CN109391947A - A kind of network node dispositions method and device - Google Patents

A kind of network node dispositions method and device Download PDF

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Publication number
CN109391947A
CN109391947A CN201811351174.7A CN201811351174A CN109391947A CN 109391947 A CN109391947 A CN 109391947A CN 201811351174 A CN201811351174 A CN 201811351174A CN 109391947 A CN109391947 A CN 109391947A
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China
Prior art keywords
node
information
base station
deployment
threedimensional model
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CN201811351174.7A
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刘淑凡
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Henan Information Consultation Design & Research Co Ltd
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Henan Information Consultation Design & Research Co Ltd
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Priority to CN201811351174.7A priority Critical patent/CN109391947A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/18Network planning tools

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

The application provides a kind of network node dispositions method and device, is related to network node addressing technique field.This method comprises: selecting information according to user, determining at least one node that information matches are selected with user, generates node deployment strategy in node deployment threedimensional model;Finally, output node deployment strategy.In the embodiment of the present application, the difference of information is selected according to user using the network node dispositions method, it can be used in node deployment threedimensional model having the checking of node, browse and carry out in the node deployment threedimensional model adding for node, node deployment threedimensional model based on the target area, avoid the need for when the examining on the spot addressing of node of progress manually to target area, the inefficient problem of addressing can effectively improve the addressing efficiency of node, save manpower.

Description

A kind of network node dispositions method and device
Technical field
This application involves network node addressing technique field, in particular to a kind of network node dispositions method and device.
Background technique
In the covering construction of communication base station, location information, base for Cell Site Placement due to generally to consider base station The many factors such as antenna height and the site type configuration stood, so that the setting of base station meets network to the need of the base station as far as possible It asks.
Particularly, Cell Site Placement is compatible with the layout of existing net base station, so as to targetedly solve weak existing for network The area of coverage.It is existing to preset proposed site, it needs manually to use linear range measurement method, examines on the spot measurement and preset proposed station Location periphery elevation information, and combine this to preset the contour line data information of proposed site and now net the data of base station, comprehensive descision Whether the site is suitable, and when due to carrying out Cell Site Placement using artificial field exploring, efficiency of selection is not high, and more wasteful people Power.
Apply for content
The purpose of the application is, in view of the deficiency of the prior art, provide a kind of network node dispositions method and Device when carrying out the deployment of network node using this method, has the characteristics that deployment is high-efficient, labor-saving.
To achieve the above object, the embodiment of the present application the technical solution adopted is as follows:
In a first aspect, the embodiment of the present application provides a kind of network node dispositions method, comprising: select to believe according to user Breath, determining at least one node that information matches are selected with user, generates node deployment strategy in node deployment threedimensional model; Output node deployment strategy;Wherein, it includes the spatial coordinated information of at least one location point in target area that user, which selects information,; Node deployment threedimensional model includes the spatial coordinated information of target area and the attribute information of node;Node deployment strategy includes: The spatial coordinated information of the corresponding location point of attribute information and node of at least one node.
Further, information is selected according to user, it is determining in node deployment threedimensional model to select information matches with user At least one node, before generating node deployment strategy, further includes: according to the spatial coordinated information of target area and node Attribute information establishes node deployment threedimensional model.
Further, above-mentioned node includes base station and/or overhead line poles.
Optionally, when node is base station, the attribute information of base station includes following one or more combinations: the mark of base station Know;The spatial coordinated information of base station;The tower parameter of base station;The covering radius of base station;The distance between any two base station letter Breath;The antenna of base station hangs height, the sector number of antenna, the deflection of antenna, angle of declination and transmission power.
Optionally, when node is base station, information is selected according to user, it is determining in node deployment threedimensional model to be selected with user At least one base station of information matches is selected, node deployment strategy is generated.
Further, it when node is base station, generates node deployment strategy and includes: existing net base station and/or add base station.
Optionally, when node is overhead line poles, the attribute information of overhead line poles includes following one or more combinations: frame Mark, spatial coordinated information, quantity information, elevation information, routing trend and the pitch information of ceases to be busy bar.
Optionally, node is overhead line poles, selects information according to user, the determining and user in node deployment threedimensional model At least one overhead line poles of information matches are selected, node deployment strategy is generated.
Further, node is overhead line poles, generates node deployment strategy and includes: overhead line poles and/or add overhead line Bar.
Second aspect, the embodiment of the present application also provides a kind of network nodes to dispose device, which disposes device Include:
Generation module, it is determining in node deployment threedimensional model to select information with user for selecting information according to user At least one matched node generates node deployment strategy;Wherein, it includes at least one position in target area that user, which selects information, Set spatial coordinated information a little;Node deployment threedimensional model includes that the spatial coordinated information of target area and the attribute of node are believed Breath;Node deployment strategy includes: the spatial coordinated information of the corresponding location point of attribute information and node of at least one node;It is defeated Module out is used for output node deployment strategy.
Further, above-mentioned apparatus further include:
Module is established, for establishing node deployment three according to the spatial coordinated information of target area and the attribute information of node Dimension module.
Based on any of the above-described aspect, the beneficial effect of the application is:
A kind of network node dispositions method and device provided by the embodiments of the present application, this method comprises: being selected according to user Information, determining at least one node that information matches are selected with user, generates node deployment plan in node deployment threedimensional model Slightly;Finally, output node deployment strategy.In the embodiment of the present application, select to believe according to user using the network node dispositions method The difference of breath, this method can be used for having checking, browsing and in the node deployment for node in node deployment threedimensional model Adding for node is carried out in threedimensional model, the node deployment threedimensional model based on the target area avoids the need for manually to mesh When the examining on the spot addressing of node of progress in region is marked, the inefficient problem of addressing can effectively improve the addressing effect of node Rate saves manpower.
Detailed description of the invention
Technical solution in ord to more clearly illustrate embodiments of the present application, below will be to needed in the embodiment attached Figure is briefly described, it should be understood that the following drawings illustrates only some embodiments of the application, therefore is not construed as pair The restriction of range for those of ordinary skill in the art without creative efforts, can also be according to this A little attached drawings obtain other relevant attached drawings.
Fig. 1 is a kind of network node dispositions method flow diagram provided by the embodiments of the present application;
Fig. 2 is another network node dispositions method flow diagram provided by the embodiments of the present application;
Fig. 3 is a kind of network node deployment module schematic diagram provided by the embodiments of the present application;
Fig. 4 is another network node deployment module schematic diagram provided by the embodiments of the present application;
Fig. 5 is electronic device module schematic diagram provided by the embodiments of the present application.
Specific embodiment
To keep the purposes, technical schemes and advantages of the embodiment of the present application clearer, below in conjunction with the embodiment of the present application In attached drawing, the technical scheme in the embodiment of the application is clearly and completely described, it is clear that described embodiment is Some embodiments of the present application, instead of all the embodiments.The application being usually described and illustrated herein in the accompanying drawings is implemented The component of example can be arranged and be designed with a variety of different configurations.
Therefore, the detailed description of the embodiments herein provided in the accompanying drawings is not intended to limit below claimed Scope of the present application, but be merely representative of the selected embodiment of the application.Based on the embodiment in the application, this field is common Technical staff's every other embodiment obtained without creative efforts belongs to the model of the application protection It encloses.
It should also be noted that similar label and letter indicate similar terms in following attached drawing, therefore, once a certain Xiang Yi It is defined in a attached drawing, does not then need that it is further defined and explained in subsequent attached drawing.In addition, in the application, And/or " description affiliated partner incidence relation, indicate may exist three kinds of relationships, for example, A and/or B, can indicate: individually There are A, exist simultaneously A and B, these three situations of individualism B.It is a kind of "or" that character "/", which typicallys represent forward-backward correlation object, Relationship.
Fig. 1 is a kind of network node dispositions method flow diagram provided by the embodiments of the present application, as shown in Figure 1, the net Network node deployment method, comprising:
S101. information is selected according to user, it is determining in node deployment threedimensional model to select information matches extremely with user A few node, generates node deployment strategy.
Wherein, it includes the spatial coordinated information of at least one location point in target area that user, which selects information,;Node deployment Threedimensional model includes the spatial coordinated information of target area and the attribute information of node;Node deployment strategy includes: at least one The spatial coordinated information of the corresponding location point of attribute information and node of node.
In addition it is also necessary to explanation, in actual target area deployment scenario, it is understood that there may be two kinds of situations: a kind of It is that the space coordinate that user selectes corresponds to the space coordinate of an existing node in the node deployment threedimensional model;It is another It is that there is no setting nodes before the space coordinate that user selectes in the node deployment threedimensional model.That is node deployment strategy It may include already present node within the scope of the deployment, new node can also be added according to scene demand/user demand.To It can be the target deployment according to target area deployment scenario node deployment threedimensional model corresponding with the target area scene Region provides flexible node deployment strategy.
In addition, the node in the node deployment threedimensional model can be base station, overhead line poles or other for framework network And necessary node device.Therefore, whether the application does not limit the node in being present in the node deployment threedimensional model, The concrete type of the node is not limited.
Network node dispositions method provided by the present embodiment corresponds to the node deployment for the space coordinate that user selectes The space coordinate of an existing node in threedimensional model establishes the category of the node for the node in node deployment strategy The corresponding relationship of property information and spatial coordinated information.
In addition, for newly-increased node, can according to the space coordinate for adding node and attribute information etc. that user inputs, In the node deployment threedimensional model, the space coordinate of user's input is searched;If this can be found in deployment threedimensional model Space coordinate adds node for this then in node deployment strategy, establishes the attribute information and spatial coordinated information of the node Corresponding relationship;If not finding the space coordinate of the node, a kind of possible implementation in deployment threedimensional model are as follows: logical It crosses interactive interface and determines whether the space coordinate of its input is correct by user, that is, determine whether the space coordinate of its input has exceeded The deployment range of the node deployment threedimensional model spatial coordinates needs user to re-enter correct space if exceeding and sits Mark.
S102. output node deployment strategy.
According to the node deployment strategy generated in above-mentioned steps, the node can be exported in the node deployment threedimensional model Deployment strategy is checked and is browsed convenient for user.
In conclusion network node dispositions method provided herein, this method selects information according to user, in node Determining at least one node for selecting information matches with user in threedimensional model is disposed, node deployment strategy is generated;Finally, output Node deployment strategy.The difference of information is selected according to user, this method can be used for having node in node deployment threedimensional model Check, browse and carry out node in the node deployment threedimensional model and add, the node deployment based on the target area Threedimensional model avoids the need for when the examining on the spot addressing of node of progress manually to target area, and addressing is inefficient to ask Topic can effectively improve the addressing efficiency of node, save manpower.
Optionally, in order to for the above-mentioned node deployment strategy of target area output, a kind of possible implementation are as follows: Modeling processing is carried out in advance, which is matched with extraterrestrial target, generates a node deployment threedimensional model.Specifically , Fig. 2 is another network node dispositions method flow diagram provided by the embodiments of the present application, as shown in Figure 2 S101 it Before, further includes:
S103. node deployment threedimensional model is established according to the attribute information of the spatial coordinated information of target area and node.
It, should for establishing node deployment threedimensional model according to the spatial coordinated information of target area and the attribute information of node Node deployment threedimensional model is construed as a series of set of spatial coordinated informations, some space coordinate is corresponded to It also may include the corresponding attribute information of the existing node correspondingly when some nodes.
In addition it is also necessary to which explanation, the node deployment threedimensional model can be online node deployment threedimensional model, just In different administrative staff by internet can node deployment threedimensional model to target area carry out deployment and the pipe of node Reason has the characteristics that unified management.
Further, above-mentioned node can be the necessary node device for framework network, such as base station, overhead line poles Deng.Its concrete form is combined according to the demand of scene.
Specifically, the node in the application is introduced the present processes by taking base station and overhead line poles as an example.
Situation one, when node is base station:
Optionally, information is selected according to user, it is determining in node deployment threedimensional model to select information matches with user At least one base station generates node deployment strategy.
Further, when node is base station, the attribute information of base station includes but is not limited to following one or more combinations: The mark of base station;The spatial coordinated information of base station;The tower parameter of base station;The covering radius of base station;Between any two base station Range information;The antenna of base station hangs height, the sector number of antenna, the deflection of antenna, angle of declination and transmission power.
Optionally, for also may include friendship in actual network node dispositions method in technical solution of the present invention Mutual port, the attribute information so as to user based on the new base station of actual scene increase in demand, to adapt to network technical development Demand.By the interaction port, a kind of possible implementation are as follows: if actual scene of the user based on target area, need pair Base Station Identification in the node deployment threedimensional model is modified, and user can modify the mark of the base station by the interaction port Know, convenient for being adjusted to base station in the target area, realizes the planning again and management to base station in target area.
Specifically, when node is base station, it includes the space coordinate of at least one base station in target area that user, which selects information, Information;Node deployment threedimensional model includes the spatial coordinated information of target area and the attribute information of base station;Node deployment strategy It include: the spatial coordinated information of the corresponding location point of attribute information and base station of at least one base station.
Further, it when which is base station, generates node deployment strategy and includes: existing net base station and/or add base station.
Wherein, when node deployment strategy only includes existing net base station, which includes at least one existing net base The spatial coordinated information of the attribute information stood and the existing net base station location point.When node deployment strategy only includes to add base station, The node deployment strategy includes that at least one attribute information for adding base station adds the space coordinate etc. of base station location point with this.When When node deployment strategy includes existing net base station and adds base station simultaneously, which will include described above at least one It is a now net the attribute information of base station, location point spatial coordinated information and at least one add the attribute information of base station, location point Spatial coordinated information, the application just repeats no more herein.
Further, the attribute information of base station is further introduced below:
Wherein, the mark of base station can be used for distinguishing the base station;The spatial coordinated information of base station, for marking the base station Position, which can be absolute coordinate and is also possible to relative coordinate, the absolute coordinate i.e. longitude and latitude of the base station Coordinate and tower height, relative coordinate i.e. coordinate of the base station relative to target area, the application are defined not to this, as long as Position of the base station in node deployment threedimensional model can be marked out.The tower parameter of base station, since base station tower has There are a variety of towers such as single-pipe tower, three towers and angle steel tower, and different towers has different parameter and usable condition, by aobvious Show the tower parameter of the base station, it is known that the distribution situation of each tower in the target area.
The covering radius of base station passes through the wireless transmission model of the covering scene of the link budget table and base station of the base station Equal parameter informations are available, and wherein link budget part is analyzed according to demand as a result, in conjunction with different parameters and field Scape calculates maximum allowable path loss when wireless signal is propagated in the sky, and estimates cell according to corresponding propagation model Covering radius;And mode then includes small and medium-sized cities, big city, suburb and rural area, i.e., by node deployment threedimensional model The covering radius of base station is shown, convenient for knowing the coverage condition of each base station in target area.
The distance between any two base station information in target area, i.e., by that can be shown in node deployment threedimensional model Positional relationship between any two base station could be aware that the distribution situation in the region between base station and base station.
The antenna of base station hangs height, the sector number of antenna, the deflection of antenna, angle of declination and transmission power, for base station By taking the angle of declination of antenna as an example, by knowing Downtilt parameter, Downtilt can be rationally arranged, no in antenna parameter But the influence of co-channel interference can be reduced, the switching of the coverage area of effective control base station and whole net, and this base can be reinforced The signal strength stood in the area of coverage.In addition, just no longer this is repeated the application for the other parameters of antenna for base station.And pass through section The antenna parameter that base station is shown in point deployment threedimensional model, could be aware that the antenna arrangement situation of the base station, convenient for observation and adjust It is whole.
In addition, the attribute information based on base station, by node deployment threedimensional model can attribute information to the base station into Row statistics, for example, counting in the node deployment threedimensional model, antenna amount, antenna model, the antenna of base station hang high type, day The attribute informations such as the longitude and latitude of line, convenient for carrying out unified statistics to the node in target area by the node deployment threedimensional model And management.
Wherein, for increasing base station newly, according to the space coordinate for adding base station of user's input and attribute information etc., in the section In point deployment threedimensional model, the space coordinate of user's input is searched;If the sky can be found in node deployment threedimensional model Between coordinate then in node deployment strategy add node for this, establish the attribute information and spatial coordinated information of the node Corresponding relationship generates node deployment strategy in the node deployment threedimensional model;If not looked into the node deployment threedimensional model The space coordinate is found, then user may be needed to determine whether the space coordinate of its input is correct, that is, determine the space of its input Whether coordinate has exceeded the deployment range of the node deployment threedimensional model spatial coordinates, needs user to re-enter if exceeding Correct space coordinate.
In addition, carrying out the newly-increased of base station based on the node deployment threedimensional model, avoids the need for prospecting personnel and carry out scene The characteristics of when measurement, the not high problem of measurement efficiency has and saves manpower, improves deployment efficiency, just no longer this is carried out the application It repeats.In addition, if complete newly-increased base station it is newly-built after, which can show in the node deployment threedimensional model, For existing base station in the node deployment threedimensional model, operating process is similar to the above, and the application just repeats no more.
To sum up, the base station selected for user generates node deployment strategy in the node deployment threedimensional model, i.e., raw At the attribute information and spatial coordinated information for showing the base station, intuitive is carried out convenient for distribution situation of the user to the origin base station Browsing, have intuitive simulate coverage effect;In addition, user can according to its demand, and selected section is shown for the base station Or all show the attribute information and spatial coordinated information of the base station, have the characteristics that alternative display, imitates user experience Fruit is more preferable.
Situation two, when node is overhead line poles:
Optionally, information is selected according to user, it is determining in node deployment threedimensional model to select information matches with user At least one overhead line poles generates node deployment strategy.
Further, when node is overhead line poles, the attribute information of overhead line poles includes following one or more combinations: Mark, spatial coordinated information, quantity information, elevation information, routing trend and the pitch information of overhead line poles.
Further, it when which is overhead line poles, generates node deployment strategy and includes: overhead line poles and/or add frame Ceases to be busy bar.
Wherein, similar with base station deployment method for overhead line poles dispositions method, the dispositions method of specific overhead line poles The dispositions method of above-mentioned base station can be referred to, just no longer this is repeated the application.Hereinafter, attribute of the application to overhead line poles Under information explanation.
Similarly, the mark of overhead line poles can be used for distinguishing the overhead line poles, can be the overhead line poles model and The combination of number.The spatial coordinated information of overhead line poles, for marking the position of the overhead line poles, the application is not to this progress It limits, as long as position of the overhead line poles in node deployment threedimensional model can be marked out.Overhead line poles quantity, i.e., It can be overhead line poles quantity all in the target area, the overhead line poles being also possible in user-selected area, the application It is limited not to this.Elevation information, the i.e. height parameter of overhead line poles, convenient for carrying out frame in node deployment threedimensional model When the layout display of ceases to be busy bar, to user intuitively to experience, it is also convenient for carrying out overhead line poles in node deployment threedimensional model When adding, can be suitable to dispose with reference to the height of the overhead line poles and the actual environment of the target area.Routing trend, i.e., Layout scenarios are moved towards in the routing of overhead line poles, by knowing that the routing of the overhead line poles is moved towards, it can know that the target is default The layout scenarios of overhead line poles in region.Pitch information, i.e., the distance between two neighboring overhead line poles information.
In addition, the attribute information based on overhead line poles, it can be to the category of the overhead line poles by node deployment threedimensional model Property information counted, for example, count in the node deployment threedimensional model, the quantity information of overhead line poles, routing trend, longitude and latitude The attribute informations such as cable length, optical cable quantity needed between degree and two neighboring overhead line poles;In addition it is also necessary to explanation It is that, according to the distribution situation of actual cable length and overhead line poles, the overhead line poles for needing reserved fiber cable joint can be counted Quantity and spatial coordinated information are provided conveniently for the later stage work of staff, the frame of fiber cable joint can be reserved with exact knowledge The accurate location of ceases to be busy bar is counted by attribute information of the node deployment threedimensional model to the overhead line poles, convenient for logical It crosses the node deployment threedimensional model and unified statistics and management is carried out to the node in target area.
Wherein, it can be generated new with reference to the dispositions method of existing overhead line poles for increasing the dispositions method of overhead line poles newly Increase the dispositions method of overhead line poles, the application just repeats no more herein, when using this method, avoids the need for prospecting personnel progress When in-site measurement, the not high problem of measurement efficiency, have save manpower, improve deployment efficiency the characteristics of, the application just no longer this It is repeated.In addition, if complete newly-increased overhead line poles it is newly-built after, which can be in the node deployment threedimensional model Middle display becomes existing overhead line poles in the node deployment threedimensional model, and operating process is similar to the above, and the application is just It repeats no more.
To sum up, in the node deployment threedimensional model, node deployment method is generated, convenient for user to the region overhead line poles Distribution situation carry out intuitive browsing, have intuitive simulate coverage effect;In addition, for the overhead line poles, Yong Huke With according to its demand, selected section shows or all shows the attribute information and spatial coordinated information of the overhead line poles, and having can The characteristics of selective control, keeps user's experience effect more preferable.
It should be noted that above-mentioned two situations, which are based on scene demand, to be independently generated, it can also be in unified node It include the combination of base station and overhead line poles in deployment strategy.For the form specifically combined, user can according to scene demand into Row setting, not limits herein.
Wherein, above-mentioned network node dispositions method should be noted and if desired carries out multiclass in the target area The deployment of type node, for example while need to dispose base station, overhead line poles are also disposed, at this point, according to institute in above-described embodiment The method stated can include the combination of base station and overhead line poles in unified node deployment strategy.Specifically, if target area It only needs to dispose base station, then can dispose base station in the node deployment threedimensional model to the target area;If target area only needs Overhead line poles are disposed, then can dispose overhead line poles in the node deployment threedimensional model to the target area;Node deployment plan When combination in slightly comprising base station and overhead line poles, base station can be first disposed, overhead line poles can also be first disposed, is specifically disposed suitable Sequence is selected see also the actual conditions of the target area, and the application is not defined the sequencing of this deployment. The application is not also defined the deployment types of target area interior joint, and the dispositions method of specific node can refer to above-mentioned The dispositions method of embodiment, the application just do not repeat herein.
In addition, the embodiment of the present application also provides a kind of network node dispositions method, which has multiple target Region, the target area corresponding node dispose threedimensional model, which corresponds to child node deployment threedimensional model, can be with base Node deployment threedimensional model in target area disposes the spatial positional information of threedimensional model to the child node in the sub-goal region, Show that the child node disposes threedimensional model simultaneously in the node deployment threedimensional model.
For example, if target area includes first object subregion and the second target subregion, the target area corresponding node Threedimensional model is disposed, which correspond to first node deployment threedimensional model, the second target subregion correspondence the Two node deployment threedimensional models.
It, can be at this according to the spatial positional information of first node deployment threedimensional model and second node deployment threedimensional model Show that first node deployment threedimensional model and second node deployment threedimensional model in turn can in node deployment threedimensional model simultaneously To show the distribution situation of each child node deployment threedimensional model network node in the node deployment threedimensional model, convenient in the section Unified displaying, right is carried out to the network node distribution situation in multiple sub-goal regions of the target area in point deployment threedimensional model Than display, has the effect of intuitive displaying.The dispositions method of specific node, can refer to the dispositions method of above-described embodiment, this Application is not just repeated herein.
In addition it is also necessary to explanation, spatial positional information described herein may include latitude and longitude information etc., as long as The spatial positional information of child node deployment threedimensional model and node deployment threedimensional model can be marked out, the application is simultaneously unlimited The sub-goal areal of target area processed, as long as the space coordinate of the child node deployment threedimensional model in the sub-goal region is located at In the spatial dimension of the node deployment threedimensional model of the target area.
Optionally, the embodiment of the present application also provides a kind of network node deployment device 300, is used to execute above-described embodiment Each step, to realize corresponding technical effect, Fig. 3 is that a kind of network node deployment module provided by the embodiments of the present application is shown It is intended to, as shown in figure 3, network node deployment device 300 includes:
Generation module 301, it is determining in node deployment threedimensional model to select to believe with user for selecting information according to user At least one matched node is ceased, node deployment strategy is generated.
Wherein, it includes the spatial coordinated information of at least one location point in target area that user, which selects information,;Node deployment Threedimensional model includes the spatial coordinated information of target area and the attribute information of node;Node deployment strategy includes: at least one The spatial coordinated information of the corresponding location point of attribute information and node of node.
Output module 302 is used for output node deployment strategy.
The method that above-mentioned apparatus is used to execute previous embodiment offer, it is similar that the realization principle and technical effect are similar, herein not It repeats again.
Further, Fig. 4 is another network node deployment module schematic diagram provided by the embodiments of the present application, such as Fig. 4 institute Show, above-mentioned apparatus further include:
Module 401 is established, for establishing node according to the spatial coordinated information of target area and the attribute information of node Affix one's name to threedimensional model.
The method that above-mentioned apparatus is used to execute previous embodiment offer, it is similar that the realization principle and technical effect are similar, herein not It repeats again.
The above module can be arranged to implement one or more integrated circuits of above method, such as: one Or multiple specific integrated circuits (Application Specific Integrated Circuit, abbreviation ASIC), or, one Or multi-microprocessor (digital singnal processor, abbreviation DSP), or, one or more field programmable gate Array (Field Programmable Gate Array, abbreviation FPGA) etc..For another example, when some above module passes through processing elements When the form of part scheduler program code is realized, which can be general processor, such as central processing unit (Central Processing Unit, abbreviation CPU) or it is other can be with the processor of caller code.For another example, these modules can integrate Together, it is realized in the form of system on chip (system-on-a-chip, abbreviation SOC).
Another alternative embodiment of the application also provides a kind of electronic equipment, as shown in figure 5, the electronic equipment may include It is stored with the memory 501 and processor 502 of computer program, the computer that processor 502 can call memory 501 to store Program.When the computer program is read and run by processor 502, above method embodiment may be implemented.Specific implementation Similar with technical effect, which is not described herein again.
Optionally, the application also provides a computer readable storage medium, is stored thereon with computer program, the computer When program is read out by the processor and runs, above method embodiment may be implemented.
In several embodiments provided herein, it should be understood that disclosed device and method can pass through it Its mode is realized.For example, the apparatus embodiments described above are merely exemplary, for example, the division of the unit, only Only a kind of logical function partition, there may be another division manner in actual implementation, such as multiple units or components can be tied Another system is closed or is desirably integrated into, or some features can be ignored or not executed.Another point, it is shown or discussed Mutual coupling, direct-coupling or communication connection can be through some interfaces, the INDIRECT COUPLING or logical of device or unit Letter connection can be electrical property, mechanical or other forms.
The unit as illustrated by the separation member may or may not be physically separated, aobvious as unit The component shown may or may not be physical unit, it can and it is in one place, or may be distributed over multiple In network unit.It can select some or all of unit therein according to the actual needs to realize the mesh of this embodiment scheme 's.
It, can also be in addition, each functional unit in each embodiment of the application can integrate in one processing unit It is that each unit physically exists alone, can also be integrated in one unit with two or more units.Above-mentioned integrated list Member both can take the form of hardware realization, can also realize in the form of hardware adds SFU software functional unit.
The above-mentioned integrated unit being realized in the form of SFU software functional unit can store and computer-readable deposit at one In storage media.Above-mentioned SFU software functional unit is stored in a storage medium, including some instructions are used so that a computer Equipment (can be personal computer, server or the network equipment etc.) or processor (English: processor) execute this Shen Please each embodiment the method part steps.And storage medium above-mentioned includes: USB flash disk, mobile hard disk, read-only memory (English: Read-Only Memory, abbreviation: ROM), random access memory (English: Random Access Memory, letter Claim: RAM), the various media that can store program code such as magnetic or disk.
It should be noted that, in this document, the relational terms of such as " first " and " second " or the like are used merely to one A entity or operation with another entity or operate distinguish, without necessarily requiring or implying these entities or operation it Between there are any actual relationship or orders.Moreover, the terms "include", "comprise" or its any other variant are intended to Cover non-exclusive inclusion, so that the process, method, article or equipment for including a series of elements not only includes those Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or setting Standby intrinsic element.In the absence of more restrictions, the element limited by sentence "including a ...", it is not excluded that There is also other identical elements in the process, method, article or apparatus that includes the element.
The foregoing is merely preferred embodiment of the present application, are not intended to limit this application, for the skill of this field For art personnel, various changes and changes are possible in this application.Within the spirit and principles of this application, made any to repair Change, equivalent replacement, improvement etc., should be included within the scope of protection of this application.It should also be noted that similar label and letter exist Similar terms are indicated in following attached drawing, therefore, once being defined in a certain Xiang Yi attached drawing, are then not required in subsequent attached drawing It is further defined and explained.The foregoing is merely preferred embodiment of the present application, it is not limited to this Application, for those skilled in the art, various changes and changes are possible in this application.It is all in spirit herein and original Within then, any modification, equivalent replacement, improvement and so on be should be included within the scope of protection of this application.

Claims (10)

1. a kind of network node dispositions method characterized by comprising
Information is selected according to user, at least one determining that information matches are selected with the user in node deployment threedimensional model The node generates the node deployment strategy;Export the node deployment strategy;
Wherein, it includes the spatial coordinated information of at least one location point in the target area that the user, which selects information,;It is described Node deployment threedimensional model includes the spatial coordinated information of target area and the attribute information of the node;The node deployment plan Slightly include: the spatial coordinated information of the attribute information of at least one node and the corresponding location point of the node.
2. the method according to claim 1, wherein described select information according to user, in node deployment three-dimensional Determining at least one described node that information matches are selected with the user also wraps before generating node deployment strategy in model It includes:
Node deployment threedimensional model is established according to the attribute information of the spatial coordinated information of target area and node.
3. the method according to claim 1, wherein the node includes base station and/or overhead line poles.
4. according to the method described in claim 3, it is characterized in that, the node be base station when, the attribute information of the base station Including following one or more combinations: the mark of the base station;The spatial coordinated information of the base station;The tower of the base station Parameter;The covering radius of the base station;The distance between base station information described in any two;The antenna of the base station hangs high, day The sector number of line, the deflection of antenna, angle of declination and transmission power;
When the node is overhead line poles, the attribute information of the overhead line poles includes following one or more combinations: described Mark, spatial coordinated information, quantity information, elevation information, routing trend and the pitch information of overhead line poles.
5. according to the method described in claim 3, it is characterized in that, the node be base station when, according to user select information, Determining at least one described base station that information matches are selected with the user, generates the section in the node deployment threedimensional model Point deployment strategy.
6. according to the method described in claim 5, it is characterized in that, the generation node deployment strategy includes: existing net base Stand and/or add base station.
7. according to the method described in claim 3, it is characterized in that, the node be overhead line poles, according to user select information, Determining at least one described overhead line poles that information matches are selected with the user, generate in the node deployment threedimensional model The node deployment strategy.
8. the method according to the description of claim 7 is characterized in that the generation node deployment strategy includes: overhead line Bar and/or add overhead line poles.
9. a kind of network node disposes device, which is characterized in that described device includes:
Generation module, the generation module be used for according to user select information, in node deployment threedimensional model determine with it is described User selects at least one described node of information matches, generates the node deployment strategy;
Wherein, the node deployment threedimensional model includes the spatial coordinated information of target area and the attribute information of the node; It includes the spatial coordinated information of at least one location point in the target area that the user, which selects information,;The node deployment plan Slightly include: the spatial coordinated information of the attribute information of at least one node and the corresponding location point of the node;
Output module, the output module is for exporting the node deployment strategy.
10. network node according to claim 9 disposes device, which is characterized in that described device further include:
Module is established, for establishing node deployment three-dimensional mould according to the spatial coordinated information of target area and the attribute information of node Type.
CN201811351174.7A 2018-11-14 2018-11-14 A kind of network node dispositions method and device Pending CN109391947A (en)

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