CN106682103B - Human-ground interaction big data acquisition method and device - Google Patents

Human-ground interaction big data acquisition method and device Download PDF

Info

Publication number
CN106682103B
CN106682103B CN201611102232.3A CN201611102232A CN106682103B CN 106682103 B CN106682103 B CN 106682103B CN 201611102232 A CN201611102232 A CN 201611102232A CN 106682103 B CN106682103 B CN 106682103B
Authority
CN
China
Prior art keywords
information
positioning
geographic information
geographic
preset
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201611102232.3A
Other languages
Chinese (zh)
Other versions
CN106682103A (en
Inventor
朱定局
朱竑
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
South China Normal University
Original Assignee
South China Normal University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by South China Normal University filed Critical South China Normal University
Priority to CN201611102232.3A priority Critical patent/CN106682103B/en
Publication of CN106682103A publication Critical patent/CN106682103A/en
Application granted granted Critical
Publication of CN106682103B publication Critical patent/CN106682103B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/21Design, administration or maintenance of databases
    • G06F16/211Schema design and management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/29Geographical information databases

Abstract

The invention relates to a data acquisition method and a data acquisition device. The data acquisition method comprises the following steps: receiving positioning information and user information uploaded by a mobile terminal; searching corresponding geographic information according to the positioning information; sending the geographic information to the mobile terminal; receiving feedback information which is uploaded by the mobile terminal and corresponds to the geographic information; and correspondingly storing the positioning information, the user information, the geographic information and the feedback information. According to the data acquisition method, the positioning information and the user information uploaded by the mobile terminal are received, the corresponding geographic information is searched according to the positioning information, and the feedback information which is sent by the mobile terminal and corresponds to the geographic information is received; correspondingly storing the positioning information, the user information, the geographic information and the feedback information; geographic information corresponding to the positioning information and feedback information corresponding to the geographic information can be directly obtained through the positioning information of the mobile terminal, the data acquisition process is convenient and fast, and the data acquisition efficiency is improved.

Description

Human-ground interaction big data acquisition method and device
Technical Field
The invention relates to the technical field of computers, in particular to a human-ground interaction big data acquisition method and device.
Background
With the development of the big data era, human-ground interaction big data plays an increasingly important role in human-ground system development, national economic construction and national strategic demands. In the traditional technology, the mode that workers take pictures or videos on site and issue questionnaires on site is mainly adopted for acquiring the human-ground interaction big data, the human resources consumed by data acquisition are large, the consumed time is long, and the efficiency of data acquisition is low.
Disclosure of Invention
Therefore, it is necessary to provide a data acquisition method and apparatus for solving the problem of low data acquisition efficiency in the conventional technology.
A method of data acquisition, comprising:
receiving positioning information and user information uploaded by a mobile terminal;
searching corresponding geographic information according to the positioning information;
sending the geographic information to the mobile terminal;
receiving feedback information which is uploaded by the mobile terminal and corresponds to the geographic information;
and correspondingly storing the positioning information, the user information, the geographic information and the feedback information.
In one embodiment, the positioning information includes a positioning location and a positioning range, and the searching for the corresponding geographic information according to the positioning information includes:
and acquiring corresponding keywords according to the positioning place and the positioning range, and searching corresponding geographic information according to the keywords.
In one embodiment, the searching for the corresponding geographic information according to the positioning information includes:
and searching corresponding geographic information according to the positioning information, screening the geographic information, and acquiring the screened geographic information.
In one embodiment, before the sending the geographic information to the mobile terminal, the method further includes:
receiving the geographic information type uploaded by the mobile terminal;
the sending the geographic information to the mobile terminal includes:
searching the geographic information of the corresponding type according to the geographic information type, and sending the geographic information of the corresponding type to the mobile terminal;
correspondingly storing the positioning information, the user information, the geographic information and the feedback information comprises:
and correspondingly storing the positioning information as a first position, the user information as first information, the geographic information as second information and the feedback information as third information in a big database.
A method of data acquisition, comprising:
acquiring positioning information and user information, and uploading the positioning information and the user information to a server;
receiving geographic information corresponding to the positioning information returned by the server;
acquiring feedback information corresponding to the geographic information;
and uploading the feedback information to the server so that the server correspondingly stores the positioning information, the user information, the geographic information and the feedback information.
A data acquisition device comprising:
the first receiving module is used for receiving the positioning information and the user information uploaded by the mobile terminal;
the searching module is used for searching corresponding geographic information according to the positioning information;
the sending module is used for sending the geographic information to the mobile terminal;
the second receiving module is used for receiving feedback information which is uploaded by the mobile terminal and corresponds to the geographic information;
and the storage module is used for correspondingly storing the positioning information, the user information, the geographic information and the feedback information.
In one embodiment, the positioning information includes a positioning location and a positioning range, and the searching module is further configured to obtain a corresponding keyword according to the positioning location and the positioning range, and search for corresponding geographic information according to the keyword.
In one embodiment, the search module is further configured to search for corresponding geographic information according to the positioning information, screen the geographic information, and acquire the screened geographic information.
In one embodiment, the first receiving module is further configured to receive a geographic information receiving type uploaded by the mobile terminal;
the searching module is also used for searching the geographic information of the corresponding type according to the geographic information receiving type;
the sending module is further configured to send the geographic information of the corresponding type to the mobile terminal;
the storage module is further used for correspondingly storing the positioning information as a first position, the user information as first information, the geographic information as second information and the feedback information as third information in a big database.
A data acquisition device comprising:
the first uploading module is used for acquiring positioning information and user information and uploading the positioning information and the user information to the server;
the receiving module is used for receiving the geographic information which is returned by the server and corresponds to the positioning information;
the acquisition module is used for acquiring feedback information corresponding to the geographic information;
and the second uploading module is used for uploading the feedback information to the server so that the server correspondingly stores the positioning information, the user information, the geographic information and the feedback information.
According to the data acquisition method and the data acquisition device, the positioning information and the user information uploaded by the mobile terminal are received, the corresponding geographic information is searched according to the positioning information, and the feedback information corresponding to the geographic information and sent by the mobile terminal is received; correspondingly storing the positioning information, the user information, the geographic information and the feedback information; geographic information corresponding to the positioning information and feedback information corresponding to the geographic information can be directly obtained through the positioning information of the mobile terminal, the data acquisition process is convenient and fast, and the data acquisition efficiency is improved.
Drawings
FIG. 1 is a schematic diagram of an environment for a data collection method in one embodiment;
FIG. 2 is a flow diagram of a data collection method in one embodiment;
FIG. 3 is a flow chart of a data collection method in another embodiment;
FIG. 4 is a block diagram of the data acquisition device in one embodiment;
FIG. 5 is a block diagram showing the structure of a data acquisition device in another embodiment;
FIG. 6 is a block diagram showing the structure of a data acquisition device in another embodiment;
fig. 7 is a block diagram showing the structure of a data acquisition device in another embodiment.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
It will be understood that, as used herein, the terms "first," "second," and the like may be used herein to describe various elements, but these elements are not limited by these terms. These terms are only used to distinguish one element from another. For example, a first receiving module may be referred to as a second receiving module, and similarly, a second receiving module may be referred to as a first receiving module, without departing from the scope of the present invention. The first and second receiving modules are both receiving modules, but they are not the same receiving module.
FIG. 1 is an environmental schematic diagram of a data collection method in one embodiment. As shown in fig. 1, the application environment includes a mobile terminal 110 and a server 120, and the mobile terminal 110 and the server 120 communicate with each other through a network connection. After the mobile terminal 110 obtains the positioning information, the positioning information and the user information can be sent to the server 120 through a network, the server 120 can search for corresponding geographic information according to the received positioning information and send the searched and obtained geographic information to the mobile terminal 110, the mobile terminal 110 displays the received geographic information on a mobile terminal interface and receives feedback information which is input from the mobile terminal interface and corresponds to the geographic information, the mobile terminal 110 sends the feedback information to the server 120, and the server 120 can correspondingly store the received positioning information, the user information and the feedback information and the searched and obtained geographic information in a database. The mobile terminal 110 may be a mobile phone, a tablet computer, a personal digital assistant, or a wearable device capable of connecting to a network; the server 120 may be one or more computers or the like.
FIG. 2 is a flow diagram of a data collection method in one embodiment. As shown in fig. 2, a data collection method, which is executed in the server in fig. 1, includes:
s202, receiving the positioning information and the user information uploaded by the mobile terminal.
Specifically, the positioning information refers to geographical location information of the mobile terminal obtained by the mobile terminal through positioning. The positioning information may be latitude and longitude information of a geographic location of the mobile terminal, or place name information of the geographic location of the mobile terminal. The user information may include user name, gender, native place, occupation, blood type, etc. For example, the location information of the mobile terminal may be 112 ° 36 '48 "east longitude, 36 ° 20' 56" north latitude, or street number D of district C of city a, B.
And S204, searching corresponding geographic information according to the positioning information.
Specifically, after receiving the positioning information uploaded by the mobile terminal, the server searches a keyword corresponding to the positioning information in a search engine, and can acquire geographic information related to the positioning information from internet big data. The geographic information may include natural geographic information, human geographic information, and the like. The natural geographic information can comprise topographic and geomorphic information, hydrological and water system information, climate information, soil information, vegetation information and the like; the human geographic information may include economic information, demographic information, ethnic information, cultural information, and the like. For example, the positioning information uploaded by the mobile terminal is 112 degrees 36 '48' east longitude and latitude 36 degrees 20 '56' north latitude, the server searches for a corresponding place as a B-city B area according to the longitude and latitude information, and the server searches for a keyword in a search engine to be the B-city B area; and if the positioning information uploaded by the mobile terminal is the B district in the B city, the server searches the keywords in the search engine to obtain the B district in the B city. The server acquires geographic information according to the search keyword B, namely the city B, wherein the geographic information can comprise natural geographic information and human geographic information. For example, natural geographic information may include terrain within an area as hills, three rivers within an area, subtropical monsoon climate within an area, primarily red soil within an area, and primarily subtropical evergreen broadleaf forest within an area. The human geographic information can comprise that the economy in the region is mainly agricultural economy, the population growth mode is a growth mode with low birth rate, low mortality rate and low natural growth rate, the national distribution in the region is mainly Han nationality, and the cultural landscape in the region is mainly a city sculpture and the like.
And S206, sending the geographic information to the mobile terminal.
Specifically, the server can send the acquired geographic information to the mobile terminal through the network, so that the mobile terminal can display the geographic information on a mobile terminal interface.
And S208, receiving feedback information which is uploaded by the mobile terminal and corresponds to the geographic information.
Specifically, the server receives feedback information corresponding to the geographic information uploaded by the mobile terminal, where the feedback information may include one or more of text information, voice information, picture information, and video information.
And S210, correspondingly storing the positioning information, the user information, the geographic information and the feedback information.
Specifically, the server stores the received positioning information, user information, feedback information and the obtained geographic information correspondingly.
According to the data acquisition method, the positioning information and the user information uploaded by the mobile terminal are received, the corresponding geographic information is searched according to the positioning information, and the feedback information which is sent by the mobile terminal and corresponds to the geographic information is received; correspondingly storing the positioning information, the user information, the geographic information and the feedback information; geographic information corresponding to the positioning information and feedback information corresponding to the geographic information can be directly obtained through the positioning information of the mobile terminal, the data acquisition process is convenient and fast, and the data acquisition efficiency is improved.
In one embodiment, the server may classify the geographic information obtained in step S204 in fig. 2 according to a preset classification rule. For example, the acquired geographic information may be divided into natural geographic information and human geographic information; the natural geographic information can be divided into topographic and geomorphic information, hydrological and water system information, climate information, soil information, vegetation information and the like; the human geographic information can be divided into economic information, population information, national information, cultural information and the like.
In this embodiment, the obtained geographic information is classified, and the geographic information is divided into different categories, which is beneficial to sorting and analyzing the feedback information according to the different categories of the geographic information, so that a more comprehensive and more detailed corresponding relationship between the geographic information and the feedback information is established.
In one embodiment, the positioning information includes a positioning location and a positioning range, and the step S204 in fig. 2 of searching for corresponding geographic information according to the positioning information includes: and acquiring corresponding keywords according to the positioning place and the positioning range, and searching corresponding geographic information according to the keywords.
Specifically, the positioning information uploaded by the mobile terminal may include a positioning location and a positioning range, and the server may determine a corresponding search keyword according to the positioning location and the positioning range, and then obtain geographic information corresponding to the search keyword from the internet big data. For example, if the location uploaded by the mobile terminal is a street in a city a, a city B and a street, and the location range is a district, the server obtains keywords according to the location and the location range, and searches the city a and the city B in the internet big data through a search engine to obtain corresponding geographic information. If the positioning place uploaded by the mobile terminal is a C street in a district A and a district B of the city A and the positioning range is the city, the server obtains keywords for the city A according to the positioning place and the positioning range, and searches the city A in the internet big data through a search engine to obtain corresponding geographic information.
In this embodiment, the corresponding keywords are obtained according to the positioning location and the positioning range in the positioning information, and the corresponding geographic information is searched according to the keywords, so that different positioning ranges can be selected for the same positioning location, and different search keywords can be obtained. Namely, the positioning places of the mobile terminals are the same, but the server selects different search keywords according to the positioning places, the searched and obtained geographic information is different, and the data acquisition mode is more flexible.
In one embodiment, the step S204 in fig. 2 of searching for the corresponding geographic information according to the positioning information includes: and searching corresponding geographic information according to the positioning information, screening the geographic information, and acquiring the screened geographic information.
Specifically, the server may filter the obtained geographic information according to a preset filtering rule. The preset screening rule may include one or more of the following rules: whether the ranking of the website for acquiring the geographic information in the search engine is within a preset range or not is acquired, and if yes, the geographic information in the website for which the ranking of the website is within the preset range is acquired; acquiring whether the visit volume of the website of the geographic information reaches a preset visit volume, if so, acquiring the geographic information in the website of which the visit volume of the website reaches the preset visit volume; and if the reading amount of the acquired geographic information reaches the preset reading amount, acquiring the geographic information of which the reading amount reaches the preset reading amount.
In this embodiment, the geographic information searched and acquired is screened according to the preset screening rule, and the geographic information meeting the preset screening rule is selected, so that the accuracy of the acquired geographic information is improved, and the data acquisition process is more accurate.
In one embodiment, before sending the geographic information to the mobile terminal, the data collection method further includes: receiving the geographic information type uploaded by the mobile terminal; step S206 in fig. 2 sends the geographic information to the mobile terminal, including: searching the geographic information of the corresponding type according to the geographic information type, and sending the geographic information of the corresponding type to the mobile terminal; correspondingly storing the positioning information, the user information, the geographic information and the feedback information, comprising: and correspondingly storing the positioning information as a first position, the user information as first information, the geographic information as second information and the feedback information as third information in a big database.
Specifically, after searching for the corresponding geographic information according to the positioning information of the mobile terminal and classifying the geographic information, the server may also search for the geographic information of the corresponding type according to the type of the geographic information uploaded by the mobile terminal and send the geographic information of the corresponding type to the mobile terminal. For example, if the type of the geographic information uploaded by the mobile terminal is the hydrologic and water system information in the natural geographic information, the server may search the natural geographic information in the classified geographic information, search the hydrologic and water system information in the natural geographic information, and then send the obtained hydrologic and water system information to the mobile terminal. The server can also correspondingly store the place name information, the user information, the geographic information and the feedback information of the geographic position of the mobile terminal in the same row of the database. The positioning information received by the server may be used as the first location, the received user information may be used as the first information, the obtained geographic information may be used as the second information, and the received feedback information may be used as the third information. And storing the first position in a database field, storing the first information in a database person field, storing the second information in a database field, and storing the third information in a database person feedback field. For example, a land field, a person field, a land information field and a person feedback field are set in an Hbase database, positioning information uploaded by a mobile terminal is { A city B area }, user information is { Mr. Wang, Man, B type blood }, acquired geographic information is { A city B area terrain is a mountain land, climate is tropical marine climate, population is 2 ten thousand }, and received feedback information is video information; the server takes { A-city B area } as a first position, { Mr. wang, male, B-type blood } as first information, { A-city B area terrain is mountain, climate is tropical marine climate, population is 2 ten thousand } as second information, received video information is taken as third information, the first information is stored in a ground field of an Hbase database, the second information is stored in a herringbone field of the Hbase database, the third information is stored in a ground information field of the Hbase database, and the fourth information is stored in a human feedback field of the Hbase database, wherein the first position, the first information, the second information and the third information are stored in the same row of the Hbase database.
In this embodiment, the server may search for the geographic information of the corresponding type according to the geographic information type uploaded by the mobile terminal, and send the geographic information of the corresponding type to the mobile terminal, so that the data acquisition mode is more diverse.
In one embodiment, the data acquisition method further includes: and carrying out statistical analysis on the stored positioning information, the user information, the geographic information and the feedback information. For example, the positioning information is statistically analyzed by dividing administrative regions into units, and the difference of geographic information storage amount and the difference of geographic information category between different cities are analyzed by taking a city or a state as a unit; and analyzing the difference of the feedback information storage quantity and the difference of the user information among different states. The statistical analysis is carried out on the geographic information, and the difference of the storage amounts of the feedback information corresponding to different types of geographic information can be analyzed, such as the difference between the storage amount of the feedback information corresponding to the topographic and geomorphic information, the storage amount of the feedback information corresponding to hydrological and water system information, the storage amount of the feedback information corresponding to climate information, the storage amount of the feedback information corresponding to soil information and the storage amount of the feedback information corresponding to vegetation information in natural geographic information.
In the embodiment, the statistical analysis is performed on the stored positioning information, the user information, the geographic information and the feedback information, so that the collected data can be compared and analyzed from different dimensions, and valuable information in the data can be mined.
FIG. 3 is a flow chart of a data collection method in another embodiment. As shown in fig. 3, a data acquisition method, which is executed in the mobile terminal in fig. 1, includes:
s302, positioning information and user information are obtained and uploaded to a server.
Specifically, the mobile terminal uploads the acquired positioning information and user information to the server through the network. The mobile terminal may obtain Positioning information through GPS (Global Positioning System) Positioning or base station Positioning, where the Positioning information may be latitude and longitude information of a geographic location of the mobile terminal, or place name information of the geographic location of the mobile terminal. The GPS positioning is realized by sending a position signal of the mobile terminal to a positioning server by using a GPS positioning module in the mobile terminal and then receiving positioning information returned by the positioning server. The positioning of the base station is realized by acquiring the distance and the direction between the mobile terminal and the base station and calculating the position information of the mobile terminal through the position information of the base station. The GPS positioning precision is higher than that of the base station, and different positioning modes can be selected according to the precision required by positioning when the positioning information of the mobile terminal is obtained. For example, the current position information of the mobile terminal is a street in a district B and a district C in a city A, and if the positioning information needs to be accurate to the street, the positioning information can be obtained by GPS positioning; if the positioning information needs to be accurately obtained, the base station can be used for positioning to obtain the positioning information. The method for the mobile terminal to acquire the user information may include one or more of the following methods: acquiring user information of software in a mobile terminal; and popping up a user information registration interface on the interface of the mobile terminal, and receiving the user information input on the user information registration interface. The user information may include, among other things, the user's name, gender, native place, occupation, blood type, etc.
In one embodiment, the positioning information comprises a positioning place and a positioning range, and the mobile terminal uploads the positioning place and the positioning range to the server, so that the server can obtain corresponding keywords according to the positioning place and the positioning range, and then searches for corresponding geographic information according to the keywords. For example, if the location of the mobile terminal is a street in a city a, a city B and a street in a city C, and the location range is a region, the server obtains the keyword as the city a and the city B according to the location and the location range, and searches the city a and the city B in the internet big data through a search engine to obtain the corresponding geographic information.
And S304, receiving the geographic information corresponding to the positioning information returned by the server.
Specifically, the mobile terminal receives geographic information corresponding to the positioning information returned by the server. The geographic information may include natural geographic information, human geographic information, and the like. The natural geographic information can comprise topographic and geomorphic information, hydrological and water system information, climate information, soil information, vegetation information and the like; the human geographic information may include economic information, demographic information, ethnic information, cultural information, etc. within the area.
S306, feedback information corresponding to the geographic information is obtained.
Specifically, a geographic information feedback interface is popped up on a mobile terminal interface, and feedback information input on the geographic information feedback interface is received. The feedback information may include text information, picture information, voice information, video information, and the like.
And S308, uploading the feedback information to a server so that the server correspondingly stores the positioning information, the user information, the geographic information and the feedback information.
Specifically, the mobile terminal uploads the feedback information to the server through the network, and the server can store the uploaded positioning information, user information and feedback information and the searched and obtained geographic information in a one-to-one correspondence manner.
According to the data acquisition method, after the mobile terminal uploads the positioning information and the user information, the server can search the corresponding geographic information according to the positioning information, the mobile terminal receives the geographic information returned by the server and displays the geographic information on the interface of the mobile terminal, receives the feedback information which is input on the interface of the mobile terminal and corresponds to the geographic information, and then uploads the feedback information to the server. The positioning information is obtained through the positioning of the mobile terminal, and the feedback information corresponding to the positioning information is input into the interface of the mobile terminal, so that the data acquisition process is more convenient and faster, and the data acquisition efficiency is improved.
Fig. 4 is a block diagram showing the structure of the data acquisition device in one embodiment. As shown in fig. 4, a data acquisition apparatus, which is a virtual apparatus configured to implement the data acquisition method in fig. 2, includes:
a first receiving module 402, configured to receive the positioning information and the user information uploaded by the mobile terminal.
And a searching module 404, configured to search for corresponding geographic information according to the positioning information.
A sending module 406, configured to send the geographic information to the mobile terminal.
The second receiving module 408 is configured to receive feedback information corresponding to the geographic information uploaded by the mobile terminal.
The storage module 410 is configured to correspondingly store the positioning information, the user information, the geographic information, and the feedback information.
The data acquisition device searches for corresponding geographic information according to the positioning information by receiving the positioning information and the user information uploaded by the mobile terminal, and receives feedback information corresponding to the geographic information and sent by the mobile terminal; correspondingly storing the positioning information, the user information, the geographic information and the feedback information; geographic information corresponding to the positioning information and feedback information corresponding to the geographic information can be directly obtained through the positioning information of the mobile terminal, the data acquisition process is convenient and fast, and the data acquisition efficiency is improved.
In an embodiment, the positioning information includes a positioning location and a positioning range, and the searching module 404 is further configured to obtain a corresponding keyword according to the positioning location and the positioning range, and search for corresponding geographic information according to the keyword.
In this embodiment, the corresponding keywords are obtained according to the positioning location and the positioning range in the positioning information, and the corresponding geographic information is searched according to the keywords, so that different positioning ranges can be selected for the same positioning location, and different search keywords can be obtained. Namely, the positioning places of the mobile terminals are the same, but the server selects different search keywords according to the positioning places, the searched and obtained geographic information is different, and the data acquisition mode is more flexible.
In an embodiment, the searching module 404 is further configured to search for corresponding geographic information according to the positioning information, filter the geographic information, and obtain the filtered geographic information.
In this embodiment, the geographic information searched and acquired is screened according to the preset screening rule, and the geographic information meeting the preset screening rule is selected, so that the accuracy of the acquired geographic information is improved, and the data acquisition process is more accurate.
In one embodiment, the first receiving module 402 is further configured to receive a geographic information receiving type uploaded by the mobile terminal; the searching module 404 is further configured to search for geographic information of a corresponding type according to the geographic information receiving type; the sending module 406 is further configured to send the geographic information of the corresponding type to the mobile terminal; the storage module 410 is further configured to correspondingly store the positioning information as a first location, the user information as first information, the geographic information as second information, and the feedback information as third information in the big database.
In this embodiment, the server may search for the geographic information of the corresponding type according to the geographic information type uploaded by the mobile terminal, and send the geographic information of the corresponding type to the mobile terminal, so that the data acquisition mode is more diverse.
Fig. 5 is a block diagram showing the structure of a data acquisition device in another embodiment. As shown in fig. 5, a data acquisition apparatus includes a first receiving module 502, a searching module 504, a sending module 506, a second receiving module 508, a storing module 510, and a classifying module 512, wherein the first receiving module 502, the searching module 504, the sending module 506, the second receiving module 508, and the storing module 510 have the same functions as the corresponding modules in fig. 4.
The classifying module 512 is configured to classify the geographic information searched and obtained by the searching module 504 according to the positioning information.
In this embodiment, the obtained geographic information is classified, and the geographic information is divided into different categories, which is beneficial to sorting and analyzing the feedback information according to the different categories of the geographic information, so that a more comprehensive and more detailed corresponding relationship between the geographic information and the feedback information is established.
Fig. 6 is a block diagram showing the structure of a data acquisition device in another embodiment. As shown in fig. 6, a data acquisition apparatus includes a first receiving module 602, a searching module 604, a sending module 606, a second receiving module 608, a storing module 610 and a counting module 612, wherein the first receiving module 602, the searching module 604, the sending module 606, the second receiving module 608 and the storing module 610 have the same functions as corresponding modules in fig. 4.
And the statistical module 612 is configured to perform statistical analysis on the stored positioning information, user information, geographic information, and feedback information.
In the embodiment, the statistical analysis is performed on the stored positioning information, the user information, the geographic information and the feedback information, so that the collected data can be compared and analyzed from different dimensions, and valuable information in the data can be mined.
Fig. 7 is a block diagram showing the structure of a data acquisition device in another embodiment. As shown in fig. 7, a data acquisition apparatus, which is a virtual apparatus configured to implement the data acquisition method in fig. 3, includes:
a first uploading module 702, configured to acquire positioning information and user information, and upload the positioning information and the user information to a server;
and a receiving module 704, configured to receive the geographic information corresponding to the positioning information returned by the server.
An obtaining module 706, configured to obtain feedback information corresponding to the geographic information.
The second uploading module 708 is configured to upload the feedback information to the server, so that the server correspondingly stores the positioning information, the user information, the geographic information, and the feedback information.
According to the data acquisition device, after the mobile terminal uploads the positioning information and the user information, the server can search the corresponding geographic information according to the positioning information, the mobile terminal receives the geographic information returned by the server and displays the geographic information on the interface of the mobile terminal, receives the feedback information which is input on the interface of the mobile terminal and corresponds to the geographic information, and then uploads the feedback information to the server. The positioning information is obtained through the positioning of the mobile terminal, and the feedback information corresponding to the positioning information is input into the interface of the mobile terminal, so that the data acquisition process is more convenient and faster, and the data acquisition efficiency is improved.
It will be understood by those skilled in the art that all or part of the processes of the methods of the embodiments described above can be implemented by a computer program, which can be stored in a non-volatile computer-readable storage medium, and can include the processes of the embodiments of the methods described above when the program is executed. The storage medium may be a magnetic disk, an optical disk, a Read-Only Memory (ROM), or the like.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. A method of data acquisition, comprising:
receiving positioning information and user information uploaded by a mobile terminal; the positioning information comprises a positioning place and a positioning range;
acquiring corresponding keywords according to the positioning place and the positioning range, and searching corresponding geographic information according to the keywords; specifically, geographic information related to positioning information is acquired from internet big data by searching keywords corresponding to the positioning information in a search engine;
screening the geographic information according to a preset screening rule to obtain screened geographic information; the preset screening rules comprise one or more of the following rules: whether the ranking of the website of the geographic information in a search engine is within a preset range or not is acquired, and if yes, the geographic information in the website of which the ranking is within the preset range is acquired; acquiring whether the visit volume of the website of the geographic information reaches a preset visit volume, if so, acquiring the geographic information in the website of which the visit volume of the website reaches the preset visit volume; whether the reading amount of the acquired geographic information reaches a preset reading amount or not is judged, and if yes, the geographic information of which the reading amount reaches the preset reading amount is acquired;
sending the screened geographic information to the mobile terminal;
receiving feedback information which is uploaded by the mobile terminal and corresponds to the screened geographic information;
and correspondingly storing the positioning information, the user information, the screened geographic information and the feedback information.
2. The data collection method of claim 1, wherein before the sending the filtered geographic information to the mobile terminal, the method further comprises:
receiving the screened geographic information type uploaded by the mobile terminal;
the sending the screened geographic information to the mobile terminal includes:
searching the geographic information of the corresponding type according to the screened geographic information type, and sending the geographic information of the corresponding type to the mobile terminal;
correspondingly storing the positioning information, the user information, the screened geographic information and the feedback information, including:
and correspondingly storing the positioning information as a first position, the user information as first information, the screened geographic information as second information and the feedback information as third information in a big database.
3. The data acquisition method of claim 1, further comprising:
and carrying out statistical analysis on the stored positioning information, the user information, the screened geographic information and the feedback information.
4. A method of data acquisition, comprising:
acquiring positioning information and user information, and uploading the positioning information and the user information to a server; the positioning information comprises a positioning place and a positioning range;
receiving geographic information which corresponds to the positioning information and is filtered and returned by the server;
specifically, the server searches keywords corresponding to the positioning information in a search engine, and acquires geographic information related to the positioning information from the internet big data; screening the geographic information according to a preset screening rule to obtain the screened geographic information;
the preset screening rules comprise one or more of the following rules: whether the ranking of the website of the geographic information in a search engine is within a preset range or not is acquired, and if yes, the geographic information in the website of which the ranking is within the preset range is acquired; acquiring whether the visit volume of the website of the geographic information reaches a preset visit volume, if so, acquiring the geographic information in the website of which the visit volume of the website reaches the preset visit volume; whether the reading amount of the acquired geographic information reaches a preset reading amount or not is judged, and if yes, the geographic information of which the reading amount reaches the preset reading amount is acquired;
acquiring feedback information corresponding to the screened geographic information;
uploading the feedback information to the server so that the server correspondingly stores the positioning information, the user information, the screened geographic information and the feedback information.
5. A data acquisition device, comprising:
the first receiving module is used for receiving the positioning information and the user information uploaded by the mobile terminal; the positioning information comprises a positioning place and a positioning range; the positioning information comprises a positioning place and a positioning range;
the searching module is used for acquiring corresponding keywords according to the positioning place and the positioning range and searching corresponding geographic information according to the keywords; specifically, geographic information related to positioning information is acquired from internet big data by searching keywords corresponding to the positioning information in a search engine; the searching module is further used for screening the geographic information according to a preset screening rule to obtain screened geographic information; the preset screening rules comprise one or more of the following rules: whether the ranking of the website of the geographic information in a search engine is within a preset range or not is acquired, and if yes, the geographic information in the website of which the ranking is within the preset range is acquired; acquiring whether the visit volume of the website of the geographic information reaches a preset visit volume, if so, acquiring the geographic information in the website of which the visit volume of the website reaches the preset visit volume; whether the reading amount of the acquired geographic information reaches a preset reading amount or not is judged, and if yes, the geographic information of which the reading amount reaches the preset reading amount is acquired;
the sending module is used for sending the screened geographic information to the mobile terminal;
the second receiving module is used for receiving feedback information which is uploaded by the mobile terminal and corresponds to the screened geographic information;
and the storage module is used for correspondingly storing the positioning information, the user information, the screened geographic information and the feedback information.
6. The data acquisition device of claim 5, wherein:
the first receiving module is further configured to receive the screened geographic information receiving type uploaded by the mobile terminal;
the searching module is also used for searching the geographic information of the corresponding type according to the screened geographic information receiving type;
the sending module is further configured to send the geographic information of the corresponding type to the mobile terminal;
the storage module is further used for correspondingly storing the positioning information as a first position, the user information as first information, the screened geographic information as second information and the feedback information as third information in a big database.
7. The data acquisition device of claim 5, wherein: the storage device is also used for carrying out statistical analysis on the stored positioning information, the user information, the screened geographic information and the feedback information.
8. A data acquisition device, comprising:
the first uploading module is used for acquiring positioning information and user information and uploading the positioning information and the user information to the server; the positioning information comprises a positioning place and a positioning range;
the receiving module is used for receiving the screened geographic information which corresponds to the positioning information and is returned by the server; specifically, the server searches keywords corresponding to the positioning information in a search engine, and acquires geographic information related to the positioning information from the internet big data; screening the geographic information according to a preset screening rule to obtain the screened geographic information; the preset screening rules comprise one or more of the following rules: whether the ranking of the website of the geographic information in a search engine is within a preset range or not is acquired, and if yes, the geographic information in the website of which the ranking is within the preset range is acquired; acquiring whether the visit volume of the website of the geographic information reaches a preset visit volume, if so, acquiring the geographic information in the website of which the visit volume of the website reaches the preset visit volume; whether the reading amount of the acquired geographic information reaches a preset reading amount or not is judged, and if yes, the geographic information of which the reading amount reaches the preset reading amount is acquired;
the acquisition module is used for acquiring feedback information corresponding to the screened geographic information;
and the second uploading module is used for uploading the feedback information to the server so that the server correspondingly stores the positioning information, the user information, the screened geographic information and the feedback information.
CN201611102232.3A 2016-12-02 2016-12-02 Human-ground interaction big data acquisition method and device Active CN106682103B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201611102232.3A CN106682103B (en) 2016-12-02 2016-12-02 Human-ground interaction big data acquisition method and device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201611102232.3A CN106682103B (en) 2016-12-02 2016-12-02 Human-ground interaction big data acquisition method and device

Publications (2)

Publication Number Publication Date
CN106682103A CN106682103A (en) 2017-05-17
CN106682103B true CN106682103B (en) 2020-09-01

Family

ID=58866492

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201611102232.3A Active CN106682103B (en) 2016-12-02 2016-12-02 Human-ground interaction big data acquisition method and device

Country Status (1)

Country Link
CN (1) CN106682103B (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101867870A (en) * 2010-06-12 2010-10-20 宇龙计算机通信科技(深圳)有限公司 Information push method, server, terminal and system
CN102595311A (en) * 2012-02-06 2012-07-18 浙江大学 Geographical position information layering-based network knowledge output method and system

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8566325B1 (en) * 2010-12-23 2013-10-22 Google Inc. Building search by contents
CN102184258A (en) * 2011-06-02 2011-09-14 中国人民解放军军事医学科学院微生物流行病研究所 On-the-spot epidemiological information collection method based on Google Maps

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101867870A (en) * 2010-06-12 2010-10-20 宇龙计算机通信科技(深圳)有限公司 Information push method, server, terminal and system
CN102595311A (en) * 2012-02-06 2012-07-18 浙江大学 Geographical position information layering-based network knowledge output method and system

Also Published As

Publication number Publication date
CN106682103A (en) 2017-05-17

Similar Documents

Publication Publication Date Title
US9497275B2 (en) System and method for generating three-dimensional geofeeds, orientation-based geofeeds, and geofeeds based on ambient conditions based on content provided by social media content providers
US10523768B2 (en) System and method for generating, accessing, and updating geofeeds
Sester et al. Integrating and generalising volunteered geographic information
US9436690B2 (en) System and method for predicting a geographic origin of content and accuracy of geotags related to content obtained from social media and other content providers
US8310361B1 (en) Creating and monitoring alerts for a geographical area
CN105874452B (en) Marking points of interest from social feeds
Rice et al. Crowdsourced Geospatial Data: A report on the emerging phenomena of crowdsourced and user-generated geospatial data
US20170039264A1 (en) Area modeling by geographic photo label analysis
US20130012242A1 (en) Geo-spatial visualization and awareness of events
Díaz-Pacheco et al. A highly detailed land-use vector map for Madrid region based on photo-interpretation
CN111782980B (en) Mining method, device, equipment and storage medium for map interest points
Cox et al. Improving automatic weather observations with the public Twitter stream
Mandourah et al. Comparison of spatiotemporal contribution patterns among three crowd-sourcing drone platforms
CN106682103B (en) Human-ground interaction big data acquisition method and device
Dumitru et al. Understanding satellite images: A data mining module for Sentinel images
Viana et al. Mobile photo recommendation and logbook generation using context-tagged images
CN114238541A (en) Sensitive target information acquisition method and device and computer equipment
Ntalianis et al. Feelings’ Rating and Detection of Similar Locations, Based on Volunteered Crowdsensing and Crowdsourcing
Deeksha et al. A spatial clustering approach for efficient landmark discovery using geo-tagged photos
Sheth et al. GEO-TAGGING OF AGRICULTURAL PRODUCTS USING MOBILE APPLICATION IN REMOTE AREAS
Fedorov Exploiting public web content to enhance environmental monitoring
Molinari et al. User Geolocated Content Analysis for Urban Studies: investigating mobility perception and hubs using Twitter
Massa Social Media Geographic Information (SMGI): opportunities for spatial planning and governance
Baker Improving navigation services for leisure activities: exploiting the full potential of route-sharing communities and their crowd-based sources
CN116127208A (en) Navigation method based on photographic work position, electronic equipment and storage medium

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant