The present invention relates to techniques of production control (management), EC (electronic commerce), EDI (electronic data exchange), electronic parts procurement, etc., and particularly relates to an information processing system (procurement quality improving system), etc. for improving procurement quality.
Examples of conventional techniques related to procurement quality improvement and so forth include Japanese Patent Application Laid-Open No. 2003-6524 (Patent Document 1) (“supplier evaluation system server”, etc.).
Patent Document 1 describes that, “in relation to a supplier evaluation system server, it is an object to automatically evaluate a supplier, to generate and output a screen useful for comprehensive determination, to support stable and effective selection of a purchase source, and to urge the supplier to make an improvement”. Also it is described that the supplier evaluation system server acquires data (electronic commerce data, etc.) from servers (EDI server, etc.), determines evaluation points respectively therefor, summarize the results thereof, generates a screen in accordance with a purpose based on the summarizing result, and transmits that, for example, to a terminal or a supplier system which has sent a request.
(QC Process Chart) A QC process chart is information created for controlling processes, quality, cost, lead time, etc. related to manufacturing of products such as electronic parts. Although depending on a format and so forth, the QC process chart includes information of, for example, products, manufacturing processes (for example, processes and order), equipment (machines), and control items.
(Process FMEA) Process FMEA (Process Failure Mode and Effects Analysis) is a type of FMEA (an FMEA focusing on process elements) and is a method of predicting and extracting problems (problems in processes, causes and mechanisms of failure occurrence, etc.) in advance by analyzing effects exerted on products by phenomena such as defects, variations, etc. occurring due to flaws/problems in processes. The process FMEA focuses on elements such as processes, humans, materials, equipment (machines), etc. in the environment for manufacturing the products and extracts failure modes, failure causes, etc. For example, human errors in the processes that require operations by humans are taken into consideration. The process FMEA uses information necessary for understanding manufacturing processes such as QC process charts.
Above-described Patent Document 1 describes a method of evaluating counterparties (procurement sources, suppliers) from viewpoints of quality, delivery date, etc. and urging an improvement if there is a problem(s).
However, in the improving method like that of Patent Document 1 for example, in which process a quality problem is expected to occur cannot be evaluated (such a function is not provided). Therefore, for example, which part or point (for example, which individual process) in the entire manufacturing processes (process flow) has a problem cannot be extracted or pointed out. More specifically, since a precise point-out or information presentation etc. cannot be provided to the counterparty (supplier) etc., procurement quality cannot be improved. Also, even in a case in which the counterparty (supplier) starts making an effort for quality enhancement/improvement (for example, re-examination of manufacturing processes), for example, from which point (for example, process) the problem should be solved is unknown; therefore, it is conceivable that progress is not made in procurement quality improvement as a result.
In view of the foregoing, it is a main preferred aim of the present invention to provide techniques by which information specifically pointing out quality problems in manufacturing processes (for example, in which points problems exist) can be provided to, for example, a supplier in relation to, for example, a procurement-product improving system, and the quality of procurement products (for example, parts produced by the supplier) can be therefore enhanced/improved.
To achieve the above-described preferred aims, a typical embodiment of the present invention is a procurement product improving system that carries out information processing related to improvement or control of quality of a procurement product and has a feature in having a configuration descried below.
The present procurement quality improving system includes a calculating device having a processing function of calculating problems (for example, key-point processes) in manufacturing processes (process flow) of the supplier and a data storage device that stores data information used in the calculation. The data storage device stores first information including information related to the manufacturing processes such as a QC process chart of the supplier and second information including quality-related information according to, for example, process FMEA. The calculating device includes a matching calculating unit that carries out a processing of association of the first information with the second information of the supplier and a first display calculating unit that carries out a processing of presenting (for example, screen display), to the supplier, information including the first information, information of a key-point process related to a quality problem in the manufacturing processes of the supplier, the information of the process calculated by the association, and information of the quality problem such as a corresponding failure mode and a failure cause according to the process FMEA.
According to the typical embodiment of the present invention, the information for specifically pointing out quality problems in the manufacturing processes can be presented to the supplier, and quality of procurement products can be enhanced/improved as a result.
Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings. Note that components having the same function are denoted by the same reference symbols throughout the drawings for describing the embodiment, and the repetitive description thereof will be omitted.
It is a preferred aim of a system (
A procurement quality improving system of the first embodiment of the present invention will be explained with reference to
[System]
As a detailed configuration of the system 1 of
The terminal 10 is a computer such as a PC used by the user (the buyer, the supplier, or someone else concerned) of the present system 1, and input/output, etc. of instructions and data information with respect to the present system 1 are carried out thereat. For example, in the terminal 10 of
The calculating unit 11 includes processing units such as: a matching calculating unit 111 (a calculating unit for associating the supplier QC process-chart information with the process FMEA information), a first display calculating unit 112 (a calculating unit for displaying the supplier QC process-chart information and corresponding failure-mode/failure-cause information), and a second display calculating unit 113 (a calculating unit for displaying the supplier QC process-chart information).
The data storage device 12 stores, as the data information, the supplier QC process-chart information D1, the process FMEA information D2, thesaurus information D3, supplier quality-level information D4, corresponding failure-mode/failure-cause information D5, supplier QC process-chart revised information D6, review result information D7, etc. in the storage region.
When the present processing function is to be utilized by the user, the matching calculating unit 111 carries out a processing of association (matching) of the supplier QC process-chart information D1 with the process FMEA information D2 (for the manufacturing processes of the same supplier) using output of the data (D1 to D4) stored in the data storage device 12, thereby calculating the information (D5) of the corresponding failure-mode/failure-cause (the information of quality problems based on the process FMEA). The result of the calculation is stored in the data storage device 112 as the corresponding failure-mode/failure-cause information D5.
The first display calculating unit 112 carries out a processing for presenting/showing information such as the supplier QC process-chart information D1 and the corresponding failure-mode/failure-cause information D5 to the supplier in the form of, for example, Web screen display. Note that the same information (for example, the screen) can be referenced not only by the supplier but also, for example, the buyer similarly by accessing from the terminal 10.
In addition, the first display calculating unit 112 creates the supplier QC process-chart revised information D6 based on the data information (revised (modified) information of D1) input by the supplier referencing the above-described presented information (D5, etc.) and stores the information D6 in the data storage device 12. The information is presented to, for example, the supplier.
In addition, the second display calculating unit 113 carries out a processing of presenting/showing information to the supplier (or the buyer including, for example, the above-described supplier QC process-chart revised information D6 and the corresponding failure-mode/failure-cause information D5). The second display calculating unit 113 presents not only D1 or D6 but also the corresponding failure-mode/failure-cause information D5 (information according to process FMEA) in combination to the supplier. By virtue of this, the supplier is capable of recognizing processes, etc. which are key points related to quality problems. The second display calculating unit 113 presents information (check status), for example, that whether the contents of the above-described presented information (information according to the process FMEA) have been checked or not to the supplier (or the buyer) and stores that information in the data storage device 12 as the review result information D7.
[Data Information]
[D1: Supplier QC Process-Chart Information]
[D2: Process FMEA Information]
T2 of
[D3: Thesaurus Information]
[D4: Supplier Quality-Level Information]
[D5: Corresponding Failure-Mode/Failure-Cause Information]
The corresponding failure-mode/failure-cause information D5 is stored as a processing result of the matching calculating unit 111 and is used as an input in the processing of the first display calculating unit 112. D5 is the information which is, for example, the failure-modes/failure causes obtained based on the process FMEA (process FMEA information D2) and related to quality problems of manufacturing processes of the supplier.
[D6: Supplier QC Process-Chart Revised Information]
[D7: Review Result Information]
The review result information D7 is stored as a processing result of the second display calculating unit 113. D7 includes the information similar to that shown in the screen (G2) of
[Processing Outline]
The processing outline of
(SA0, SB0) In SA0, input of the supplier QC process-chart information D1 from the supplier (B) is accepted (SB0) with respect to the screen (described later,
(SA1) In SA1, the matching calculating unit 111 carries out a matching processing using the data information of above-described D1 and D2 to D4 (in the data storage device 12). More specifically, a processing of associating the above-described input supplier QC process-chart information D1 with the process FMEA information D2 using the thesaurus information D3 and the supplier quality-level information D4.
(SA2) In SA2, the matching calculating unit 111 determines (computes) the corresponding failure-mode/failure-cause information D5 by the above-described matching processing and stores the information in the data storage device 12.
(SA3, SB3) In SA3, the first display calculating unit 112 carries out a processing of displaying the information of, for example, D1 and D5 on the screen (described later,
(SA4, SB4) Then, in SA4, the supplier (B) carries out, for example, re-examination of the manufacturing processes (corresponding QC process chart) referencing the presented information such as above-described D1 and D5 and inputs the supplier QC process-chart revised information D6 (modified-version information of D1) by the screen (G1) provided by the second display calculating unit 113 (SB4). When input of D6 by the screen (G1) is received, the second display calculating unit 113 stores the input information (D6) in the table (T6).
(SA5, SB5) In SA5, the second display calculating unit 113 displays the information of above-described D6 on the screen (G1). The supplier (B) can view the information by the screen (G1) and check the contents thereof (SB5). The buyer (A) can also view the information.
(SA6, SB6) Further thereafter, in SA6, based on viewing of the information such as above-described D6, the supplier (B) inputs the information of a check status(es) (information representing, for example, how much confirmations and measures have been carried out) corresponding to, for example, the information according to the process FMEA (for example, the presented corresponding failure-modes/failure causes) with respect to the screen (described later,
(SA7, SB7) Also after that, the buyer (A) and the supplier (B) can view and check the review result information D7 by the screen (G2) (SB7). The second display calculating unit 113 displays the information of above-described D7 on the screen (G2).
Between above-described SB3 and SB4 and between SB5 and SB6, there is time for, for example, problem recognition or improvement consideration by the user (supplier).
[Transaction Relation, Etc.]
For each supplier (B), the buyer (A) carries out a matching processing with respect to the information (D1) of the QC process chart (Q) of the supplier (B) by using the information (D2) of the corresponding process FMEA while using, for example, a process P as a key. Thus, the information (D5) of, for example, a point(s) (for example, the process P) in the process flow (F) having a problem(s) (quality problem) and the corresponding failure-modes/failure-causes related to the point (quality problem) is pointed out or presented to the supplier (B).
Based on the above-described configuration, hereinafter, an example of processing details of the present system 1 will be explained also with reference to screen examples (
First, in SA0 and SB0, the present system 1 provides the screen (G0) as illustrated in
[Screen (G0)]
For example, the product type of procurement (the product type of the procurement target product), the product number, the date of enactment, etc. can be input, for example, by input buttons of “a”. The information related to processes can be added by, for example, a row adding button of “b” or a process-element adding button of “c”. In the example of
When the information is input via the screen (G0), the table T1 of D1 as shown in
[Matching Processing]
Then, in above-described SA1, the matching processing shown in
(S11) First, in S11 of
(S12) Then, in S12, association by the search using the thesaurus information D3 is carried out. More specifically, the one(s) (word(s)) not allocated in S11 is subjected to exact search between the “similar words” of “b” in the table T3 of the thesaurus information D3 of
(S13) Then, in S13, the one(s) (word(s)) not allocated in S12 is subjected to association by a processing using a text mining method (for example, morphological analysis and cluster analysis) (publicly known techniques). First, the words are decomposed to minimum meaningful units of words such as single words and word classes by morphological analysis which is one type of natural language processing.
The “process elements” of “a” in T1 of
Then, the number of matching morphemes among the above-described “process elements” and “similar words” is counted, the distance(s) of thereof is calculated, and cluster analysis of determining similarity depending on the closeness of the distance is carried out. As a specific example of morpheme counting, each of “material” and “acceptance” is counted as one in process of “material acceptance” in T1. The gatherings of morphemes of the “process elements” of
As a calculating formula of the distance, a squared Euclidean distance, which is a typical example, is shown as the following Expression (1). The calculating method for the distance can be selected by the user. Notations represent D: distance, l: number of variables, x: variable, and i, j: sample names, respectively.
As a criterion of the similarity according to the closeness of the above-described cluster distance, for example, a dendrogram is created, and selection is made by the user.
As the calculating formula of the distance between the clusters in creation of the above-described dendrogram, the nearest neighbor method which is a typical calculation example is shown as the following Expression (2). Notations represent D: distance and a, b, c, f: clusters (c is an integrated cluster of a and b, and an arbitrary cluster is f).
[Mathematical Expression 2]
D
cf=min(Daf,Dbf) Expression (2)
In the above-described procedure, the supplier QC process chart (D1) and the process FMEA (D2) are associated by the morphological analysis and cluster analysis.
(S14) Then, in S14, the one(s) (word(s)) not allocated in S13 is allocated to the “process element” of “a” in T1 of
Through the above procedure, the matching processing (SA1) of the supplier QC process chart (D1) and the process FMEA (D2) using D1 to D4 is carried out.
Subsequently, in above-described SA2, in accordance with a level by which quality of the supplier can be maintained, a processing for presenting the information (D5) of failure modes and failure causes included in the process FMEA information D2 of
In that process, the information of “quality levels” of “b” in the table T4 of the supplier quality-level information D4 of
Then, in above-described SA4 etc., a processing of storing the information, which has been input by the screen (G1), in the table T6 of the supplier QC process-chart revised information D6.
[Screen (G2)]
Next, a second embodiment will be described with reference to
Each of the terminals (201, etc.) is a device provided with a processing function of carrying out electronic commerce of parts procurement and is, for example, a PC provided with a Web browser, etc. The terminal 201 of the company A side, for example, places an order about parts procurement to the first server 205. The terminal 202 of the company B side, for example, sends an order-accepting request about parts procurement to the first server 205. The terminal 201 of the company Aside has an order-placement information storage unit 211. The order-placement information storage unit 211 stores order-placement information according to the orderer (company A). The terminal 202 of the company B side has a QC process-chart/cost information storage unit 221. The QC process-chart/cost information storage unit 221 stores QC process-chart/cost information (for example, price) according to the order-accepting candidate (company B).
The first server 205 is a device using, for example, a Web server provided with a control function of electronic commerce of parts procurement and has a service processing unit 251, which provides services to access from the terminals (201, etc.).
The second server 206 is a procurement-quality control device provided with processing functions for improving/controlling parts procurement quality (including the processing functions provided by the system 1 of the first embodiment) and carries out processing linked with the first server 205. In response to a request from the first server 205, the second server 206 carries out processing and returns a result to the first server 205.
The second server 206 has a process FMEA information storage unit 261, a matching calculating unit 262 (a calculating unit for associating order-accepting-candidate QC process-chart information with process FMEA information), and a display calculating unit 263 (a calculating unit for displaying corresponding failure modes, failure causes, and cost).
(S200) In S200, the first server 205 (service processing unit 251) receives order-placement information (based on 211) such as drawings/specifications related to a procurement target product(s) from the terminal 201 of a user of an order-placing company (company A).
(S201) In S201, the first server 205 starts an auction (reception of order-accepting requests) related to the sent order of the above-described company A.
(S202) In S202, as the information of, for example, the order-accepting requests, the information (D1) of a supplier QC process-chart like T1 of above-described
(S203) In S203, a matching processing similar to the flow of above-described
(S204) In S204, the information related to order-accepting requests (auction) is presented from the server 205 to the user of the terminal 201 of the order-placing side (company A) by an order-placer determination screen (G21) as illustrated in
The order-placer determination screen (G21) of
The user of the order-placing company (company A) side can view/check, for example, the failure modes and failure causes of the order-accepting requests, respectively by, for example, pressing respective failure-mode viewing buttons of “d”. The server 205 shows, on a screen, the information such as the failure mode and failure cause of each order-accepting request in accordance with the above-described operation. The user can subject the information such as the number of corresponding failure modes of “b”, detailed information thereof and the prices of “c” to a comparison examination to select an order acceptor (supplier).
(S205) In S205, when the user in the order-placing company (company A) side presses an order-accepting button of “e” on the screen (G21), order acceptance (supplier) in the present auction is determined. Then, the present processing is terminated. By virtue of this, the orderer (company A) can procure (purchase) target parts from the order receiver (company B).
[Effects, Etc.]
As explained in the foregoing, according to the respective embodiments, the information that specifically and appropriately points out quality problems in the manufacturing processes of the supplier(s) can be provided from the buyer (or orderer) to the supplier(s) (or order-accepting candidate(s)). The supplier(s) can recognize the quality problems in the manufacturing processes by viewing the information on a screen, and measures such as reviewing of the manufacturing processes (specifically, modification of the QC process chart) can be easily taken. The buyer can also check the state of the supplier(s) by viewing the information on the screen. By virtue of this, the manufacturing processes of the supplier(s) can be improved, and prevention of problem occurrence, quality improvement of procurement products, etc. can be achieved. Furthermore, in the second embodiment, procurement (order-placement) can be discussed by comparing the above-described information about the options (order-accepting candidates) of the plurality of suppliers on the screen.
Hereinabove, the invention accomplished by the present inventor has been explained in detail based on the embodiments. However, the present invention is not limited to the above-described embodiments, and it goes without saying that various modifications can be made without departing from the gist thereof.
In the above-described first embodiment, in relation to the matching processing, association of the process information of the buyer (A) and the supplier (B) has been carried out by the searching/matching of words. However, as a modification example, when the process information, etc. of both of them (A, B) is commonly controlled in advance by unique identifiers or the like, similar association may be carried out by the identifiers.
In relation to the matching processing, the information is not limited to the above-described information (D1) of the QC process chart, and the information of manufacturing processes including the information of elements that affect quality of procurement products such as processes, machines, humans, and materials can be used. Similarly, the information is not limited to the above-described information (D2) of the process FMEA (method of process FMEA), and quality related information including the information that, for example, what kind of problems and how much effects are caused by the elements can be used. Also, the information is not limited to the above-described information (D5) of the failure modes and failure causes, and the information of quality problems and effect analysis corresponding to a method applied instead of the method of the process FMEA can be used. In the above description, not only a process but also a predetermined element can be associated with a key.
The present invention can be utilized in production control system, electronic commerce systems of electronic parts procurement, etc.
1 . . . PROCUREMENT QUALITY IMPROVING SYSTEM, 10 . . . TERMINAL (OPERATOR INPUT/OUTPUT DEVICE), 11 . . . CALCULATING DEVICE, 12 . . . DATA STORAGE DEVICE, 21 . . . SERVER, 22 . . . STORAGE, 90 . . . NETWORK, 111 . . . MATCHING CALCULATING UNIT (CALCULATING UNIT FOR ASSOCIATING SUPPLIER QC PROCESS-CHART INFORMATION WITH PROCESS FMEA INFORMATION), 112 . . . FIRST DISPLAY CALCULATING UNIT (CALCULATING UNIT FOR DISPLAYING SUPPLIER QC PROCESS-CHART INFORMATION, CORRESPONDING FAILURE-MODE/FAILURE-CAUSE INFORMATION), 113 . . . SECOND DISPLAY CALCULATING UNIT (CALCULATING UNIT FOR DISPLAYING SUPPLIER QC PROCESS-CHART INFORMATION), 201 . . . TERMINAL OF ORDERER, 202 . . . TERMINAL OF ORDER-ACCEPTING CANDIDATE, 205 . . . SERVER (ELECTRONIC-COMMERCIAL-TRANSACTION CONTROL DEVICE), 206 . . . SERVER (PROCUREMENT-QUALITY CONTROL DEVICE), 211 . . . ORDER-PLACEMENT INFORMATION STORAGE UNIT, 221 . . . QC PROCESS-CHART/COST INFORMATION STORAGE UNIT, 251 . . . SERVICE PROCESSING UNIT, 261 . . . PROCESS FMEA INFORMATION STORAGE UNIT, 262 . . . MATCHING CALCULATING UNIT (CALCULATING UNIT FOR ASSOCIATING ORDER-ACCEPTING-CANDIDATE QC PROCESS-CHART INFORMATION WITH PROCESS FMEA INFORMATION), 263 . . . DISPLAY CALCULATING UNIT (CALCULATING UNIT FOR DISPLAYING CORRESPONDING FAILURE MODES, FAILURE CAUSES, AND COST), D1 . . . SUPPLIER QC PROCESS-CHART INFORMATION, D2 . . . PROCESS FMEA INFORMATION, D3 . . . THESAURUS INFORMATION, D4 . . . SUPPLIER QUALITY-LEVEL INFORMATION, D5 . . . CORRESPONDING FAILURE-MODE/FAILURE-CAUSE INFORMATION, D6 . . . SUPPLIER QC PROCESS-CHART REVISED INFORMATION, D7 . . . REVIEW RESULT INFORMATION.
Number | Date | Country | Kind |
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2010-253411 | Nov 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2011/073397 | 10/12/2011 | WO | 00 | 6/24/2013 |