CN109426883B - Decoration line planning method and device and server - Google Patents

Decoration line planning method and device and server Download PDF

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Publication number
CN109426883B
CN109426883B CN201710744696.2A CN201710744696A CN109426883B CN 109426883 B CN109426883 B CN 109426883B CN 201710744696 A CN201710744696 A CN 201710744696A CN 109426883 B CN109426883 B CN 109426883B
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line
decoration
client
point
lines
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CN109426883A (en
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李杭洲
周振华
金笑天
孙华权
谢海峰
王雨蒙
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Suzhou Zhichao Information Technology Co ltd
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Suzhou Zhichao Information Technology Co ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/04Forecasting or optimisation specially adapted for administrative or management purposes, e.g. linear programming or "cutting stock problem"
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]
    • G06F30/10Geometric CAD
    • G06F30/13Architectural design, e.g. computer-aided architectural design [CAAD] related to design of buildings, bridges, landscapes, production plants or roads

Abstract

The invention provides a decoration line planning method, a device and a server, wherein the method comprises the steps of responding to a decoration object acquisition request of a client and issuing a decoration object to the client; obtaining a line installation point selected by a client and used for arranging a decoration line; and generating a decoration line along the line installation point, and issuing a decoration line generation result to the client. According to the invention, by providing the related drawings of the planar and three-dimensional decoration objects, the drawing cost in the prior art can be obviously reduced, and the communication cost among users can be saved; the decoration line is automatically generated and the recommendation of the optimal line is provided based on the guidance of the product rule base, and the quality of the decoration line can be guaranteed from the perspective of standardization.

Description

Decoration line planning method and device and server
Technical Field
The invention relates to the field of decoration, in particular to a decoration line planning method, a decoration line planning device and a server.
Background
Line modification is the most indispensable and important item in the decoration process. The types of the finished lines are numerous, and each classified line has a specific arrangement rule specification when being independently designed; when all lines are comprehensively arranged, influence factors among the lines need to be considered under the condition of meeting self specifications, and under the condition of mutual influence, special solutions are adopted to solve the influence caused by intersection, collinearity and the like; under the condition of meeting the safety and the standard of line design, the construction cost also needs to be considered; therefore, the arrangement requirement of the line has strong speciality, and a common user cannot design a decoration line independently.
Further, in the finishing process, even if guidance of professional finishing personnel is obtained, there are still many difficulties in determining the finishing line. In the existing mode, dozens or even hundreds of lines of a house are often arranged, and decoration designers are limited by drawings and numerous factors when drawing construction drawings and can only describe the correlation and functions of decoration products (such as an A switch for controlling an M lamp, a B position for using water and the like). The general line determination is the site determination of the participants such as designers, constructors and owners, the arrangement and design of the line mainly adopts the subjective judgment of human beings, and the following problems can exist:
(1) the difficulty is high: line reconstruction involves a great deal of expertise;
(2) the time is long: multiple participants need to be confirmed one by one on site, the number of participants is large, and the communication cost is high;
(3) the data is difficult to calculate: data needs to be measured on site, and lines are mostly divided into multiple sections, so that the on-site measurement is long in time and easy to make mistakes; meanwhile, manual summarization and calculation are needed, and the threshold for calculating the data usage related to the process in the line is high.
(4) And (3) difficult decision making: when multiple schemes and disputes occur in the communication process of multiple participants, the advantages and disadvantages cannot be explained by specific data, subjective judgment is needed, and accurate comparison is difficult.
Disclosure of Invention
In order to solve the technical problem, the invention provides a decoration line planning method, a decoration line planning device and a server. The invention is realized by the following technical scheme:
in a first aspect, a method for planning a decoration line is provided, the method including:
responding to a decoration object acquisition request of a client, and issuing a decoration object to the client, wherein the decoration object comprises house type structure information and house type data parameter information;
acquiring line installation points selected by a client and used for arranging decoration lines, wherein the line installation points comprise line installation point numbers and line installation point attributes;
and installing points along the line in the decoration object according to a product knowledge base to generate a decoration line, and issuing a decoration line generation result to a client.
Preferably, after the finishing line is generated, the method further comprises the following steps:
automatically generating a line system scheme and issuing the line system scheme to a client;
the line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process;
the circuit system scheme comprises: a material procurement list, a construction content list, a circuit system diagram, a water path system diagram, an all-dimensional line construction diagram and/or a construction tool list.
Preferably, the product knowledge base records national regulations, industry standards, construction criteria, construction cost data and/or line generation rules.
Preferably, the decoration object is presented to the client in a 2D form or a 3D form in response to a 2D-3D switching instruction issued by the client.
Preferably, one or more decoration lines are distributed in the decoration object, one or more line installation points are distributed on each decoration line, and the line installation points of different lines are distinguished through the attributes of the line installation points; the line installation points of the same line are distinguished by the serial numbers of the line installation points.
In a second aspect, there is provided a finished line planning apparatus, the apparatus comprising:
the decoration object issuing module is used for responding to a decoration object obtaining request of the client and issuing a decoration object to the client, wherein the decoration object comprises house type structure information and house type data parameter information;
the system comprises an installation point information acquisition module, a line installation point information acquisition module and a line installation point information acquisition module, wherein the installation point information acquisition module is used for acquiring line installation points selected by a client and used for installing decoration lines, and the line installation points comprise line installation point numbers and line installation point attributes;
and the decoration line generation module is used for generating a decoration line along the line installation point in the decoration object according to the product knowledge base and issuing a decoration line generation result to the client.
Preferably, the method further comprises the following steps:
the system scheme issuing module is used for automatically generating a line system scheme and issuing the line system scheme to a client;
the line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process;
the circuit system scheme comprises: a material procurement list, a construction content list, a circuit system diagram, a water path system diagram, an all-dimensional line construction diagram and/or a construction tool list.
Preferably, the method further comprises the following steps:
and the switching module is used for responding to a 2D-3D switching instruction issued by the client and displaying the decoration object to the client in a 2D form or a 3D form.
In a third aspect, a server is provided, which includes the above-mentioned apparatus.
The invention provides a decoration line planning method, a decoration line planning device and a server, which have the following beneficial effects:
(1) by providing the related drawings of the planar and three-dimensional decoration objects, the drawing cost in the prior art can be obviously reduced, meanwhile, convenience is provided for designing decoration lines for users, the situation that the users need to go to confirm the line scheme on site is avoided, the communication cost and the traffic cost of the users are saved, and decision making is facilitated;
(2) the decoration line is automatically generated based on the guidance of the product rule base, so that a user can know the effect after construction before construction, and the user can conveniently modify the complete decoration line; the decoration line obtained based on the product rule base conforms to the relevant specifications, so that the quality of the decoration line is ensured from the perspective of the specifications;
(3) the data related to the decoration line is recorded in a digital form, the related calculation work which needs to be manually carried out originally is automatically carried out, and the method is simple, reliable and accurate in data.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts.
Fig. 1 is a flowchart of a decoration line planning method according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a layout of a circuit installation point according to an embodiment of the present invention;
FIG. 3 is a flow chart of a method for automatically generating a circuit according to an embodiment of the present invention;
FIG. 4 is a schematic circuit layout diagram provided by an embodiment of the invention;
FIG. 5 is a block diagram of a system for generating a starting point P according to an embodiment of the present inventionstartTo the end point Pi endA flow chart of the circuit of (1);
FIG. 6 is a block diagram of a method for generating a token starting point P according to an embodiment of the present inventionstartTo the end point Pi endOf the set of lines of (a) a second subset of lines UiA method flowchart of (1);
FIG. 7 is a flowchart of a method for intelligently selecting a line according to an embodiment of the present invention;
FIG. 8 is a block diagram of a decoration line planning apparatus according to an embodiment of the present invention;
fig. 9 is a schematic diagram of a server according to an embodiment of the present invention.
Detailed Description
In order to make the technical solutions of the present invention better understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that the terms "first," "second," and the like in the description and claims of the present invention and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the invention described herein are capable of operation in sequences other than those illustrated or described herein. Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
Example 1:
the embodiment of the invention provides a method for planning a decoration line, wherein an execution main body of the method can be a server, the server can be a single server or a server cluster, and as shown in fig. 1, the method comprises the following steps:
s101, responding to a decoration object acquisition request of a client, and issuing a decoration object to the client, wherein the decoration object comprises house type structure information and house type data parameter information.
Specifically, the house type structure information includes a house plane structure diagram, and the house type data parameter information includes size data and/or other attribute data of each component of the house.
In a possible embodiment, at the client communicating with the server, a 2D drawing tool may be provided for the user, and the user may draw a 2D house plan structure diagram by using the tool, and label information such as a living room, a bedroom, and the like, and structural information in a space, such as a floor height, a door, a window, a beam, and the like, and after the drawing is completed, the drawing result may be transmitted to the server. The server can issue the decoration object to the client according to the result drawn by the user.
The server supports 2D/3D handover. The house type is drawn in a mode similar to the traditional mode, and the drawn 2D view can be automatically generated into the 3D house type by the server and displayed to the client side, so that the real house type is restored.
In the prior art, the construction drawings are 2D plan views, 3D lines are difficult to clearly express, and obviously, the cost is too high if the construction drawings are presented in a 3D mode, so that the 2D plan views are still used by workers related to decoration at present. However, 2D planar graphs suffer from the following disadvantages: various decoration lines are difficult to draw and express in the 2D drawings, at most, the drawings are only shown, 4-6 drawings are needed in one room, dozens of drawings are needed in one house, the time is long, and the cost is very high. And the designer is not a professional line constructor, is also a blind area for the specification in the line, and cannot carry out high-quality design to meet the requirement of construction
Therefore, the existing decoration line is mostly determined on site, and the specific trend of the line is difficult to implement to a drawing, so that the problems of later-stage accident investigation and difficult renovation are caused. The server in the embodiment of the invention provides the 2D/3D switching function, so that the structure of a decoration object (house) can be clearly expressed, including but not limited to each spatial information and structural information in the structure, a user can determine the specific trend of a line based on a 3D diagram without going to the field, the cost is saved by the independently researched and developed 3D display function, and convenience is brought to later-period accident troubleshooting and renovation.
And S102, obtaining line installation points selected by the client and used for arranging decoration lines, wherein the line installation points comprise line installation point numbers and line installation point attributes.
Specifically, the line installation points are selected by the client, the server can arrange one or more decoration lines in the decoration object according to the selection result, each decoration line is provided with one or more line installation points, and the line installation points of different lines are distinguished through the attributes of the line installation points; the line installation points of the same line are distinguished by the serial numbers of the line installation points.
In one possible embodiment, please refer to fig. 2, which illustrates the layout of the wiring installation points including but not limited to:
(1) strong electric circuit: distribution boxes, switches, sockets, lighting, ceiling areas, etc. are arranged. The ceiling area can be automatically or manually framed, when the line is generated, if the line needs to enter the ceiling, the effect of concealing the line in the ceiling can be exerted, namely, the ceiling area can cover the line, so that a user cannot see the wiring in an object after decoration, and the decoration effect is improved.
(2) Weak current: and arranging the weak current box, the network port, the electric view port, the telephone port, the sound box, the ceiling area and the like.
(3) Water path: the positions of a water outlet of a house, a water heater, a water using opening, a ceiling area and the like are arranged.
(4) Gas combustion: the positions of air inlet and outlet, air using port, etc. are arranged.
(5) Floor heating: comprises water heating and electric heating, and is arranged at the positions of electricity taking, paving areas and the like.
(6) A central air conditioner: and arranging the positions of a host, each air outlet, an outdoor unit, a ceiling region and the like.
S103, installing points along the line in the decoration object according to the product knowledge base to generate a decoration line, and issuing a decoration line generation result to the client.
Specifically, in the embodiment of the present invention, the server may automatically generate each route according to the installation point, and also support the user to manually connect each installation point to obtain each route. Further, after obtaining each line, the client can also provide an operation tool for adjustment and modification, and synchronize the modification to the server.
The product knowledge base stores construction criteria meeting national standards, industrial standards and common methods, and provides independent and personalized connection selection, such as: designing a loop in the distribution box: the number of the air switches in the distribution box, the corresponding electrical appliances controlled by the air switches, the air switch capacity, the leakage protection and the like can be freely distributed, and system suggestions for providing practical safety in the design process are supported.
The line obtained under the guidance of the product knowledge base can be ensured to accord with relevant rules, so that design errors and subsequent construction errors of the line are avoided, the rework rate is reduced, the construction efficiency is improved, and the construction cost is reduced. The line generation rule is mainly embodied as follows:
1. and the specification requirements of each independent attribute line are met. For example, the generated strong current line needs to meet the specification of the strong current line, and the generated weak current line needs to meet the specification of the weak current line.
2. And the standard requirements of overlapping and crossing of various attribute lines are met.
3. The method meets the requirement that the generated circuit meets the relevant treatment of hidden trouble problems under the condition that mutual influence exists between circuits in the arrangement process.
Preferably, when satisfying above rule, the line of automatic generation can also satisfy construction cost synthesizes minimum requirement, and construction cost includes: slotting cost, spool cost, wire rod cost, auxiliary material cost and wall surface hole-forming cost.
And S104, automatically generating a line system scheme, and issuing the line system scheme to a client.
The line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process;
the circuit system scheme comprises: a material procurement manifest, a construction content manifest, a circuitry diagram, an all-dimensional route construction diagram, and/or a construction tool manifest.
For the scheme of the line and the line system, the embodiment of the invention supports the long-term storage and export functions and meets the diversified requirements.
Further, in order to improve user experience, the embodiment of the invention can provide professional prompts for each operation link in the using process of the user, for example, when the switch position is set, height suggestions are made, and the height suggestions are given corresponding human engineering data according to the obtained height of the resident. Specifically, the basis and content of the prompt include: national standard, industry standard, common general rules, and information such as human engineering and ergonomics in the decoration and design process. In the finished decoration line scheme, personalized modification operation can be provided for a user, and recommendation of a judged optimal scheme can be given, wherein the optimal scheme can have various judgment bases, and the lowest comprehensive cost is usually taken as a basis.
Specifically, for step S103, the embodiment of the present invention further provides a method for automatically generating a route, where the method may be recorded in a product knowledge base, used for automatic route planning of various routes, and capable of providing a planning result to a client in a form of a set of routes in a winding displacement manner. As shown in fig. 3, the method includes:
step 1, obtaining a unique starting point P of a laid linestartAnd N (N > 1) end points Pi end(1≤i≤N)。
Specifically, taking the laying of a strong electric line as an example, among the line laying points for laying a strong point line, there is a unique starting point Pstart(electric box) with one or more terminals Pi end(individual electrical outlets).
Taking fig. 4 as an example, fig. 4 includes a starting point and two end points, where the starting point is PstartThe end point is P1 endAnd P2 end
Step 2, generating a first line data set, wherein the step 2 comprises: step 21: for each end point Pi endThe following operations are performed: generating from the starting point PstartTo the end point Pi endThe line of (1), wherein only a horizontal line segment and a vertical line segment are included in the line; step 22: a first line data set is constructed from the line generation results of step 21.
In step 2, the operation of step 21 is performed for each destination, and therefore the first line data set obtained in step 22 includes lines from the start point to the respective destinations.
Specifically, as shown in FIG. 5, in step 21, the generation is performed from a starting point PstartTo the end point Pi endThe circuit of (1) comprises:
step 211, if the starting point PstartAnd end point Pi endCollinear in the horizontal or vertical direction, the starting point P is directly setstartAnd end point Pi endConnection obtaining starting point PstartTo the end point Pi endThe line of (2).
Step 212, otherwise, starting from the starting point PstartAnd said end point Pi endGenerating a base rectangle for a vertex in which the starting point P isstartAnd said end point Pi endRespectively located at two ends of the diagonal line of the basic rectangle, and obtaining a starting point P along the edge of the basic rectanglestartTo the end point Pi endAll of the lines of (a).
For the end point P, taking FIG. 4 as an example1 endStep 211 and step 212 are performed, i.e. at PstartAnd P1 endThe steps of planning the route therebetween are summarized as follows: obviously, PstartAnd P1 endNot collinear, then directly from PstartAnd P1 endConstructing a rectangle PstartMP1 endN, thereby obtaining PstartAnd P1 endAll lines in between [ line PstartMP1 endAnd a line PstartNP1 end];
For end point P2 endStep 211 and step 212 are performed, i.e. at PstartAnd P2 endThe steps of planning the route therebetween are summarized as follows: obviously, PstartAnd P2 endNot collinear, then directly from PstartAnd P2 endConstructing a rectangle PstartXP2 endY, thereby obtaining PstartAnd P2 endAll lines in between [ line PstartXP2 endAnd a line PstartYP2 end];
In summary, for FIG. 4, the first line data set bit [ line P ]startMP1 endLine PstartNP1 endLine PstartXP2 endAnd a line PstartYP2 end]。
Step 3, generating a second line data set, wherein the step 3 comprises: step 31, for each endpoint Pi endThe following operations are performed: generating a representation of the starting point P, preconditioned by the presence of other end pointsstartTo the end point Pi endOf the set of lines of (a) a second subset of lines UiStarting point PstartTo the end point Pi endThe circuit of (a) comprises only a horizontal line segment and a vertical line segment; step 32, constructing a second line data set according to the line generation result of step 31.
Specifically, as shown in fig. 6, in step 31, the presence of other end points is used as a precondition to generate a representation of the starting point PstartTo the end point Pi endOf the set of lines of (a) a second subset of lines UiThe method comprises the following steps:
step 10, if the starting point PstartAnd end point Pi endNot collinear, then according to the starting point PstartAnd end point Pi endGenerating a base rectangle in which the starting point P isstartAnd said end point Pi endAre respectively positioned at the two ends of the diagonal line of the basic rectangle.
Step 20, for each endpoint Pj end(j ≠ i) each performs the following:
step 201, if the starting point PstartAnd end point Pi endNot collinear, according to the starting point PstartAnd end point Pj endGenerating a matching rectangle in which the starting point P isstartAnd said end point Pj endThe two ends of the diagonal line of the matching rectangle are respectively positioned;
step 202, obtaining a matching rectangle different from the starting point PstartAnd said end point Pj endOther two vertices D oftAnd for each D falling within the base rectangletStep 203 is executed;
step 203, generating a penetration start point Pstart、DtAnd end point Pi endOnly horizontal line segments and vertical line segments are included in the line; and obtaining a data subset U according to the whole linesi j
Step 30, generating starting point P according to the execution result of step 20startAnd end point Pi endLine subset U in betweeni
Take fig. 4 as an exampleTo end point P2 endIs a precondition generated for characterizing the starting point PstartTo the end point P1 endOf the set of lines of (a) a second subset of lines U1The method comprises the following steps: according to PstartAnd P1 endBuilding a base rectangle PstartMP1 endN, according to PstartAnd P2 endConstruction of a matching rectangle PstartXP2 endY, apparently matching rectangle PstartXP2 endThe vertex X of Y falls within the base rectangle PstartMP1 endN, thereby obtaining a line subset U1[ line PstartXMP1 endAnd a line PstartXOP1 end](ii) a By the same token, with an end point P1 endIs a precondition generated for characterizing the starting point PstartTo the end point P2 endOf a set of lines of2[ line PstartXOC and line PstartNOC]Thus, the second subset of lines [ line P ] in FIG. 4 is finally obtainedstartXMP1 endLine PstartXOP1 endLine PstartXOC and line PstartNOC]。
And 4, obtaining a wire arrangement mode set of the wires according to the first wire data set and the second wire data set.
It should be emphasized that, for the case of N > 1, step 4 is executed after step 1-3 is executed, and for the case of N ═ 1, step 3 does not need to be executed, step 1-2 is executed and step 4 is executed, and the second data set is an empty set in step 4.
Specifically, step 4 includes:
step 41, obtaining N sets C according to the first line data set and the second line data seti(1. ltoreq. i. ltoreq.N) in the set CiThe starting points of the lines in (1) are all starting points PstartEnd points are all Pi end
Specifically, step 41 includes:
step 411, merging the first line data set and the second line data set;
step 412, grouping the lines in the merged result, and grouping the lines with the same starting point and end point into a group;
step 413, according to the grouping result, constructing N sets Ci(1. ltoreq. i. ltoreq.N) in the set CiThe starting points of the lines in (1) are all starting points PstartEnd points are all Pi end
Taking fig. 4 as an example, two packets are obtained in step 41, packet 1: line PstartMP1 endLine PstartNP1 endLine PstartXMP1 endAnd a line PstartXOP1 end(ii) a Grouping 2: line PstartXP2 endLine PstartYP2 endLine PstartXOP2 endAnd a line PstartNOP2 end
Step 42, N sets CiAnd (i is more than or equal to 1 and less than or equal to N) carrying out full arrangement on each element to obtain a line arrangement mode set of the lines.
Taking fig. 4 as an example, the group 1 has four lines, and the group 2 has four lines, and it is obvious that 16 permutation results, that is, the rowed set of lines includes 16 elements.
Furthermore, the lines with various attributes can automatically obtain the results of line planning by using the method, and the planning results can be corrected according to the line generation rule in the embodiment of the invention in the process of planning the lines with various attributes and after the line planning results with all attributes are obtained, so that the planning results meet the relevant requirements of the international, national and industrial fields
Specifically, for step S104, an embodiment of the present invention further provides a line intelligent selection method, where the method is used to recommend an optimal line plan for a user, and as shown in fig. 7, the method includes:
step S01, obtaining a winding displacement manner set of the line, where the set includes one or more elements, and each element records a winding displacement path along which the line can be led from a starting point to a respective end point.
Specifically, taking the laying of an electric power line as an example, the winding displacement manner set of the lines can record various winding displacement paths of the strong point line.
And step S02, obtaining the wire arranging cost of the line, wherein the wire arranging cost comprises single wire cost, elbow cost and/or collinear cost.
Step S03, for each element in the set, calculating a path cost corresponding to the winding displacement path of the element according to the winding displacement cost.
Specifically, step S03 includes analyzing the row wires in the element, and analyzing the single wires, the collinear wires and/or the bend angles in the row wires, wherein the bend angles are arranged between the two wires which are perpendicular to each other and are connected with each other;
if the single-wire line exists, calculating the cost of the single-wire line by using a first formula for each single-wire line; the first formula is V1=S1*P1In which V is1For a single line cost, S1Total length of a single-wire line, P1Is the unit price of a single wire line.
If the bend angles exist, calculating the cost consumed by all the bend angles according to a second formula; the second formula is V2=N*P2In which V is2For corner cost, N is the total number of corners, P2Is a bent angle unit price.
If a collinear line exists, calculating the cost of the collinear line by using a third formula for the collinear line; the third formula is V3=∑Mi*TiIn which V is3For collinear line costs, MiFor the length of collinear lines, TiIs the unit price of the collinear line.
And summing the cost consumed by all single-line lines, shared lines and/or bend angles in the row line paths of the elements to obtain the path cost corresponding to the elements.
In step S04, a flat cable path among the elements with the smallest path cost is selected as a result of the line intelligent selection.
In order to screen out infeasible winding displacement paths, the embodiment of the invention further comprises the following contents:
s10, obtaining filtering conditions.
The filtering condition includes the existence of an obstacle midway through the lines, the existence of parallel lines, the distance between the parallel lines being less than a preset threshold value, and/or the existence of crossed lines.
S20, screening out the infeasible lines according to the filtering conditions.
In one possible embodiment, if an obstacle exists midway along the line or a parallel line exists and the distance of the parallel line is less than a preset threshold, the element containing the line is removed. If there is an intersecting line, the intersection point is marked and the user decides whether the element containing the line needs to be removed.
And S30, removing the elements comprising the infeasible lines to obtain an intelligent line selection result not comprising the elements.
Preferably, after step S03, the method further includes:
and arranging each element in the set according to the order of the path cost from low to high. The arrangement result is provided to the client, so that the user can be allowed to autonomously select which cable arrangement mode is used.
The embodiment of the invention provides a decoration line planning method, which can remarkably reduce the drawing cost in the prior art and simultaneously provide convenience for a user to design a decoration line by providing related drawings of planar and three-dimensional decoration objects; the decoration line is automatically generated based on the guidance of the product rule base, the quality of the decoration line can be guaranteed from a standard angle, and the probability of wiring errors and the probability of later-stage construction reworking are reduced. In addition, the embodiment of the invention records the data related to the decoration line in a digital form, automatically performs the related calculation work which is originally required to be performed manually, and is simple, reliable and accurate in data.
Furthermore, the embodiment of the invention also provides a line automatic generation and intelligent selection method, the line can be fully automatically generated according to the starting point and the end point which need to be covered by the line, the automation efficiency is high, and the labor cost is greatly saved; the cost can be automatically calculated for a plurality of path planning schemes, and the cost optimal line is selected from the paths; and the infeasible line can be automatically shielded according to the preset filtering condition, so that the time for screening the line is saved for a user.
Example 2:
embodiments of the present invention also provide a storage medium that can store program codes for implementing a finishing line planning method, a line automatic generation method, and an intelligent selection method in the method embodiments. Optionally, in this embodiment, the storage medium may be located in at least one network device of a plurality of network devices of a computer network. Optionally, in this embodiment, the storage medium may include, but is not limited to: a U-disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a removable hard disk, a magnetic or optical disk, and other various media capable of storing program codes.
Example 3:
the present invention also provides a finishing line planning apparatus, as shown in fig. 8, the apparatus including:
the decoration object publishing module 10 is configured to respond to a decoration object obtaining request of a client and publish a decoration object to the client, where the decoration object includes house type structure information and house type data parameter information;
the installation point information acquisition module 20 is configured to acquire a line installation point selected by the client and used for installing the decoration line, where the line installation point includes a line installation point number and a line installation point attribute.
Specifically, one or more decoration lines are distributed in the decoration object, one or more line installation points are distributed on each decoration line, and the line installation points of different lines are distinguished through the attributes of the line installation points; the line installation points of the same line are distinguished by the serial numbers of the line installation points.
And the decoration line generation module 30 is configured to generate a decoration line according to the product knowledge base at the installation point along the line in the decoration object, and issue a decoration line generation result to the client.
And the system scheme issuing module 40 is configured to automatically generate a line system scheme and issue the line system scheme to the client.
The line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process; the circuit system scheme comprises: a material procurement manifest, a construction content manifest, a circuitry diagram, an all-dimensional route construction diagram, and/or a construction tool manifest.
And the switching module 50 is configured to respond to a 2D-3D switching instruction issued by the client and display the decoration object to the client in a 2D form or a 3D form.
The devices in the device embodiment of the invention are all based on the same inventive concept as the method embodiment, and can be used for executing a decoration line planning method, a line automatic generation method and an intelligent selection method in the method embodiment.
Example 4:
an embodiment of the present invention provides a server, and as shown in fig. 9, the server may be used to implement the decoration line planning method, the line automatic generation method, and the intelligent selection method provided in the foregoing embodiments. Specifically, the method comprises the following steps:
referring to fig. 9, fig. 9 is a schematic structural diagram of a server according to an embodiment of the present invention. The server 1200 may vary widely in configuration or performance and may include one or more Central Processing Units (CPUs) 1222 (e.g., one or more processors) and memory 1232, one or more storage media 1230 (e.g., one or more mass storage devices) storing applications 1242 or data 1244. Memory 1232 and storage media 1230 can be, among other things, transient storage or persistent storage. The program stored in the storage medium 1230 may include one or more modules (not shown), each of which may include a series of instruction operations for the server. Still further, the central processor 1222 may be configured to communicate with the storage medium 1230, to execute a series of instruction operations in the storage medium 1230 on the server 1200. The server 1200 may also include one or more power supplies 1226, one or more wired or wireless network interfaces 1250, one or more input-output interfaces 1258, and/or one or more operating systems 1241, such as Windows Server, Mac OS XTM, UnixTM, LinuxTM, FreeBSDTM, etc. The steps performed by the above-described method embodiment may be based on the server architecture shown in fig. 9.
It should be noted that: the above-mentioned serial numbers of the embodiments of the present invention are merely for description and do not represent the merits of the embodiments.
It will be understood by those skilled in the art that all or part of the steps for implementing the above embodiments may be implemented by hardware, or may be implemented by a program instructing relevant hardware, where the program may be stored in a computer-readable storage medium, and the above-mentioned storage medium may be a read-only memory, a magnetic disk or an optical disk, etc.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (10)

1. A method of finishing line planning, the method comprising:
responding to a decoration object acquisition request of a client, and issuing a decoration object to the client, wherein the decoration object comprises house type structure information and house type data parameter information;
acquiring line installation points selected by a client and used for arranging decoration lines, wherein the line installation points comprise line installation point numbers and line installation point attributes;
installing points along the line in the decoration object according to a product knowledge base to generate a decoration line, and issuing a decoration line generation result to a client;
automatically planning a line based on the product knowledge base, and providing a planning result to a client in a line arrangement mode set of the line;
the automated planned route comprises:
obtaining a unique starting point P for laying a linestartAnd N end points Pi endWherein N is more than 1 and i is more than or equal to 1 and less than or equal to N;
generating a first line data set: for each end point Pi endThe following operations are performed: generating from the starting point PstartTo the end point Pi endThe line of (1), wherein only a horizontal line segment and a vertical line segment are included in the line; thereby constructing a first line data set;
generating a second line data set: for each end point Pi endThe following operations are performed: generating a representation of the starting point P, preconditioned by the presence of other end pointsstartTo the end point Pi endOf the set of lines of (a) a second subset of lines UiStarting point PstartTo the end point Pi endThe circuit of (a) comprises only a horizontal line segment and a vertical line segment; thereby constructing a second line data set;
and obtaining a wire arrangement mode set of the wires according to the first wire data set and the second wire data set.
2. The method of claim 1, after generating the finishing line, further comprising:
automatically generating a line system scheme and issuing the line system scheme to a client;
the line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process;
the circuit system scheme comprises: a material procurement list, a construction content list, a circuit system diagram, a water path system diagram, an all-dimensional line construction diagram and/or a construction tool list.
3. The method of claim 1, wherein the product knowledge base records national norms, industry standards, construction guidelines, construction cost data, and/or route generation rules.
4. The method of claim 3, wherein the decoration object is presented to the client in 2D form or 3D form in response to a 2D-3D switch instruction issued by the client.
5. The method of claim 1, wherein one or more finishing lines are routed in the finishing object, each finishing line having one or more line installation points, the line installation points of different lines being distinguished by attributes of the line installation points; the line installation points of the same line are distinguished by the serial numbers of the line installation points.
6. A finished line planning apparatus, the apparatus comprising:
the decoration object issuing module is used for responding to a decoration object obtaining request of the client and issuing a decoration object to the client, wherein the decoration object comprises house type structure information and house type data parameter information;
the system comprises an installation point information acquisition module, a line installation point information acquisition module and a line installation point information acquisition module, wherein the installation point information acquisition module is used for acquiring line installation points selected by a client and used for installing decoration lines, and the line installation points comprise line installation point numbers and line installation point attributes;
the decoration line generation module is used for generating a decoration line along the line installation point in the decoration object according to the product knowledge base and issuing a decoration line generation result to the client;
the apparatus is further configured to:
automatically planning a line based on the product knowledge base, and providing a planning result to a client in a line arrangement mode set of the line;
the automated planned route comprises:
obtaining a unique starting point P for laying a linestartAnd N end points Pi endWherein N is more than 1 and i is more than or equal to 1 and less than or equal to N;
generating a first line data set: for each end point Pi endThe following operations are performed: generating from the starting point PstartTo the end point Pi endThe line of (1), wherein only a horizontal line segment and a vertical line segment are included in the line; thereby constructing a first line data set;
generating a second line data set: for each end point Pi endThe following operations are performed: generating a representation of the starting point P, preconditioned by the presence of other end pointsstartTo the end point Pi endOf the set of lines of (a) a second subset of lines UiStarting point PstartTo the end point Pi endThe circuit of (a) comprises only a horizontal line segment and a vertical line segment; thereby constructing a second line data set;
and obtaining a wire arrangement mode set of the wires according to the first wire data set and the second wire data set.
7. The apparatus of claim 6, further comprising:
the system scheme issuing module is used for automatically generating a line system scheme and issuing the line system scheme to a client;
the line system scheme is used for guiding a user in purchasing, construction, statistics and/or decision links in the decoration line construction process;
the circuit system scheme comprises: a material procurement list, a construction content list, a circuit system diagram, a water path system diagram, an all-dimensional line construction diagram and/or a construction tool list.
8. The apparatus of claim 6, further comprising:
and the switching module is used for responding to a 2D-3D switching instruction issued by the client and displaying the decoration object to the client in a 2D form or a 3D form.
9. The apparatus of claim 6, wherein one or more finishing lines are laid in the finishing object, each finishing line having one or more line installation points, the line installation points of different lines being distinguished by the properties of the line installation points; the line installation points of the same line are distinguished by the serial numbers of the line installation points.
10. A server, characterized in that the server comprises the apparatus of any of claims 6-9.
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CN106127420A (en) * 2016-07-18 2016-11-16 广西家之宝网络科技有限公司 A kind of finishing based on distributed deployment system management cloud system
CN106407521A (en) * 2016-08-31 2017-02-15 杭州群核信息技术有限公司 Socket position determination method and device
CN106777666A (en) * 2016-12-13 2017-05-31 周振华 Finishing instructs drawing generating method and device
CN106846006A (en) * 2016-12-20 2017-06-13 上海朗绿建筑科技股份有限公司 A kind of finishing material purchasing management method and system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106127420A (en) * 2016-07-18 2016-11-16 广西家之宝网络科技有限公司 A kind of finishing based on distributed deployment system management cloud system
CN106407521A (en) * 2016-08-31 2017-02-15 杭州群核信息技术有限公司 Socket position determination method and device
CN106777666A (en) * 2016-12-13 2017-05-31 周振华 Finishing instructs drawing generating method and device
CN106846006A (en) * 2016-12-20 2017-06-13 上海朗绿建筑科技股份有限公司 A kind of finishing material purchasing management method and system

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