CN114049438A - Garment design system and garment design method - Google Patents
Garment design system and garment design method Download PDFInfo
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- CN114049438A CN114049438A CN202111329864.4A CN202111329864A CN114049438A CN 114049438 A CN114049438 A CN 114049438A CN 202111329864 A CN202111329864 A CN 202111329864A CN 114049438 A CN114049438 A CN 114049438A
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Abstract
The invention discloses a clothing design system and a clothing design method, comprising a central processing unit, an interaction module, a design module, a storage module, an auxiliary module and a display module; the interaction module is configured to verify and log in the account; the central processing unit responds to the style data, the basic design data and the structural design data selected by the user in the design module to be processed together; the auxiliary module generates a corresponding collocation conclusion according to the gender, age and browsing preference of the user, and transmits the collocation conclusion to the central processing unit for combined design by combining style data, basic design data and structural design data to generate a corresponding target garment; the display module dynamically displays the target garment in a three-dimensional and animation mode; the storage module stores the information. The user participates in the design, the interestingness is increased, each step of the design plate making link is digitalized, the steps from human body shape data to the establishment of a three-dimensional dynamic model are completed, the design efficiency is improved, and the customized clothes are suitable for the requirements of the user.
Description
Technical Field
The invention belongs to the technical field of clothing industry, and particularly relates to a clothing design system and a clothing design method.
Background
The clothing is the general term of clothes, shoes, bags and the like, mostly refers to clothes, is arranged at the top of a 'clothes eating and housing', has a visible importance degree to life, is a dressing article required by people in daily life, and is very important for people to select proper clothes according to self stature because of the difference of height, weight and thinness of each person.
The clothing has standard codes of the clothing company, and also has clothing through the customization type, and the customization type clothing is tailor-made according to the stature of customer, and the traditional design method is that tailor uses the volume chi to get the size of each position of stature, carries out the design again, and the process is boring and tasteless, and the error that produces is great, and the clothing that usually leads to final design is not fully satisfied because some sizes have the error, and in addition the customer can't look over the design effect picture fast after selecting design style and style, and design efficiency is low.
Disclosure of Invention
In order to solve the existing problems in the background art, the invention provides a garment design system and a garment design method, which are used for customizing proper garments according to user preference requirements and have high design efficiency.
The invention adopts the following technical scheme:
a clothing design system comprises a central processing unit, an interaction module, a design module, a storage module, an auxiliary module and a display module;
the interaction module is configured to verify and log in an account and input user related data and control commands into the central processing unit;
the central processing unit responds to the style data, the basic design data and the structural design data selected by the user in the design module to be processed together;
the auxiliary module generates a corresponding collocation conclusion according to the gender, age and browsing preference of the user, transmits the collocation conclusion to the central processing unit, and performs combined design by combining style data, basic design data and structural design data to generate a corresponding target garment;
the display module responds to the target clothing information of the central processing unit and dynamically displays the target clothing in a three-dimensional and animation mode;
the storage module is used for storing the account information and the target clothing information.
In a further embodiment, the interaction module includes a login unit, and the login unit is used for registering an account, verifying the login name and the password of the account, and determining whether to allow login.
In a further embodiment, the interactive module further comprises an acquisition unit, wherein the acquisition unit is a scanner and is used for scanning a human body to obtain user-related data and transmitting the user-related data to the central processing module.
In a further embodiment, the design module comprises a basic data unit, a style data unit and a structural design unit;
the basic data unit is used for inputting the chest circumference, the shoulder width, the collar circumference, the sleeve length, the waist circumference and the trouser length of a user;
the style data unit calls clothing styles on the tool page according to the requirements of a user, performs initial selection by adding fabrics, replacing the fabrics and adding styles, and adds the style data into a style library for the next calling;
the structure design unit designs the clothing sample according to styles added by users through a basic tool and a special tool, automatically generates corresponding clothing sample by inputting information such as chest circumference, shoulder width, collar circumference, sleeve length, waist circumference, trouser length and the like of the users, and adjusts the clothing sample by using manufacturing commands such as straight lines, curves, cutting and the like to perfect target clothing.
In a further embodiment, the auxiliary module recommends relevant elements according to the age, gender and browsing preference of the user, combines the recommended elements to generate a collocation conclusion, and combines the collocation of the clothing sample to generate the target clothing correspondingly.
In a further embodiment, the display module comprises a three-dimensional display unit and an animation display unit, the three-dimensional display unit responds to the target clothing information to generate a three-dimensional dynamic model for dynamic display of the model, and the animation display model responds to the target clothing information to perform animation mode display.
A clothing design method applies the clothing design system, and the clothing design method comprises the following steps:
s1: registering on a login unit, and inputting a user account and a password to verify login;
s2: scanning the body through an acquisition unit to obtain basic data information such as chest circumference, shoulder width, collar circumference, sleeve length, waist length, trouser length and the like;
s3: the method comprises the following steps that a user calls clothing styles on a tool page according to self requirements, preliminary selection is carried out through operations of adding fabrics, replacing fabrics, adding styles and the like, and style data are added into a style library;
s4: calling styles in the style library, importing basic data information, then rotating to generate corresponding clothing samples, recommending related elements according to the age, the gender and browsing preferences of a user by the aid of the auxiliary module to be combined with the clothing samples to generate target clothing, and adjusting by using manufacturing commands such as straight lines, curves and cutting to perfect the target clothing;
s5: the display module responds to the target clothing information generated by the design module, and displays the three-dimensional dynamic model and the animation information on the three-dimensional display unit and the animation display unit respectively;
s6: if the obtained target clothing information is not suitable, the obtained target clothing information returns to S3 and S4 to be modified again.
The invention has the following beneficial effects:
when the clothing design system is used for customizing clothing, after a user inputs an account and a password in a login unit for verification and login, a collection unit collects basic data information of the user, or personalized basic data information is input on a basic data unit, then clothing styles are called in a style data unit, fabric and style addition or fabric replacement is carried out to add style data into a style library, style data are called on a structural design unit, the data information of the user and the desired elements such as the age, the sex, the browsing preference and the like of the user are combined together to generate target clothing, the user further perfects the target clothing through related adjustment commands of a basic tool, and finally generates a three-dimensional dynamic model, and three-dimensional dynamic display and animation display are carried out on a display module, so that the user participates in design and increases interestingness, each step of the design plate making link is digitalized, and the steps from human body shape data to the establishment of a three-dimensional dynamic model are completed, so that the design efficiency is improved, the customized clothes are suitable for the requirements of users, and the design cost is reduced.
Drawings
FIG. 1 is a schematic diagram of a garment design system according to the present invention;
fig. 2 is a schematic flow chart of a garment design method.
Detailed Description
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 all the directional indicators (such as up, down, left, right, front, and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the movement situation, etc. in a specific posture (as shown in the drawing), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are only for descriptive purposes and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise.
In the present invention, unless otherwise expressly stated or limited, the terms "connected," "secured," and the like are to be construed broadly, and for example, "secured" may be a fixed connection, a removable connection, or an integral part; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
In addition, the technical solutions in the embodiments of the present invention may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination of technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
Referring to fig. 1, the present invention provides a garment design system, which includes a central processing unit, an interaction module, a design module, a storage module, an auxiliary module, and a display module.
The interaction module is configured to authenticate and log in an account and input user related data and control commands into the central processing unit, and specifically, the interaction module comprises a log-in unit and a collecting unit.
The login unit is used for registering an account, verifying the login name and the password of the account to judge whether login is allowed or not, and filling basic information such as age, sex, height, weight and the like when the account is registered.
The acquisition unit is a scanner and is used for scanning a human body to form user related data and transmitting the user related data to the central processing module, the related data comprises chest circumference, shoulder width, collar circumference, sleeve length, waist length, trouser length and the like, the scanning precision is high, and the design precision is improved.
Secondly, the central processing unit responds to the style data, the basic design data and the structural design data selected by the user in the design module to process together.
The design module comprises a basic data unit, a style data unit and a structural design unit.
The basic data unit is used for inputting the chest circumference, the shoulder width, the collar circumference, the sleeve length, the waist circumference and the trouser length of a user, and performing custom input, or default data of related data obtained by scanning of the acquisition module is adopted, and the design is more free and personalized through custom modification.
The style data unit calls the clothing style on the tool page according to the requirements of a user, primary selection is carried out by adding the fabric, replacing the fabric and adding the style, after the customer selects the basic clothing style, a primary effect picture is obtained by adding materials and styles through one key, the efficiency is high, the matching is carried out by fast selection, and the style data is added into a style library for the next calling.
The structure design unit designs the clothing sample according to styles added by users through a basic tool and a special tool, automatically generates corresponding clothing sample by inputting information such as chest circumference, shoulder width, collar circumference, sleeve length, waist circumference, trouser length and the like of the users, and adjusts the clothing sample by using manufacturing commands such as straight lines, curves, cutting and the like to perfect target clothing.
Particularly, the auxiliary module generates a corresponding collocation conclusion according to the gender, age and browsing preference of the user, and transmits the collocation conclusion to the central processing unit to be combined and designed by combining style data, basic design data and structural design data to generate a corresponding target garment.
And finally, the display module responds to the target clothing information of the central processing unit and dynamically displays the target clothing in a three-dimensional and animation mode, specifically, the display module comprises a three-dimensional display unit and an animation display unit, the three-dimensional display unit responds to the target clothing information to generate a three-dimensional dynamic model and dynamically display the model, the animation display model responds to the target clothing information to display in the animation mode, and the account information, the target clothing information and the three-dimensional dynamic model are stored in the storage module together.
And if the three-dimensional dynamic model shows that the design requirements are not met, returning to the basic data unit, the style data unit and the structure design unit again to modify the related parameters until the design requirements are met.
As shown in fig. 2, another garment design method is further designed, and the garment design system is applied, wherein the garment design method comprises the following steps:
s1: registering on a login unit, and inputting a user account and a password to verify login;
s2: scanning the body through an acquisition unit to obtain basic data information such as chest circumference, shoulder width, collar circumference, sleeve length, waist length, trouser length and the like;
s3: the method comprises the following steps that a user calls clothing styles on a tool page according to self requirements, preliminary selection is carried out through operations of adding fabrics, replacing fabrics, adding styles and the like, and style data are added into a style library;
s4: calling styles in the style library, importing basic data information, then rotating to generate corresponding clothing samples, recommending related elements according to the age, the gender and browsing preferences of a user by the aid of the auxiliary module to be combined with the clothing samples to generate target clothing, and adjusting by using manufacturing commands such as straight lines, curves and cutting to perfect the target clothing;
s5: the display module responds to the target clothing information generated by the design module, and displays the three-dimensional dynamic model and the animation information on the three-dimensional display unit and the animation display unit respectively;
s6: if the obtained target clothing information is not suitable, the obtained target clothing information returns to S3 and S4 to be modified again.
Through this dress designing system, the user can participate in the in-process of design in person, compares traditional design process, has more interesting to with every step digitization of design plate-making link, accomplished from anthropometric morphology data to establishing three-dimensional dynamic model, thereby improve design efficiency, the clothing of customization is fit for user's demand, and reduce design cost.
The invention has the advantages that:
when the clothing design system is used for customizing clothing, after a user inputs an account and a password in a login unit for verification and login, a collection unit collects basic data information of the user, or personalized basic data information is input on a basic data unit, then clothing styles are called in a style data unit, fabric and style addition or fabric replacement is carried out to add style data into a style library, style data are called on a structural design unit, the data information of the user and the desired elements such as the age, the sex, the browsing preference and the like of the user are combined together to generate target clothing, the user further perfects the target clothing through related adjustment commands of a basic tool, and finally generates a three-dimensional dynamic model, and three-dimensional dynamic display and animation display are carried out on a display module, so that the user participates in design and increases interestingness, each step of the design plate making link is digitalized, and the steps from human body shape data to the establishment of a three-dimensional dynamic model are completed, so that the design efficiency is improved, the customized clothes are suitable for the requirements of users, and the design cost is reduced.
It will be appreciated by those skilled in the art that the invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The embodiments disclosed above are therefore to be considered in all respects as illustrative and not restrictive. All changes which come within the scope of or equivalence to the invention are intended to be embraced therein.
Claims (7)
1. A clothing design system is characterized by comprising a central processing unit, an interaction module, a design module, a storage module, an auxiliary module and a display module;
the interaction module is configured to verify and log in an account and input user related data and control commands into the central processing unit;
the central processing unit responds to the style data, the basic design data and the structural design data selected by the user in the design module to be processed together;
the auxiliary module generates a corresponding collocation conclusion according to the gender, age and browsing preference of the user, transmits the collocation conclusion to the central processing unit, and performs combined design by combining style data, basic design data and structural design data to generate a corresponding target garment;
the display module responds to the target clothing information of the central processing unit and dynamically displays the target clothing in a three-dimensional and animation mode;
the storage module is used for storing the account information and the target clothing information.
2. The garment design system of claim 1, wherein the interaction module comprises a login unit, wherein the login unit is used for registering an account, verifying a login name and a password of the account and judging whether login is allowed.
3. A garment design system according to claim 1, wherein the interaction module further comprises a collection unit, the collection unit is a scanner for scanning a human body into user-related data to be transmitted to the central processing module.
4. A garment design system according to claim 1, wherein the design module comprises a basic data unit, a style data unit and a structural design unit;
the basic data unit is used for inputting the chest circumference, the shoulder width, the collar circumference, the sleeve length, the waist circumference and the trouser length of a user;
the style data unit calls clothing styles on the tool page according to the requirements of a user, performs initial selection by adding fabrics, replacing the fabrics and adding styles, and adds the style data into a style library for the next calling;
the structure design unit designs the clothing sample according to styles added by users through a basic tool and a special tool, automatically generates corresponding clothing sample by inputting information such as chest circumference, shoulder width, collar circumference, sleeve length, waist circumference, trouser length and the like of the users, and adjusts the clothing sample by using manufacturing commands such as straight lines, curves, cutting and the like to perfect the clothing sample.
5. The garment design system of claim 4, wherein the auxiliary module recommends relevant elements according to the age, gender and browsing preferences of the user and combines them to generate a collocation conclusion, and combines them with the garment sample configuration to generate the target garment.
6. The garment design system of claim 5, wherein the display module comprises a three-dimensional display unit and an animation display unit, the three-dimensional display unit generates a three-dimensional dynamic model in response to the target garment information for dynamic display of the model, and the animation display unit performs animation mode display in response to the target garment information for dynamic display of the model.
7. A garment design method applying the garment design system according to any one of claims 1 to 6, characterized in that the garment design method comprises the following steps:
s1: registering on a login unit, and inputting a user account and a password to verify login;
s2: scanning the body through an acquisition unit to obtain basic data information such as chest circumference, shoulder width, collar circumference, sleeve length, waist length, trouser length and the like;
s3: the method comprises the following steps that a user calls clothing styles on a tool page according to self requirements, preliminary selection is carried out through operations of adding fabrics, replacing fabrics, adding styles and the like, and style data are added into a style library;
s4: calling styles in the style library, importing basic data information, then rotating to generate corresponding clothing samples, recommending related elements according to the age, the gender and browsing preferences of a user by the aid of the auxiliary module to be combined with the clothing samples to generate target clothing, and adjusting by using manufacturing commands such as straight lines, curves and cutting to perfect the target clothing;
s5: the display module responds to the target clothing information generated by the design module, and displays the three-dimensional dynamic model and the animation information on the three-dimensional display unit and the animation display unit respectively;
s6: if the obtained target clothing information is not suitable, the obtained target clothing information returns to S3 and S4 to be modified again.
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CN114549139A (en) * | 2022-03-04 | 2022-05-27 | 江西服装学院 | Men's T-shirt customized digital management system |
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CN114549139A (en) * | 2022-03-04 | 2022-05-27 | 江西服装学院 | Men's T-shirt customized digital management system |
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