CN106708955A - Thermodynamic diagram generation method and equipment - Google Patents
Thermodynamic diagram generation method and equipment Download PDFInfo
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- CN106708955A CN106708955A CN201611074045.9A CN201611074045A CN106708955A CN 106708955 A CN106708955 A CN 106708955A CN 201611074045 A CN201611074045 A CN 201611074045A CN 106708955 A CN106708955 A CN 106708955A
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S19/00—Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
- G01S19/01—Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
- G01S19/13—Receivers
- G01S19/24—Acquisition or tracking or demodulation of signals transmitted by the system
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S19/00—Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
- G01S19/38—Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system
- G01S19/39—Determining a navigation solution using signals transmitted by a satellite radio beacon positioning system the satellite radio beacon positioning system transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
- G01S19/42—Determining position
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F16/00—Information retrieval; Database structures therefor; File system structures therefor
- G06F16/90—Details of database functions independent of the retrieved data types
- G06F16/95—Retrieval from the web
- G06F16/953—Querying, e.g. by the use of web search engines
- G06F16/9537—Spatial or temporal dependent retrieval, e.g. spatiotemporal queries
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Abstract
The invention discloses a thermodynamic diagram generation method. The thermodynamic diagram generation method comprises the following steps that: evenly dividing an area to be processed into a plurality of subareas in advance; after a mobile collection record reported by each mobile collection base station in a statistical period is obtained, determining the subarea to which a GPS (Global Positioning System) of each mobile collection record belongs; according to each mobile collection record, determining the collection record number of each subarea; and finally, according to the collection record number of each subarea and the center point of each subarea, generating the thermodynamic diagram of the area to be processed. Therefore, the thermodynamic diagram of a whole area can be generated through a data collection record reported by the collection base station which continuously moves, and the problem of inaccurate thermodynamic diagrams since the base station and a geographic position can not be fixed due to the movement of the base station in the prior art is overcome.
Description
Technical field
The application is related to field of computer technology, more particularly to a kind of heating power drawing generating method.The application is also related to
A kind of thermodynamic chart generates equipment.
Background technology
With continuing to develop for science and technology, wireless terminal that current user is used (such as smart mobile phone, tablet device and
Notebook computer etc.) all possess GPS functions substantially.Therefore, the GPS information based on wireless terminal can be drawn in certain region
Wireless terminal distribution map, accordingly researcher can be used to assess volume of the flow of passengers shape in the public arenas such as market supermarket scenic spot
Condition, formulates rational commercial plan and provides intuitively data support to manager.
The general MAC of the wireless terminal near base station and right of being gathered using the wireless sniff base stations of Wifi in the prior art
The information such as the GPS location answered, these information can be aggregated into rear end storage Analysis server, further be processed, such as in map
Upper display MAC tracks, the MAC number thermodynamic chart that certain time period is presented.It is public security with progressively promoting the use of for this kind of base station
Case is cracked and urban planning provides more technological means.
In order to the GPS information for further improving wireless terminal obtains scope and obtains efficiency, mobile collection base station meets the tendency of
And give birth to.As its name suggests, mobile collection base station is exactly that collecting device is arranged on mobile object (such as taxi), such city
All of mobile collection base station can collect neighbouring mobile device MAC Address in traveling process, and each movement sets
The standby position relative to the mobile collection base station.
However, while using this technology, inventor have also discovered problem of the prior art:Compared to fixed collection
Base station, the mini-plant on mobile object is all mounted in due to each mobile collection base station, and by ambient intelligence equipment
Signal intensity determines the position of each smart machine, thus the ambient intelligence equipment of its collection gps data be all it is unfixed,
With the movement of collection base station, each data all may be different.These mass datas using traditional based on fixed base
GPS gathers of standing data can cause statistical efficiency and its low during being counted, even more so that statistics has deviation.
The content of the invention
This application provides a kind of heating power drawing generating method, it is used to solve accurately obtain in the prior art and count
The problem of the GPS of the gathered data of mobile collection base station, it is many sub-regions that be evenly dividing for pending area in advance by the method,
Also include:
The mobile collection record that each mobile collection base station reports in measurement period is obtained, the mobile collection record is included
GPS and acquisition and recording number;
Determine the subregion that the GPS of each mobile collection record is belonged to;
The acquisition and recording number of each subregion is determined according to each mobile collection record;
The central point of acquisition and recording number and each subregion according to each subregion generates the pending district
The thermodynamic chart in domain.
Treated described in the central point generation of acquisition and recording number and each subregion preferably, according to each subregion
The thermodynamic chart of processing region, specially:
Coding according to the cutting number of times and the subregion determines the gps coordinate of the drift angle of the subregion, institute
State coding be according to cutting number of times and the pending area latitude and longitude coordinates by the pending area be evenly dividing for
It is each interval unique corresponding character string for setting behind multiple intervals, the cutting number of times is generated according to default precision;
The gps coordinate of the drift angle according to the subregion determines the coordinate of the central point for respectively stating subregion;
Weight of the acquisition and recording number sum that all mobile collections in the subregion are recorded as the central point;
The thermodynamic chart of pending area described in the weight and Coordinate generation of the central point according to each subregion.
Preferably, it is determined that after the subregions that are belonged to of the GPS of each mobile collection record, also including:
If the type of the subregion is edge subregion, the mobile collection record is abandoned;
If or, the type of the subregion is the edge subregion, it is multiple two grades that the subregion is evenly dividing
Subregion, the acquisition and recording for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion
Number, and using the central point of each two grades of subregions as the subregion central point.
Preferably, after the acquisition and recording number of each subregion is determined according to each mobile collection record, also wrap
Include:
If the type of the subregion is focus subregion, it is multiple two grades of subregions that the subregion is evenly dividing,
Each mobile collection according to the subregion is belonged to records the acquisition and recording number for determining each two grades of subregions, and will be each
The central point of two grades of subregions as the subregion central point.
Preferably, the focus subregion determines in the following manner:
The subregion is preassigned focus subregion;And/or, the acquisition and recording number of the subregion exceedes to be preset
Amount threshold;And/or, the ratio of the acquisition and recording number of the subregion and total acquisition and recording number of the pending area surpasses
Cross default proportion threshold value.
Accordingly, the application also proposed a kind of thermodynamic chart generation equipment, including:
Division module, it is many sub-regions to be in advance evenly dividing pending area;
Acquisition module, obtains the mobile collection record that each mobile collection base station reports in measurement period, and the movement is adopted
Collection record includes GPS and acquisition and recording number;
First determining module, determines the subregion that the GPS of each mobile collection record is belonged to;
Second determining module, the acquisition and recording number of each subregion is determined according to each mobile collection record;
Generation module, acquisition and recording number and each subregion according to each subregion central point generation described in
The thermodynamic chart of pending area.
Preferably, the generation module specifically for:
Coding according to the cutting number of times and the subregion determines the gps coordinate of the drift angle of the subregion, institute
State coding be according to cutting number of times and the pending area latitude and longitude coordinates by the pending area be evenly dividing for
It is each interval unique corresponding character string for setting behind multiple intervals, the cutting number of times is generated according to default precision;
The gps coordinate of the drift angle according to the subregion determines the coordinate of the central point for respectively stating subregion;
Weight of the acquisition and recording number sum that all mobile collections in the subregion are recorded as the central point;
The thermodynamic chart of pending area described in the weight and Coordinate generation of the central point according to each subregion.
Preferably, also include:
Edge sub-region processes module, the mobile collection note is abandoned when the type of the subregion is edge subregion
Record;Or, it is multiple two grades of sub-districts to be evenly dividing the subregion when the type of the subregion is the edge subregion
Domain, the acquisition and recording number for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion, and
Using the central point of each two grades of subregions as the subregion central point.
Preferably, also include:
Focus sub-region processes module, subregion type be focus subregion when by the subregion be evenly dividing for
Multiple two grades of subregions, record according to each mobile collection for belonging to the subregion and determine adopting for each two grades of subregions
Collection record number, and using the central point of each two grades of subregions as the subregion central point.
Preferably, the focus subregion determines in the following manner:
The subregion is preassigned focus subregion;And/or, the acquisition and recording number of the subregion exceedes to be preset
Amount threshold;And/or, the ratio of the acquisition and recording number of the subregion and total acquisition and recording number of the pending area surpasses
Cross default proportion threshold value.
As can be seen here, by the technical scheme of application the application, it is multiple sub-districts to be in advance evenly dividing pending area
Domain, after the mobile collection record that each mobile collection base station reports in measurement period is obtained, determines each mobile collection record
The subregion that GPS is belonged to, the acquisition and recording number of all subregion is determined according to each mobile collection record, finally according to all subregion
Acquisition and recording number and all subregion central point generate pending area thermodynamic chart.So as to pass through continuous movement
The data acquiring and recording that collection base station is reported generates the thermodynamic chart of overall region, overcomes base station movement in the prior art and is made
Into base station can not fix corresponding with geographical position and cause the inaccurate problem of thermodynamic chart.
Brief description of the drawings
Fig. 1 is a kind of schematic flow sheet of heating power drawing generating method that the application is proposed;
Fig. 2 is the schematic diagram for being evenly dividing pending area in the application specific embodiment;
Fig. 3 is the fringe region schematic diagram of pending area in the application specific embodiment;
Fig. 4 is the structural representation that a kind of thermodynamic chart that the application is proposed generates equipment.
Specific embodiment
As stated in the Background Art, it is around being determined by signal intensity when gathering base station and being in during movement
The position of smart machine and quantity, the problem thus brought are that the GPS for gathering the acquisition and recording that base station is reported can not be fixed,
So that the thermodynamic chart of overall region statistics generation is inaccurate or even cannot generate.In view of this, present applicant proposes one kind
Heating power drawing generating method, it is therefore an objective to can accurately reflect overall area for the acquisition and recording generation that mobile collection base station is reported
The thermodynamic chart of the smart machine distribution situation in domain.
As shown in figure 1, a kind of schematic flow sheet of the heating power drawing generating method being disclosed for this application, including following step
Suddenly:
First, it is many sub-regions to be in advance evenly dividing pending area.
Used as with the illustrated type of the geographic area where special highlighted form display mobile device, thermodynamic chart can show
Write one intensive situation of broad area interior joint of ground reflection.Thermodynamic chart is called thermodynamic chart, is that one kind is changed using one group of depth
Colour sequential represent the how many technology of certain index.Desired value region higher, the color of superposition is deeper, and desired value is fewer
Region, the color of superposition is more shallow.
Due to each mobile collection base station all in movement during, therefore each mobile collection base station is carried out carefully
Substantial amounts of resource will be expended if the reason of office.And when the mobile collection base station of pending area is more, by that will wait to locate
It is many sub-regions that reason region is evenly dividing, and thermodynamic chart can simply be polymerized intensive smart machine, and using a kind of progressive
Colour band is showed, and can intuitively show very much the overall structure and density situation of the smart machine distribution of whole pending area.
The characteristic based on thermodynamic chart, the application obtained in S101 first each mobile collection base station in the measurement period on
The mobile collection record of report, subsequently will generate corresponding thermodynamic chart for the pending area.Herein it should be noted that
Based on the use habit under different personnel or different situations, the thermodynamic chart that the step is finally generated may in display effect
There is diversity, but it can truly reflect the smart machine density feelings of diverse location subregion in the network all the time
Condition.Therefore mobile collection record must include GPS and acquisition and recording number.
In a preferred embodiment of the application, pending area is evenly dividing as the mode of many sub-regions is specific
The pending area is evenly dividing as many to be first according to the latitude and longitude coordinates of cutting number of times and the pending area
Individual interval, is then successively encoded the multiple interval.It should be noted that the cutting number of times is given birth to according to default precision
Into, and each interval unique character string of correspondence after coding.But the heating power diagram form that can obtain same effect with this all belongs to
In the protection domain of the application.
In the specific embodiment of the application, the design sketch of the step is as shown in Fig. 2 by map partitioning into fixed size
Subregion, the size of subregion needs to carry out balance in precision and performance.Division methods can be using the division side of GeoHash
Method, the method does two points of predetermined number of times (the more big then intervening areas of number of times are smaller) by the latitude and longitude coordinates to the earth, then
By each Interval Coding an into character string, character string if the character number of matching is more since above, get over by general distance
Closely.
S102, determines the subregion that the GPS of each mobile collection record is belonged to.
Based on the GPS in mobile collection record and each sub-regions for dividing in advance, the step 2, to each movement
The GPS of acquisition and recording is encoded, and belongs to above-mentioned some specific subregion.In the concrete application scene of the application,
Can determine specifically to belong to subregion based on the coordinate range and the GPS per sub-regions, it is in addition other real
Existing mode also belongs to the protection domain of the application.
By the application is intended to propose suitable thermodynamic chart generation side for the smart machine being distributed in pending area
Case, and with the difference of pending area landform, technical staff judges the standard of the distribution of the smart machine per sub-regions
Difference, therefore in order to flexibly be processed as desired for the network for having demand, in the application is preferred
In embodiment, following treatment can be carried out according to the type of the landform of the subregion after this step:
(1) if the type of the subregion is edge subregion, the mobile collection record is abandoned;
(2) if the type of the subregion is the edge subregion, it is multiple two grades that the subregion is evenly dividing
Subregion, the acquisition and recording for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion
Number, and using the central point of each two grades of subregions as the subregion central point.
By taking the map shown in Fig. 2 as an example, it is contemplated that the city domain be not it is very regular, and subregion dividing method sheet
Body may all cause a center for the subregion of urban fringe not fall in the domain in the city, or even differ more, this
When can further be modified, correction strategy includes but is not limited to retain, abandon and do edge subregion further thin
Point.
Specifically, during further subdivision is done to edge subregion, according to city domain and selected subregion
Splitting scheme carries out subdivision to each edge subregion in advance, such as be separated into 2*2 or 3*3 or 4*4 size identical
Region, the subdivision level of each edge subregion can specifically combine the fringe region with the son for dividing first with different
The coincidence face in region is segmented.Fall in the mobile data of this fringe region, need further to be sub-divided into minimum when encoding GPS
Region.
For example, in the fringe region shown in Fig. 3, the fringe region can be subdivided into 3*3=9 sub-regions, on to
Under from left to right number consecutively be 0,1 ... 8, the region segmentation allocation list for the fringe region is as shown in table 1 below:
RegionCode | SplitCount | SubCount |
abc123 | 15 | 1 |
abc111 | 15 | 4 |
abc112 | 15 | 9 |
Table 1
RegionCode illustrate divide after regional code, SplitCount represent cutting number of times (be typically determined in advance,
It is determined that after it is constant and unified), four, this region gps coordinate at angle (rectangle) can be obtained according to cutting number of times and coding.
When the subregion for the type carries out data statistics, the specific embodiment of the application changes RegionCode
It is following form:
RegionCode+ ' the@sublattice numbering/sublattices number of original sub-region ', such as abc111@0/4, abc111@1/4
Deng.
Accordingly, for the grid not subdivided, RegionCode holdings are constant or this rule encoding is pressed in unification, such as
Abc123 can be encoded to abc123@0/1.Subsequently based on central point generation thermodynamic chart during, interface present when according to
The rule obtains the central point of each sub-grid, using central point as sub-grid focus.
Cities that the scheme of the preferred embodiment can be applied in bordering on the sea or many island in domain, it is general these
Mobile data is less to be produced across the sea, similarly suitable these scenes of the above-mentioned treatment to fringe region.Specific edge sub-district
The determination mode in domain can in advance be formulated by technical staff, or carry out automatic decision according to the landform of the edge subregion, this
A little protection domains for belonging to the application.
S103, the acquisition and recording number of each subregion is determined according to each mobile collection record.
After mobile collection being determined by S102 and records belonged to subregion, then what the mobile collection was recorded adopts
Collection record number is all grouped into the subregion.The step is by 3, based on subregion, and the time statistics dynamics according to thermodynamic chart is (such as small
When, day, week etc.) or specified time range obtain statistics.
In the specific embodiment of the application, statistics is in logic similar to a series of by measurement period (such as 5 minutes, 1
Hour, 1 day etc.) form that obtains, here as a example by daily counting, corresponding statistical form is as shown in table 2 below:
RegionCode | SplitCount | Time | Count |
abc123 | 15 | 2016-10-10 | 100 |
abc123 | 15 | 2016-10-11 | 120 |
abc111 | 15 | 2016-10-10 | 200 |
abc111 | 15 | 2016-10-11 | 205 |
Table 2
In upper table, Time represents a specific measurement period, and Count is the collection in the region in correspondence measurement period
Record number.Herein it should be noted that the value of measurement period in the above-described embodiments is according to the thermodynamic chart to be generated
The level of detail and technical staff carry out the suitable date value of selection to the research cycle of pending area smart machine, typically with
Hour or day are unit.Those skilled in the art can also set the length of measurement period according to other actually used situations.
In addition, it is contemplated that some regions belong to hot spot region, to lift the precision in these regions, in one embodiment may be used
Further to be refined to these regions.In a preferred embodiment of the application, when certain sub-regions is judged as heat
During point subregion, it is multiple two grades of subregions that the subregion is evenly dividing, according to each shifting for belonging to the subregion
Dynamic acquisition and recording determines the acquisition and recording number of each two grades of subregions, and using the central point of each two grades of subregions as institute
State the central point of subregion.
Above scheme elaborates the processing mode when subregion is judged as focus subregion, in actual application scenarios
In, the judgment mode of focus subregion can be determined according to following condition:
(1) subregion is preassigned focus subregion;
(2) the acquisition and recording number of the subregion exceedes default amount threshold;
(3) ratio of total acquisition and recording number of the acquisition and recording number of the subregion and the pending area exceedes default
Proportion threshold value.
In advance by way of configuring, the hot spot region (such as business district) to city is finely divided the scheme of the embodiment,
2*2 or 3*3 or 4*4 size identical subregion are such as separated into, different regions can be subdivided into the sub-district of varying number
Domain.The fixed collection base station for considering the deployed in areas can be taken into account while subdivision, relative distance base station farther out is divided
To different divided areas.In specific application scenarios, can also enter one when the statistic in the region reaches certain threshold value
Step divided area.Threshold value can select the ratio of the range statistics amount and all range statistics amounts;Threshold value can set multistage, often
One-level one divided area quantity of correspondence, threshold value is higher, then divided area quantity is more.
S104, acquisition and recording number and each subregion according to each subregion central point generation described in wait to locate
Manage the thermodynamic chart in region.
It is intended to be generated according to the collection number of each sub-regions the thermodynamic chart of whole pending area due to the application, and heating power
Figure is made up of different point and corresponding gradient color, therefore the step is using the central point of each sub-regions as heating power
Each point shown in figure.In the preferred embodiment of the application, the step to implement flow as follows:
Step a) determines that the GPS of the drift angle of the subregion sits according to the coding of the cutting number of times and the subregion
Mark;
Step b) determines respectively to state the coordinate of the central point of subregion according to the gps coordinate of the drift angle of the subregion;
Step c) is using the acquisition and recording number sum of all mobile collections record in the subregion as the central point
Weight;
The heating power of step d) pending areas according to the weight and Coordinate generation of the central point of each subregion
Figure.
In specific application scenarios, with the data instance shown in table 2, after client gets the data of needs, lead to
Cross regional code and cutting number of times obtains four, region gps coordinate at angle, and then rectangular centre point coordinates can be obtained, this
Used as a focus, weight is corresponding statistics Count to coordinate.So realize and position the statistics of every sub-regions
To the central point of subregion, subsequently corresponding thermodynamic chart finally can be presented in map client according to heating power nomography.
As can be seen here, by the technical scheme of application the application, it is multiple sub-districts to be in advance evenly dividing pending area
Domain, after the mobile collection record that each mobile collection base station reports in measurement period is obtained, determines each mobile collection record
The subregion that GPS is belonged to, the acquisition and recording number of all subregion is determined according to each mobile collection record, finally according to all subregion
Acquisition and recording number and all subregion central point generate pending area thermodynamic chart.So as to pass through continuous movement
The data acquiring and recording that collection base station is reported generates the thermodynamic chart of overall region, overcomes base station movement in the prior art and is made
Into base station can not fix corresponding with geographical position and cause the inaccurate problem of thermodynamic chart.
To reach above technical purpose, the application also proposed a kind of thermodynamic chart generation equipment, as shown in figure 4, the equipment
Including:
Division module 410, it is many sub-regions to be in advance evenly dividing pending area;
Acquisition module 420, obtains the mobile collection record that each mobile collection base station reports in measurement period, the movement
Acquisition and recording includes GPS and acquisition and recording number;
First determining module 430, determines the subregion that the GPS of each mobile collection record is belonged to;
Second determining module 440, the acquisition and recording number of each subregion is determined according to each mobile collection record;
Generation module 450, the central point generation of acquisition and recording number and each subregion according to each subregion
The thermodynamic chart of the pending area.
In specific application scenarios, the generation module specifically for:
Coding according to the cutting number of times and the subregion determines the gps coordinate of the drift angle of the subregion, institute
State coding be according to cutting number of times and the pending area latitude and longitude coordinates by the pending area be evenly dividing for
It is each interval unique corresponding character string for setting behind multiple intervals, the cutting number of times is generated according to default precision;
The gps coordinate of the drift angle according to the subregion determines the coordinate of the central point for respectively stating subregion;
Weight of the acquisition and recording number sum that all mobile collections in the subregion are recorded as the central point;
The thermodynamic chart of pending area described in the weight and Coordinate generation of the central point according to each subregion.
In specific application scenarios, also include:
Edge sub-region processes module, the mobile collection note is abandoned when the type of the subregion is edge subregion
Record;Or, it is multiple two grades of sub-districts to be evenly dividing the subregion when the type of the subregion is the edge subregion
Domain, the acquisition and recording number for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion, and
Using the central point of each two grades of subregions as the subregion central point.
In specific application scenarios, also include:
Focus sub-region processes module, subregion type be focus subregion when by the subregion be evenly dividing for
Multiple two grades of subregions, record according to each mobile collection for belonging to the subregion and determine adopting for each two grades of subregions
Collection record number, and using the central point of each two grades of subregions as the subregion central point.
In specific application scenarios, the focus subregion determines in the following manner:
The subregion is preassigned focus subregion;And/or, the acquisition and recording number of the subregion exceedes to be preset
Amount threshold;And/or, the ratio of the acquisition and recording number of the subregion and total acquisition and recording number of the pending area surpasses
Cross default proportion threshold value.
By the technical scheme of application the application, it is many sub-regions to be in advance evenly dividing pending area, is being obtained
After the mobile collection record that each mobile collection base station reports in measurement period, determine that the GPS of each mobile collection record is belonged to
Subregion, according to each mobile collection record determine all subregion acquisition and recording number, finally according to all subregion collection note
The central point of record number and all subregion generates the thermodynamic chart of pending area.So as to pass through continuous mobile collection base station
The data acquiring and recording for being reported generates the thermodynamic chart of overall region, overcomes the base station caused by base station movement in the prior art
Can not fix corresponding with geographical position and cause the inaccurate problem of thermodynamic chart.
Through the above description of the embodiments, those skilled in the art can be understood that the application can lead to
Cross hardware realization, it is also possible to realize by the mode of software plus necessary general hardware platform.Based on such understanding, this Shen
Technical scheme please can be embodied in the form of software product, and the software product can be stored in a non-volatile memories
Medium (can be CD-ROM, USB flash disk, mobile hard disk etc.) in, including some instructions are used to so that a computer equipment (can be
Personal computer, server, or network equipment etc.) perform method described in the application each implement scene.
It will be appreciated by those skilled in the art that accompanying drawing is a schematic diagram for being preferable to carry out scene, module in accompanying drawing or
Flow is not necessarily implemented necessary to the application.
It will be appreciated by those skilled in the art that module in device in implement scene can according to implement scene describe into
Row is distributed in the device of implement scene, it is also possible to carry out one or more dresses that respective change is disposed other than this implement scene
In putting.The module of above-mentioned implement scene can merge into a module, it is also possible to be further split into multiple submodule.
Above-mentioned the application sequence number is for illustration only, and the quality of implement scene is not represented.
Disclosed above is only several specific implementation scenes of the application, but, the application is not limited to this, Ren Heben
What the technical staff in field can think change should all fall into the protection domain of the application.
Claims (10)
1. a kind of heating power drawing generating method, it is characterised in that it is many sub-regions, the party to be in advance evenly dividing pending area
Method also includes:
The mobile collection record that each mobile collection base station reports in measurement period is obtained, the mobile collection record includes GPS
And acquisition and recording number;
Determine the subregion that the GPS of each mobile collection record is belonged to;
The acquisition and recording number of each subregion is determined according to each mobile collection record;
The central point of acquisition and recording number and each subregion according to each subregion generates the pending area
Thermodynamic chart.
2. the method for claim 1, it is characterised in that acquisition and recording number according to each subregion and it is each described in
The central point of subregion generates the thermodynamic chart of the pending area, specially:
Coding according to the cutting number of times and the subregion determines the gps coordinate of the drift angle of the subregion, the volume
Code is that to be evenly dividing the pending area according to the latitude and longitude coordinates of cutting number of times and the pending area be multiple
It is each interval unique corresponding character string for setting behind interval, the cutting number of times is generated according to default precision;
The gps coordinate of the drift angle according to the subregion determines the coordinate of the central point for respectively stating subregion;
Weight of the acquisition and recording number sum that all mobile collections in the subregion are recorded as the central point;
The thermodynamic chart of pending area described in the weight and Coordinate generation of the central point according to each subregion.
3. the method for claim 1, it is characterised in that it is determined that what the GPS of each mobile collection record was belonged to
After subregion, also include:
If the type of the subregion is edge subregion, the mobile collection record is abandoned;
If or, the type of the subregion is the edge subregion, it is multiple two grades of sub-districts that the subregion is evenly dividing
Domain, the acquisition and recording number for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion, and
Using the central point of each two grades of subregions as the subregion central point.
4. the method for claim 1, it is characterised in that each sub-district is being determined according to each mobile collection record
After the acquisition and recording number in domain, also include:
If the type of the subregion is focus subregion, it is multiple two grades of subregions that the subregion is evenly dividing, according to
Each mobile collection record for belonging to the subregion determines the acquisition and recording number of each two grades of subregions, and will be each described
Two grades of central points of subregion as the subregion central point.
5. method as claimed in claim 4, it is characterised in that the focus subregion determines in the following manner:
The subregion is preassigned focus subregion;And/or, the acquisition and recording number of the subregion exceedes default number
Amount threshold value;And/or, the ratio of the acquisition and recording number of the subregion and total acquisition and recording number of the pending area exceedes in advance
If proportion threshold value.
6. a kind of thermodynamic chart generates equipment, it is characterised in that including:
Division module, it is many sub-regions to be in advance evenly dividing pending area;
Acquisition module, obtains the mobile collection record that each mobile collection base station reports in measurement period, the mobile collection note
Record includes GPS and acquisition and recording number;
First determining module, determines the subregion that the GPS of each mobile collection record is belonged to;
Second determining module, the acquisition and recording number of each subregion is determined according to each mobile collection record;
Generation module, acquisition and recording number and each subregion according to each subregion central point generation described in wait to locate
Manage the thermodynamic chart in region.
7. equipment as claimed in claim 6, it is characterised in that the generation module specifically for:
Coding according to the cutting number of times and the subregion determines the gps coordinate of the drift angle of the subregion, the volume
Code is that to be evenly dividing the pending area according to the latitude and longitude coordinates of cutting number of times and the pending area be multiple
It is each interval unique corresponding character string for setting behind interval, the cutting number of times is generated according to default precision;
The gps coordinate of the drift angle according to the subregion determines the coordinate of the central point for respectively stating subregion;
Weight of the acquisition and recording number sum that all mobile collections in the subregion are recorded as the central point;
The thermodynamic chart of pending area described in the weight and Coordinate generation of the central point according to each subregion.
8. equipment as claimed in claim 6, it is characterised in that also include:
Edge sub-region processes module, the mobile collection record is abandoned when the type of the subregion is edge subregion;
Or, it is multiple two grades of subregions to be evenly dividing the subregion when the type of the subregion is the edge subregion,
Each mobile collection according to the subregion is belonged to records the acquisition and recording number for determining each two grades of subregions, and will be each
The central point of two grades of subregions as the subregion central point.
9. equipment as claimed in claim 6, it is characterised in that also include:
Focus sub-region processes module, it is multiple to be evenly dividing the subregion when the type of subregion is focus subregion
Two grades of subregions, the collection note for determining each two grades of subregions is recorded according to each mobile collection for belonging to the subregion
Record number, and using the central point of each two grades of subregions as the subregion central point.
10. equipment as claimed in claim 9, it is characterised in that the focus subregion determines in the following manner:
The subregion is preassigned focus subregion;And/or, the acquisition and recording number of the subregion exceedes default number
Amount threshold value;And/or, the ratio of the acquisition and recording number of the subregion and total acquisition and recording number of the pending area exceedes in advance
If proportion threshold value.
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104657417A (en) * | 2014-12-17 | 2015-05-27 | 东软集团股份有限公司 | Thermodynamic diagram processing method and thermodynamic diagram processing system |
CN105809967A (en) * | 2016-05-25 | 2016-07-27 | 浙江宇视科技有限公司 | Traffic flow displaying method and device |
CN105844681A (en) * | 2016-03-22 | 2016-08-10 | 北京建飞无限科技有限公司 | Thermodynamic diagram drawing method and apparatus |
CN106131789A (en) * | 2016-08-16 | 2016-11-16 | 杭州诚智天扬科技有限公司 | Scenic spot based on mobile signaling protocol visitor's heating power map generalization method |
-
2016
- 2016-11-29 CN CN201611074045.9A patent/CN106708955B/en active Active
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104657417A (en) * | 2014-12-17 | 2015-05-27 | 东软集团股份有限公司 | Thermodynamic diagram processing method and thermodynamic diagram processing system |
CN105844681A (en) * | 2016-03-22 | 2016-08-10 | 北京建飞无限科技有限公司 | Thermodynamic diagram drawing method and apparatus |
CN105809967A (en) * | 2016-05-25 | 2016-07-27 | 浙江宇视科技有限公司 | Traffic flow displaying method and device |
CN106131789A (en) * | 2016-08-16 | 2016-11-16 | 杭州诚智天扬科技有限公司 | Scenic spot based on mobile signaling protocol visitor's heating power map generalization method |
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