface, selecting a report to be filled in, entering a related report, providing a statistical condition input window for a user, acquiring request information input by the user, giving a prompt if the request information is incorrect, and sending data extraction operation to a database server if the request information is correct; and receiving information returned by the server, if the returned information is correct, displaying the statistical result, and if the returned information is incorrect, prompting the reason of operation failure.
The progress management module: the information (including engineering quantity, progress, change, etc.) of the finished engineering can be calculated through the single code time-marking network diagram.
The following problems are modules: and recording the divergence of the owner or the supervision engineer during the construction process when checking the construction work of the contractor or when settling the engineering money.
And a quality management module: recording relevant construction quality inspection records filled in when the supervision engineer inspects the construction quality, numbering the relevant construction quality inspection records, and sequencing the relevant construction quality inspection records according to the synchronization.
And a file module for coming and going: and recording written or electronic files among the owners and the supervision engineers, the owners and the contractors and the supervision engineers and the contractors, numbering the files and ordering the files according to the dates.
And the conference recording module is used for: the operations such as adding, modifying and the like can be performed on the record of the answering and consultation and the like of the owners and the supervision engineers, the owners and the contractors, the supervision engineers and the contractors, the owners and the designers, the designers and the contractors or all the owners and the contractors.
A change visa module: the change information of the engineering quantity, the engineering progress, the settlement and the like in the implementation process of the engineering is recorded, and operations such as adding, modifying and the like can be performed on the change information.
It is further added that, regarding some of the above modules, the above modules may be individually referred to as a functional module, where the above modules correspond to a database and are stored on a server or a hardware storage device, so as to facilitate data recall and data modification.
In this scheme, still include:
the monitoring module 4 is used for monitoring the operation call of all the functional modules and marking the call of each functional module and collecting the data volume;
the power distribution module 5 is used for supplying power to the monitoring module 4 so as to keep normal operation in a monitoring period;
and the database module is used for respectively storing the data of the single functional module and simultaneously calculating the feedback storage data density, wherein the storage data density is the ratio of the currently stored data quantity to the data capacity which can be stored on the current functional module.
It should be noted that, as shown in fig. 2, the monitoring module 4 has one, and a plurality of functional modules, and the monitoring module 4 monitors all the functional modules, for example, 5 functional modules are illustrated herein, and in the following illustration, the number of functional modules is 5. Each functional module corresponds to one database module, so the number of the database modules is 5. The concept for storing data density is a custom concept.
When the data in the single functional module is stored, the plurality of functional modules are arranged according to the data density, and the data of the respective functional modules are divided and stored. When the data is stored, whether the data quantity of the corresponding functional module is aligned with the data capacity of a storage unit (corresponding to hardware physical storage equipment of the database module, such as part of storage space in a hard disk) is judged, if so, the data quantity is directly stored in the current storage space, and if the data quantity stored in the current storage space is smaller than the data capacity of the storage unit, the data quantity stored in a buffer area is compared again after waiting for the supplement of the data quantity of the next period.
According to the technical scheme, the storage space can be effectively filled by comparing the data volume with the data capacity, if the data volume is not filled, the data of the next period can be waited for to be supplemented, a small amount of data is left in the cache in the period, and the data is filled once after the next data volume is compensated, so that the reliability of data storage can be improved.
The scheme is preferable, the power distribution system further comprises a storage capacity distribution setting module 7, the storage capacity distribution setting module 7 obtains the power supply quantity of the current power distribution module 5 in real time, and the functional module is set with first-gear electric quantity, second-gear electric quantity and third-gear electric quantity which are sequentially from small to large.
If the current power supply quantity of the power distribution module 5 is smaller than or equal to the first-gear electric quantity, reducing the stored data capacity value;
if the current power supply quantity of the power distribution module 5 is between the first-gear electric quantity and the second-gear electric quantity, the stored data capacity is kept unchanged;
if the current power supply quantity of the power distribution module 5 is between the second-gear electric quantity and the third-gear electric quantity, the data storage capacity a1 times is enlarged;
if the current power supply quantity of the power distribution module 5 is larger than the third-gear electric quantity, the data storage capacity a2 times is enlarged, and a2 is larger than a1.
It can be seen that by the above technical solution, the storage space can be controlled according to the power distribution amount of the power distribution module 5. Different functional modules have different power consumption and process different data volumes, so that electric quantity matching is required. In the scheme, the gear of the electric quantity is set, so that the distribution of different storage data capacities is carried out. The method is beneficial to improving the running stability of the whole system.
At the end of this scheme, still include power module 8, power module 8 starts the quantity of allotment distribution module 5 according to the quantity that the functional module starts. The total number of the functional modules is m, the number of the current starts is n, the total number of the power distribution modules 5 is B, the number of the current works of the power distribution modules 5 is determined to be b=n/m×b, B, n, m, B are all integers, and the rounding method with the decimal point at the rear position is used for integer. When m is 5 and n is 2, then B is 2 when the total number of power distribution modules 5 b=5. Alternatively, when the total number of the power distribution modules 5 is 4, then b is 1, and then one power distribution module 5 may be started.
To sum up:
the system is characterized in that the newly-built bidding module 1, the copy bidding module 2 and the construction diary module 3 are utilized to realize the butt joint and management of bidding materials, and users can butt joint on a unified platform, so that the purpose of resource sharing is realized.
And for different functional modules, the respective data storage and calling modes are independently configured, wherein the data storage is carried out by utilizing a physical database module, the storage space is effectively allocated, and the allocation amount of the storage space and the storage data amount are mutually corresponding, so that the storage space resource is utilized, and the charge and the surplus are avoided.
The storage capacity is allocated in a grading manner according to the comparison of the electric quantity, and when the electric quantity of the power distribution module 5 changes, the data storage quantity is changed in time so as to reserve more important data and delete the storage space, thereby meeting the demands of users.
According to the number of functional module starting, the method is realized: the power supply module 8 is used for configuring the power supply of the power distribution module 5, so that the power distribution module can be effectively adapted to the matching of the current function operation quantity and the electric quantity and the matching of the current function operation quantity and the storage space.
Of course, the above is only a typical example of the invention, and other embodiments of the invention are also possible, and all technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of the invention claimed.

Claims (7)

1. The utility model provides a bid integrated management system is tended to bid platform, includes newly-built bidding module (1), copies bidding module (2), construction diary module (3), characterized by:
a newly built bidding document module (1) is used for enterprises to manufacture new bidding documents;
the replication bidding document module (2) is used for directly selecting a typical bidding document template suitable for the replication bidding document module from a bidding document database and calling the template into a newly-built bidding document;
and the construction diary module (3) is used for managing and recording the construction stage according to the requirements of the bid file and the bid file.
2. The bidding platform bidding integrated management system of claim 1, wherein: the newly-built bidding module (1) comprises a bidding preservation module (11), a bidding template module (12) and a bidding manufacturing module (13);
the mark preservation module (11) is used for preserving the newly-built mark and inputting the newly-built mark database of the enterprise, and the content comprises: the method comprises the steps of marking a book ID, marking a book name, manufacturing date, manufacturing person name, marking number, manufacturing cost, selling price, amount to be received, real receipt amount, purchasing person name and remarks;
the template module (12) of the label, is used for storing the typical label already compiled by the enterprise, the content includes template ID of the label, template name, name of the template producer, date of manufacture, template quantity, template serial number;
and the mark making module (13) is used for making marks, so that a user searches a typical mark template database which is stored for a proper template, and the mark making module is inquired according to the mark type, the template ID and the name of a template maker, and directly calls or copies after the inquiry is finished.
3. The bidding platform bidding integrated management system of claim 1, wherein: the copy bidding module (2) comprises a newly-built template module (21), a template calling module (22) and a template inquiring module (23);
a new template module (21) for storing a manufactured template in a template database, wherein the content comprises a template ID, a new template name, storage positions and the number;
the template calling module (22) calls the selected typical template into the current bidding document according to the current template database and the appointed database;
and the template query module (23) is used for querying an enterprise typical template database and supporting keyword query, and comprises query through template ID, template name, template type and template producer conditions.
4. The bidding platform bidding integrated management system of claim 1, wherein: the construction diary module (3) is used for managing construction stages according to requirements of bidding documents and bidding documents, and comprises the following main contents: progress management, problems, quality management, past and future meaning, meeting address book, change visa, material equipment, construction equipment and hydropower situation.
5. The bidding platform bidding integrated management system of claim 1, wherein: further comprises: the monitoring module (4) is used for monitoring the operation call of all the functional modules and marking the call of each functional module and collecting the data volume;
the power distribution module (5) is used for supplying power to the monitoring module (4) so as to keep normal operation in a monitoring period;
the database module is used for respectively storing the data of the single functional module and simultaneously calculating the feedback storage data density, wherein the storage data density is the ratio of the current storage data amount to the data capacity which can be stored on the current functional module;
when the data in the single functional module is stored, the plurality of functional modules are arranged according to the data density, the data of each functional module are divided and stored, whether the data volume of the corresponding functional module is aligned with the data volume of the storage unit is judged during storage, if so, the data is directly stored in the current storage space, and if the data volume stored at present is smaller than the data volume of the storage unit, the data is stored in the buffer area to wait for the supplement of the data volume of the next period and then is compared again.
6. The bidding platform bidding integrated management system of claim 5, wherein: the power distribution system also comprises a memory allocation setting module (7), wherein the memory allocation setting module (7) acquires the power supply quantity of the current power distribution module (5) in real time, and the functional module is set with a first-gear electric quantity, a second-gear electric quantity and a third-gear electric quantity which are sequentially from small to large,
if the current power supply quantity of the power distribution module (5) is smaller than or equal to the first-gear electric quantity, reducing the stored data capacity value;
if the current power supply quantity of the power distribution module (5) is between the first-gear electric quantity and the second-gear electric quantity, the stored data capacity is kept unchanged;
if the current power supply quantity of the power distribution module (5) is between the second-gear electric quantity and the third-gear electric quantity, the data storage capacity a1 times is enlarged;
and if the current power supply quantity of the power distribution module (5) is larger than the three-gear electric quantity, expanding the storage data capacity by a2 times, wherein a2 is larger than a1.
7. The bidding platform bidding integrated management system of claim 6, wherein: the power supply system comprises a power supply module (8), wherein the power supply module (8) starts to allocate the number of power distribution modules (5) according to the number of the functional modules started, the total number of the functional modules is m, the number of the current started power distribution modules (5) is n, the total number of the power distribution modules (5) is B, the number of the current work of the power distribution modules (5) is determined to be b=n/m×B, B, n, m, B is an integer, and the rounding method with the decimal later bit is an integer.
CN202210803795.4A 2022-07-07 2022-07-07 Bidding platform bidding integrated management system Pending CN116934437A (en)

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