WO2008038364A1 - programme d'aide au travail - Google Patents

programme d'aide au travail Download PDF

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Publication number
WO2008038364A1
WO2008038364A1 PCT/JP2006/319287 JP2006319287W WO2008038364A1 WO 2008038364 A1 WO2008038364 A1 WO 2008038364A1 JP 2006319287 W JP2006319287 W JP 2006319287W WO 2008038364 A1 WO2008038364 A1 WO 2008038364A1
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WO
WIPO (PCT)
Prior art keywords
work
data
worker
program
video
Prior art date
Application number
PCT/JP2006/319287
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English (en)
Japanese (ja)
Inventor
Takamasa Sasaki
Takahiro Yonekawa
Original Assignee
Aos Technologies, Inc.
Hub Networks, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Aos Technologies, Inc., Hub Networks, Inc. filed Critical Aos Technologies, Inc.
Priority to JP2008536245A priority Critical patent/JP4801738B2/ja
Priority to PCT/JP2006/319287 priority patent/WO2008038364A1/fr
Publication of WO2008038364A1 publication Critical patent/WO2008038364A1/fr

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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
    • G06Q10/00Administration; Management
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling

Definitions

  • Patent Document 2 JP 2002-287846 A (Page 9, Fig. 5)
  • the present invention has been made paying attention to such problems, and an object thereof is to provide a work support program capable of reducing labor and time required for the change.
  • a real table access program for accessing a real table in the database
  • a virtual table generation step for generating a plurality of virtual tables based on the generation key stored in the generation key item of the real table using the real table access program. All data with the same table name is grouped based on whether or not the key values are the same, and item values of multiple data grouped based on these key values The items are arranged in a horizontal row in numerical order, and the item values arranged in the horizontal row are sequentially arranged downward every time the key value changes), and the virtual table generated in the virtual table generation step is displayed.
  • the data processing program is a normal real table and Interface step (processing to make one real table accessible as multiple temporary tables by using one temporary table with objects corresponding to each temporary table and its methods) Program (data mapping
  • a work support system according to claim 3 of the present invention is the work support program according to claim 1 or 2
  • the actual table update such as additional registration of the generated key to the real table based on the change is also automatically performed by the automatic update program, so that the labor and time required for the change can be further reduced.
  • the data mapping data is included.
  • FIG. 1 is a system diagram showing an overview of a work support system.
  • FIG. 3 is a diagram showing a permanent monitoring camera table stored in a work support server.
  • FIG. 7 shows a support history information table stored in the work support server.
  • FIG. 8 is a diagram showing a supporter screen displayed on a personal computer as a supporter terminal.
  • FIG. 10 is a diagram showing a flow of processing for displaying an abnormal video on a personal computer.
  • FIG.12 Shows the detailed flow of processing performed by the work support server and worker terminal in the process of displaying the video of the worker terminal camera while the notebook computer, which is the worker terminal, goes offline on the personal computer.
  • FIG. 18 (a) is a flowchart showing the flow of processing before the change of the screen generation processing to be changed, and (b) is a flowchart showing the flow of processing after the change.
  • (B) is a figure which shows the model information table added.
  • FIG. 20 is a diagram showing a configuration after the change of the supporter screen to be changed.
  • the notebook personal computer 1 of the present embodiment includes an operator terminal input unit such as a keyboard, an operator terminal display unit 102 configured by a liquid crystal display that forms the video and audio output device of the present invention, and the present invention.
  • Data communication worker terminal microphone 102 serving as the voice input means, worker terminal speaker 104 constituting the video / audio output device of the present invention, worker terminal control unit such as CPU, RAM, ROM, etc.
  • worker terminal control unit such as CPU, RAM, ROM, etc.
  • It consists of a worker terminal communication unit for connecting cards and various devices, a worker terminal storage unit such as a hard disk (HDD), and a normal notebook computer composed of power.
  • the worker terminal communication unit of the notebook computer 1 is connected with a data communication card capable of performing two-way wireless data communication with the mobile phone network 8 and a worker terminal camera 101 serving as an imaging means of the present invention. Yes.
  • the central monitoring server 4 of this embodiment includes a central monitoring server control unit including a CPU, RAM, ROM, and the like, a central monitoring server communication unit for data communication via the Internet network 7, and a central monitoring server
  • multiple central surveillance sanos are used, and a central surveillance sano ID is assigned to each central surveillance sano, but the present invention is not limited to this.
  • the number of central monitoring servers 4 may be appropriately selected according to the number of bases, the number of permanent monitoring cameras, the processing capacity of the server computer to be used, and the like.
  • the central monitoring server table stores the permanent monitoring camera ID in association with the central monitoring server ID and the site number.
  • FIG. 6A shows a work instruction table stored in the work support server 3.
  • the work instruction table is associated with the work number, which is identification information of the work performed by the worker at the site, and the supporter ID, which is the identification information of the support person in charge of supporting the work.
  • the worker ID which is the identification information of the worker in charge of the work, the base number of the base where the work is performed, and the work content that is an explanatory text of the content of the work are stored.
  • This table can uniquely identify the supporter, worker ID, and site number based on the work number.
  • FIG. 6 (b) is a diagram showing a work state table stored in the work support server 3.
  • the working state in the present embodiment is any of the following: unstarted, working, problem occurred, or completed.
  • the work state can be uniquely specified based on the work number.
  • FIG. 6 (c) is a diagram showing a support request form table stored in the work support server 3.
  • the work of the work subject to the support is associated with the support number that is the identification information of the support performed by the support person for the worker performing the work at the site.
  • the number and the content of the support request which is an explanation of the reason for requesting the support by the worker in charge of the work to be supported, are stored.
  • the central monitoring server 4 that has received this sensor information performs an abnormality detection process for detecting whether there is an abnormality based on the sensor information. If no abnormality is detected in the abnormality detection process, the process ends and no processing is performed. On the other hand, if an abnormality is detected in the abnormality detection process, the following processing is performed. To implement.
  • the central monitoring server 4 that has detected an abnormality, for example, a temperature abnormality in this way, detects abnormality detection information including sensor information including the permanent monitoring camera IDs of the permanent monitoring cameras 5a, 5b, 5c,. Send to work support server 3.
  • an abnormality for example, a temperature abnormality in this way, detects abnormality detection information including sensor information including the permanent monitoring camera IDs of the permanent monitoring cameras 5a, 5b, 5c,.
  • the work support server 3 that has received the abnormality detection information associates the base number stored in the permanent monitoring camera table (Fig. 3) with the supporter camera ID associated with the permanent monitoring camera ID included in the abnormality detection information.
  • An anomaly detection email that identifies an email address (not shown) and sends an anomaly detection email that includes the site number to the supporter who should respond to the anomaly information Perform the process.
  • all the supporters may be specified as supporters to be associated with the abnormality information, or a newly created base table in which the base number and the supporter ID are registered in association with each other, Based on this table, the corresponding supporter may be identified according to the base.
  • a certain person creates a responsible abnormality table that newly registers sensor information (or an error code indicating individual abnormality) and a supporter ID, and makes the corresponding supporter abnormal based on this table. It may be specified accordingly.
  • the personal computer 2 that has received the supporter's base Z abnormality selection operation transmits an abnormal video request including the base number of the selected base to the work support server 3.
  • the work monitoring server 3 that has received this search request performs support history search processing, identifies support history information that satisfies the search request, and transmits it to the personal computer 2. At this time, the worker terminal camera video and the permanent surveillance camera video corresponding to the identified support history information are also transmitted.
  • FIG. 16 is a diagram showing a detailed flow of the process performed by the work support server 3 in the process of displaying the support history information on the personal computer 2 of the supporter. Specifically, it is an explanation of the support history search process.
  • the support history information table is associated with the work number included in the work instruction sheet.
  • the permanent surveillance camera image and worker terminal camera image included in the information are identified, the process proceeds to Sc5, and the support history information including the image is transmitted to the PC 2.
  • the supporter who has confirmed the video, support history, etc. at the time of abnormality operates the personal computer 2 and, as shown in FIG. 9, a work instruction regarding work for dealing with the abnormality. Enter 'create'.
  • the information necessary for this work instruction is a work number, a supporter, a worker ID, a base number, and work contents as shown in the work instruction table (FIG. 6 (a)).
  • the work number is not entered because it is automatically assigned by the system.
  • the supporter ID is automatically identified based on the supporter's previous input (for example, the login ID entered at login). Therefore, the supporter inputs the worker ID, site number, and work content.
  • the personal computer 2 that has received the input of the work instruction sheet transmits a work instruction sheet including the site number and the worker ID to the work support server 3.
  • the work support server 3 Upon receiving the work instruction, the work support server 3 generates a work number (for example, automatically generates a serial number) and associates it with the generated work number in the work instruction table (FIG. 6 (a)). Memorize the received work instructions. After that, the electronic mail address stored in the worker table (FIG. 6 (f)) is specified in association with the worker ID. In addition, the address stored in the base table (not shown) is specified in association with the base number. Then, a work instruction mail transmission process is performed in which a work instruction mail including the address of the identified base and the work contents included in the work instruction is sent to the e-mail address of the identified manufacturer.
  • a work number for example, automatically generates a serial number
  • the work support server 3 newly registers a work number in the work state table (FIG. 6 (b)), sets the work state not yet started, and sets the update time as the current time.
  • the notebook personal computer 1 that is the worker terminal, the worker who has received the work instruction mail moves to the base and performs a login operation to the work support server 3. Based on login operations! The laptop PC 1 then sends a request for a work ID that also includes the worker ID and the work number included in the work instruction mail.
  • the notebook personal computer 1 receives the output information to the worker terminal screen including the work instruction, the notebook personal computer 1 outputs the worker terminal screen.
  • this worker terminal screen displays a work instruction, the contents of a procedure (process) corresponding to the work, a support request button operated when requesting support, and the like.
  • the operator inputs a “work start” button (not shown) provided on the worker terminal screen to start the work, so that the procedure display area includes the initial process.
  • a “work start” button (not shown) provided on the worker terminal screen to start the work, so that the procedure display area includes the initial process.
  • the operation of the next process is displayed by inputting the “next process” button.
  • the work contents of the process are sequentially displayed, so that the work of the worker is supported by the notebook computer 1.
  • the notebook personal computer 1 that has accepted the operation of the support request button by the worker performs support request information transmission processing for transmitting support request information to the work support server 3.
  • the information required for the support request includes the support number, work number, and details of the support request as shown in the support request form table (Fig. 6 (c)).
  • the support number is automatically entered by the system and is not entered.
  • the work number is automatically specified based on the received information so far (for example, the work number included in the work instruction received from the work support server 3). For this reason, the worker enters the details of the support request.
  • the work support server 3 that has received the login request transmits information output to the supporter terminal screen to the personal computer 2.
  • the work number stored in the support request form table (Fig. 6 (c)) is identified in association with the support number included in the login request, and the work order form table is associated with the work number.
  • the work instruction stored in (Fig. 6 (a)) is specified and transmitted.
  • the work support server 3 updates the update time to the current time while supporting the corresponding support state in the support state table (FIG. 6 (d)). Also, support history information recording processing is performed, and new support history information is registered in the support history information table (Fig. 7). At this point, the base number, supporter ID, worker ID, work number, support number, and start time are registered.
  • the work support server 3 performs support history information recording processing and updates the support history information table (FIG. 7). At this point, the central monitoring server ID and permanent monitoring camera ID are registered.
  • the central monitoring server 4 that has received the permanent monitoring camera video transmission request includes the permanent monitoring camera ID included in the permanent monitoring cameras 5a, 5b, 5c, ... corresponding to the permanent monitoring camera ID included in this request. Send a video transmission request.
  • the work support server 3 performs support history information recording processing and updates the support history information table (FIG. 7).
  • the permanent surveillance camera video is registered. Permanent surveillance The camera video shall be the nose data for accessing the file storing the recorded video.
  • recording information is newly registered in the permanent monitoring camera recording information table (FIG. 6 (a)).
  • the permanent surveillance camera ID, start time, and recording data are registered. The start time is the current time, and the recorded data is the path data for accessing the file that stores the recorded video.
  • the work support server 3 informs the worker's notebook computer 1 that the support request has been granted.
  • a support permission response indicating is sent.
  • the support permission response includes a support number.
  • the notebook computer 1 that has received the worker terminal camera video transmission request transmits the worker terminal camera video, which is a photographed image of the worker terminal camera 101, to the work support server 3 together with the received worker camera ID. Carry out worker terminal camera video transmission processing. Note that the voice input from the worker terminal microphone 103 is also transmitted at the same time.
  • the work support server 3 that has received the worker terminal camera video stores the worker terminal camera video received and spoken in the work support server storage unit, and also stores the worker terminal camera video of the supporter. Send to BASCON2.
  • the personal monitor 2 serving as the supporter terminal receives the permanent monitoring camera image and the worker terminal camera image, and as a result, the supporter terminal screen as shown in FIG.
  • the video of the permanent monitoring camera and the video of the worker terminal camera are displayed at the same time, so that the supporter can easily connect the worker terminal camera video of the worker and the permanent monitoring camera such as the surrounding situation of the worker. You will be able to check the video.
  • the personal computer 2 of the supporter supports the supporter terminal camera 201 and the supporter terminal camera image acquired by the supporter terminal microphone 202 installed (connected) to the personal computer 2 for support.
  • Supporter terminal camera video transmission processing to be sent to the laptop PC 1 of the worker who requested it is implemented, and in this way, the PC 2 of the supporter and the laptop PC 1 of the worker In the meantime, so-called video conferencing is realized, and the supporter and the worker can get close communication with each other through video and audio.
  • Sa4 it is determined whether or not the line is disconnected based on whether or not the worker terminal camera video is received from the notebook personal computer 1. If it is not disconnected, it will be judged as YES and proceed to Sa 9. If it is disconnected, it will be judged as NO and go to Sa5.
  • Sa7 it is determined whether or not the force indicating that the offline state flag is set, and if it is set, that is, if the offline state force is restored to the online state, YES is determined. Then proceed to SalO. If it is not set, that is, if the online state continues, it is judged as NO and proceeds to Sal4.
  • FIG. 13 is a diagram showing a flow of processing for causing the supporter's personal computer 2 to annotate the video of the worker terminal camera 101.
  • the notebook computer 1 that has received the still image transmission instruction transmits to the work support server 3 the video image (still image) of the worker terminal camera 101 at this time.
  • the work support server 3 that has received the worker terminal camera video (still image) transmits the worker terminal camera video (still image) to the personal computer 2.
  • the annotation data (the drawing content on the annotation layer) received from the personal computer 2 of the supporter is transmitted to the work support server 3 by the annotation data transmission process.
  • the work support server 3 performs the annotation data relay process, and is transmitted to the notebook computer 2 of the worker.
  • the drawing menu is provided with a save button, and the personal computer 2 that has accepted the operation of the save button transmits the annotation data to the work support server 3.
  • annotation button may be provided on the operator terminal screen, and these processes may be started according to the operator's request.
  • An annotation menu is provided on the worker terminal screen so that the worker can input the annotation data.
  • the annotation data is transmitted from the notebook computer 1 of the worker to the work support server 3. You may make it.
  • Work support server 3 is an annotation data relay process Is sent to the laptop PC 2 of the supporter.
  • FIG. 14 is a diagram showing a flow of processing for causing the personal computer 2 of the supporter to add an annotation to the recorded video of the permanent monitoring camera.
  • the personal computer 2 that has accepted the operation of the annotation button transmits a video request to the work support server 3. For example, as described above with reference to FIG. 10, an abnormal video request is transmitted.
  • the work support server 3 that has received the abnormal video request identifies the permanent monitoring camera video in the abnormal mode and transmits it to the personal computer 2 of the supporter as described above with reference to FIG.
  • the personal computer 2 displays the permanent monitoring camera video (still image) displayed on the supporter terminal screen at that time as the work support server. Send to 3.
  • the personal computer 2 that has selected the permanent surveillance camera video (still image) performs processing to display the still image in a multi-layer (layer one) format, and generates a layer of the annotation image above the still image .
  • the received annotation data (drawing contents on the annotation layer) is transmitted to the operator's notebook computer 1 via the work support server 3.
  • the drawing menu is provided with a save button, and the personal computer 2 that receives the operation of the save button transmits annotation data to the work support server 3.
  • the abnormal image power is also abnormal
  • the worker's notebook computer 1 is the worker terminal microphone 103, the worker terminal speaker 104, and the supporter computer 2 is the supporter terminal.
  • a microphone 203 and a supporter terminal speaker 204 are provided.
  • video data including audio so-called moving image data is shown.
  • FIG. 17 is a diagram showing a flow of procedures when a function is changed, added, or deleted in the work support system. The differences between the conventional program and the present invention program will be clarified.
  • the actual table is a command for creating a table in a relational database, specifically, a table generated by a CREATE TABLE command.
  • the present invention type program is mainly composed of four types of element forces as shown in FIG. Specifically, a database in which one real table is stored, and one access program for individually accessing (searching, registering, changing, and deleting) the real table stored in the database, that is, one real table. Access program, these one real table and one access program to make one real table look like multiple virtual real tables, ie temporary tables (1), (2) It consists of a data mapping API (Application Programming Interface) that is an interface program.
  • a data mapping API Application Programming Interface
  • a large number of permanent surveillance cameras 5a, 5b, 5c, etc. installed at each site receive the predetermined command data for each model, thereby moving the imaging direction up, down, left, and right. And panning, tilting and zooming.
  • the work support server 3 stores the models of the permanent monitoring cameras 5a, 5b, 5c,... In an identifiable manner.
  • predetermined command data is registered for each model, and the work support server 3
  • the models of the permanent monitoring cameras 5a, 5b, 5c ... are identified, and the predetermined command data corresponding to the accepted operation in the identified model is identified to identify the permanent monitoring cameras 5a, 5b, 5c ... and add functions to allow the permanent surveillance cameras 5a, 5b, 5c ... to move the imaging direction up / down / left / right and pan / tilt / zoom.
  • the permanent monitoring cameras 5a, 5b, 5c, ... are moved up, down, left, and right in the imaging direction with respect to the supporter screen transmitted to the personal computer 2 serving as the supporter terminal.
  • Command data corresponding to the operation of the supporter received via the operation unit is added, along with processing for adding and outputting an operation unit for receiving supporter operations indicating panning, tilting, and zooming.
  • the process of generating a supporter screen to be transmitted to the personal computer 2 serving as the supporter terminal corresponds to the screen generation process shown in FIG.
  • FIG. 18 (a) is a flowchart showing the process flow before the change of the screen generation process, and (b) is a flowchart showing the process flow after the change.
  • the work support server 3 is first stored in association with the support number included in the login request received from the personal computer 2. And a work instruction stored in association with the work number stored in the support request. Then, the permanent monitoring camera stored in association with the base number stored in the work instruction sheet is specified. Finally, the work support server 3 generates a supporter screen having the various types of identified data and the video power acquired by the permanent monitoring camera power.
  • FIG. 19 (a) is a diagram showing a configuration after the change of the permanent monitoring camera table to be changed, and (b) is a diagram showing a model information table to be added.
  • Fig. 21 (a) is a diagram showing the configuration before the change of the real table, (b) is a diagram showing the configuration before the data mapping data is changed, and (c) is a diagram after the change of the real table (D) is a diagram showing the configuration after the data mapping data is changed.
  • the real table of the present invention specifies the table name, which is the name of the temporary table to which the data belongs, and the temporary table. It consists of a key, which is data for the data, an item number for specifying the item of the data, and an item value, which is the value of the item of the data.
  • This real table is configured as a plurality of temporary tables based on the data mapping data shown in FIGS. 21 (b) and 21 (d). The method of constructing the temporary table for the actual table power will be explained.
  • a permanent monitoring camera that is a temporary table can be configured from the real table shown in FIG. 21 (a).
  • the change of the real table in the conventional program shown in FIGS. 19 (a) and 19 (b), that is, the change of the temporary table in the invention type program is changed to the real table in the invention type program (FIG. 21 (a )) And how it is reflected in the data mapping data ( Figure 21 (b)).
  • the table name is permanent monitoring camera
  • the item number is 5
  • the item name is model ID
  • the item type is integer
  • the option is model information table Add the data that becomes the model ID of. This option indicates that the model ID of the permanent surveillance camera should be linked with the model ID in the model information table.
  • the real table includes an item for each data grouped by the key value with respect to all data whose table name is a permanent monitoring camera.
  • the number is 5 and the item value is S. Additional data is recorded as the model ID corresponding to the model of this permanent surveillance camera.
  • the permanent monitoring camera table shown in Fig. 19 (a) is temporarily set based on the data mapping data shown in Fig. 21 (d) from the real table shown in Fig. 21 (c).
  • a temporary table is configured from the actual table based on the data mapping data, and the screen generation process shown in FIGS. 18 (a) and 18 (b), etc.
  • An interface program that makes a real table look like multiple temporary tables so-called API (hereinafter referred to as data mapping API), is automatically generated based on the data mapping data.
  • An automatic update program is provided. Therefore, in the present invention type program, as a typical procedure for adding / changing functions, first, data mapping data for adding / changing / deleting items to the corresponding temporary table in the database. Create Then, the automatic update program is executed, the real table, the program for accessing the real table, and the data Update the mapping API. Finally, using the automatically updated data mapping API, add / change / delete the part corresponding to the updated contents in the data processing program.
  • FIG. 22 (b) is a diagram showing a configuration before the change when the processing program is the present invention type
  • (d) is a diagram showing a configuration after the change of the present invention type program.
  • the illustrated program is described in a virtual object-oriented language, and the Came ra object and its method, the CameraType object and its method correspond to the data mapping API.
  • the data processing program consists of a single real table consisting of a camera object and its constantly-monitoring camera table consisting of that method, a CameraType object and its method. It becomes possible to access as two temporary tables that can also be used as a model information table!
  • the present invention type program includes a process for making one real table accessible as a plurality of temporary tables by means of an object corresponding to each temporary table and its method and its method. This process is called an interface step.
  • adding / changing / deleting an actual table in the database has a risk of adding, changing, and deleting existing data incorrectly, and it is preferable not to do it manually as much as possible.
  • adding / changing / deleting access programs there is a possibility that unintended bugs may be mixed in by changing them.
  • the contents of changes to the processing program must be considered by the developer each time, and in most cases, it must be changed manually.
  • FIG. 22 (a) is a diagram showing a configuration before change when the processing program is a conventional type
  • (c) is a diagram showing a configuration after change of the conventional program.
  • the actual addition 'change' deletion work involves changing the part that existed before the change and adding a part to use the newly added real table. And has been done.
  • the illustrated program is described in a virtual object-oriented language, and is a program in which a program for accessing an actual table and a program for processing data are mixed and integrated.
  • FIG. 23 (a) is a diagram showing the configuration after the change of the work instruction table to be changed, and (b) is a diagram showing the added supervisor table.
  • the work instruction document camera table is powered by a supervisor ID that can identify the supervisor! ]
  • the monitor table stores a monitor terminal ID that can identify the monitor terminal that the monitor uses for monitoring in association with the monitor ID.
  • Fig. 24 (a) is a diagram showing the configuration before the change of the real table, (b) is a diagram showing the configuration before the change of the data mapping data, and (c) is after the change of the real table. (D) is a diagram showing the configuration after the data mapping data is changed.
  • the data mapping data before the change contains 5 items of work instructions that are temporary tables, each of which is an integer type and a key.
  • Work number integer type supporter ID linked to the supporter ID of the supporter table, integer type worker ID linked to the worker ID of the worker table, integer type base number, text type work contents , Is stored.
  • the data mapping data after the change has a table name of work instruction, item number of 6, item name of monitor ID, item type of integer, and option of Add data to be the monitor ID of the monitor table. This option indicates that the monitor ID of the work order is linked to the monitor ID of the monitor table.
  • the item value force with the table name being either the work instruction and the item number being 6, that is, the supervisor ID is the work instruction. It is stored in association with the work number that is the key of.
  • the temporary table generated by the virtual table generation step becomes a temporary table corresponding to the change.
  • the interface program is changed using the predetermined data mapping data and the automatic update program, instead of directly changing the data mapping API as an interface program by the operator. Therefore, it is only necessary to input the contents of the change to the predetermined data mapping data, so that problems such as bugs due to mistakes in the change work are less likely to occur than when the interface program is changed directly. These changes can be carried out more easily and accurately, and the occurrence of inconvenience due to mistakes in the automatic update program that do not require identification of the automatic update program corresponding to the change in the work support program can be reduced.
  • the data mapping data used for the previous change is included in the invention-type program that is the work support program to be changed.
  • the data mapping data used for the change can be easily identified, and the data mapping data can be easily used in the new change, thus reducing the labor and time required for the change. be able to
  • surveillance cameras 5a and 5b that are permanently installed at the work site (base) identified from the site specific information (work number) included in the support request information from the worker terminal. , 5c ... and the worker terminal image data from the worker terminal camera 101 of the notebook computer 1 are transmitted to the personal computer 2 which is the support terminal of the identified work supporter, and the monitoring is performed. Since the permanent surveillance camera video based on the video data and the worker terminal camera video based on the worker terminal video data are displayed on the personal computer 2, the work supporter can view the permanent surveillance camera video that is a wide range of on-site video. Can be obtained easily, and judgments and instructions according to the actual situation can be implemented more accurately.
  • a sensor capable of performing abnormality detection processing, video recording and display processing during an abnormality, and the present invention is not limited to this. Also good.
  • the work support server 3 transmits the permanent monitoring camera video (monitoring video data) and the worker terminal camera video (worker terminal video data) to the personal computer 2 that is the supporter terminal.
  • the work support server 3 directly relays the permanent monitoring camera video (monitoring video data) and the worker terminal camera video (worker terminal video data) to the personal computer 2.
  • the process for transmitting to the personal computer 2 that is the support terminal is not limited to this.
  • the work support server 3 is not directly relayed to the personal computer 2 but the personal computer 2 that is the transmission destination.
  • these notebook computer 1 (worker terminal) and the permanent monitoring cameras 5a, 5b, 5c... directly send the surveillance camera video (monitoring video data) and worker terminal camera video (worker terminal video data) directly to the PC 2, and the work support server 3 sends these permanent surveillance camera videos (monitoring video data).
  • Image data) and worker terminal camera video (worker terminal video data) may be relayed.
  • the data communication card for connecting the notebook computer 1 (worker terminal) to the Internet network via the mobile phone network 8 is used.
  • the present invention is not limited to this.
  • a PHS telephone network or a public wireless LAN network may be used instead of the cellular telephone network 8, and a wired connection to the base is possible. If a LAN environment exists, these wired LANs may be used.
  • the present invention type program has one real table.
  • the present invention is not limited to this. It is sufficient if there is at least one real table. If the actual table power is very large and inefficient, a configuration in which it is distributed over multiple tapes may be used.
  • the present invention verifies the effect of a work support program in which changes occur frequently.
  • the present invention also relates to other programs in which these changes occur frequently. Therefore, there is a possibility that the same effect as the work support program of the present invention can be obtained, and it can be used.

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Abstract

L'invention concerne un programme d'aide au travail entraînant une réduction du travail et du temps nécessaires pour une modification. Ce programme d'aide au travail fonctionne sur des ordinateurs serveurs (3, 4) pour aider le travailleur à travailler en distribuant des instructions de travail à un terminal (1) du travailleur. Le programme d'aide au travail comprend un programme de traitement de données, une base de données ayant une table réelle dont la structure colonne-direction est fixée, qui a un élément de clé de création, en tant qu'élément de colonne, où une clé de création pour créer une table virtuelle est stockée, et dont la structure est inchangée même lorsque le programme d'aide au travail est modifié, un programme d'accès à la table réelle, et une API de corrélation de données comprenant une étape de création de table virtuelle pour créer les tables virtuelles à partir de la table réelle selon la clé de création et une étape d'interface pour permettre au programme de traitement de données d'accéder aux tables virtuelles créées par l'étape de création de table virtuelle en tant que tables réelles normales.
PCT/JP2006/319287 2006-09-28 2006-09-28 programme d'aide au travail WO2008038364A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2008536245A JP4801738B2 (ja) 2006-09-28 2006-09-28 作業支援プログラム
PCT/JP2006/319287 WO2008038364A1 (fr) 2006-09-28 2006-09-28 programme d'aide au travail

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2006/319287 WO2008038364A1 (fr) 2006-09-28 2006-09-28 programme d'aide au travail

Publications (1)

Publication Number Publication Date
WO2008038364A1 true WO2008038364A1 (fr) 2008-04-03

Family

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Family Applications (1)

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PCT/JP2006/319287 WO2008038364A1 (fr) 2006-09-28 2006-09-28 programme d'aide au travail

Country Status (2)

Country Link
JP (1) JP4801738B2 (fr)
WO (1) WO2008038364A1 (fr)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011061528A (ja) * 2009-09-10 2011-03-24 Xing Inc 映像情報配信システム
JP2012043352A (ja) * 2010-08-23 2012-03-01 Hitachi Ltd 作業指図作成システム、その制御方法およびそのプログラム
JP2012150766A (ja) * 2011-01-21 2012-08-09 Hitachi Ltd 作業指図管理システムおよび作業指図管理方法
JP2012174158A (ja) * 2011-02-24 2012-09-10 Hitachi Ltd 作業指図管理方法および作業指図管理システム
JP2013509050A (ja) * 2009-10-23 2013-03-07 アルカテル−ルーセント ビデオ監視を改善するための方法およびシステム
JP2015179947A (ja) * 2014-03-19 2015-10-08 Kddi株式会社 撮影動画像に指示画像を同期して重畳する映像指示表示方法、システム、端末、及びプログラム
CN109564643A (zh) * 2017-03-31 2019-04-02 三菱重工业株式会社 虚拟参加方法以及虚拟参加系统

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6178912B1 (ja) * 2016-12-21 2017-08-09 茂智 藤井 監視システム及び監視方法

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JP2005323310A (ja) * 2004-05-11 2005-11-17 Nippon Telegr & Teleph Corp <Ntt> 視野共有装置、視野移動量入力装置、画像表示装置、撮影範囲投影方法、視野移動量入力装置の制御方法、画像表示装置の制御方法、視野共有装置のプログラム、視野移動量入力装置のプログラム及び画像表示装置のプログラム
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JP2006209259A (ja) * 2005-01-25 2006-08-10 Fuji Xerox Co Ltd 操作支援システム及び操作支援方法、並びにコンピュータ・プログラム

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JP2005323310A (ja) * 2004-05-11 2005-11-17 Nippon Telegr & Teleph Corp <Ntt> 視野共有装置、視野移動量入力装置、画像表示装置、撮影範囲投影方法、視野移動量入力装置の制御方法、画像表示装置の制御方法、視野共有装置のプログラム、視野移動量入力装置のプログラム及び画像表示装置のプログラム
JP2005339303A (ja) * 2004-05-28 2005-12-08 Nec Mobiling Ltd 保守点検作業支援装置、保守点検作業支援方法および保守点検作業支援プログラム
JP2006209259A (ja) * 2005-01-25 2006-08-10 Fuji Xerox Co Ltd 操作支援システム及び操作支援方法、並びにコンピュータ・プログラム

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011061528A (ja) * 2009-09-10 2011-03-24 Xing Inc 映像情報配信システム
JP2013509050A (ja) * 2009-10-23 2013-03-07 アルカテル−ルーセント ビデオ監視を改善するための方法およびシステム
JP2012043352A (ja) * 2010-08-23 2012-03-01 Hitachi Ltd 作業指図作成システム、その制御方法およびそのプログラム
JP2012150766A (ja) * 2011-01-21 2012-08-09 Hitachi Ltd 作業指図管理システムおよび作業指図管理方法
JP2012174158A (ja) * 2011-02-24 2012-09-10 Hitachi Ltd 作業指図管理方法および作業指図管理システム
JP2015179947A (ja) * 2014-03-19 2015-10-08 Kddi株式会社 撮影動画像に指示画像を同期して重畳する映像指示表示方法、システム、端末、及びプログラム
CN109564643A (zh) * 2017-03-31 2019-04-02 三菱重工业株式会社 虚拟参加方法以及虚拟参加系统
CN109564643B (zh) * 2017-03-31 2023-05-16 三菱重工业株式会社 虚拟参加方法以及虚拟参加系统

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