Equipment manufacture supporting apparatus, equipment manufacture supporting method, and storage medium for equipment manufacture supporting program
09811895 · 2017-11-07
Assignee
Inventors
- Hisayoshi Fukai (Yokohama, JP)
- Hidemitsu Hohki (Fuchu, JP)
- Sachi Minami (Kawasaki, JP)
- Masashi Nishiyama (Kawasaki, JP)
Cpc classification
Y02P90/02
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02P90/30
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G06Q10/06
PHYSICS
G05B2219/31395
PHYSICS
International classification
G05B19/418
PHYSICS
Abstract
Providing an equipment manufacture supporting technique in which a plurality of departments that cooperate with one another can unify management of components constituting equipment. An equipment manufacture supporting apparatus including: a component information receiving unit that receives discrimination information and image information of each of components constituting equipment; an electronic code giving unit that gives an electronic code corresponding to the discrimination information; a component information registering unit that links and registers mutually connected components; an image receiving unit that receives imaged data of a plurality of components mounted on the equipment; an electronic code recognizing unit that recognizes the electronic codes respectively marked on the plurality of components, from the imaged data; and a connection determining unit that determines whether a connection relation of the plurality of components mounted on the equipment is right or wrong, on a basis of the electronic codes recognized from the imaged data.
Claims
1. An equipment manufacture supporting apparatus comprising: component information receiving means for receiving discrimination information and shape information of each of components constituting equipment, the discrimination information and the shape information being described in a design diagram illustrating a connection relation of one of the components; electronic code giving means for generating an electronic code corresponding to the discrimination information, each electronic code being configured to be attached on one of the components, respectively; component information registering means for registering component information, the component information being linked to the components, that are mutually connected, with the electronic code and the shape information according to the connection relation of the component illustrated in the design diagram; an image receiving means for receiving imaged data of a plurality of components of the equipment; an electronic code recognizing means for recognizing at least one of the electronic codes marked on the respective components in the imaged data; a shape recognizing means for recognizing a shape of at least one of the components included in the imaged data; and a connection determining means for determining whether the plurality of components of the equipment are properly connected, by matching the electronic codes recognized in the electronic code recognizing means and the shape of the component recognized in the shape recognizing means with the component information registered at the component information registering means.
2. The equipment manufacture supporting apparatus according to claim 1, wherein the electronic code recognizing means recognizes at least two of the electronic codes marked on two components in the imaged data; the shape recognizing means recognizes a shape of each of the two components; and the connection determining means determines whether the two components of the equipment are properly connected, by matching the two electronic codes recognized in the electronic code recognizing means and the two shapes of the two components recognized in the shape recognizing means with the component information registered at the component information registering means.
3. The equipment manufacture supporting apparatus according to claim 2, wherein the connection determining means determines whether a fastener connecting the two components of the equipment is present.
4. An equipment manufacture supporting apparatus according to claim 1, wherein the component information registering means registers supply information of each component with a link to the discrimination information, the supply information including a supplier, a model number, and delivery information.
5. An equipment manufacture supporting apparatus according to claim 4, comprising means for sending a number of orders of the component to the supplier accordance with the supply information.
6. An equipment manufacture supporting method comprising the steps of: receiving discrimination information and shape information of each of components constituting equipment, the discrimination information and the shape information being described in a design diagram illustrating a connection relation of one of the components; generating an electronic code corresponding to the discrimination information, each electronic code being configured to be attached to one of the components, respectively; registering component information, the component information being linked to the components that are mutually connected with the electronic code and the shape information according to the connection relation of the component illustrated in the design diagram; receiving imaged data of a plurality of components of the equipment; recognizing at least one of the electronic codes marked on the respective components in the imaged data and a shape of at least one of the components included in the imaged data; and determining whether the plurality of components of the equipment are properly connected, by matching the electronic codes and the shape of the component, both of that are recognized, with the component information.
7. The equipment manufacture supporting method according to claim 6, comprising: recognizing at least two of the electronic codes marked on two components in the imaged data; recognizing a shape of each of the two components; and determining whether the two components of the equipment are properly connected, by matching the two electronic codes and the two shapes with the component information.
8. The equipment manufacture supporting method according to claim 7, comprising: determining whether a fastener connecting the two components of the equipment is present.
9. The equipment manufacture supporting method according to claim 6, comprising: determining that the connection is improper; changing the connection; and re-determining whether the plurality of components of the equipment are properly connected.
10. An equipment manufacture supporting apparatus comprising: a component information interface that receives discrimination information and shape information of each of components constituting equipment, the discrimination information and the shape information being described in a design diagram illustrating a connection relation of one of the components; an electronic code generator that generates an electronic code corresponding to the discrimination information, each electronic code being configured to be attached to one of the components, respectively; a component information memory that registers component information, the component information being linked to the components, that are mutually connected, with the electronic code and the shape information according to the connection relation of the component illustrated in the design diagram; an image receiving interface that receives imaged data of a plurality of components of the equipment; an electronic code recognizing circuit configured to recognize at least one of the electronic codes marked on the respective component in the imaged data; a shape recognizing circuit configured to recognize at least one shape of the component included in the imaged data; and a connection determining circuit that determines whether the plurality of components of the equipment are properly connected, by matching the electronic codes recognized in the electronic code recognizing circuit and the shape of the component recognized in the shape recognizing circuit with the component information registered at the component information memory.
11. The equipment manufacture supporting apparatus according to claim 10, wherein the component information interface is configured to receive connecting position information, the connecting position information including a connecting portion of at least one of the components linked to a respective portion of the shape information, and the component information memory is configured to register the mutually connected components with a link to the connecting position information.
12. The equipment manufacture supporting apparatus according to claim 10, wherein the component information memory is configured to register supply information of each component with a link to the discrimination information of the component, and the equipment manufacture supporting apparatus further comprises: a retrieval circuit configured to retrieve information in the component information memory; and a list generating circuit configured to generate a list including at least one of the supply information or the discrimination information of at least one of the components retrieved with the retrieval circuit.
13. The equipment manufacture supporting apparatus according to claim 10, wherein the electronic codes comprise at least one of code symbols, markers, colors, or character strings.
14. The equipment manufacture supporting apparatus according to claim 10, wherein the electronic code recognizing circuit is configured to recognize at least two of the electronic codes marked on two components in the imaged data; the shape recognizing circuit is configured to recognize a shape of each of the two components; and the connection determining circuit is configured to determine whether the two components of the equipment are properly connected, by matching the two electronic codes recognized in the electronic code recognizing means and the two shapes of the two components recognized in the shape recognizing means with the component information registered at the component information registering means.
15. The equipment manufacture supporting apparatus according to claim 10, wherein the connection determining circuit is configured to determine whether a fastener connecting the two components of the equipment is present.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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DESCRIPTION OF EMBODIMENTS
(12) (First Embodiment)
(13) Hereinafter, embodiments of the present invention are described with reference to the attached drawings.
(14) As illustrated in
(15) Here, the equipment refers to instruments attached to buildings, various plants, and large-scale vehicles the insides of which a human enters for use. The components constituting such equipment are not detached in normal use, but can be replaced and repaired at the time of a breakdown or a periodic inspection, because the components are fixed by screwing or the like.
(16)
(17)
(18) In
(19) In the lists (
(20) The component information receiving unit 11 illustrated in
(21) The design department creates the design diagram (
(22) As illustrated in
(23) Position information of a portion in which components are connected to each other is linked to a portion of image information corresponding to the position information, but such a link may not be necessary in a case where the number of connected components is one, for example.
(24) Among these, the electronic codes are given by the electronic code giving unit 12 so as to respectively correspond to the pieces of discrimination information. As illustrated in
(25) A method of marking the electronic codes on the components is not limited to the illustrated code symbols. Alternatively, the electronic codes may be marked as markers, colors, or character strings.
(26) The component information registering unit 13 registers the component information inputted from the design department terminal 32 on the network 31, in association with the electronic code given thereto. In response to browse requests from terminals 32, 35, and 36 on the network 31, the component information registering unit 13 links and supplies: the component information (the discrimination information, the electronic code, or the position information) of a component to be browsed; and the component information (the discrimination information, the electronic code, or the position information) of another component connected to the component to be browsed.
(27) The image receiving unit 14 receives imaged data of mounted components that is imaged by a camera 34 at an equipment site 33, via the network 31.
(28)
(29) In addition to the case as illustrated in
(30) The electronic code recognizing unit 15 (
(31) An image discriminating unit 16 discriminates each component included in the imaged data (
(32) The connection determining unit 17 compares the pieces of shape data discriminated by the image discriminating unit 16 and the electronic codes recognized by the electronic code recognizing unit 15, with the pieces of component information registered in the component information registering unit 13, and determines whether the connection relation of the plurality of components mounted on the equipment is right or wrong.
(33) A determination result concerning whether the connection relation of the components is right or wrong is displayed on the on-site terminal 35 at the equipment site 33 via the network 31.
(34) The connection determining unit 17 can also determine whether or not the retaining screws 46 (
(35) An equipment manufacture supporting method in the first embodiment concerning modeled procedures from manufacture of a control panel to on-site installation thereof is described with reference to a flowchart of
(36) When the control panel is manufactured, the design department prepares the design diagram (
(37) Further, the design department inputs, from the terminal 32, the component information such as the discrimination information and the image information of each constituent component illustrated in the design diagram (S11).
(38) Data of the component information inputted from the terminal 32 is received by the apparatus 10 via the network 31, and a corresponding electronic code is given to the component information (S12). The component information to which the electronic code is given is registered in the component information registering unit 13 in a state where mutually connected components are linked to each other according to the connection relation of the constituent components illustrated in the design diagram (
(39) After the electronic code is given to the received component information, a code symbol corresponding to the electronic code can be marked and reflected on each component in the design diagram (
(40) The construction department automatically creates an assembly diagram (not illustrated) in which the code symbols are given for each constituent component, on the basis of the data registered in the component information registering unit 13. Meanwhile, as illustrated in
(41) Mutually connected mounted components do not necessarily need to be associated one-to-one with each other by electrically readable code symbols, and may be associated with each other by human-readable code symbols.
(42) In connection inspection work after the equipment is installed on site, the plurality of components mounted on the equipment are imaged by the camera 34 as illustrated in
(43) Then, the electronic code and the shape of each component are recognized from the imaged data (S22, S23), the recognition result is checked with reference to the component information registered in the component information registering unit 13 (S24), and it is determined whether the connection relation of the mounted components is right or wrong (S25).
(44) If the connection relation is right, the inspection work is ended (S26; Yes, S27). If the connection relation is wrong, the connection is changed, and re-inspection is performed (S26; No, S28, S29).
(45) Such inspection work is effective even in periodic component replacement, and facilitates management of an inspection history.
(46) (Second Embodiment)
(47) Next, a second embodiment of the present invention is described with reference to
(48)
(49) Components illustrated in the mounting region YY include: a thermocouple 95 that is a temperature sensor; compensating lead wires 93 and 94; a connector 84 for the thermocouple 95 and the compensating lead wires 93 and 94; and a thermoelectromotive detector 82 and a temperature signal converter 83 fixed to a substrate 81.
(50)
(51) In
(52) In the lists (
(53) In the second embodiment, as illustrated in
(54) Further, in the second embodiment, the apparatus 10 includes: a retrieval unit 18 that retrieves information registered in the component information registering unit 13; and a list generating unit 19 that generates a list in which the supply information or the discrimination information of each component is arranged in association with the information retrieved from the component information registering unit 13.
(55) For example, as illustrated in
(56) Then, the list generating unit 19 generates a list in which component information and/or supply information is displayed in a predetermined format in association with the retrieved information (supplier).
(57) An equipment manufacture supporting method in the second embodiment concerning modeled procedures by the procurement department based on component information created by the design department is described with reference to a flowchart of
(58) When a component is ordered, the procurement department inputs “supplier” as a retrieval key to the terminal 36 (S31). Data of the retrieval key is received by the apparatus 10 via the network 31, and is referred to by the component information registering unit 13 (S32). Consequently, a component information list is generated in a predetermined format, necessary information (the number of orders) is added to the component information list, and the component information list is sent to the supplier. In this way, ordering work is ended (S33).
(59) When the component is delivered from the supplier, inspection work can be efficiently performed (S34). This is because the code symbols 51 and 71 to 78 (
(60) According to the equipment manufacture supporting apparatus of at least one embodiment described above, because the code symbols are respectively given to the components constituting the equipment, it can be easily and accurately determined whether the connection relation of the components is right or wrong, on the basis of the discrimination information and the shape data of each component that are recognized from the imaged data of the component. Further, it is possible to unify management of wide-ranging manufacturing processes including equipment design, component procurement, component delivery, component installation, and maintenance.
(61) Some embodiments of the present invention have been described above, but these embodiments are given as mere examples and are not intended to limit the scope of the present invention. These embodiments can be carried out in various other modes, and can be variously omitted, replaced, changed, and combined within a range not departing from the gist of the present invention. These embodiments and modifications thereof are included in the scope and gist of the present invention, and are also included in the invention described in WHAT IS CLAIMED IS and a range equivalent thereto.
(62) Constituent elements of the equipment manufacture supporting apparatus can be achieved by a processor of a computer, and can be operated by an equipment manufacture supporting program.