Fixture design method for adaptively modifying dimension information of fixture on basis of user's actual measurement information for distributor and hood duct, and fixture design system for performing same
The furniture design method addresses inconsistencies in interior architectural design by adapting dimensional information to actual measurements, ensuring precise furniture placement and alignment with the intended space.
Patent Information
- Application Number
- PCT/KR2025/005240
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-26
- Filing Date
- 2025-04-17
- Publication Date
- 2026-01-29
AI Technical Summary
Interior architectural design faces challenges due to inconsistencies between actual data and digital twin data, leading to issues during construction.
A furniture design method that adaptively modifies dimensional information based on actual measurement information from a user terminal, using a management server to align actual data with digital twin data, ensuring accurate furniture design.
Ensures that the designed furniture accurately fits the intended space by reflecting actual measurement information, improving the alignment between actual and digital data.
Smart Images

Figure KR2025005240_29012026_PF_FP_ABST
Abstract
Description
A furniture design method for adaptively modifying the dimensional information of furniture based on the user's actual measurement information for a distributor and a hood pipe, and a furniture design system for performing the same.
[0001] The present disclosure relates to a furniture design method for adaptively modifying dimensional information of furniture based on a user's actual measurement information for a distributor and a hood pipe, and a furniture design system that performs the same.
[0002] Interior architectural design, commonly referred to as "interior design," "furniture design," or "interior," refers to the design of interior spaces. It encompasses the planning and design of buildings and their furniture, tailored to their intended purpose and use. The challenge with interior architectural design lies in the need to select the most appropriate design for the actual structure and implement a suitable interior layout. However, most designs are undertaken for unbuilt or unconfirmed spaces, leaving insufficient information for the design process.
[0003] Meanwhile, a digital twin is a technology that creates a computerized replica of a real-world object and simulates potential real-world situations to predict outcomes. This digital twin is attracting attention as a technology that can solve problems not only in manufacturing but also in various industries and societies. Fundamentally, it is a combination of data and information that represents the structure, context, and operation of various physical systems, providing an interface for understanding past and present operational conditions and predicting the future.
[0004] Accordingly, ongoing efforts have been made to address issues in interior architectural design, such as furniture, through the integration of digital twins. However, the inconsistency between actual data and interior architectural design data has led to various problems during construction. Consequently, ongoing efforts have been made to ensure alignment between actual data and digital twin data.
[0005] The purpose of the present disclosure is to provide a furniture design method that adaptively modifies dimensional information of furniture based on actual measurement information for a distributor and a hood pipe in the design of furniture and the like.
[0006] A furniture design method performed by at least one processor according to the technical idea of the present disclosure may include a step of obtaining dimensional information on a target piece of furniture from a database, a step of receiving actual measurement information on a dispenser or a hood pipe from a user terminal, a step of modifying the dimensional information based on the actual measurement information, and a step of generating a blueprint for the target piece of furniture based on the dimensional information.
[0007] In one embodiment, the actual measurement information is distance information from the first wall to the water dispenser, and the step of modifying the dimensional information may include the step of determining a sink cabinet in which a sink bowl is placed among the target furniture based on the distance information, and the step of modifying the dimensional information so that the water dispenser is placed in the sink cabinet.
[0008] In one embodiment, the step of modifying the dimensional information so that the water dispenser is positioned in the sink may include the step of obtaining a second distance between a first side of the sink and the first wall and a second distance between a second side of the sink and the first wall from the database, the step of checking whether a shortest distance included in the distance information of the water dispenser is greater than or equal to the first distance, the step of checking whether a longest distance included in the distance information of the water dispenser is less than or equal to the second distance, and the step of modifying at least one of the first distance and the second distance so that the water dispenser is positioned inside the sink based on the distance information of the water dispenser.
[0009] In one embodiment, the actual measurement information is a third distance from the first wall to the hood pipe, and the step of modifying the dimensional information based on the actual measurement information may include a step of determining a hood cabinet in which a hood is placed among the target furniture based on the third distance, a step of determining a range cabinet in which a heating device is placed among the target furniture based on the third distance, and a step of modifying the dimensional information so that the center of the hood cabinet and the center of the range cabinet are aligned.
[0010] In one embodiment, the third distance may be characterized as being a distance from the first wall to the center of the hood tube.
[0011] In one embodiment, the step of modifying the dimensional information so that the center of the hood field and the center of the range field are aligned may include the steps of obtaining a fourth distance between the center of the range field and the first wall from the database, obtaining a horizontal length of a lower section between the range field and the first wall from the database, and deducting or increasing the horizontal length of the lower section between the lower section by a difference between the third distance and the fourth distance.
[0012] In one embodiment, the step of modifying the dimensional information based on the measured information may further include the step of obtaining the horizontal length of the hood field from the database, the step of obtaining the horizontal length of the range field from the database, and the step of modifying the horizontal length of the range field to be less than or equal to the horizontal length of the hood field.
[0013] A server for performing a furniture design method according to the technical idea of the present disclosure includes a memory storing a computer program for the furniture design method and a processor for performing the furniture design method based on the computer program, and the furniture design method may include a step of obtaining dimensional information for a target piece of furniture from a database, a step of receiving actual measurement information for a distributor or a hood pipe from a user terminal, a step of modifying the dimensional information based on the actual measurement information, and a step of generating a design drawing for the target piece of furniture based on the dimensional information.
[0014] According to the technical idea of the present disclosure, when designing furniture, etc., by adaptively modifying the dimensional information of the furniture based on the actual measurement information of the distributor and hood pipe provided by the user terminal, the data measured in actual reality can be reflected in the design, and accordingly, the same data as the actual can be reflected in the design drawing when designing the furniture.
[0015] FIG. 1 is a block diagram illustrating a furniture design system according to an exemplary embodiment of the present disclosure.
[0016] FIG. 2 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0017] FIG. 3 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0018] FIG. 4 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0019] FIG. 5 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0020] FIG. 6 shows a design drawing designed according to a furniture design method according to an exemplary embodiment of the present disclosure.
[0021] FIG. 7 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0022] FIG. 8 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0023] FIG. 9 shows a design drawing designed according to a furniture design method according to an exemplary embodiment of the present disclosure.
[0024] FIG. 10 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0025] FIG. 11 is a block diagram illustrating a computing system including a furniture design system according to an exemplary embodiment of the present disclosure.
[0026] A furniture design method performed by at least one processor according to the technical idea of the present disclosure may include a step of obtaining dimensional information on a target piece of furniture from a database, a step of receiving actual measurement information on a dispenser or a hood pipe from a user terminal, a step of modifying the dimensional information based on the actual measurement information, and a step of generating a blueprint for the target piece of furniture based on the dimensional information.
[0027] Hereinafter, preferred embodiments of the present disclosure will be described in detail with reference to the attached drawings. The advantages and features of the present disclosure, and methods for achieving them, will become clearer with reference to the embodiments described in detail below together with the attached drawings. However, the technical idea of the present disclosure is not limited to the following embodiments and may be implemented in various different forms. The following embodiments are provided only to complete the technical idea of the present disclosure and to fully inform those skilled in the art of the present disclosure of the scope of the present disclosure, and the technical idea of the present disclosure is defined only by the scope of the claims.
[0028] When assigning reference numerals to components in each drawing, it should be noted that identical components are assigned the same numerals whenever possible, even if they appear on different drawings. Furthermore, when describing the present disclosure, if a detailed description of a related known configuration or function is deemed likely to obscure the gist of the present disclosure, such detailed description will be omitted.
[0029] Unless otherwise defined, all terms (including technical and scientific terms) used herein may be used in the same sense as commonly understood by those of ordinary skill in the art to which this disclosure pertains. Furthermore, terms defined in commonly used dictionaries are not to be interpreted ideally or excessively unless explicitly and specifically defined otherwise. The terminology used herein is for the purpose of describing embodiments and is not intended to limit the disclosure. In this specification, singular forms also include plural forms, unless specifically stated otherwise.
[0030] Additionally, terms such as first, second, A, B, (a), (b), etc. may be used to describe components of the present disclosure. These terms are only intended to distinguish the components from other components, and the nature, order, or sequence of the components are not limited by the terms. When a component is described as being "connected," "coupled," or "connected" to another component, it should be understood that the component may be directly connected or connected to the other component, but another component may also be "connected," "coupled," or "connected" between each component.
[0031] As used herein, the terms “comprises” and / or “comprising” do not exclude the presence or addition of one or more other components, steps, operations and / or elements.
[0032] Components included in one embodiment and components with common functions may be described using the same designations in other embodiments. Unless otherwise stated, the descriptions provided in one embodiment may also apply to other embodiments, and specific descriptions may be omitted to the extent that they overlap or would be readily apparent to those skilled in the art.
[0033] Hereinafter, some embodiments of the present disclosure will be described in detail with reference to the attached drawings.
[0034] Hereinafter, the present disclosure will be described in detail with reference to preferred embodiments of the present disclosure and the attached drawings.
[0035] FIG. 1 is a block diagram illustrating a furniture design system according to an exemplary embodiment of the present disclosure.
[0036] Referring to FIG. 1, the furniture design system (10) may refer to a system that provides a blueprint (BP) that matches the actual size by modifying the dimensional information in the database based on the actual measurement information (IM) received from the user terminal (200). In the present specification, the dimensional information may represent various size information required to create a blueprint of furniture or space, and the actual measurement information (IM) may represent dimensional information that needs to be modified by the actual measurement provided to the user terminal (200). In one embodiment, the actual measurement information (IM) may include various actual measurement information regarding the location of a water distributor (e.g., the distance from a wall to a water distributor) and various actual measurement information regarding the location of a wall-fixed hood pipe (e.g., the distance from a wall to a hood pipe). The above-described water distributor may refer to a device that performs the role of branching and distributing water supplied from a water supply to each destination, and is mainly used in homes, commercial buildings, industrial facilities, etc. to perform efficient water distribution. Additionally, the hood pipe described above may be referred to as a hood duct, and may refer to a part of a ventilation system that is connected to the hood and serves to discharge smoke inside the space to the outside.
[0037] The database can store actual dimension information of actual furniture, actual space, etc. (e.g., blueprints of an actual apartment, blueprints of actual furniture), and can be stored in the memory of the management server (100) or stored outside the management server (100). The blueprint (BP) can represent 2D or 3D drawings required for designing furniture, and can include various drawings such as a development drawing, perspective drawing, 3D drawing, and floor plan of the furniture.
[0038] To this end, the furniture design system (10) may include a management server (100) and a user terminal (200). The management server (100) may collectively refer to a server that performs a furniture design method and an operating computer that operates the server. In one embodiment, the management server (100) may perform the furniture design method using an application program such as a website or an application, and the operation performed by the management server (100) or a component included in the management server (100) in this specification may actually be an operation performed by the processor of the management server (100) using an application program built into a storage device of the management server (100).
[0039] The storage device may include non-volatile memory, volatile memory, flash memory, a hard disk drive (HDD), or a solid-state drive (SSD). In addition, the processor may include at least one of a central processing unit (CPU), a graphic processing unit (GPU), a neural processing unit (NPU), random access memory (RAM), a read-only memory (ROM), a system bus, and an application processor.
[0040] The management server (100) can be connected to various devices (e.g., user terminals (200)) through a wired or wireless communication network, and the management server (100) can operate as a communication hub for various terminals. The user terminal (200) may refer to a terminal operated by a user who wishes to obtain 2D or 3D blueprint (BP) information based on actual measurement information (IM), and may be configured as any one of a laptop, a personal computer (PC), a navigation system, a personal communication system (PCS), a global system for mobile communications (GSM), a personal digital cellular system (PDC), a personal handyphone system (PHS), a personal digital assistant (PDA), an international mobile telecommunication (IMT)-2000, a code division multiple access (CDMA)-2000, a W-CDMA (W-Code Division Multiple Access), a wireless broadband internet (Wibro) terminal, a smart pad, a tablet PC, a cellular phone, and a smart phone.
[0041] The management server (100) can obtain information on the target furniture that is the object of the blueprint (BP) from the user terminal (200), and additionally obtain actual measurement information (IM) on the target furniture. The management server (100) can modify the dimensional information of the target furniture based on the actual measurement information (IM), and generate the blueprint (BP) based on the modified dimensional information.
[0042] To this end, the management server (100) may include a measurement information acquisition unit (110), a dimension information acquisition unit (120), and a design drawing generation unit (130). The dimension information acquisition unit (110) may acquire dimension information of the target furniture from a database based on information of the target furniture. In one example, the dimension information acquisition unit (110) may acquire address information for an apartment including the target furniture from a user terminal (200), and may acquire dimension information of the target furniture pre-stored in a database using the acquired address. In another example, the dimension information acquisition unit (110) may acquire dimension information by receiving all dimensions (e.g., number of cabinets, width, height, depth, distance to a wall, etc.) required for designing the target furniture from the user terminal (200). In another example, the dimension information acquisition unit (110) may receive an identifier (e.g., manufacturer and model name) that can identify the target furniture from the user terminal (200), and may acquire dimension information of the target furniture using the identifier from the database.
[0043] The dimension information modifying unit (120) can modify the dimension information using the actual measurement information (IM). In one example, the dimension information modifying unit (120) receives dimensions directly related to the target furniture as the actual measurement information (IM) (e.g., height, width, depth, distance to a wall, number of pieces of the target furniture, etc.) and can use these to modify the dimension information for the target furniture. In another example, the dimension information modifying unit (120) obtains dimensions not directly related to the target furniture (e.g., distance from a hood, distance from a faucet, window location) as the actual measurement information (IM) and can use these to modify the dimension information for the target furniture.
[0044] The blueprint generation unit (130) can generate a blueprint by modeling the target furniture using the modified dimensional information. In one example, the blueprint generation unit (130) can check whether the user specifies 2D / 3D and generate a 2D or 3D blueprint accordingly.
[0045] According to the technical idea of the present disclosure, a design drawing of furniture that matches the space in which the furniture is actually to be placed can be generated by adaptively modifying dimensional information about the target furniture using the actual measurement information (IM) acquired from the user terminal (200) by the management server (100).
[0046] FIG. 2 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure.
[0047] Referring to FIG. 2, the management server (100) may receive information about a target household from a user terminal (200) (S10). In one example, the management server (100) may receive information about public housing, and in another example, may receive information about a household model, etc. Based on the information about the target household, the management server (100) may obtain dimensional information about the target household from a database (S20). In one example, the dimensional information may include various information such as distance to a wall, distance from the ceiling, distance from the floor, height, width, and depth.
[0048] The management server (100) can receive actual measurement information (IM) for the distributor and hood pipe from the user terminal (200) (S30). The management server (100) can modify dimensional information to match the actual measurement based on the actual measurement information (IM) (S40). The management server (100) can generate a blueprint (BP) for the target furniture based on the modified dimensional information (S50).
[0049] FIG. 3 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, FIG. 3 illustrates the dimensional information modification step (S40) of FIG. 2 in detail.
[0050] Referring to FIG. 3, the management server (100) can modify the dimensional information for the lower cabinet based on the distance from the reference wall to the distributor (S410). The management server (100) can modify the dimensional information for the upper and lower cabinets based on the distance from the reference wall to the hood pipe (S420). In this specification, the reference wall may refer to a wall located on one side of the furniture for which dimensional information is to be modified.
[0051] According to one embodiment of the present disclosure, the management server (100) can modify the dimensional information of the furniture based on actual measurement information on elements other than the furniture, such as the distance to the distributor and the distance to the hood pipe, and as a result, the target furniture can be efficiently designed based on the dimensional information suitable for the space in which the furniture is to be located.
[0052] FIG. 4 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, FIG. 4 illustrates a step (S410) of modifying the dimensional information of a lower section based on the distance to the distributor of FIG. 3.
[0053] Referring to FIG. 4, the management server (100) receives distance information from the reference wall to the dispenser as actual measurement information (IM) from the user terminal, and can determine the sink area where the sink bowl is placed in the lower room (S411). The management server (100) can modify the dimension information so that the dispenser is placed in the sink area (S412).
[0054] Depending on the installation conditions of the water pipe, the distance between the water distributor and the reference wall is generally fixed. According to one embodiment of the present disclosure, the management server (100) acquires actual measurement information about the distributor and, based on this, adjusts the dimensional information of the sink cabinet where the sink bowl is placed, thereby adaptively modifying the dimensions of the target furniture so that the water distributor can be positioned within the sink cabinet. Consequently, the target furniture can be designed so that the user can smoothly supply water from the water distributor to the sink.
[0055] FIG. 5 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, FIG. 5 details a step (S412) of modifying dimensional information so that a dispenser is placed on the sink cabinet of FIG. 4.
[0056] Referring to FIG. 5, the management server (100) can obtain a first distance between the first side of the sink and the reference wall and a second distance between the second side of the sink and the reference wall from the database (S4121). In one example, the first side may represent a side of the sink where the sink bowl is positioned that is closer to the reference wall, and the second side may represent a side of the sink where the sink bowl is positioned that is farther from the reference wall. The management server (100) can check whether the shortest distance among the distance information of the dispenser is a value greater than or equal to the first distance (S4122). The management server (100) can check whether the longest distance among the distance information of the dispenser is a value less than or equal to the second distance (S4123).
[0057] The management server (100) can modify at least one of the first distance and the second distance so that the dispenser is located inside the sink based on the distance information of the dispenser (S4124). If the first distance is longer than the shortest distance, the management server (100) can modify the first distance to be shorter than the shortest distance, and in one example, the first distance can be modified to the shortest distance minus the offset value. If the second distance is shorter than the longest distance, the management server (100) can modify the second distance to be longer than the longest distance, and in one example, the second distance can be modified to the longest distance plus the offset value.
[0058] In one embodiment, the management server (100) can modify the numerical information in a form of increasing the sink size by modifying only one of the first distance and the second distance, and can modify the numerical information in a form of moving the position of the sink by modifying both the first distance and the second distance by the same value. According to one embodiment of the present disclosure, a design drawing suitable for each furniture characteristic can be produced by modifying the size and position of the sink in various ways depending on the position of the dispenser.
[0059] FIG. 6 shows a design drawing designed according to a furniture design method according to an exemplary embodiment of the present disclosure.
[0060] Referring to FIG. 6, the management server (100) can receive the shortest distance (ds) and the longest distance (dl) from the distributor (wd) to the reference wall (W1) as actual measurement information from the user terminal (200). The management server (100) can determine the sink length (FNs) based on the shortest distance (ds) and the longest distance (dl).
[0061] The management server (100) can obtain a first distance (d1), which is the distance between the left side of the sink (FNs) and the reference wall (W1), from the database, and can obtain a second distance (d2), which is the distance between the right side of the sink (FNs) and the reference wall (W1).
[0062] The management server (100) can check whether the shortest distance (ds) is greater than the first distance (d1) and whether the longest distance (dl) is less than the second distance (d2) (d1 <ds<dl<d2). 위 조건을 만족하지 않는 경우, 제1 거리(d1) 및 제2 거리(d2)를 미리 결정된 방법에 따라서 수정함으로써 최단 거리(ds)가 제1 거리(d1)보다 크고, 최장 거리(dl)가 제2 거리(d2)보다 작은 값이 되도록 할 수 있다. 이에 따라서 분배기(wd)가 싱크대 장 내부에 배치될 수 있다.
[0063] Fig. 7 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, Fig. 7 illustrates a step (S420) of modifying dimensional information of the upper and lower cabinets based on the distance from the reference wall of Fig. 3 to the hood pipe.
[0064] Referring to FIG. 7, the management server (100) may determine a hood section based on a third distance from the reference wall to the hood pipe (S421). The hood section may refer to a section of kitchen furniture in which a hood is located, and the management server (100) may determine an upper section located at a third distance from the reference wall as the hood section. In one embodiment, the third distance may be the distance from the reference wall to the center of the hood pipe.
[0065] The management server (100) can determine the range area based on the third distance (S422). The range area may refer to a kitchen cabinet where a heating appliance (e.g., a gas range, induction range, etc.) is placed, and the management server (100) can determine a lower cabinet placed at a third distance from the reference wall as the range area.
[0066] The management server (100) can modify the dimensional information so that the center of the hood and the center of the range are aligned (S423). In one example, the management server (100) can align the centers of the hood and the range by adjusting the position of the range.
[0067] It is common for a hood pipe to be fixed to the wall from the time of apartment design, and a heating device must be located under the hood so that pollutant gases generated by the heating device can be exhausted by the hood. According to one embodiment of the present disclosure, the management server (100) obtains actual measurement information regarding the distance to the hood pipe, and based on this, adjusts the dimension information of the lower part, thereby adaptively modifying the dimensions of the target furniture so that the heating device can be placed under the hood, and as a result, the target furniture can be designed so that exhaust can be performed smoothly.
[0068] FIG. 8 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, FIG. 8 details a step (S423) of modifying dimensional information so that the center of the hood section and the center of the range section of FIG. 7 are aligned.
[0069] Referring to FIG. 8, the management server (100) can obtain the fourth distance between the center of the range field and the reference wall from the database (S4231). The management server (100) can obtain the horizontal length (or width) of the lower section between the range field and the reference wall (S4232). The management server (100) can increase or decrease the horizontal length of the lower section between the range field and the reference wall based on the difference between the third distance and the fourth distance, thereby aligning the center of the range field and the center of the hood field (S4233).
[0070] According to one embodiment of the present disclosure, the management server (100) can easily align the center of the hood field and the center of the side sub-field without controlling other dimensions by modifying the horizontal length of the side sub-field to adjust the position of the range field based on the fourth distance obtained from the database.
[0071] FIG. 9 shows a design drawing designed according to a furniture design method according to an exemplary embodiment of the present disclosure.
[0072] Referring to FIG. 9, the management server (100) can receive a third distance (d3), which is the distance from the center of the hood pipe (hp) to the reference wall (W2), as actual measurement information from the user terminal (200). The management server (100) can determine the upper section positioned at the third distance (d3) as the hood section (FNh), and can determine the lower section positioned at the third distance (d3) as the range section (FNr).
[0073] The management server (100) can obtain the second distance (d2) between the range field (FNr) and the reference wall (W2) from the database, and can obtain the width (dw) of the lower section (FNl) located between the range field (FNr) and the reference wall (W2). The management server (100) can make the third distance (d3) equal to the fourth distance (d4) by reducing or increasing the width (dw) of the lower section (FNl) of the range field (FNr) by the difference (d3-d4) between the third distance (d3) and the fourth distance (d4), and as a result, the center of the hood field (FNh) and the center of the range field (FNr) can be aligned.
[0074] Fig. 10 is a flowchart illustrating a furniture design method according to an exemplary embodiment of the present disclosure. Specifically, Fig. 10 details another embodiment (S420a) of a step of modifying dimensional information of the upper and lower cabinets based on the distance to the hood pipe of Fig. 7. S421a to S423a are identical or similar to S421 to S413 of Fig. 7, and therefore, their descriptions are omitted.
[0075] Referring to FIG. 10, the management server (100) can obtain the horizontal lengths of the hood and range fields from the database (S424a). The management server (100) can check whether the horizontal length of the range field is greater than the horizontal length of the hood field, and if the horizontal length of the range field is greater than the horizontal length of the hood field, modify the horizontal length of the range field so that the horizontal length of the range field is less than or equal to the horizontal length of the hood field.
[0076] To effectively absorb smoke from a heating device, the size of the hood (e.g., the hood) may need to be designed to be larger than the range (e.g., the range). According to one embodiment of the present disclosure, the management server (100) can design the range to have a shorter horizontal length than the hood, thereby allowing for the smoke to be effectively exhausted.
[0077] FIG. 11 is a block diagram illustrating a computing system including a furniture design system according to an exemplary embodiment of the present disclosure.
[0078] Referring to FIG. 11, the computing system (1000) may include a processor (1100), a memory device (1200), a storage device (1300), a power supply (1400), and an input / output device (1500). Meanwhile, although not shown in FIG. 11, the computing system (1000) may further include ports that can communicate with a video card, a sound card, a memory card, a USB device, etc., or communicate with other electronic devices.
[0079] In this way, the processor (1100), memory device (1200), storage device (1300), power supply (1400), and input / output device (1500) included in the computing system (1000) can perform the furniture design method according to embodiments of the technical idea of the present disclosure. Specifically, the processor (1100) can perform the furniture design method described above with reference to FIGS. 1 to 10 by controlling the memory device (1200), storage device (1300), power supply (1400), and input / output device (1500).
[0080] The processor (1100) can perform specific calculations or tasks. According to an embodiment, the processor (1100) may be a microprocessor or a central processing unit (CPU). The processor (1100) may communicate with a memory device (1200), a storage device (1300), and an input / output device (1500) via a bus (1600), such as an address bus, a control bus, and a data bus. According to an embodiment, the processor (1100) may also be connected to an expansion bus, such as a Peripheral Component Interconnect (PCI) bus.
[0081] The memory device (1200) can store data required for the operation of the computing system (1000). For example, the memory device (1200) can be implemented as DRAM, mobile DRAM, SRAM, PRAM, FRAM, RRAM, and / or MRAM. The storage device (1300) can include a solid state drive, a hard disk drive, a CD-ROM, etc. The memory device (1200) and the storage device (1300) can store a program related to the furniture design method described above with reference to FIGS. 1 to 10.
[0082] The input / output device (1500) may include input means such as a keyboard, keypad, mouse, etc., and output means such as a printer, display, etc. The power supply (1400) may supply an operating voltage required for the operation of the computing system (1000).
[0083] As described above, exemplary embodiments have been invented in the drawings and specifications. While specific terminology has been used to describe embodiments in this specification, it is used solely for the purpose of explaining the technical concept of the present disclosure and is not intended to limit the meaning or scope of the present disclosure as set forth in the claims. Therefore, those skilled in the art will understand that various modifications and equivalent embodiments are possible. Accordingly, the true technical protection scope of the present disclosure should be determined by the technical concept of the appended claims.
Claims
In a furniture design method performed by at least one processor, A step of obtaining dimensional information on target furniture from a database; A step of receiving actual measurement information about a distributor or hood pipe from a user terminal; A step of modifying the dimensional information based on the above measurement information; and A furniture design method comprising: a step of generating a blueprint for the target furniture based on the above dimensional information. In the first paragraph, The above measured information is the distance information from the first wall to the water distributor, The steps for modifying the above dimensional information are: A step of determining a sink counter in which a sink bowl is placed among the target furniture based on the distance information; A furniture design method comprising: a step of modifying the dimensional information so that the water dispenser is placed in the sink cabinet; In the second paragraph, The step of modifying the above dimensional information so that the above water distributor is placed in the above sink cabinet is: A step of obtaining a second distance between the first side of the sink and the first wall and a second distance between the second side of the sink and the first wall from the database; A step of checking whether the shortest distance included in the distance information of the water distributor is greater than or equal to the first distance; A step of checking whether the longest distance included in the distance information of the above water distributor is less than or equal to the second distance; and A furniture design method comprising: a step of modifying at least one of the first distance and the second distance so that the water dispenser is located inside the sink based on distance information of the water dispenser. In the first paragraph, The above measured information is the third distance from the first wall to the hood pipe, The step of modifying the dimensional information based on the above actual measurement information is: A step of determining a hood section in which a hood is to be placed among the target furniture based on the third distance; A step of determining a range in which a heating appliance is placed among the target furniture based on the third distance; and A furniture design method comprising: a step of modifying the dimensional information so that the center of the hood section and the center of the range section are aligned; In paragraph 4, A furniture design method, characterized in that the third distance is the distance from the first wall to the center of the hood pipe. In paragraph 4, The step of modifying the dimensional information so that the center of the hood section and the center of the range section are aligned is: A step of obtaining a fourth distance between the center of the range field and the first wall from the database; A step of obtaining the horizontal length of the lower wall between the range field and the first wall from the database; and A furniture design method comprising: a step of reducing or increasing the horizontal length of the lower section of the above-mentioned section by the difference between the third distance and the fourth distance; In paragraph 4, The step of modifying the dimensional information based on the above actual measurement information is: A step of obtaining the horizontal length of the hood section from the database; A step of obtaining the horizontal length of the range field from the database; A furniture design method further comprising a step of modifying the horizontal length of the above range field to be less than or equal to the horizontal length of the above hood field. In a server that performs a furniture design method, A memory storing a computer program for the above furniture design method; and A processor for performing the furniture design method based on the computer program; The above furniture design method is, A step of obtaining dimensional information on target furniture from a database; A step of receiving actual measurement information about a distributor or hood pipe from a user terminal; A step of modifying the dimensional information based on the above measurement information; and A server characterized by comprising a step of generating a blueprint for the target furniture based on the dimensional information.
Citation Information
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