WO2002080065A1 - System for accepting order of three-dimensional model - Google Patents

System for accepting order of three-dimensional model Download PDF

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Publication number
WO2002080065A1
WO2002080065A1 PCT/JP2002/002881 JP0202881W WO02080065A1 WO 2002080065 A1 WO2002080065 A1 WO 2002080065A1 JP 0202881 W JP0202881 W JP 0202881W WO 02080065 A1 WO02080065 A1 WO 02080065A1
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Prior art keywords
order
computer
dimensional model
manufacturing
information
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PCT/JP2002/002881
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French (fr)
Japanese (ja)
Inventor
Takafumi Nakayama
Hitoshi Kihara
Nobuyuki Kondou
Tatsuyuki Nakagawa
Naoya Ishikawa
Yoshiaki Noguchi
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Sanyo Electric Co., Ltd.
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Publication of WO2002080065A1 publication Critical patent/WO2002080065A1/en

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/08Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
    • G06Q10/087Inventory or stock management, e.g. order filling, procurement or balancing against orders

Definitions

  • the present invention relates to an order receiving system for a three-dimensional model in a case where a shape of a three-dimensional object and a texture such as a Z or a color and a pattern of the three-dimensional object are taken in as data and a three-dimensional model is created based on the data. .
  • this technology has been used to receive three-dimensional objects from customers at stores, receive orders, manage the order information, manufacture the products, and deliver them to customers after completion (hereinafter referred to as the “three-dimensional model order receiving system”).
  • three-dimensional model order receiving system has been implemented.
  • an object of the present invention is to provide an order receiving system for a three-dimensional model that can improve the efficiency of indirect operations and is convenient for customers.
  • the three-dimensional model order receiving system of the present invention communicates between a reception computer deployed in a store, an order management computer deployed in a management department of a business operator, and a manufacturing management computer deployed in a manufacturing department of the business entity.
  • System connected by line The store is equipped with a three-dimensional video input device, and is capable of performing the following processes (a) to (d).
  • the order management computer registers the input order contents and transmits the order contents to the manufacturing management computer.
  • the production management computer instructs production based on the contents of the order and manages the production process.
  • the order management computer receives the report of the manufacturing process from the manufacturing management computer and manages the manufacturing progress status.
  • the order receiving system may allow a customer to confirm the management contents of the order receiving computer by using a reception computer at the store or another computer.
  • customers can check ordering information (eg, ordering contents, three-dimensional model data based on the ordering contents, expected completion image, progress status), make inquiries, etc. in a Web environment, thereby enhancing customer service. it can.
  • the customer may be able to correct or add the ordered information using the reception computer at the store or another computer. According to this, the customer can easily modify and add the model while viewing the expected image and the like, so that the system is convenient for the customer.
  • the order details include customer information, and the customer information is used for manufacturing a three-dimensional model.
  • operations such as assigning a customer name to a three-dimensional model can be managed efficiently.
  • Figure 1 is a conceptual diagram of the 3D model order receiving system.
  • FIG. 2 is a block diagram of the video input device 30 and the reception computer 31.
  • FIG. 3 is a diagram showing how a computer 37 installed at home corrects or adds an ordered content.
  • FIG. 4 is a perspective view showing a cylindrical body 50 for acquiring shape information of a three-dimensional model.
  • FIG. 5 is a perspective view showing a state in which an object image 38 of a projected image is projected onto a cylindrical body 50 from a camera.
  • FIG. 1 is a conceptual diagram showing a three-dimensional model order receiving system of the present invention.
  • the thin line with an arrow represents a data communication line
  • the thick line represents a delivery route.
  • the company implementing this system has multiple stores, a management department (sales office), and a manufacturing department (factory).
  • the store is provided with a three-dimensional model video input device 30 and a reception computer 31.
  • the management department is provided with a management computer 32 for performing order management processing and a server 33 for storing various data.
  • the manufacturing department is equipped with a manufacturing process computer 34 for manufacturing a three-dimensional model, an inspection device 35 for inspecting products, and a shipping unit 36 for shipping products after the inspection is passed.
  • FIG. 2 is a block diagram of the video input device 30 and the reception computer 31.
  • the video input device 30 includes the camera 2 and the turntable 3. While rotating the three-dimensional object 1, images are taken with the camera 2 from the front, back, right, left, etc., and each projected image is created. Thereby, the shape information (modeling data) and the shading information (texture data) of the three-dimensional object 1 are obtained.
  • the three-dimensional model is placed in a cylindrical body 50 having a central axis 51, and the cylindrical body 50 is divided into unit areas (poxels) 52 in cylindrical coordinates.
  • the object image 3 8 in the projected image 3 9 A conical region (referred to as a hypothetical existence region) 53 whose cross-sectional shape is determined.
  • Vote “1” in the hypothetical existence area in the cylinder 50 porting process.
  • Such a voting process is also performed on projected images from a plurality of directions where each force lens is installed. Then, the number of votes is added for each poxel 52.
  • a threshold value is set, and a portion having the number of votes equal to or larger than the threshold value is defined as a three-dimensional shape of a three-dimensional model (see Japanese Patent Application Laid-Open No. 10-124704).
  • the grayscale information can be obtained by applying the luminance value appearing in the projected image 38 captured by the camera to the surface of the three-dimensional shape.
  • a reception computer 31 is connected to a management computer 32 and a server 33 of a management section by a data communication line.
  • the management computer 32 and the server 33 are connected to the manufacturing process computer 34 of the manufacturing department and the computer 35 of the inspection device by a data communication line.
  • Products shipped from the shipping department 36 are delivered by the delivery company directly to stores or to customers.
  • the customer inputs the image of the three-dimensional object through the video input device 30 by operating the reception computer 31 at the store, and opens the web screen of the management computer 32 to obtain the customer information, Specify the type of the solid model to be requested (for example, materials such as resin and glass, cutting, embossing, and molding methods such as laser processing), and specify the desired delivery date.
  • the type of the solid model to be requested for example, materials such as resin and glass, cutting, embossing, and molding methods such as laser processing
  • the management computer 32 issues a reception confirmation message such as an order number and a delivery date to the customer, and registers the order contents and customer information in the server 33. Then, the contents of the order are transmitted to the manufacturing process computer 34.
  • the manufacturing process computer 34 instructs manufacturing based on the contents of the order, and manages the manufacturing process. If necessary, create an image of the expected completion.
  • the reception computer 31 receives the report of the manufacturing process from the manufacturing process computer 34 and manages the progress of the manufacturing process. For example, if the delivery date changes, we will also receive that information.
  • the customer can check the information ordered, check the status of Shinscheok, check the exact delivery date, etc. using the reception computer 31 at the store or a computer installed at home.
  • the customer can use the reception computer 31 at the store or a computer installed at home or the like to view the expected image and correct or add the ordered content.
  • FIG. 3 is a diagram showing how a computer 37 installed at home corrects or adds an ordered content.
  • the expected completion screen 5 is displayed, and the customer makes corrections, adds a background, and the like on this screen 5.
  • the contents of the correction and addition are sent to the management computer 32, where the contents of the order are corrected and added, and the change is registered in the server 33.
  • the changed content is transmitted to the manufacturing management computer 34, and the manufacturing process is changed.
  • the customer can view the completion prediction screen 5 and make corrections, add backgrounds, and change the type of the three-dimensional model, change the number of added models, cancel, change the payment receiving method, and the like.
  • Various other changes can be made within the scope of the present invention.

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Abstract

A three-dimensional model order accepting system can manage information on orders of three-dimensional models in a centralized manner by means of an order acceptance managing computer (32), and other departments can read, register, alter, and updated the information. A client can, by using a counter computer (31) in a shop or another computer, confirm or inquire about the order information (e.g., the order contents, three-dimensional model data based on the order contents, an expected image of the finished model, and process) in a WEB environment. The indirect works can be made efficient to provide various kinds of highly accurate information promptly to the client (Fig.1).

Description

明 細 書 立体モデルの受注システム  Description Order system for 3D models
<技術分野 >  <Technical field>
本発明は、 立体物の形状及び Z又は立体物の色、 模様などのテクスチユア をデータとして取り込んで、 そのデータに基づいて立体モデルを作成する場 合の、 その立体モデルの受注システムに関するものである。  The present invention relates to an order receiving system for a three-dimensional model in a case where a shape of a three-dimensional object and a texture such as a Z or a color and a pattern of the three-dimensional object are taken in as data and a three-dimensional model is created based on the data. .
<背景技術 > <Background technology>
立体物を多角度から写真撮影して、 立体物のモデリングデータ及びテクス チユアデータを合成し、 それらのデータに基づいて、 樹脂、 ガラス等を加工 して、 立体モデルを作成する技術が知られている。  There is known a technique of taking a photograph of a three-dimensional object from various angles, synthesizing modeling data and texture data of the three-dimensional object, processing resin, glass, etc. based on the data, and creating a three-dimensional model. .
従来、 この技術を利用して、 店頭で顧客から立体物を受付け、 受注し、 そ の受注情報を管理して、 製造し、 完成後顧客に配送する事業 (以下 「立体モ デルの受注システム」 という) が実施されている。  Conventionally, this technology has been used to receive three-dimensional objects from customers at stores, receive orders, manage the order information, manufacture the products, and deliver them to customers after completion (hereinafter referred to as the “three-dimensional model order receiving system”). Has been implemented.
前述の立体モデルの受注システムでは、 店頭、 営業部門、 製造部門の各情 報、 例えば、 顧客からの注文情報、 顧客管理情報、 製造プロセス情報、 製造 進渉情報、 納期情報等は、 店頭、 営業部門、 製造部門の各部門で個別に管理 され、 情報の伝達は、 電話やファクシミリ、 電子メールで行われていた。 こ のため、 各部門同士の迅速、 正確な情報提供が行われず、 間接業務の効率化 力愚図れなかった。 これが納期の長期化につながり、 顧客の要望に応じられな いこともあった。  In the three-dimensional model order receiving system described above, information on stores, sales departments, and manufacturing departments, such as order information from customers, customer management information, manufacturing process information, manufacturing progress information, delivery date information, etc. Departments and manufacturing departments were individually managed, and information was transmitted by telephone, facsimile, and e-mail. As a result, information was not provided promptly and accurately between departments, and the efficiency of indirect operations could not be improved. This led to prolonged delivery times, and sometimes made it impossible to respond to customer requests.
また、 顧客にとって、 注文した内容の確認、 出来上がり予想を見てのモデ ルの修正や追加、 支払いや送付方法の変更がスムーズに行えなかった。 そこで、 本発明は、 間接業務の効率化が図れ、 かつ、 顧客にとっても便利 な立体モデルの受注システムを提供することを目的とする。  In addition, customers could not confirm order contents, correct or add models based on expected results, or change payment and delivery methods. Therefore, an object of the present invention is to provide an order receiving system for a three-dimensional model that can improve the efficiency of indirect operations and is convenient for customers.
<発明の開示 > <Disclosure of Invention>
本発明の立体モデルの受注システムは、 店頭に配備された受付コンピュー タと、 事業者の管理部門に配備される受注管理コンピュータと、 事業者の製 造部門に配備される製造管理コンピュータとを通信回線でつないだシステム であって、 店頭には立体物の映像入力装置が備えられ、 次の (a)〜(d)の処理 が可能であることを特徴とする。 The three-dimensional model order receiving system of the present invention communicates between a reception computer deployed in a store, an order management computer deployed in a management department of a business operator, and a manufacturing management computer deployed in a manufacturing department of the business entity. System connected by line The store is equipped with a three-dimensional video input device, and is capable of performing the following processes (a) to (d).
(a)顧客は、受付コンピュータの操作により、立体物の画像を、映像入力装 置を通して入力するとともに、製作依頼する立体モデルの種類の指定を行う。  (a) The customer inputs the image of the three-dimensional object through the video input device by operating the reception computer, and specifies the type of the three-dimensional model requested to be produced.
(b)受注管理コンピュータは、入力された受注内容を登録し、その受注内容 を製造管理コンピュータに送信する。  (b) The order management computer registers the input order contents and transmits the order contents to the manufacturing management computer.
(G)製造管理コンピュータは、受注内容に基づき製造の指示をし、製造プロ セスを管理する。  (G) The production management computer instructs production based on the contents of the order and manages the production process.
(d)受注管理コンピュータは、製造管理コンピュータから製造プロセスの報 告を受け、 製造進埗状況を管理する。  (d) The order management computer receives the report of the manufacturing process from the manufacturing management computer and manages the manufacturing progress status.
この立体モデルの受注システムであれば、 各種情報を、 受注管理コンビュ ータにおいて、 一括管理し、 他の部門からは、 情報の閲覧、 登録、 変更、 更 新を行うことができる。  With this three-dimensional model order receiving system, various information can be collectively managed by an order management computer, and information can be viewed, registered, changed, and updated from other departments.
従って、 間接業務の効率化が図れ、 顧客に対して迅速で精度の高い各種情 報を提供することができる。  Therefore, the efficiency of indirect operations can be improved, and various kinds of information can be provided quickly and accurately to customers.
また、 本受注システムは、 顧客から、 店頭の受付コンピュータ又は他のコ ンピュータにより、 受注管理コンピュータの管理内容の確認ができるように してもよい。 これにより、 顧客から、 ウェブ環境の下で発注情報 (例えば、 発注内容、 発注内容に基づく立体モデルデータ、 出来上がり予想画像、 進埗 状況)の確認、問い合せ等ができ、顧客サービスを充実させることができる。 また、 顧客は、 店頭の受付コンピュータ又は他のコンピュータにより、 発 注した情報の修正、追加ができるようにしてもよい。これによれば、顧客は、 出来上がり予想画像等を見ながら、簡単にモデルの修正、追加ができるので、 顧客にとって便利なシステムとなる。  In addition, the order receiving system may allow a customer to confirm the management contents of the order receiving computer by using a reception computer at the store or another computer. As a result, customers can check ordering information (eg, ordering contents, three-dimensional model data based on the ordering contents, expected completion image, progress status), make inquiries, etc. in a Web environment, thereby enhancing customer service. it can. In addition, the customer may be able to correct or add the ordered information using the reception computer at the store or another computer. According to this, the customer can easily modify and add the model while viewing the expected image and the like, so that the system is convenient for the customer.
なお、 前記受注内容に、 顧客情報が含まれ、 当該顧客情報が立体モデルの 製造に活用されることが好ましい。 このシステムであれば、 例えば、 立体モ デルに顧客の名前を付けるといった作業の管理が、 効率的に行える。  It is preferable that the order details include customer information, and the customer information is used for manufacturing a three-dimensional model. With this system, operations such as assigning a customer name to a three-dimensional model can be managed efficiently.
以下、 本発明の実施の形態を、 添付図面を参照しながら詳細に説明する。 <図面の簡単な説明 > 図 1は、 立体モデルの受注システムの概念図である。 Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings. <Brief description of drawings> Figure 1 is a conceptual diagram of the 3D model order receiving system.
図 2は、映像入力装置 3 0及び受付コンピュータ 3 1のブロック図である。 図 3は、 家庭に設置したコンピュータ 3 7により、 発注した内容の修正、 追加をする様子を示す図である。  FIG. 2 is a block diagram of the video input device 30 and the reception computer 31. FIG. 3 is a diagram showing how a computer 37 installed at home corrects or adds an ordered content.
図 4は、 立体モデルの形状情報を取得するための円筒体 5 0を示す斜視図 である。  FIG. 4 is a perspective view showing a cylindrical body 50 for acquiring shape information of a three-dimensional model.
図 5は、 カメラから、 投影画像の物体像 3 8を円筒体 5 0に投影している 状態を示す斜視図である。  FIG. 5 is a perspective view showing a state in which an object image 38 of a projected image is projected onto a cylindrical body 50 from a camera.
<発明を実施するための最良の形態 > <Best mode for carrying out the invention>
図 1は、 本発明の立体モデルの受注システムを示す概念図である。 図 1で は、 矢印付きの細線は、 データ通信回線を表し、 太線は、 配送経路を表して いる。  FIG. 1 is a conceptual diagram showing a three-dimensional model order receiving system of the present invention. In Fig. 1, the thin line with an arrow represents a data communication line, and the thick line represents a delivery route.
本システムを実施する事業者は複数の店頭、管理部門 (営業所)、製造部門 (工場) を有している。  The company implementing this system has multiple stores, a management department (sales office), and a manufacturing department (factory).
店頭には、 立体モデルの映像入力装置 3 0及び受付コンピュータ 3 1が備 えられている。 管理部門には、 受注管理処理をする管理コンピュータ 3 2が 備えられているとともに、 各種データを保存するサーバ 3 3が備えられてい る。 製造部門には、 立体モデルを製造する製造プロセスコンピュータ 3 4が 備えられ、 製品を検査する検査装置 3 5、 検査合格後製品を出荷する出荷部 3 6が備えられている。  The store is provided with a three-dimensional model video input device 30 and a reception computer 31. The management department is provided with a management computer 32 for performing order management processing and a server 33 for storing various data. The manufacturing department is equipped with a manufacturing process computer 34 for manufacturing a three-dimensional model, an inspection device 35 for inspecting products, and a shipping unit 36 for shipping products after the inspection is passed.
図 2は、映像入力装置 3 0及び受付コンピュータ 3 1のブロック図である。 映像入力装置 3 0は、 カメラ 2及び回転台 3を含んでいる。 立体物 1を回 転させながら正面、 背面、 右面、 左面等からカメラ 2で撮像し、 それぞれの 投影画像を作成する。 これにより立体物 1の形状情報 (モデリングデータ) 及び濃淡情報 (テクスチユアデータ) を得る。  FIG. 2 is a block diagram of the video input device 30 and the reception computer 31. The video input device 30 includes the camera 2 and the turntable 3. While rotating the three-dimensional object 1, images are taken with the camera 2 from the front, back, right, left, etc., and each projected image is created. Thereby, the shape information (modeling data) and the shading information (texture data) of the three-dimensional object 1 are obtained.
ここで、 立体物の形状情報及び濃淡情報を得る方法を、 図 4、 図 5を参照 して具体的に説明する。 立体モデルを、 中心軸 5 1を持つ円筒体 5 0の中に 入れ、 円筒体 5 0を、 円柱座標で表した場合の単位領域 (ポクセル) 5 2に 分割する。 カメラの投影中心 Cを頂点とし、 投影画像 3 9の中の物体像 3 8 を断面形状とする錐状の領域 (仮定存在領域という) 5 3を決定する。 円筒 体 5 0の中の仮定存在領域に「1」 を投票する (ポーティング処理)。 このよ うなボ一ティング処理を各力メラの設置された複数の方向からの投影画像に 対しても行う。 そして、 ポクセル 5 2ごとに、 投票数を加算する。 閾値を設 けて、この閾値以上の投票数を持つ部分を、立体モデルの立体形状とする(特 開平 10 - 124704号公報参照)。濃淡情報は、カメラで撮像した投影画像 3 8に 表れる輝度値を、 立体形状の表面に適用すれば、 得られる。 Here, a method for obtaining shape information and shading information of a three-dimensional object will be specifically described with reference to FIGS. The three-dimensional model is placed in a cylindrical body 50 having a central axis 51, and the cylindrical body 50 is divided into unit areas (poxels) 52 in cylindrical coordinates. With the camera projection center C as the vertex, the object image 3 8 in the projected image 3 9 A conical region (referred to as a hypothetical existence region) 53 whose cross-sectional shape is determined. Vote “1” in the hypothetical existence area in the cylinder 50 (porting process). Such a voting process is also performed on projected images from a plurality of directions where each force lens is installed. Then, the number of votes is added for each poxel 52. A threshold value is set, and a portion having the number of votes equal to or larger than the threshold value is defined as a three-dimensional shape of a three-dimensional model (see Japanese Patent Application Laid-Open No. 10-124704). The grayscale information can be obtained by applying the luminance value appearing in the projected image 38 captured by the camera to the surface of the three-dimensional shape.
図 1を参照して、 受付コンピュータ 3 1と、 管理部門の管理コンピュータ 3 2及びサーバ 3 3とは、 データ通信回線で結ばれている。 また、 管理コン ピュータ 3 2及びサーバ 3 3と、製造部門の製造プロセスコンピュータ 3 4、 検査装置のコンピュータ 3 5とは、 データ通信回線で結ばれている。 出荷部 3 6から出荷された製品は、 配送業者により、 店頭又は顧客に直接配送され る。  Referring to FIG. 1, a reception computer 31 is connected to a management computer 32 and a server 33 of a management section by a data communication line. The management computer 32 and the server 33 are connected to the manufacturing process computer 34 of the manufacturing department and the computer 35 of the inspection device by a data communication line. Products shipped from the shipping department 36 are delivered by the delivery company directly to stores or to customers.
以上のシステムにおいて、 顧客は、 店頭で、 受付コンピュータ 3 1の操作 により、 立体物の画像を、 映像入力装置 3 0を通して入力するとともに、 管 理コンピュータ 3 2のウェブ画面を開いて、 顧客情報、 製作依頼する立体モ デルのタイプ (例えば、 樹脂、 ガラスなどの素材、 切削、 型押し、 レーザ加 ェなどの成形方法) の指定、 希望納期の指定等を行う。  In the above system, the customer inputs the image of the three-dimensional object through the video input device 30 by operating the reception computer 31 at the store, and opens the web screen of the management computer 32 to obtain the customer information, Specify the type of the solid model to be requested (for example, materials such as resin and glass, cutting, embossing, and molding methods such as laser processing), and specify the desired delivery date.
管理コンピュータ 3 2は、 顧客に、 受注番号、 納期等の受付確認メッセ一 ジを出すとともに、 受注内容、 顧客情報をサーバ 3 3に登録する。 そして、 その受注内容を製造プロセスコンピュータ 3 4に送信する。  The management computer 32 issues a reception confirmation message such as an order number and a delivery date to the customer, and registers the order contents and customer information in the server 33. Then, the contents of the order are transmitted to the manufacturing process computer 34.
製造プロセスコンピュータ 3 4は、 受注内容に基づき製造の指示をし、 製 造プロセスを管理する。 また、 必要な場合は、 出来上がり予想画像を作成す る。  The manufacturing process computer 34 instructs manufacturing based on the contents of the order, and manages the manufacturing process. If necessary, create an image of the expected completion.
なお、 立体モデルの製造に際しては、 店頭で顧客が入力した顧客情報を活 用して、 例えば立体モデルに顧客の名前を刻印する、 ということもできる。 受付コンピュータ 3 1は、 製造プロセスコンピュータ 3 4から製造プロセ スの報告を受け、 製造進渉状況を管理する。 例えば納期が変更になる場合、 その情報も受ける。 顧客は、 店頭の受付コンピュータ 3 1又は家庭等に設置したコンピュータ により、 発注した情報の確認、 進陟状況、 正確な納期等の確認ができる。 ま た、 顧客は、 店頭の受付コンピュータ 3 1又は家庭等に設置したコンビユー タにより、出来上がり予想画像を見て、発注した内容の修正、追加ができる。 図 3は、 家庭に設置したコンピュータ 3 7により、 発注した内容の修正、 追加をする様子を示す図である。 When manufacturing a three-dimensional model, it is possible to use the customer information entered by the customer at the store to engrave the name of the customer on the three-dimensional model, for example. The reception computer 31 receives the report of the manufacturing process from the manufacturing process computer 34 and manages the progress of the manufacturing process. For example, if the delivery date changes, we will also receive that information. The customer can check the information ordered, check the status of Shinscheok, check the exact delivery date, etc. using the reception computer 31 at the store or a computer installed at home. In addition, the customer can use the reception computer 31 at the store or a computer installed at home or the like to view the expected image and correct or add the ordered content. FIG. 3 is a diagram showing how a computer 37 installed at home corrects or adds an ordered content.
コンピュータ 3 7の画面には、出来上がり予想画面 5が映し出されてあり、 顧客は、 この画面 5の上で、 修正、 背景の追加等をしている。 この修正、 追 加内容は、管理コンピュータ 3 2に送られ、ここにおいて、受注内容の修正、 追加がなされて、 サーバ 3 3に変更登録される。 そして、 その変更内容が製 造管理コンピュータ 3 4に送信され、 製造プロセスの変更が行われる。 以上で、 本発明の実施の形態を説明したが、 本発明の実施は、 前記の形態 に限定されるものではない。例えば、顧客は、出来上がり予想画面 5を見て、 修正、 背景の追加等ができるとともに、 立体モデルのタイプの変更、 追加個 数の変更、 キャンセル、 支払い受け取り方法の変更等をすることもできる。 その他本発明の範囲内で、 種々の変更を施すことが可能である。  On the screen of the computer 37, the expected completion screen 5 is displayed, and the customer makes corrections, adds a background, and the like on this screen 5. The contents of the correction and addition are sent to the management computer 32, where the contents of the order are corrected and added, and the change is registered in the server 33. Then, the changed content is transmitted to the manufacturing management computer 34, and the manufacturing process is changed. Although the embodiment of the present invention has been described above, the embodiment of the present invention is not limited to the above embodiment. For example, the customer can view the completion prediction screen 5 and make corrections, add backgrounds, and change the type of the three-dimensional model, change the number of added models, cancel, change the payment receiving method, and the like. Various other changes can be made within the scope of the present invention.

Claims

請 求 の 範 囲 The scope of the claims
1 . 店頭に配備された受付コンピュータと、 事業者の管理部門に配備される 受注管理コンピュータと、 事業者の製造部門に配備される製造管理コンビュ —タとを通信回線でつないだ立体モデルの受注システムであって、 店頭には立体物の映像入力装置が備えられ、 次の (a)〜 (d)の処理が可能で あることを特徴とする立体モデルの受注システム。 1. Receiving a three-dimensional model in which a reception computer deployed at the store, an order management computer deployed at the management department of the business operator, and a production management computer deployed at the manufacturing department of the business operator are connected by a communication line. An order receiving system for a three-dimensional model, characterized in that the system is equipped with a three-dimensional image input device at a store and can perform the following processes (a) to (d).
(a)顧客は、 受付コンピュータの操作により、立体物の画像を、映像入力装 置を通して入力するとともに、製作依頼する立体モデルの種類の指定を行う。  (a) The customer inputs the image of the three-dimensional object through the video input device and specifies the type of the three-dimensional model requested to be manufactured by operating the reception computer.
(b)受注管理コンピュータは、入力された受注内容を登録し、その受注内容 を製造管理コンピュータに送信する。  (b) The order management computer registers the input order contents and transmits the order contents to the manufacturing management computer.
(c)製造管理コンピュータは、受注内容に基づき製造の指示をし、製造プロ セスを管理する。  (c) The production management computer instructs production based on the contents of the order and manages the production process.
(d)受注管理コンピュータは、製造管理コンピュータから製造プロセスの報 告を受け、 製造進埗状況を管理する。  (d) The order management computer receives the report of the manufacturing process from the manufacturing management computer and manages the manufacturing progress status.
2 .顧客は、店頭の受付コンピュータ又は他のコンピュータにより、受注管理 コンピュータの管理内容の確認ができることを特徴とする請求項 1記載の立 体モデルの受注システム。  2. The standing model order receiving system according to claim 1, wherein the customer can confirm the management contents of the order receiving computer by a reception computer at the store or another computer.
3 .顧客は、店頭の受付コンピュータ又は他のコンピュータによリ、発注した 情報の修正、 追加ができることを特徴とする請求項 2記載の立体モデルの受 注システム。  3. The three-dimensional model ordering system according to claim 2, wherein the customer can correct or add the ordered information using a reception computer at the store or another computer.
4 .前記受注内容には、顧客情報が含まれ、当該顧客情報が立体モデルの製造 に活用されることを特徴とする請求項 1記載の立体モデルの受注システム。  4. The three-dimensional model order receiving system according to claim 1, wherein the order details include customer information, and the customer information is used for manufacturing a three-dimensional model.
PCT/JP2002/002881 2001-03-28 2002-03-26 System for accepting order of three-dimensional model WO2002080065A1 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000187683A (en) * 1998-03-11 2000-07-04 Toray Ind Inc Manufacture of clothing and accessory and device for supporting the same manufacture
JP2000246602A (en) * 1999-03-03 2000-09-12 Toray Ind Inc Method and device for managing material inventory information of article
JP2001060233A (en) * 2000-01-01 2001-03-06 Hitachi Ltd Order receiving production method

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000187683A (en) * 1998-03-11 2000-07-04 Toray Ind Inc Manufacture of clothing and accessory and device for supporting the same manufacture
JP2000246602A (en) * 1999-03-03 2000-09-12 Toray Ind Inc Method and device for managing material inventory information of article
JP2001060233A (en) * 2000-01-01 2001-03-06 Hitachi Ltd Order receiving production method

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