CN112084221A - Method and system for customizing vertical face of stored product - Google Patents

Method and system for customizing vertical face of stored product Download PDF

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CN112084221A
CN112084221A CN202010680028.XA CN202010680028A CN112084221A CN 112084221 A CN112084221 A CN 112084221A CN 202010680028 A CN202010680028 A CN 202010680028A CN 112084221 A CN112084221 A CN 112084221A
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吴陈龙
陈钢
孙火生
吴昊
程波
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Ningbo Borcci Integrated Kitchen Co ltd
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Abstract

The invention relates to a method and a system for customizing a vertical face of a stored product, which comprise the following steps: selecting height data and various posture data of the existing crowd; establishing a linear relation formula of various posture data and height data of the existing crowd; determining the height values of various products according to the selected customization mode, the linear relation formula of various posture data and height data of the existing crowd and the corresponding relation between the height values of various products and various posture data; and determining the corresponding height of each part structure of the stored product according to the height values of various products and the designed styles of the stored products. According to the method and the system for customizing the vertical face of the storage product, provided by the embodiment of the invention, the space for storing the product is divided into a plurality of height areas, and the reasonable corresponding relation is generated between various body state data and each part structure of the storage product by adopting the principles of statistics and human physiology through reasonable design, so that the vertical face of the designed storage product has higher use comfort.

Description

Method and system for customizing vertical face of stored product
Technical Field
The invention relates to the field of furniture, in particular to a customization method and a customization system for a storage product.
Background
Accomodate the storing effect of product in modern house is prominent day by day, adorns furniture admittedly as the high frequency use in the family, and the use experience of product is directly influenced to its height and the size matching degree of human height, mainly experiences in aspects such as the ease for use, the reachability of product. In order to realize better user experience, the space division in the height direction has more obvious influence on the accessibility and the comfort of user operation.
The whole house storage product is different from a kitchen cabinet product, has higher degree of freedom in customization and brings more opportunities for realizing personalized customization of users. Different people have different heights, and if users with different heights use products with the same height, the comfort is reduced inevitably. However, if the users with different heights are targeted, the products with different heights are purely customized individually, and the production efficiency and the design efficiency are greatly reduced. Therefore, it is an urgent need to solve the problem of providing a method and a system for customizing a storage product which is convenient to design and can meet the requirements of people with different heights for the suitable product height.
Disclosure of Invention
In view of this, the invention provides a method and a system for customizing a received product, which can quickly determine the height of each part structure of a facade product and enable the height of each part structure to be higher
In order to solve the above problems, embodiments of the present invention mainly provide the following technical solutions:
a method for accommodating product facade customization, comprising:
selecting height data and various posture data of the existing crowd;
establishing a linear relation formula of various posture data and height data of the existing crowd;
determining the height values of various products according to the selected customization mode, the linear relation formula of various posture data and height data of the existing crowd and the corresponding relation between the height values of various products and various posture data;
and determining the corresponding height of each part structure of the stored product according to the height values of various products and the designed styles of the stored products.
Preferably, before the height data and various types of posture data of the existing crowd are selected, a database is further established, and the database comprises the height data and various types of posture data of the existing crowd.
Preferably, the database is classified according to gender or age, height data and various body state data of the existing crowd are selected according to different classifications, and database data of different classifications are selected.
Preferably, the various types of posture data comprise height of human shank, height of feet, height of sitting posture and elbow, height of standing posture and eyes, visual field distance and height of highest point of extending hands of the person in a standing state.
Preferably, the height values of the various products include five height values of H1-H5, and the corresponding relationship between the height values of the various products and the various posture data includes a shank height plus foot height value corresponding to the H1 height value, a sitting posture elbow height value corresponding to the H2 height value, a human eye height plus visual field distance value corresponding to the H4 height value, a H3 height value which is a central value of the H2 and H4 height values, and a highest point value corresponding to the H5 height value in a hand stretching state of the person in a standing state.
Preferably, the customization mode includes two modes, which are a full customization mode and a general customization mode.
Preferably, if the fully customized mode is selected, the step determines five height values of H1-H5 according to the selected customized mode, a linear relation formula of the various height values of the existing population and the height data, and a corresponding relation between the five height values of H1-H5 and the various height values of the population, and specifically includes inputting the height data of the user, substituting the linear relation formula of the various height values of the user and the height data according to the height data of the user to calculate the various height values of the user, and then obtaining the five height values of H1-H5 according to the corresponding relation between the five height values of H1-H5 and the various height values of the user.
Preferably, if the general customized mode is selected, the step of determining five height values of H1-H5 according to the selected customized mode, the linear relation formula of the various height data and the height data of the existing population, and the corresponding relation between the five height values of H1-H5 and the various height data specifically comprises the steps of performing data processing on the height data of the existing population to obtain specific values corresponding to the percentiles of the height data; according to the characteristics of H1-H5, specific values corresponding to different percentiles of height data are selected, then the specific values corresponding to the percentiles selected by H1-H5 are substituted into a linear relation formula of various posture data and height data of the existing crowd, corresponding various posture data are obtained through calculation, and further corresponding five height values of H1-H5 are obtained.
Preferably, the specific values corresponding to different percentiles of the height data are selected according to the characteristics of H1-H5, and the specific values corresponding to P40-P60 percentiles are selected according to the height value of H1, the specific values corresponding to P90-P100 percentiles are selected according to the height value of H2 and the height value of H4, and the specific values corresponding to P90-P100 percentiles are selected according to the height value of H5.
A system for customizing the inside of a storage product comprises
The database is used for storing height data and various body state data of the existing crowd;
the data selection module is used for selecting height data and various body state data of existing people in different groups from the database;
the formula calculation module is used for performing linear fitting and calculation on the selected height data of the existing crowd and various posture data to obtain a linear relation formula between the height data and the various posture data;
the judging module is used for judging which customization mode is selected, and further selecting different calculation methods according to different modes, wherein the customization modes comprise a complete customization mode and a general customization mode;
the calculation module is used for determining the height values of various products according to the customization mode judged by the judgment module, the linear relation formulas of various body state data and height data of the existing crowd and the corresponding relation between the height values of various products and various body state data;
and the application module is designed, and the corresponding height of each part structure in the stored product is determined according to the designed style of the stored product and the height values of various products obtained by the calculation module.
By the technical scheme, the technical scheme provided by the embodiment of the invention at least has the following advantages:
according to the method and the system for customizing the vertical face of the storage product, provided by the embodiment of the invention, the space for storing the product is divided into a plurality of height areas, and the principles of statistics and human physiology are adopted, so that reasonable corresponding relations are generated between various body state data and the height areas of the storage product through reasonable design, and the vertical face of the designed storage product is higher in use comfort. And utilize the corresponding relation between all kinds of attitude data and the human height, can come fast according to user's height to work out the height of accomodating different parts of product fast, use convenient, swift.
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Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the embodiments of the invention. Also, like reference numerals are used to refer to like parts throughout the drawings. In the drawings:
fig. 1 shows a product differentiation diagram of a received product facade customization method according to an embodiment of the present invention.
Fig. 2 is a flow chart illustrating a received product facade customization method according to an embodiment of the present invention.
Detailed Description
Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be embodied in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
According to the method for customizing the vertical face of the stored product, the relationship between the height of the human body and the height partition of the stored product is established, so that the product can be personalized and customized according to the height of a user. As shown in fig. 1, the existing storage products are classified into various product height values according to different heights, preferably, into five height values H1-H5, each of which has different heights, as shown in fig. 1, H1 corresponds to the heights of tatami, seat cabinet, customized bed product and bay window, and the storage space below the tatami corresponds to an area which can be taken and placed only by squatting; h2, corresponding to the height of a desk and an operation desk, or the highest height of a lower storage area of a wardrobe, a bookcase and a television cabinet, namely the height which needs to be operated by a human body in a sitting posture or the area needing to be operated by bending; h3 is corresponding to the height of the center area of the bar counter and the wardrobe, namely the area which can be easily contacted by the human body when the human body sits or stands; h4, corresponding to the highest height of the common areas of the wardrobe and the bookcase, or the highest height of the television cabinet, which is the upper limit value of the optimal area of the human body upright posture view field; h5, corresponding to the middle height of the unusual storage area of a bookcase, a wardrobe and the like, namely the maximum height of the human body which can be freely operated by hands in the standing state. In the range of the height H1-H2, the area which can be operated by bending down and squatting down is corresponding to the area, generally the lower position of a wardrobe or a bookcase, and the area is provided with a drawer and other storage spaces; the height range of H2-H4 corresponds to the height of a common area such as a wardrobe, a bookcase, a television cabinet and the like; namely, the area which can be easily contacted by a human body only by standing upright or the area which can be easily taken and placed by slightly bending down; the height range of H4-H5 is the area where the human body needs to raise the head and stretch the hands vertically to take and put articles; the height range above H5 is an area where articles can be taken in and out by a tool such as a ladder or a pedestal.
The H1-H5 are sequentially increased according to the height, and the invention mainly provides a method which can provide the optimal value range of the 5 height values according to the heights of different people, and further select different height values to determine the height of a product according to different product purposes when the product is designed and stored.
The customization method, as shown in fig. 2, specifically includes:
s1: establishing a database, wherein the database comprises height data of the existing crowd and various body posture data;
s2: selecting height data and various body state data of the existing crowd from a database;
s3: establishing a linear relation formula of various posture data and height data of the existing crowd;
s4: determining the height values of various products according to the selected customization mode, the linear relation formula of various posture data and height data of the existing crowd and the corresponding relation between the height values of various products and various posture data;
s5: and determining the corresponding height of each part structure of the stored product according to the height values of various products and the designed styles of the stored products.
In the step S1, the database may be established according to gender, or different databases may be established according to male and female, or different databases may be established according to age groups without gender. I.e. the database may be categorized according to age group or gender.
In step S2, the data in the databases of different categories may be selected according to actual situations, for example, a linear relationship formula between various types of posture data and height data of the existing population is established according to the selected gender, that is, the linear relationship formula may be different according to the population.
The various body state data can comprise height of human shank, height of feet, height of sitting posture and elbow, height of eyes in standing posture, visual field distance, height of highest point of extending hands of the person in standing state and the like, and a plurality of body state data which need to be used can be set according to needs.
In addition, the height values of the various products include five height values of H1-H5, and the corresponding relationship between the height values of the various products and various posture data specifically includes a shank height plus foot height value corresponding to the H1 height value, a sitting posture elbow height value corresponding to the H2 height value, namely, the distance between the elbow and the ground when the person is in a sitting posture and the elbow is horizontal, an eye height plus visual field distance value corresponding to the H4 height value, a H3 height value is the central value of the H2 and H4 height values, a highest point value corresponding to the H5 height value in a hand stretching state of the person in an upright state is defined as hand function height. In addition, the person skilled in the art can also add the posture data to be added into the database as required, and then use the data for designing subsequent storage products.
In step S4, the selected customization mode includes two modes, so that it is necessary to determine which customization mode is the selected customization mode. One is a full customization mode, and if the mode is selected, the step S4 is specifically as follows: inputting the height data of the user, substituting the linear relation formula of the posture data and the height data obtained in the step S3 according to the height data of the user to calculate various posture data corresponding to the height of the user, and then obtaining five height values of H1-H5 according to the corresponding relation between the five height values of H1-H5 and the various posture data.
Another mode is a general customized mode, and if the mode is selected, the step S4 specifically includes: and S41, performing data processing on the height data of the existing crowd obtained in the step S2 to obtain specific values corresponding to each percentile of the height data. The percentile is a characteristic of data distribution, and the height data of the existing population is regarded as a group of data, and the specific value corresponding to the percentile is represented by Pk, wherein k is 1-100, Pk represents that (100-k)% of the data in the group of data is greater than the value, and k% of the data is less than the value.
S42, selecting specific values corresponding to different percentiles in the height data according to the characteristics of H1-H5, substituting the specific values corresponding to the percentiles of the height data respectively selected by H1-H5 into the linear relation formula of the various posture data and the height data of the existing crowd obtained in the step S3, calculating to obtain corresponding various posture data, and obtaining corresponding five height values of H1-H5 according to the corresponding relation between the five height values of H1-H5 and the various posture data.
Specifically, the H1 height value corresponds to the height of the tatami, the seat cabinet, the customized bedding, and the bay window, so that the posture data corresponding thereto only needs to be calculated by considering the posture data corresponding to the average height, and therefore, when calculating H1, the calculation only needs to be performed by using the specific value of the percentile P40-P60, and preferably, P50 is selected. The H2 height value and the H4 height value correspond to space ranges which are used more frequently, so that most people need to be considered to meet the requirements, and therefore, specific values of percentiles of P90-P100 are needed to be used for calculating posture data corresponding to the two height values. And H3 is determined according to H2 and H4. H5 is a space which is not frequently used, and is similar to H1, only the posture data corresponding to the average height needs to be considered, so the specific value corresponding to the P40-P60 percentile can be selected, and preferably, P50 is selected.
Specifically, the data obtained from the database are shown in table 1 below:
TABLE 1 (Unit: mm)
Height of a person 1543 1583 1604 1678 1754 1775 1814 ……
Leg adding foot height 372 383 389 413 439 448 463 ……
Elbow height in sitting posture 586 611 624 676 730 746 775 ……
Eye height + distance of upper field of view 1446 1484 1505 1578 1653 1674 1715 ……
High hand function 1801 1851 1877 1970 2066 2092 2141 ……
Therefore, the linear formulas of the posture data and the height data are respectively:
h1 (unit: mm) for shank and leg with foot high (0.3361 × height-148.99);
h2 (unit: mm) 0.7006 × height-497.75 (unit: mm);
h4-eye height + distance of upper field 0.9908 × height-93.91 (unit: mm);
h5-hand function high 1.2569 × height-138.78 (unit: mm);
H3=(H2+H4)/2
after a linear formula of the posture data and the height data is established;
in step S4, when the user is 160cm in height and the corresponding relationship between the various types of posture data and H1-H5 is used, H1-388.77 mm, H2-623.31 mm, H4-1491.37 mm, H5-1872.26 mm, and H3-1057.34 mm are obtained.
Therefore, according to the H1-H5 value, the height of each part of the stored product is designed according to the designed stored product style, and the customization can be completed.
When the second customization mode is adopted, the specific values corresponding to the various percentiles of the obtained individual height data are shown in the following table 2:
TABLE 2 (Unit: mm)
Figure RE-GDA0002694082190000081
In the calculation of H1, the height value corresponding to the P50 percentile, i.e., 1689mm, is used to obtain H1 as 419mm, in the calculation of H2, the height value corresponding to the P99 percentile, i.e., 1847mm, is used to obtain H2 as 796mm, in the calculation of H4, the height value corresponding to the P90 percentile, i.e., 1776, is used to obtain H4 as 1676mm, in the calculation of H5, the height value corresponding to the P50 percentile is used to obtain H5 as 1984mm, and H3 as 1236 mm.
According to the H1-H5 value, the height of each part of the stored product is designed according to the designed stored product style, and the customization can be completed.
The invention also discloses a vertical surface customization system for the stored products, which comprises:
the database is used for storing height data and various body state data of the existing crowd, the height data and the various body state data are in one-to-one correspondence, namely the height and the various body state data of one person form a group, and the database can be classified according to the crowd, for example, according to gender or age and the like.
And the data selection module is used for selecting height data and various body state data of the existing people in different groups from the database.
And the formula calculation module is used for performing linear fitting and calculation on the selected height data of the existing crowd and various posture data to obtain a linear relation formula between the height data and various posture data.
And the judging module is used for judging which customization mode is selected, and further selecting different calculation methods according to different modes, wherein the customization modes comprise a complete customization mode and a general customization mode.
And the calculation module is used for determining the height values of various products according to the customization mode judged by the judgment module, the linear relation formulas of various body state data and height data of the existing crowd and the corresponding relation between the height values of various products and various body state data.
And the application module is designed, and the corresponding height of each part structure in the stored product is determined according to the designed style of the stored product and the height values of various products obtained by the calculation module.
According to the accommodating product facade customization method and system, the space for accommodating products is divided into a plurality of heights, the principles of statistics and human physiology are adopted, reasonable corresponding relations are generated between various body state data and various structures for accommodating products through reasonable design, and the designed accommodating product facade is high in use comfort. And utilize the corresponding relation between all kinds of attitude data and the human height, can come fast according to user's height to work out the height of accomodating different parts of product fast, use convenient, swift.
The present application is described with reference to flowchart illustrations and/or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of the application. It will be understood that each flow and/or block of the flow diagrams and/or block diagrams, and combinations of flows and/or blocks in the flow diagrams and/or block diagrams, can be implemented by computer program instructions. These computer program instructions may be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create means for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means which implement the function specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
In a typical configuration, a computing device includes one or more processors (CPUs), input/output interfaces, network interfaces, and memory.
The memory may include forms of volatile memory in a computer readable medium, Random Access Memory (RAM) and/or non-volatile memory, such as Read Only Memory (ROM) or flash memory (flash RAM). The memory is an example of a computer-readable medium.
Computer-readable media, including both non-transitory and non-transitory, removable and non-removable media, may implement information storage by any method or technology. The information may be computer readable instructions, data structures, modules of a program, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), Static Random Access Memory (SRAM), Dynamic Random Access Memory (DRAM), other types of Random Access Memory (RAM), Read Only Memory (ROM), Electrically Erasable Programmable Read Only Memory (EEPROM), flash memory or other memory technology, compact disc read only memory (CD-ROM), Digital Versatile Discs (DVD) or other optical storage, magnetic cassettes, magnetic tape magnetic disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information that can be accessed by a computing device. As defined herein, a computer readable medium does not include a transitory computer readable medium such as a modulated data signal and a carrier wave.
It should also be noted that the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in the process, method, article, or apparatus that comprises the element.
As will be appreciated by one skilled in the art, embodiments of the present application may be provided as a method, system, or computer program product. Accordingly, the present application may take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Furthermore, the present application may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, and the like) having computer-usable program code embodied therein.
The above are merely examples of the present application and are not intended to limit the present application. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims (10)

1. A method for accommodating product facade customization, comprising:
selecting height data and various posture data of the existing crowd;
establishing a linear relation formula of various posture data and height data of the existing crowd;
determining the height values of various products according to the selected customization mode, the linear relation formula of various posture data and height data of the existing crowd and the corresponding relation between the height values of various products and various posture data;
and determining the corresponding height of each part structure of the stored product according to the height values of various products and the designed styles of the stored products.
2. The customization method according to claim 1, wherein: before the height data and various types of posture data of the existing crowd are selected, a database is established, and the database comprises the height data and various types of posture data of the existing crowd.
3. The customization method according to claim 2, wherein: the database is classified according to gender or age, height data and various body state data of the existing crowd are selected according to different classifications, and database data of different classifications are selected.
4. The customization method according to claim 1, wherein: the various body state data comprise the height of the shank of the human body, the height of the feet, the height of the sitting posture and the elbow, the height of the standing posture and the eyes, the visual field distance and the height value of the highest point of the extending hand of the human body in the vertical state.
5. The customization method according to claim 1, wherein: the height values of various products comprise five height values of H1-H5, the corresponding relation between the height values of various products and various posture data comprises a shank height plus foot height value corresponding to the H1 height value, a sitting posture elbow height value corresponding to the H2 height value, a human eye height plus visual field distance value corresponding to the H4 height value, an H3 height value which is the central value of the H2 and H4 height values, and a highest point value corresponding to the H5 height value in the state of extending hands of a person in the upright state.
6. The customization method according to claim 1, wherein: the customization mode comprises two modes, namely a full customization mode and a universal customization mode.
7. The customization method according to claim 6, wherein: if the complete customization mode is selected, determining five height values of H1-H5 according to the selected customization mode, a linear relation formula of various height data and height data of the existing crowd and a corresponding relation between five height values of H1-H5 and various height data specifically comprises inputting height data of a user, substituting the linear relation formula of various height data and height data into the height data of the user to calculate various height data of the corresponding user, and obtaining five height values of H1-H5 according to the corresponding relation between five height values of H1-H5 and various height data.
8. The customization method according to claim 6, wherein: if the universal customization mode is selected, determining five height values of H1-H5 specifically comprises the steps of carrying out data processing on the height data of the existing crowd obtained in the step S2 to obtain specific values corresponding to all percentiles of the height data according to the selected customization mode, a linear relation formula of all types of posture data and height data of the existing crowd and the corresponding relation between the five height values of H1-H5 and all types of posture data; according to the characteristics of H1-H5, specific values corresponding to different percentiles of height data are selected, then the specific values corresponding to the percentiles selected by H1-H5 are substituted into a linear relation formula of various posture data and height data of the existing crowd, corresponding various posture data are obtained through calculation, and further corresponding five height values of H1-H5 are obtained.
9. The customization method according to claim 8, wherein: the specific values corresponding to different percentiles of the height data are selected according to the characteristics of H1-H5, and the specific values corresponding to P40-P60 percentiles are selected according to the H1 height value, the specific values corresponding to P90-P100 percentiles are selected according to the H2 height value and the H4 height value, and the specific values corresponding to P90-P100 percentiles are selected according to the H5 height value.
10. A system for customizing the inside of a storage product comprises
The database is used for storing height data and various body state data of the existing crowd;
the data selection module is used for selecting height data and various body state data of existing people in different groups from the database;
the formula calculation module is used for performing linear fitting and calculation on the selected height data of the existing crowd and various posture data to obtain a linear relation formula between the height data and the various posture data;
the judging module is used for judging which customization mode is selected, and further selecting different calculation methods according to different modes, wherein the customization modes comprise a complete customization mode and a general customization mode;
the calculation module is used for determining the height values of various products according to the customization mode judged by the judgment module, the linear relation formulas of various body state data and height data of the existing crowd and the corresponding relation between the height values of various products and various body state data;
and the application module is designed, and the corresponding height of each part structure in the stored product is determined according to the designed style of the stored product and the height values of various products obtained by the calculation module.
CN202010680028.XA 2020-07-15 2020-07-15 Method and system for customizing vertical face of stored product Pending CN112084221A (en)

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