CN112001812A - Intelligent water affair comprehensive management system, method and storage medium - Google Patents

Intelligent water affair comprehensive management system, method and storage medium Download PDF

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CN112001812A
CN112001812A CN202010821955.9A CN202010821955A CN112001812A CN 112001812 A CN112001812 A CN 112001812A CN 202010821955 A CN202010821955 A CN 202010821955A CN 112001812 A CN112001812 A CN 112001812A
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water affair
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water
information
affair
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CN112001812B (en
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曾辉
许宁
汪艳
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Hunan Judacheng Water Service Co ltd
China Construction Fifth Engineering Bureau Co Ltd
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Hunan Judacheng Water Service Co ltd
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Abstract

The application relates to an intelligent water affair comprehensive management system, a method and a storage medium, which solve the problem that the water affair management platform only collects all subsystems of water affair management into a comprehensive management system without sequencing and is set for a fixed position, so that a user needs to find a water affair project which needs to be known after logging in the management platform, and comprises the following steps: acquiring user login information, and confirming the identity of a user based on the user login information; acquiring the attention conditions of the confirmed user to different water affairs projects, and adjusting the positions of the different water affair projects in the water affair comprehensive management system according to the requirements of the user based on the severity of problems of the different water affair projects; and displaying the adjusted water management system. The intelligent water affair comprehensive management system is convenient for users to acquire the water affair project information needed to be known more quickly after logging in the intelligent water affair comprehensive management system.

Description

Intelligent water affair comprehensive management system, method and storage medium
Technical Field
The application relates to the technical field of big data processing, in particular to an intelligent water affair comprehensive management system, method and storage medium.
Background
The intelligent water affair is an important component of the construction of an intelligent city, aims to improve the water affair management and service level and provides better support for the development of the city. The intelligent water affair takes water supply business as a core and covers the management of raw water, water supply, secondary water supply and sewage treatment. The intelligent water affair takes geographic information service as a basic platform and takes a business process as a core, and a water affair business system is built, so that the intellectualization of daily production and management is realized. However, the existing wisdom water affairs have high manual intervention rate and weak risk identification capability, and need to consume a large amount of manpower and material resources to perform trivial risk discovery, thereby seriously influencing the construction pace of wisdom cities.
The existing patent with the application number of CN201822192371.0 and the name of a water affair management platform comprises a plurality of detection terminals 1, a data center 5 and a plurality of servers 9, wherein the detection terminals are connected with the data center through a communication module 2, and the data center is connected with the servers through a switch 8; a router 4 is arranged between the communication module and the data center, and the communication module, the router and the data center are sequentially connected; and a router 6 is arranged between the data center and the switch, and the data center, the router and the switching center are sequentially connected. A water utilities management platform through with each subsystem intensive to a comprehensive management system of water utilities management, cover each link such as water quality monitoring, leak source monitoring in the city water supply, for city water utilities comprehensive management bring the convenience, ensure that city water supply safety is orderly, high-efficient function.
The above prior art solutions have the following drawbacks: the water affair management platform only collects all subsystems of water affair management into a comprehensive management system, the subsystems are not sorted and are set in fixed positions, and therefore a user needs to find water affair items needing to be known after logging in the management platform, and the water affair management platform is troublesome.
Disclosure of Invention
In order to facilitate a user to acquire water affair project information needed to be known more quickly after logging in the intelligent water affair comprehensive management system, the application provides an intelligent water affair comprehensive management system, a method and a storage medium.
In a first aspect, the present application provides an intelligent water affair comprehensive management method, which adopts the following technical scheme:
an intelligent water affair comprehensive management method comprises the following steps:
acquiring user login information, and confirming the identity of a user based on the user login information;
acquiring the attention conditions of the confirmed user to different water affairs projects, and adjusting the positions of the different water affair projects in the water affair comprehensive management system according to the requirements of the user based on the severity of problems of the different water affair projects;
and displaying the adjusted water management system.
By adopting the technical scheme, the user identity can be timely confirmed, the attention condition of the user to different water affairs projects and the severity of problems existing in the current water affairs projects are obtained based on the user identity condition, the water affairs projects are reasonably adjusted, and the requirements of certain users are better met.
Preferably, the specific steps of obtaining the user login information are as follows:
identifying the mobile phone number of a user;
sending a random verification code through a verification code transmitter based on the mobile phone number of the user, wherein the random verification code is digital information of random digits;
determining the current correct login password information of the user based on the verification code information, the current time period information and the current month date information;
and acquiring login information filled by a user.
By adopting the technical scheme, the login difficulty of the unreal user is greatly improved, and compared with the conventional method of only sending the verification code for verification, the method combines two dynamic information, namely the current time period information and the current month date information, and greatly improves the cracking difficulty of outsiders.
Preferably, the current correct login password information of the user is formed by the following steps:
acquiring current time period information, current month date and verification code information;
comparing the time period information with the current month date information, adjusting the information with larger value in the time period information and the current month date information to be before the verification code information, taking the value of the corresponding information as a first section of digital password, adjusting the information with smaller value in the time period information and the current month date information to be after the verification code information, taking the value of the corresponding information as a third section of digital password, and taking the verification code information as a second section of digital password;
and forming the current correct login password information of the user from the front to the back of the three sections of digital passwords.
By adopting the technical scheme, the method specifically discloses how to combine and set the two dynamic information of the current time period information and the current month date information and the verification code information, and improves the safety of the whole login information.
Preferably, the steps of acquiring the attention situation of the user to different items of water affairs are as follows:
inquiring the total click frequency of the confirmed user to different water affair items, the click frequency and the check duration of the different water affair items when the comprehensive water affair management system is opened historically from a preset database which stores the total click frequency of the user and the corresponding user to different water affair items, the total click frequency of the user to different water affair items when the comprehensive water affair management system is opened historically and the click check duration of the different water affair items when the comprehensive water affair management system is opened historically;
respectively calculating the weight values of the confirmed users for the attention degrees of different projects based on a pre-constructed weight value calculation formula, wherein the pre-constructed weight value calculation formula is as follows: zi=(Ai/Amin)*q1+(Bi/Bmin)*q2+(ci/cmin)*q3,AiThe total click frequency of the ith water affair item, AminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs, BiThe total click frequency of the ith water affair item when the comprehensive water affair management system is opened for three times, BminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs when the comprehensive water affair management system is opened for three times, ciThe total check duration of the ith water affair item when the comprehensive water affair management system is opened for three times, cminThe checking duration corresponding to the water affair project with the least total checking duration of all the water affair projects when the comprehensive water affair management system is opened for three times, q1Is Ai/AminWeight coefficient of (a), q2Is Bi/BminWeight coefficient of (a), q3Is ci/cminWeight coefficient of (2), ZiThe weight value of the ith water affair item.
By adopting the technical scheme, the method effectively considers several dimensions of the user concerning the water affair project through the weight numerical calculation formula, one is the total frequency, the other is the frequency close to three times and the total viewing duration, and effectively combines the historical total data of the user and the data close to several times, so that the tendency of the user concerning the future project is better analyzed, and the important factor that the data close to several times are not only the frequency but also the viewing duration is also noticed.
Preferably, the problem situations of different water affairs are acquired as follows:
acquiring the current data condition of the water affair project, and judging whether the current data condition of the water affair project falls into a preset safety data range of the corresponding water affair project;
based on the water affair projects which do not fall into the preset safety data range of the corresponding water affair projects, the severity of the corresponding water affair projects is found out from a database which is preset with the water affair projects and the severity of the corresponding water affair projects, and the severity is divided into first-level severity, second-level severity and third-level severity from big to small.
By adopting the technical scheme, the analysis of the water affair projects with problems is effectively realized, and the water affair projects with problems can be reasonably classified, so that the attention of users can be better attracted.
Preferably, the adjustment steps of the positions of different water affair projects according to the requirements of users are as follows:
finding out an observation sequence inclined by a corresponding user from a preset database storing the user and the observation sequence of the user inclination, wherein the observation sequence mainly comprises the observation sequence from top to bottom, the observation sequence from bottom to top, the observation sequence from left to right and the observation sequence from right to left;
the water affair items with problems are sorted according to the observation order inclined by the user from the big to the small in severity degree, and the rest water affair items are sorted according to the weight value from the big to the small and are sorted behind the water affair items with problems.
By adopting the technical scheme, the sequencing of the water affair projects can better accord with the tendency of the user through the arrangement of the tendency observation sequence of the user, so that the user can more mentally mind the data query after opening the system.
In a second aspect, the present application provides an intelligent water affair integrated management system, which adopts the following technical scheme:
an intelligent integrated water affairs management system, comprising a memory, a processor and a program stored in the memory and capable of running on the processor, wherein the program can be loaded and executed by the processor to implement the intelligent integrated water affairs management method according to any one of the preceding claims.
By adopting the technical scheme, the identity recognition of the user is realized by processing the calling of the program, meanwhile, the water affair system which is more in line with the user requirement sequencing can be displayed on the premise of the identity recognition of the user, and the user can conveniently acquire the water affair project information which needs to be known by the user more quickly after logging in the intelligent water affair comprehensive management system.
In a third aspect, the present application provides a computer storage medium, which includes the following technical solutions:
a computer storage medium comprising a program that is capable of being loaded and executed by a processor to implement the intelligent water management method of any preceding claim.
By adopting the technical scheme, the processor calls the program of the intelligent water affair comprehensive management method, the identity recognition of the user is realized, meanwhile, the water affair system which is more in line with the user requirement sequencing can be displayed on the premise of the identity recognition of the user, and the user can conveniently and quickly acquire the water affair project information which needs to be known after logging in the intelligent water affair comprehensive management system.
To sum up, the beneficial technical effect of this application does: the water affair management system has the advantages that the identity of the user can be recognized, meanwhile, the water affair system which is more in line with the user requirement sequencing can be displayed on the premise of the identity recognition of the user, and the user can conveniently and quickly acquire the water affair project information which needs to be known after logging in the intelligent water affair comprehensive management system.
Drawings
FIG. 1 is a schematic diagram illustrating the overall steps of the intelligent water management method of the present application.
Fig. 2 is a schematic diagram illustrating specific steps of acquiring user login information in step S100.
Fig. 3 is a detailed step diagram of step S1C0 in fig. 2.
Fig. 4 is a specific acquiring step of the user' S attention to different items of water affairs confirmed in step S200 in fig. 1.
Fig. 5 is a specific step of acquiring the severity of the problem of different water affairs in step S200 of fig. 1.
Fig. 6 is a specific adjustment step of the positions of different water service items in step S200 in fig. 1 to adapt to the user' S needs.
Detailed Description
The present application is described in further detail below with reference to figures 1-6.
Referring to fig. 1, a comprehensive intelligent water management method disclosed in the present application includes steps S100 to S300.
In step S100, user login information is acquired, and the user identity is confirmed based on the user login information.
The step S100 of confirming the user identity based on the user login information is implemented by comparing the password of the user login with the correct password.
The step S100 of obtaining the user login information can be divided into steps S1a0 to S1D0, which refer to fig. 2 specifically.
In step S1a0, the user' S phone number is identified.
After the intelligent water affair comprehensive management system obtains the authority of the equipment for identifying the current mobile phone number, the intelligent water affair comprehensive management system can obtain the mobile phone number of the user in real time.
In step S1B0, a random verification code is sent by the verification code sender based on the user' S mobile phone number, and the random verification code is digital information with random digits.
The verification code transmitter is preferably a verification code platform.
In step S1C0, the correct login password information of the user is currently determined based on the authentication code information, the currently present period information, and the current month date information.
The step S1C0 can be divided into steps S1C1 to S1C3, refer to fig. 3.
In step S1C1, the current time period information, the current month date, and the verification code information are acquired.
In step S1C2, the time period information and the date information of the current month are compared, the information with the larger value in the two is adjusted to be before the verification code information and the value of the corresponding information is used as the first section of digital password, the information with the smaller value in the two is adjusted to be after the verification code information and the value of the corresponding information is used as the third section of digital password, and the verification code information is used as the second section of digital password.
In step S1C3, the three-segment digital password is composed of the previous and next segments of correct login password information of the user.
Assuming that the time period information is 13, the current date is 15, and the verification code is 1345, the current date can be determined to be before, the time period information is after, and the complete numeric code is 15134513.
In step S1D0, login information filled in by the user is acquired.
In step S200, the attention of the confirmed user to different water affairs projects is obtained, and the positions of the different water affairs projects in the water affairs integrated management system are adjusted according to the user' S requirements based on the severity of the problems of the different water affairs projects.
The steps of acquiring the user' S attention to different items of water service confirmed in step S200 can be divided into steps S2a0 through S2B0, see fig. 4.
In step S2a0, from a preset database storing the total click frequency of the user and the corresponding user on different water affair items, the total click frequency of the user on different water affair items when the integrated water affair management system is opened historically, and the click viewing specific content duration of different water affair items, the total click frequency of the confirmed user on different water affair items, the click frequency and the viewing duration of different water affair items when the integrated water affair management system is opened historically are queried.
In step S2B0, the weight values of the attentions of the confirmed users to the different items are calculated based on the pre-constructed weight value calculation formula as follows: zi=(Ai/Amin)*q1+(Bi/Bmin)*q2+(ci/cmin)*q3,AiThe total click frequency of the ith water affair item, AminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs, BiThe total click frequency of the ith water affair item when the comprehensive water affair management system is opened for three times, BminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs when the comprehensive water affair management system is opened for three times, ciThe total check duration of the ith water affair item when the comprehensive water affair management system is opened for three times, cminThe checking duration corresponding to the water affair project with the least total checking duration of all the water affair projects when the comprehensive water affair management system is opened for three times, q1Is Ai/AminWeight coefficient of (a), q2Is Bi/BminWeight coefficient of (a), q3Is ci/cminWeight coefficient of (2), ZiThe weight value of the ith water affair item.
Wherein q is1Preferably 0.3, q2Preferably 0.5, q3Preferably 0.2, and the water service items mainly comprise water quality, water pressure, maintenance and repair conditions and balance.
The step of acquiring the severity of the problem of different items of the water service in step S200 can be divided into step S2a0 to step S2b0, refer to fig. 5.
In step S2a0, the current data status of the water service project is obtained, and it is determined whether the data status falls within the preset safety data range of the corresponding water service project.
Since water service projects are mainly divided into water quality, water pressure, maintenance and repair conditions, and balance, it is a problem if the theoretical maintenance time is 1 to 3 hours and the actual maintenance time is more than 4 hours and has not been maintained, and it is a problem if the reasonable range of balance is 20 or more and the actual balance is 10 yuan.
In step S2b0, based on the water affair items that do not fall within the preset safety data range of the corresponding water affair item, the severity of the corresponding water affair item is found from the database in which the water affair items and the severity of the corresponding water affair item are preset, and the severity is divided into a first-level severity, a second-level severity and a third-level severity from large to small.
Wherein, the water quality is first grade serious, the water pressure is second grade serious, and the maintenance condition and the balance are third grade serious.
In step S200: the adjustment steps for adjusting the positions of different water service items to meet the user requirements can be divided into steps S210 to S220, referring to fig. 6.
In step S210, the observation sequence inclined by the corresponding user is found from a preset database storing the observation sequences of the users and the user tendencies, where the observation sequence mainly includes from top to bottom, from bottom to top, from left to right, and from right to left.
In step S220, the problematic water affair items are sorted from high severity to low according to the observation order inclined by the user, and the rest of the water affair items are sorted from high severity to low by the weight value and are sorted after the problematic water affair items.
Assuming that the user tends to move from left to right, the water quality is problematic, the water quality is arranged on the leftmost side, the weight values are sorted into balance, maintenance and repair conditions and water pressure, and the left-to-right sorted water quality, balance, maintenance and repair conditions and water pressure after the system is logged in are sequentially sorted into the left-to-right order.
In step S300, the adjusted water management system is displayed.
The embodiment of the application provides a computer readable storage medium, which comprises a program capable of realizing the method of any one of fig. 1-6 when being loaded and executed by a processor.
The computer-readable storage medium includes, for example: various media capable of storing program codes, such as a usb disk, a removable hard disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk, or an optical disk.
Based on the same application concept, the embodiment of the present application provides an intelligent integrated water affair management system, which includes a memory and a processor, wherein the memory stores a program that can be executed on the processor to implement any one of the methods shown in fig. 1 to 6.
It will be clear to those skilled in the art that, for convenience and simplicity of description, the foregoing division of the functional modules is merely used as an example, and in practical applications, the above function distribution may be performed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to perform all or part of the above described functions. For the specific working processes of the system, the apparatus and the unit described above, reference may be made to the corresponding processes in the foregoing method embodiments, and details are not described here again.
In the several embodiments provided in the present application, it should be understood that the disclosed system, apparatus and method may be implemented in other manners. For example, the above-described apparatus embodiments are merely illustrative, and for example, a module or a unit may be divided into only one logical function, and may be implemented in other ways, for example, a plurality of units or components may be combined or integrated into another system, or some features may be omitted, or not executed. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices or units, and may be in an electrical, mechanical or other form.
Units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of the embodiment.
In addition, functional units in the embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit.
The integrated unit, if implemented in the form of a software functional unit and sold or used as a stand-alone product, may be stored in a computer readable storage medium. Based on such understanding, the technical solution of the present application may be substantially implemented or contributed by the prior art, or all or part of the technical solution may be embodied in a software product, which is stored in a storage medium and includes instructions for causing a computer device (which may be a personal computer, a server, a network device, or the like) or a processor (processor) to execute all or part of the steps of the method according to the embodiments of the present application. And the aforementioned storage medium includes: u disk, removable hard disk, read only memory, random access memory, magnetic or optical disk, etc. for storing program codes.
The embodiments of the present invention are preferred embodiments of the present application, and the scope of protection of the present application is not limited by the embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. An intelligent water affair comprehensive management method is characterized by comprising the following steps:
acquiring user login information, and confirming the identity of a user based on the user login information;
acquiring the attention conditions of the confirmed user to different water affairs projects, and adjusting the positions of the different water affair projects in the water affair comprehensive management system according to the requirements of the user based on the severity of problems of the different water affair projects;
and displaying the adjusted water management system.
2. The comprehensive intelligent water affair management method according to claim 1, wherein the specific steps of obtaining the login information of the user are as follows:
identifying the mobile phone number of a user;
sending a random verification code through a verification code transmitter based on the mobile phone number of the user, wherein the random verification code is digital information of random digits;
determining the current correct login password information of the user based on the verification code information, the current time period information and the current month date information;
and acquiring login information filled by a user.
3. The comprehensive intelligent water affair management method according to claim 2, wherein the current correct login password information of the user is formed by the steps of:
acquiring current time period information, current month date and verification code information;
comparing the time period information with the current month date information, adjusting the information with larger value in the time period information and the current month date information to be before the verification code information, taking the value of the corresponding information as a first section of digital password, adjusting the information with smaller value in the time period information and the current month date information to be after the verification code information, taking the value of the corresponding information as a third section of digital password, and taking the verification code information as a second section of digital password;
and forming the current correct login password information of the user from the front to the back of the three sections of digital passwords.
4. The comprehensive intelligent water affair management method according to claim 1, wherein the user's attention to different items of water affairs is obtained by the steps of:
inquiring the total click frequency of the confirmed user to different water affair items, the click frequency and the check duration of the different water affair items when the comprehensive water affair management system is opened historically from a preset database which stores the total click frequency of the user and the corresponding user to different water affair items, the total click frequency of the user to different water affair items when the comprehensive water affair management system is opened historically and the click check duration of the different water affair items when the comprehensive water affair management system is opened historically;
respectively calculating the weight values of the confirmed users for the attention degrees of different projects based on a pre-constructed weight value calculation formula, wherein the pre-constructed weight value calculation formula is as follows: zi=(Ai/Amin)*q1+(Bi/Bmin)*q2+(ci/cmin)*q3,AiThe total click frequency of the ith water affair item, AminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs, BiThe total click frequency of the ith water affair item when the comprehensive water affair management system is opened for three times, BminThe click frequency corresponding to the water affair item with the lowest total click frequency in all the water affairs when the comprehensive water affair management system is opened for three times, ciThe total check duration of the ith water affair item when the comprehensive water affair management system is opened for three times, cminThe checking duration corresponding to the water affair project with the least total checking duration of all the water affair projects when the comprehensive water affair management system is opened for three times, q1Is Ai/AminWeight coefficient of (a), q2Is Bi/BminWeight coefficient of (a), q3Is ci/cminWeight coefficient of (2), ZiThe weight value of the ith water affair item.
5. The comprehensive intelligent water management method according to claim 4, wherein: the problem situations of different water affairs are obtained as follows:
acquiring the current data condition of the water affair project, and judging whether the current data condition of the water affair project falls into a preset safety data range of the corresponding water affair project;
based on the water affair projects which do not fall into the preset safety data range of the corresponding water affair projects, the severity of the corresponding water affair projects is found out from a database which is preset with the water affair projects and the severity of the corresponding water affair projects, and the severity is divided into first-level severity, second-level severity and third-level severity from big to small.
6. The comprehensive intelligent water management method according to claim 5, wherein: the adjustment steps of the positions of different water affair projects according to the requirements of users are as follows:
finding out an observation sequence inclined by a corresponding user from a preset database storing the user and the observation sequence of the user inclination, wherein the observation sequence mainly comprises the observation sequence from top to bottom, the observation sequence from bottom to top, the observation sequence from left to right and the observation sequence from right to left;
the water affair items with problems are sorted according to the observation order inclined by the user from the big to the small in severity degree, and the rest water affair items are sorted according to the weight value from the big to the small and are sorted behind the water affair items with problems.
7. The utility model provides an wisdom water affairs integrated management system which characterized in that: the intelligent water affair comprehensive management system comprises a memory, a processor and a program which is stored on the memory and can run on the processor, wherein the program can be loaded and executed by the processor to realize the intelligent water affair comprehensive management method according to any one of claims 1 to 6.
8. A computer storage medium, characterized in that: a program that can be loaded and executed by a processor to implement the intelligent water affair integrated management method according to any one of claims 1 to 6.
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Publication number Priority date Publication date Assignee Title
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