Cable connection site management method and computer program for performing same

A digital method and computer program for ultra-high voltage cable connection sites address inefficiencies and errors by enabling real-time monitoring and digital management, enhancing productivity and construction quality.

WO2026116776A1PCT designated stage Publication Date: 2026-06-04TAI HAN ELECTRIC WIRE CO LTD

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
TAI HAN ELECTRIC WIRE CO LTD
Filing Date
2025-10-22
Publication Date
2026-06-04

AI Technical Summary

Technical Problem

Current ultra-high voltage cable connection site management is inefficient and prone to human errors due to manual document creation, photography, and lack of real-time monitoring, leading to decreased reliability and increased workload.

Method used

A digital method and computer program for managing cable connection sites that allows for document creation, photography, and approval through an application, enabling site managers to manage documents and photos via the Web, and administrators to monitor in real-time, converting analog methods to digital.

Benefits of technology

Improves efficiency and minimizes management errors, enhances productivity, and increases construction quality by enabling real-time monitoring and reducing on-site tasks, while laying the foundation for a digital management system.

✦ Generated by Eureka AI based on patent content.

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Abstract

A cable connection site management method according to the present invention comprises: a project input step of receiving project information about a cable connection project from a first terminal of a first user; a result input step of receiving a writing result for a checklist and / or a construction quality checklist from a second terminal of a second user; a payment step of receiving, from the first terminal, payment information for the writing result; and a display step of displaying, on a third terminal of a third user in real time, various types of information input in relation to the cable connection project. The cable connection site management method and a computer program, according to the present invention, can improve efficiency of an ultra-high voltage cable connection site management method, minimize management errors, and provide a basis for enabling conversion of the current analog site management into digital site management.
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Description

Method for managing cable connection sites and computer program for performing the same

[0001] The present invention relates to a method for efficiently managing ultra-high voltage cable connection sites and a computer program for performing the same.

[0002] At the ultra-high voltage cable connection site, document creation, approval processes, and construction board entries are currently all performed manually, and the collection of photos by process is also carried out through separate documentation by the site manager. Furthermore, a site monitoring process by a manager is also absent.

[0003] Consequently, human error frequently leads to omissions and errors in document creation and photography during site management, and there is also a risk of document damage or loss. Work efficiency is degraded as workers manually write internal and external documents and take photos while on duty, and the site manager also faces increased workload issues related to document management and photo compilation. Furthermore, managers must go through the inefficient process of contacting the site to obtain data in order to monitor the site.

[0004] Since this approach results in a decrease in the reliability of on-site management of ultra-high voltage cable connections, research and development are necessary to improve the efficiency of management methods and minimize management errors.

[0005] [Prior Art Literature]

[0006] [Patent Literature]

[0007] (Patent Document 1) Korean Registered Patent Publication No. 10-2076413 (Registration Date: February 5, 2020)

[0008] The present invention has been devised in consideration of the aforementioned technical requirements, and the objective of the present invention is to provide a method for managing an ultra-high voltage connection site and a computer program for performing the same, which allows a connection operator to conveniently perform document creation, approval, and photography through an application, enables a site manager to easily manage documents and photos through the Web, and enables an administrator to monitor them in real time.

[0009] In addition, the objective of the present invention is to provide a management method and a computer program capable of converting ultra-high voltage cable connection site management from an analog method to a digital method.

[0010] A cable connection site management method according to the present invention for achieving the above objective comprises: a project input step of receiving project information regarding a cable connection project from a first terminal of a first user; a result input step of receiving a result of creating at least one of a checklist and a construction quality inspection sheet from a second terminal of a second user; an approval step of receiving approval information regarding the result of creation from the first terminal; and a display step of displaying various information entered in relation to the cable connection project in real time on a third terminal of a third user.

[0011] In addition, the above project information may include at least one of the following: construction name, rated voltage, cable specifications, connector, line, and section.

[0012] In addition, the result input step receives a file related to the cable connection project from the second terminal, and the file may include at least one of an image file, a video file, an audio file, and a text file.

[0013] And, any one of the first to third terminals may further include the step of downloading a file related to the cable connection project.

[0014] In addition, it may further include a step of calculating the connection progress rate for the cable connection project after the above approval step.

[0015] And, when the connection progress rate reaches 100%, the step of updating the cable connection project to the list of completed sites on the web may be further included.

[0016] Additionally, the method may further include the step of receiving a notice related to the cable connection project from the third terminal; and the step of displaying the notice on at least one of the first terminal and the second terminal.

[0017] And, it may further include the step of displaying a notification if the creation result input from the second terminal includes a value other than the reference value.

[0018] Additionally, the method may further include the step of creating an account for the cable connection project from the first terminal or the third terminal.

[0019] Meanwhile, the computer program according to the present invention may be stored in a computer on a computer-readable recording medium to execute each of the above steps.

[0020] According to the cable connection site management method and computer program of the present invention, the efficiency of the ultra-high voltage cable connection site management method can be improved and management errors can be minimized, and a foundation can be laid to convert the current analog site management to a digital method.

[0021] FIG. 1 illustrates a network environment in which a cable connection site management method according to the present invention is performed.

[0022] FIG. 2 is a flowchart of a cable connection site management method according to the present invention.

[0023] FIGS. 3 to 6 illustrate a first user interface of a web or application to which the cable connection site management method according to the present invention is applied.

[0024] FIGS. 7 to 9 illustrate a second user interface of a web or application to which the cable connection site management method according to the present invention is applied.

[0025] FIG. 10 illustrates a third user interface of a web or application to which the cable connection site management method according to the present invention is applied.

[0026] The following detailed description of the invention refers to the accompanying drawings, which illustrate specific embodiments in which the invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the invention. It should be understood that various embodiments of the invention are different but need not be mutually exclusive. For example, specific shapes, structures, and characteristics described herein may be implemented in other embodiments without departing from the spirit and scope of the invention in relation to one embodiment. It should also be understood that the location or arrangement of individual components within each disclosed embodiment may be changed without departing from the spirit and scope of the invention. Accordingly, the following detailed description is not intended to be limiting, and the scope of the invention is limited only by the appended claims, including all equivalents to those claimed therein, provided appropriately described. Similar reference numerals in the drawings refer to the same or similar functions across various aspects.

[0027] The present invention will be described in detail below with reference to the attached drawings.

[0028] FIG. 1 illustrates a network environment in which a cable connection site management method according to the present invention is performed.

[0029] As illustrated in FIG. 1, the first, second, and third users can efficiently perform a series of work processes, such as project setup, management, execution, sharing of progress status, approval, and monitoring of the cable connection site, through a network environment.

[0030] Here, the first user (U1) may be a manager, such as a site manager or office staff, the second user (U2) may be a worker, such as a site crew member or construction manager, who performs work directly at the site, and the third user (U3) may be an employee. The first to third users (U1 to U3) can manage the work site through the cable connection site management method according to the present invention by wirelessly connecting their terminals (or communication devices) to a server (S) or a computing device (system).

[0031] At this time, the server (S) may be an internal server, such as a headquarters construction server, or any external server. The server (S) may be implemented with any firmware, hardware, software, circuit, or combination thereof. The hardware may include a processor that reads, executes, and writes program instructions. The processor may be implemented as, but is not limited to, a general-purpose processor, a digital signal processor (DSP), one or more microprocessors, one or more microprocessors associated with a DSP core, a controller, a microcontroller, ASICs (Application Specific Integrated Circuits), FPGAs (Field Programmable Gate Array) circuits, various types of ICs (Integrated Circuits), a state machine, etc.

[0032] In addition, the hardware may further include configurations such as an input / output interface (I / O interface) configured to receive input / output requests from a processor, a communication network that manages network interfacing communication through wired and / or wireless communication modes, and memory such as ROM (Read-Only Memory), RAM (Random Access Memory), SRAM (Static Random Access Memory), Nand Flash Memory, removable memory, memory stick, SD (secure digital) memory, and SIM (subscriber identity module) card.

[0033] In contrast, the cable connection site management method according to the present invention may be performed on various network platforms or in a cloud environment. A cloud environment may include one or more local servers, and said local servers may be connected to subordinate servers to interact with one or more users. By utilizing a cloud environment, the present invention can be executed anywhere, regardless of location or place.

[0034] Meanwhile, the terminal (or communication device) used by the first to third users (U1 to U3) may be a PC (Personal Computer), Tablet PC, Laptop computer, Smartphone, etc. Furthermore, the terminal (or communication device) may be implemented as a mobile phone, video phone, Smart Glass, various wearable devices, E-book Reader, Kiosk, PDA (Personal Digital Assistant), Smart TV, Home Automation Control Panel, Projector, etc., and is not limited to any specific device.

[0035] A terminal (or communication device) may be connected to a server (S) or a computing device via a wired communication network or a wireless communication network. In this case, the wired communication network may include, but is not limited to, a wired communication network using a wired cable such as HDMI (high-definition multimedia interface) or USB (universal serial bus). The wireless communication network may include short-range wireless communication networks such as Z-wave, Zigbee, Wi-Fi, Bluetooth (BLE), LTE-M, LoRa (long range), Narrowband Internet of Things (NB-IoT), and Infrared Data Association (IrDA). In addition, wireless communication networks may include, but are not limited to, 2G mobile communication networks such as Wireless LAN (WLAN), WiBro (Wireless Broadband), Wi-Fi (wireless fidelity), WiMax (world interoperability for microwave access), GSM (global system for mobile communication) or CDMA (code division multiple access), 3G mobile communication networks such as WCDMA (wideband code division multiple access) or CDMA2000, 3.5G mobile communication networks such as HSDPA (high speed downlink packet access) or HSUPA (high speed uplink packet access), and 4G, 5G, and 6G mobile communication networks such as LTE (long term evolution) networks or LTE-Advanced networks.

[0036] For example, users can use a smartphone application to create or approve checklists (internal management documents) or construction quality inspection sheets, take and upload photos, automatically generate or aggregate construction boards, and view announcements or design data. Additionally, users can register projects via the web, view or approve checklists and construction quality inspection sheets, print documents or photos, and furthermore, not only display or verify connection progress rates but also register announcements or design data.

[0037] To briefly describe an embodiment of the cable connection site management method according to the present invention, first, an administrator creates a specific site account via the Web. Then, the site manager logs in to the specific site account via the Web, enters information such as the project name, rated voltage, cable specifications, connector, line, and section, and registers the project and design data. Subsequently, the connection worker creates a checklist and construction quality inspection sheet via an application, uploads photos, etc., and proceeds with electronic approval. Next, the site manager verifies the completed documents and collected photos via the Web and proceeds with final electronic approval. The site manager can edit the checklist and construction quality inspection sheet via the Web and share them with other site managers. At this time, if there are any uncompleted items, they can be completed before proceeding with final electronic approval. Simultaneously with the final approval, the administrator can monitor the updated connection process in real time via the Web. At this time, the connection progress rate can be calculated simultaneously with the connection worker's approval.

[0038] Subsequently, once all connection work is completed, the site manager processes the project as completed via the web, updates the project to the web completed site list, and stores the completed site list in internal or external memory (S).

[0039] When monitoring connection work in an external situation, the user can check it through the mobile web, etc.

[0040] Meanwhile, when a user creates a document through the application, a notification can be displayed in red text if a value outside the standard range is entered. Additionally, a camera icon can be displayed in the photo shooting point section to initiate photography, and the captured photos are automatically collected on a generated construction board. Site managers and supervisors can view and print the collected photos via the web.

[0041] Through the aforementioned scenario, the entire process of the work sequence during connection work can be entered and managed via an application, and real-time input and monitoring become possible, making future management easier. In addition, by reducing on-site management tasks, productivity and concentration can be increased, thereby improving construction quality.

[0042] Furthermore, real-time monitoring by remote managers and the management of connection work data become possible, and the concentration of connection work is improved, thereby enhancing connection quality. Additionally, the online conversion of reports eliminates the need for duplicate work. Moreover, the automatic generation of checklist-style reports reduces the time and cost associated with separate paperwork after the work is completed.

[0043] FIG. 2 is a flowchart of a cable connection site management method according to the present invention. The cable connection site management method according to the present invention can be performed by information / signals received (or input) from the terminals of the first to third users. At this time, the first to third users may correspond to an administrator, a worker, and an employee, respectively, as described above. The account corresponding to each user may have common authority or functions (functions on the web / application), or may be granted different authority or functions.

[0044] For example, the first to third users may commonly have the authority (function) to set the display to show only items related to the N phase when connecting to the N phase, the authority (function) to use the server when using the application / web, and the authority (function) to collect field photos by standard when there are multiple standard items in the checklist.

[0045] In addition, the first user, acting as an administrator, may be additionally granted authority (function) to implement checklists along with project registration, authority (function) to edit (add / modify / delete) checklist / construction quality inspection items, authority to delete terminal information on the web, authority to edit photo layouts on the web, and authority to change various text displayed on the terminal. Meanwhile, administrators may be classified into master administrators, general administrators, site managers, etc., and they may have different authority regarding the viewing, registration, modification, and deletion of management items such as member management, construction site management, creation and editing of checklists / construction quality inspections, site photo management, design document management, and notice management.

[0046] For the second user, who is the worker, additional authority may be granted to automatically create a construction quality inspection checklist when creating a checklist (function), authority to distinguish and photograph photo shooting points (function), authority to import photos from the album when taking photos (function), authority to display screens of all display specifications and function compatibility (function), authority for approval by the connection team leader and site manager (function), authority to verify within the checklist taken in the application (function), authority to display only the relevant specification when various specifications are together within the checklist (function), and authority to delete Long / Short sides within the EB-G checklist (function).

[0047] Third-party users who are employees may be additionally granted authority to monitor construction site management.

[0048] The cable connection site management method according to the present invention first receives project information regarding a cable connection project from a first terminal of a first user (S100). Then, it receives the result of creating at least one of a checklist and a construction quality inspection sheet from a second terminal of a second user (S110). Subsequently, when approval information regarding the result of creation is received from the first terminal (S120), various information entered in relation to the cable connection project is displayed in real time on a third terminal of a third user (S130). Accordingly, the third user, who is an employee, is able to monitor the work site in real time through the content displayed on the third terminal.

[0049] Meanwhile, the cable connection site management method according to the present invention may further include the step of receiving an account for a cable connection project from a third terminal of a third user. That is, the third user may have the authority to create accounts for the first to third users. However, in other embodiments, the authority of the third user may be transferred so that an account is created by the first or second user. That is, a user account may be created by at least one of the first to third users who are administrators. Furthermore, basic information such as construction site information may be entered by the first user. Project information may include at least one of the following: construction name, rated voltage, cable specifications, connection material, line, and section, but is not limited thereto.

[0050] The result input step (S110) may receive a file related to the cable connection project from the second terminal of the second user. At this time, the file input from the second terminal may include at least one of an image file, a video file, an audio file, and a text file. At this time, any one of the first to third terminals may further include a step of downloading a file related to the cable connection project. In other words, the first to third users can download or output the file input from the second terminal through the first to third terminals.

[0051] In addition, after the approval step (S120), the method further includes a step of calculating the connection progress rate for the cable connection project, and the calculated connection progress rate may be displayed on the third terminal of the third user. At this time, the connection progress rate may be calculated by the following [Equation 1].

[0052]

[0053] (P CON : Connection progress, C CON : Connection complete status, T CON : Full image)

[0054] In addition, it may include a step of determining whether the connection progress rate reaches 100%, and if it reaches 100%, updating the cable connection project to the list of completed sites on the web.

[0055] FIGS. 3 to 6 illustrate a first user interface of a web or application to which the cable connection site management method according to the present invention is applied. The first user interface may be displayed on a first terminal of a first user.

[0056] As illustrated in FIG. 3, the first user interface may be composed of one or more frames and may include a frame containing a navigation menu that allows direct access to items such as member management, construction site management, drawing / document management, checklist / construction quality inspection sheet, site photo management, and notice management, as well as a frame displaying detailed information for each item. However, it is not limited thereto and may be composed of various layouts. Herein, regarding notices, the cable connection site management method according to the present invention may further include the step of registering a notice related to a cable connection project from a third terminal and displaying the notice on at least one of the first terminal and the second terminal. The first and second users can efficiently proceed with the connection work while viewing the notice displayed on their respective terminals.

[0057] Meanwhile, the first user can check the status of the construction site through the screen shown in FIG. 3 and register or modify a new construction site. Additionally, the user can input whether the construction has been completed or delete the construction site. That is, the cable connection site management method according to the present invention can receive information regarding the registration, modification, deletion, etc. of a construction site from the first user's terminal. Meanwhile, as shown in FIG. 3, when a construction site is registered by the first user, an input field for various information related to the construction site is displayed, and the first user can input various information related to the construction site (construction site, line name, connection location, cable specifications, connector, connection period, etc.) simply by clicking a selection button. Furthermore, the first user can identify the types of documents to be created related to the construction site at a glance through the first user interface.

[0058] In one embodiment, the first user interface may provide a selection button that allows the user to modify the target when the target to be modified is selected (clicked or touched) by the user. The user can easily modify the target by selecting another item. The target to be modified may be the construction site, line name, connection location, cable specification, connector, connection period mentioned above, as well as the document to be created.

[0059] Meanwhile, in one embodiment, the first user interface provides a search filter function to display search results based on user input. Additionally, the search results can be converted into a file such as Excel, allowing the user to download it.

[0060] In addition, in one embodiment, the first user interface may display the selected construction site and track when a construction site is selected by the user, display the connection location when a track is selected, and display related construction site information when a connection location is selected. Specifically, when a project, a track, and a connection section are selected in sequence by the user, a checklist of connection work performed in the corresponding connection section is displayed. The user can select the checklist of connection work to view the details of the checklist / construction quality inspection sheet.

[0061] FIG. 4 illustrates a checklist / construction quality checklist displayed by user selection in relation to the first user interface. As shown in FIG. 4, the first user interface displays registered checklist / construction quality checklist information, and when a checklist to be searched is selected (clicked or touched) by the user, the details of the corresponding checklist / construction quality checklist can be displayed.

[0062] In addition, in one embodiment, when a construction site is selected (clicked or touched) by the user, the first user interface displays a list of drawings or documents of the construction site and allows the user to modify or delete the corresponding drawings or documents.

[0063] The first user can perform approval for the checklist / construction quality checklist using the first user interface, as illustrated in FIG. 4. Before that, the second user can first perform approval for the checklist / construction quality checklist using the first user interface or the second user interface described later. In this way, offline approval using documents can be converted to online.

[0064] Meanwhile, the first user interface can display a checklist as a pop-up window, and the checklist can be modified by user input.

[0065] FIG. 5 illustrates a display method by mouseover of the first user interface. The first user interface displays a predetermined area or a predetermined icon on the screen, and when the user clicks or touches the area or the icon, an image, document, video, etc. can be displayed in an overlapping manner.

[0066] Meanwhile, the first user interface can change the photo output layout (displaying 1, 2, 4, or 6 photos per page, etc.) or the order of photos by the operation of the first user, and may not display the selected photos on the screen.

[0067] FIG. 6 illustrates the editing function of the first user interface. The first user interface displays a connection log and / or a pre-quality checklist as illustrated in FIG. 6, and can edit, modify, or delete each item of the connection log and / or pre-quality checklist based on the input of the first user. The connection log may include items such as the construction site, cable type, connection supervisor (quality manager), connector, connection location, drawing number, measurement values ​​for each phase of work items (preparation work, cable arrangement and riser, cable pre-cut, cable protection layer removal, metal sheath removal, graphite removal, cable straightening work, cable main cutting, conductor exposure, etc.), and the worker.

[0068] At this time, when a second user inputs a checklist on-site, common sections can be entered into the two documents: the connection log and the pre-quality checklist. Additionally, the connection log and the pre-quality checklist can be printed separately. More specifically, when the second user inputs work details, the same content can be recorded in the common sections of the checklist and the pre-quality checklist all at once. That is, if there are identical data values, they are recorded in both forms with a single input, and if there are different entries, they are written separately in each form. In this way, two documents can be created efficiently.

[0069] FIGS. 7 to 9 illustrate a second user interface of a web or application to which the cable connection site management method according to the present invention is applied.

[0070] The second user interface is intended for a second user and may be provided on a second terminal such as a smartphone, tablet PC, computer, or laptop. The second user may obtain and use an account created by the first user. When the second user logs in using the issued account, as illustrated in FIG. 7, they can view items (drawings, documents), checklists or construction quality inspection sheets, site photos, etc., that need to be checked and entered in relation to construction site management. Additionally, the second user interface may display announcements entered by the first or third user and provide such announcements to the second user.

[0071] Although four menus are shown in Fig. 7, the layout of the initial screen can be configured in various ways and may include fewer or more menus.

[0072] The second user can upload images or videos captured using a camera sensor provided in the second terminal.

[0073] Meanwhile, the second user can touch the checklist or / and construction quality inspection sheet displayed on the second terminal and input details for each item displayed on the screen. The information entered on the second terminal is transmitted to the server, and the first and third users are able to view all records made by the second user.

[0074] At this time, the cable connection site management method according to the present invention may further include a step of displaying a notification when the result entered from the second terminal includes a value other than a standard value. Additionally, the checklist / construction quality inspection sheet and approval information created by the second user are transmitted to a server, and approval information may be additionally entered from the first user's first terminal regarding the checklist / construction quality inspection sheet approved by the second user.

[0075] Meanwhile, as illustrated in FIG. 9, the second user interface displays a relevant form to enable the second user to easily create a connection log, and the second user can easily input measurement values ​​for each item related to construction through the second terminal.

[0076] FIG. 10 illustrates a third user interface of a web or application to which the cable connection site management method according to the present invention is applied.

[0077] As illustrated in FIG. 10, the third user can check the connection progress rate according to the construction item in real time through the third user interface displayed on the third terminal. Additionally, as illustrated in FIG. 10, when any one of the construction site lists is selected (clicked or touched) by the third user, the construction progress details described above can be checked by item.

[0078] The cable connection site management method according to the present invention implements a system for receiving various data from a construction site using a mobile app on a user terminal (e.g., tablet PC, smartphone, etc.) not only in situations where the Internet is provided but also at above-ground and underground power line construction sites where the Internet is not provided, and for transmitting the data to a center system for integrated management via an administrator web. At this time, only authorized users can access the application on the user terminal, and the input data may undergo a data consistency verification process. Meanwhile, the administrator web analyzes and monitors the information collected at the center and enables management such as data input, correction, and deletion as necessary.

[0079] Meanwhile, although the above description generally explains a management method using terminals owned by the first to third users in a situation where the Internet is supported, the management method can also operate in an environment where the Internet is not supported. That is, the user terminal can be implemented to store the received data even if the Internet is not provided, and to transmit the data to the center system in a space where the Internet is active. Information entered into the second terminal is transmitted to the center system via a wireless communication line for data processing, and the database server within the center system can store the data. The first or third terminal can monitor the construction site situation and perform analysis and management of the registered data.

[0080] The cable connection site management method according to the present invention can be implemented as a computer program. That is, the computer program according to the present invention is intended to execute various embodiments of the cable connection site management method described above on a computer and can be recorded on a computer-readable recording medium. Furthermore, the computer program according to the present invention is intended to execute various embodiments of the cable connection site management method described above on a computer and can be recorded on a computer-readable recording medium.

[0081] The cable connection site management method according to the present invention may be provided by being included in a computer program product. The computer program product may be traded between a seller and a buyer as a product. The computer program product may be distributed in the form of a device-readable storage medium (e.g., compact disc read-only memory (CD-ROM)), or through an application store, or directly distributed (e.g., download or upload) between two user devices (e.g., smartphones). In the case of online distribution, at least a portion of the computer program product may be temporarily stored or temporarily created on a device-readable storage medium, such as the memory of a manufacturer's server, an application store's server, or a relay server.

[0082] Meanwhile, the cable connection site management method according to the present invention may be performed by a computer, a computing device, etc. Furthermore, the cable connection site management method according to the present invention may be implemented in the form of program instructions that can be executed through various computer means and recorded on a computer-readable medium. A computer-readable recording medium may include program instructions, data files, data structures, etc., either individually or in combination. The program instructions recorded on the medium may be those specifically designed and configured for the present invention, or they may be those known and available to those skilled in the art of computer software. Examples of computer-readable recording media include magnetic media such as hard disks, floppy disks, and magnetic tapes; optical recording media such as CD-ROMs and DVDs; magneto-optical media such as floptical disks; and hardware devices specifically configured to store and execute program instructions, such as ROM, RAM, and flash memory. Examples of program instructions include machine code, such as that generated by a compiler, as well as high-level language code that can be executed by a computer using an interpreter, etc. The above hardware device may be configured to operate as one or more software modules to perform the operation of the present invention, and vice versa.

[0083] Furthermore, although the invention has been described above with reference to embodiments, this is merely illustrative and does not limit the invention. Those skilled in the art will understand that various modifications and applications not exemplified above are possible within the scope of the essential characteristics of the embodiments. For example, each component specifically shown in the embodiments may be modified and implemented. Differences related to such modifications and applications should be interpreted as being included within the scope of the invention as defined in the appended claims.

Claims

1. A project input step for receiving project information regarding a cable connection project from the first terminal of the first user; A result input step of receiving a result for creating at least one of a checklist and a construction quality inspection sheet from a second terminal of a second user; An approval step of receiving approval information regarding the creation result from the first terminal; and A cable connection site management method comprising: a display step of displaying various information entered in relation to the above cable connection project in real time to a third terminal of a third user.

2. In Paragraph 1, A cable connection site management method comprising at least one piece of information among the above project information, construction name, rated voltage, cable specifications, connector, line, and section.

3. In Paragraph 1, The above result input step is, A method for managing a cable connection site, wherein a file related to the cable connection project is received from the second terminal, and the file includes at least one of an image file, a video file, an audio file, and a text file.

4. In Paragraph 3, A cable connection site management method further comprising the step of one of the first to third terminals downloading a file related to the cable connection project.

5. In Paragraph 1, A cable connection site management method further comprising: a step of calculating the connection progress rate for the cable connection project after the above approval step.

6. In Paragraph 5, A cable connection site management method further comprising the step of updating the cable connection project to a list of completed sites on the web when the connection progress rate reaches 100%.

7. In Paragraph 1, A step of receiving a notice related to the cable connection project from the third terminal; and A cable connection site management method further comprising the step of displaying the above notice on at least one of the first terminal and the second terminal.

8. In Paragraph 1, A cable connection site management method further comprising the step of displaying a notification when the result of the creation input from the second terminal includes a value other than a reference value.

9. In Paragraph 1, A cable connection site management method further comprising the step of receiving an account for the cable connection project from the first terminal or the third terminal.

10. A computer program stored on a computer-readable recording medium to execute each step of the method described in any one of claims 1 through 9 on a computer.