WO2017082648A1 - Procédé de configuration automatique de page d'accueil par un fichier web hard nuagique et une architecture de dossier, et système associé - Google Patents

Procédé de configuration automatique de page d'accueil par un fichier web hard nuagique et une architecture de dossier, et système associé Download PDF

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Publication number
WO2017082648A1
WO2017082648A1 PCT/KR2016/012914 KR2016012914W WO2017082648A1 WO 2017082648 A1 WO2017082648 A1 WO 2017082648A1 KR 2016012914 W KR2016012914 W KR 2016012914W WO 2017082648 A1 WO2017082648 A1 WO 2017082648A1
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homepage
web
cloud
user terminal
change
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PCT/KR2016/012914
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English (en)
Korean (ko)
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채규국
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채규국
(주) 스마트웨어
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Publication of WO2017082648A1 publication Critical patent/WO2017082648A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F40/00Handling natural language data
    • G06F40/10Text processing
    • G06F40/166Editing, e.g. inserting or deleting

Definitions

  • the present invention relates to a method and system for automatically configuring a homepage by a cloud web hard file and folder architecture. More particularly, the present invention provides styling for a web document (html) for a folder on the web hard and displays a display order. The present invention relates to a method and system for automatically configuring a homepage by a cloud web hard file and folder architecture for expressing various types of homepages.
  • Responsive web-based homepages are available that automatically perform deployment changes on mobile and PC versions.
  • existing homepages contain pages for content, design, and content changes, so that users need to be provided with management services by experts who have been systematically trained, and users cannot easily change them. Has been.
  • Homepage creation system homepage automatic conversion method, program recording media and homepage viewing differentiation method (patent application No. 10-2000) -0013152)
  • the present invention is to solve the above problems, the method for removing the unnecessary homepage management step, the homepage automatic configuration by the cloud web hard file and folder architecture to allow anyone to manage the homepage by clicking the unit can control , To provide that system.
  • the present invention is to automatically configure the homepage by the cloud web hard file and folder architecture for expressing various layouts by setting the row, column and box height values in the style properties of the parent folder for the child folders of the same level It is a method for providing the system.
  • the present invention is to provide a method and system for automatically configuring a homepage by a cloud web hard file and folder architecture to enable anyone to easily express a tree-level leveling folder by setting various hierarchical layers. .
  • a method for automatically configuring a homepage by a cloud web hard file and folder architecture includes a cloud web hard-based homepage responsive web server 3a as a user terminal 1.
  • a 'correction icon' 20 for modifying the lowest layer (first layer) according to the information is implemented as a corner region of the region information, and a sequential layer (second layer to nth layer, constituting an upper layer of the lowest layer) a third step of implementing at least one 'correction mark 30' for correcting 3 or more natural numbers) at preset coordinates among regions where each upper layer of the lowest layer is located; Characterized in that it comprises a.
  • the responsive web-based homepage configuration and management server 3b selects one 'modification icon' and one or more 'modification marks' for configuring region information for each modification unit.
  • a sixth step of performing reception on change information It characterized in that it further comprises.
  • the responsive web-based homepage composition and management server 3b changes the responsive web homepage information applied to the selected one area for the detailed lowest layer change information through the cloud network 2.
  • the responsive web-based homepage configuration and management server 3b is configured to select one of the at least one 'modification mark'.
  • a folder corresponding to the lowest layer of the selected area information is received.
  • the change information may be stored in a state file in which the change is performed or in a second to nth layer folder located in a lower folder of the state file in which the change is not performed.
  • a system for automatically configuring a homepage by a cloud web hard file and folder architecture is configured to automatically configure a homepage by a cloud web hard file and folder architecture.
  • a response corresponding to the user's account in the state of being accessed on the cloud web hard-based homepage responsive web server 3a of the user terminal 1 Realization of region information for each component modification unit controlling the transceiver unit 3b-1 to perform a data session setup for the user terminal 1 through the cloud network 2 in response to a change request for the web-based homepage information.
  • Module 3b-3 And a modification icon for controlling the transceiver 3b-1 to wait for reception of a selection signal for one 'modification icon' constituting area information for each modification unit from the user terminal 1 through the cloud network 2.
  • the control unit changes the 'correction mark' corresponding to the selection signal to the 'selection question box' to be implemented in the user terminal 1.
  • the transmitter / receiver 3b-1 is controlled to receive a selection signal for one of the style change and the content change that constitute the selection in the selection question box, and the selection signal for the style change is received.
  • the system can remove the unnecessary homepage management step, so that anyone can control the homepage by clicking the control unit Provide the effect.
  • a method for automatically configuring a homepage by a cloud web hard file and folder architecture includes a row, column, and box height in a style attribute of a parent folder for child folders of the same level. By setting the value, you can express various layouts.
  • a method for automatically configuring a homepage by a cloud web hard file and folder architecture according to another embodiment of the present invention, and the system can easily express a tree-level leveling folder by setting various hierarchical layers. Provide effect.
  • FIG. 1 is a diagram illustrating a system for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention.
  • FIG. 2 is a block diagram illustrating a responsive web-based homepage configuration and management server 3b in a system for automatically configuring a homepage by a cloud web hard file and folder architecture of FIG. 1.
  • 3 to 5 are diagrams illustrating a UI (User Interface) screen implemented in the user terminal 1 of a system for automatically configuring a homepage by a cloud web hard file and folder architecture.
  • UI User Interface
  • FIG. 6 is a diagram illustrating an implementation process for each modification unit of components constituting a responsive web-based homepage among methods for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention.
  • FIG. 7 is a diagram illustrating a folder forming a lowest layer matching a modified icon in step S150 performed after FIG. 6 in a method for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention. It is a flow chart showing the configuration process.
  • FIG. 8 illustrates an upper layer of a lowermost layer matching the modified mark in step S150 performed after FIG. 6 in the method for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention.
  • This is a flow chart showing the configuration process for a folder.
  • FIGS. 6 to 16 are diagrams illustrating a UI screen implemented in the user terminal 1 in a method for automatically configuring a homepage by a cloud web hard file and folder architecture in FIGS. 6 to 8.
  • the component when one component 'transmits' data or a signal to another component, the component may directly transmit the data or signal to another component, and through at least one other component. This means that data or signals can be transmitted to other components.
  • a system for automatically configuring a homepage by a cloud web hard file and folder architecture includes a user terminal assembly 1G composed of at least two user terminals 1, a cloud network 2, and a cloud web hard base.
  • Homepage responsive web server 3a and responsive web-based homepage configuration and management server 3b may be integrally formed with a homepage providing server 3G based on responsive web.
  • the user terminal 1 is a broad concept including a wired terminal or a wireless terminal, and includes a personal computer (PC), an IP protocol (Internet Protocol Television), a notebook-sized personal computer, a personal digital assistant (PDA), Smartphone, International Mobile Telecommunication 2000 (IMT-2000) phone, Global System for Mobile Communication (GSM) phone, General Packet Radio Service (GPRS) phone, Wideband Code Division Multiple Access (WCDMA) phone, Universal Mobile Telecommunication Service (UMTS) It includes a phone, a mobile broadband system (MBS) phone, etc.
  • One user accesses the cloud web hard-based homepage responsive web server 3a by using a PC corresponding to a wired terminal and a smartphone corresponding to a wireless terminal. Responsive web-based homepage can be provided with the screen size automatically adjusted according to the display type of each wired and wireless terminal.
  • Responsive web-based homepage can be provided with the screen size automatically adjusted according to the display type of each wired and wireless terminal.
  • the cloud network 2 is a responsive web-based homepage according to access of a cloud web hard-based homepage responsive web server 3a corresponding to a computing service provider server and each user terminal 1 constituting a user terminal assembly 1G.
  • a communication network that is a high-speed network of large communication networks capable of large-capacity, long-distance voice and data services for making information available between each user terminal (1), and next-generation wired and wireless for providing Internet or high-speed multimedia services. It can be a net.
  • the cloud network 2 is a mobile communication network, it may be a synchronous mobile communication network or an asynchronous mobile communication network.
  • An example of an asynchronous mobile communication network is a communication network of a wideband code division multiple access (WCDMA) scheme.
  • WCDMA wideband code division multiple access
  • the cloud network 2 may include a Radio Network Controller (RNC).
  • RNC Radio Network Controller
  • the WCDMA network is taken as an example, it may be an IP network based on a next generation communication network such as 3G LTE network, 4G network, or other IP.
  • the cloud network 2 includes each user terminal 1 constituting the user terminal assembly 1G, a responsive web server based on a cloud web hard homepage 3a, a responsive web based homepage configuration and management server 3b, and the like. It is responsible for communicating signals and data between systems.
  • FIG. 2 is a block diagram illustrating a responsive web-based homepage configuration and management server 3b in a system for automatically configuring a homepage by a cloud web hard file and folder architecture of FIG. 1.
  • 3 to 5 are diagrams illustrating a UI (User Interface) screen implemented in the user terminal 1 of a system for automatically configuring a homepage by a cloud web hard file and folder architecture.
  • UI User Interface
  • the responsive web-based homepage configuration and management server 3b includes a transceiver 3b-1 and a controller 3b-2.
  • the controller 3b-2 may include the region information implementation module 3b-3 for each component modification unit, the modification icon application module 3b-4, the modification mark application module 3b-5, and the folder-based layer configuration module 3b. -6).
  • the module may mean a functional and structural combination of hardware for performing the technical idea of the present invention and software for driving the hardware.
  • the module may mean a logical unit of a predetermined code and a hardware resource for performing the predetermined code, and means a physically connected code or does not necessarily mean one kind of hardware. It can be easily inferred by the average expert in the art.
  • the area information implementing module 3b-3 for each component modification unit is a responsive web base corresponding to a user's account in a state of being accessed on the cloud web hard-based homepage responsive web server 3a of the user terminal 1.
  • the transceiver 3b-1 is controlled to perform data session setup for the user terminal 1 through the cloud network 2.
  • the region information implementation module for each component modification unit 3b-3 divides the components constituting the responsive web-based homepage into region information for each modification unit as shown in FIG. 3B and is implemented in the user terminal 1 so as to be implemented in the user terminal 1.
  • the transmitter / receiver 3b-1 is controlled to transmit information to the user terminal 1.
  • the region information implementing module 3b-3 for each component modification unit has a 'correction icon' for modifying the lowest layer (first layer) according to each region information on the user terminal 1.
  • An area in which each upper layer of the lowest layer has a 'correction mark' for correcting sequential layers (second layer to nth layer, n is a natural number of 3 or more) that is implemented in the region and constitutes an upper layer of the lower layer.
  • Control the transmission / reception unit 3b-1 to transmit at least one correction icon information and at least one correction mark information matching the area information of each modification unit to the user terminal 1 so that at least one or more are implemented in the preset coordinates. do.
  • the correction icon application module 3b-4 is configured to transmit and receive a selection signal for one 'modification icon' constituting area information for each modification unit from the user terminal 1 to be received through the cloud network 2. 3b-1).
  • Modify icon application module (3b-4) is a 'detailed edit icon' (placement move, copy, hide, set, cancel icon) for the 'edit icon' corresponding to the selected one area implemented by the user terminal (1) It is determined by the user terminal (1) whether the implementation is completed, and when the change is completed, the lowest layer (first layer) change information corresponding to the result performed by the operation according to each detailed modification icon selection signal The transceiver 3b-1 is controlled to perform reception waiting.
  • the correction mark application module 3b-5 selects a selection signal for at least one 'correction mark' implemented from at least one 'correction icon' from the user terminal 1 as shown in FIG. 4A.
  • the transmitter / receiver 3b-1 is controlled to wait for reception through the controller.
  • the correction mark application module 3b-5 may select one of 'style change' and 'content change' for the correction mark implemented by the user terminal 1.
  • the transceiver 3b-1 is controlled to wait for receiving a selection signal for one of style change and content change.
  • the correction mark application module 3b-5 When the correction mark application module 3b-5 receives the selection signal for the 'style change' as shown in FIG. 4B, an information box for changing the style of the user terminal 1 through the cloud network 2 (the arrangement state).
  • the transmitter / receiver 3b-1 is controlled to receive, from the user terminal 1, change information on the layer corresponding to the correction mark selection signal according to the input content on the information box including at least one of the setting tools. .
  • the correction mark application module (3b-5) receives the selection signal for the content change of the 'style change' and 'content change' for the correction mark implemented by the user terminal (1), the content change selection signal
  • the component of the corresponding layer content is divided into sub-area information for each modification unit, and a 'sub-correction icon' for modifying the lowest sub-layer (first sub-layer) according to each sub-area information is included in the corner area of the sub-area information.
  • a sub correction mark for correcting sequential layers (second sub-layer to n-th sub-layer, where n is a natural number of 3 or more) constituting the upper layer of the lowest layer, each upper sub-layer of the lowest sub-layer.
  • the one or more sub-information and the probe mark modified edit icon information and controls the transmission and reception unit (3b-1) to transmit to the user terminal (1).
  • the correction mark application module 3b-5 changes to a detail correction icon according to the selection signal for the 'sub correction icon' on the user terminal 1 to complete the implementation, or to select a signal for the 'sub correction mark'. Accordingly, when the implementation according to the change to the 'detailed correction mark' is completed, one of the second to nth sublayers corresponding to the result of being completed by the operation according to the selection of the 'detailed correction icon' or the 'detailed modification mark' is completed.
  • the transceiver 3b-1 is controlled to receive the change information.
  • the folder-based layer configuration module 3b-6 converts the change to the responsive web homepage information applied to the selected one area for the detailed lowest layer change information received by the correction icon applying module 3b-4 to the cloud network 2. Control the transceiver 3b-1 to perform a request to the cloud web hard-based homepage responsive web server 3a. Accordingly, the cloud web hard-based homepage responsive web server 3a changes and stores the file corresponding to the detailed lowest layer change information constituting the folder corresponding to the lowest layer of the selected area information, thereby storing and changing the file. It provides an effect that can be configured and changed by only a few clicks and typing of the user on the responsive web-based homepage.
  • the folder-based layer construction module 3b-6 selects the change information for the layer corresponding to the correction mark selection signal according to the input content on the information box for style change received by the correction mark application module 3b-5.
  • the transceiving unit 3b-1 is controlled to transmit a change to the responsive web homepage information applied to the area to the cloud web hard-based homepage responsive web server 3a via the cloud network 2. Accordingly, the cloud web hard-based homepage responsive web server 3a changes the file corresponding to the layer change information constituting a folder corresponding to one of the second to nth layers matching the selected area information. Do it and save it.
  • the folder-based layer construction module 3b-6 is configured to have a second result corresponding to a result of being completed by an operation according to selection of a detailed modification icon 'or a' detailed modification mark 'received by the modification mark application module 3b-5.
  • the transmitter / receiver 3b-1 is controlled to request a change to one of the nth sublayers to change information of the n-th sublayer from the cloud web hard-based homepage responsive web server 3a through the cloud network 2. Accordingly, the cloud web hard-based home page responsive web server 3a changes and stores a file corresponding to change information constituting a folder corresponding to a layer of the selected area information.
  • the folder-based layer composition module (3b-6) is an example of a parent folder with 1 depth and 2 child folders with 2 depths. You can manage them in the form of files, and you can organize the contents of the folder on top of the virtual folder as if there were sequential folders under the folder. Therefore, the folder-based layer composition module (3b-6) can produce various types of images on the responsive web homepage, and complete the images by projecting the images at once on the responsive web-based homepage as if the OHP film were stacked. Provides the ability to
  • FIG. 6 is a diagram illustrating an implementation process for each modification unit of components constituting a responsive web-based homepage among methods for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention.
  • the user terminal 1 accesses the cloud web hard-based homepage responsive web server 3a through the cloud network 2 according to the URL address of the responsive web-based homepage in the address window on the web browser. (access) (S110).
  • step S110 the user terminal 1 transmits the account information to the cloud web hard-based homepage responsive web server 3a through the cloud network 2 according to the output of the responsive web-based homepage on the input / output unit.
  • a login process is performed (S120). As shown in FIG. 9, a component of a responsive web-based homepage of 100 to 900 is formed, and a menu for requesting a component change is implemented as shown by reference numeral 10.
  • the cloud web hard-based homepage responsive web server 3a transmits the responsive web-based homepage information matching the login account to the user terminal 1 so as to be implemented as the user terminal 1 ( S130).
  • the cloud web hard-based homepage responsive web server 3a responds to the request for change of the responsive web-based homepage information from the user terminal 1, via the cloud network 2, the user terminal 1 Responsive to the web-based homepage configuration and performs a data session change setting to the management server (3b) (S140).
  • the components constituting the responsive web-based homepage is divided into area information 40 by modification unit And a 'correction icon' 20 for modifying the lowest layer (first layer) according to each region information as a corner region of region information, and a sequential layer (second layer) constituting an upper layer of the lowest layer.
  • At least one 'correction mark 30' for correcting the layer to the n-th layer and n is a natural number of 3 or more at a predetermined coordinate among regions where each upper layer of the lowest layer is located (S150).
  • the existing control group including the pages for content, design, content change is deleted, in the present invention red border unit
  • the correction icon 20 corresponding to one pencil icon is implemented on the right side in the region information 40 for each modification unit.
  • the 'correction mark' 30 embodied in a screw head shape such as + may be used when correcting letters or images.
  • FIG. 7 is a diagram illustrating a folder forming a lowest layer matching a modified icon in step S150 performed after FIG. 6 in a method for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention. It is a flow chart showing the configuration process.
  • the responsive web-based homepage configuration and management server 3b may select one 'modification icon' that constitutes area information for each modification unit, and a selection signal for at least one 'modification mark'. Waiting from the user terminal 1 through the cloud network (2) (S210).
  • the responsive web-based homepage configuration and management server 3b selects the selection signal for the 'correction icon' constituting one area information with respect to the selection signal of the step S210. It is determined whether or not the reception of the (S220)
  • step S220 If it is determined in step S220 that the selection signal for the correction icon is received from the selected area information, the responsive web-based homepage configuration and management server 3b is the selected one implemented as the user terminal 1.
  • the implementation is completed by the user terminal 1 as a 'detail modification icon' for the 'correction icon' corresponding to the region, the lowest layer corresponding to the result performed by the operation according to the detailed correction icon selection signal ( The first layer) listens for the change information (S230).
  • the detailed modification icon may be implemented as including (placement shift, copy, hide, set, cancel icon).
  • the responsive web-based homepage composition and management server 3b changes the change to the responsive web homepage information applied to the selected one area for the detailed lowest layer change information through the cloud network 2 through the cloud web.
  • the request is made to the hard-based homepage responsive web server 3a (S240).
  • the cloud web hard-based homepage responsive web server 3a changes and stores a file corresponding to the detailed lowest layer change information constituting a folder corresponding to the lowest layer of the selected area information.
  • step S240 the responsive web-based homepage configuration and management server 3b according to the selection of one or more of the at least one 'modification mark' At least one change information of the second to nth layers is received (S250).
  • the responsive web-based homepage composition and management server 3b constitutes a lower layer as the first layer and at least one of the second to nth layers corresponding to the change information received in the step S250.
  • the request to form a hierarchical structure in which the above layers are sequentially stacked in ascending order is transmitted to the cloud web hard-based homepage responsive web server 3a through the cloud network 2 (S260).
  • the cloud web hard-based homepage responsive web server 3a performs a change on a file corresponding to the detailed lowest layer change information constituting a folder corresponding to the lowest layer of the selected area information. Changes are made to files in the folder corresponding to the change information among the second to nth layer folders located in the lower folder of the changed file and stored.
  • FIG. 8 illustrates an upper layer of a lowermost layer matching the modified mark in step S150 performed after FIG. 6 in the method for automatically configuring a homepage by a cloud web hard file and folder architecture according to an embodiment of the present invention.
  • This is a flow chart showing the configuration process for a folder.
  • the responsive web-based homepage composition and management server 3b may cloud a selection signal for one 'modification icon' and at least one 'modification mark' constituting area information for each modification unit. Waiting for reception from the user terminal 1 via the network 2 (S310).
  • the responsive web-based homepage configuration and management server 3b may be configured to include one or more 'correction marks' constituting one piece of area information with respect to the selection signal of step S310. It is determined whether the selection signal for one is received (S320).
  • step S320 If the determination result of step S320 is not a selection signal for the correction mark, the process proceeds to step S510 to be described later. On the contrary, if it is the selection signal for the correction mark, the responsive web-based homepage configuration and management server 3b. Is a selection question box for selecting one of 'style change' and 'content change' with respect to the correction mark implemented by the user terminal 1 and is changed by the user terminal 1 and the implementation is completed. A selection signal for one of the contents change is received (S330). That is, in FIG. 12, the style change may be implemented as 31, and the content change may be implemented as 32.
  • a style change or a content change may be selected after selection of a toy world icon, and image change and text change menus may be changed by content change as shown in FIG. 14.
  • the responsive web-based homepage composition and management server 3b determines whether or not the selection signal for 'style change' according to the step S330 is received from the user terminal 1 (S340).
  • step S340 If it is determined in step S340 that the selection signal for 'style change' is not received, the process proceeds to step S410 described later.
  • the determination result of the step (S340) when receiving the selection signal for the 'style change', the response web-based homepage configuration and management server 3b is the style for the user terminal 1 through the cloud network (2) Receive change information on the layer corresponding to the selection signal in step S320 according to the input content on the information box (batch status selection tool, content input tool, file upload tool, linked SNS or web address setting tool) for change Wait for (S350).
  • the responsive web-based homepage composition and management server 3b changes the change information on the layer corresponding to the selection signal in step S320 to the responsive web homepage information applied to the selected area.
  • a request is made to the cloud web hard-based homepage responsive web server 3a via the network 2 (S360). Accordingly, the cloud web hard-based homepage responsive web server 3a changes the file corresponding to the layer change information constituting a folder corresponding to one of the second to nth layers matching the selected area information. Do it and save it.
  • the responsive web-based homepage composition and management server 3b selects a signal for a modification mark other than the selection signal for the 'correction mark' according to the step S320 of configuring any area information. It is determined whether the reception (S370).
  • step S370 when a selection signal for another correction mark is received, the process returns to step S330 to repeatedly perform steps S330 to S370.
  • step S370 does not receive a selection signal for another correction mark
  • the responsive web-based homepage configuration and management server 3b is configured to change the contents of the selection question box implemented in step S330. It is determined whether the selection signal is received (S410).
  • the responsive web-based homepage configuration and management server 3b determines the components of the content corresponding to the selection signal in step S410 by modification units.
  • the sub-area information is divided into sub-region information, and the 'sub-correction icon' for correcting the lowest sub-layer (first sub-layer) according to each sub-region information is implemented as a corner region of the area information.
  • a 'sub correction mark' for the correction of the sequential sublayers (second to nth sublayers, where n is a natural number of 3 or more) is set to a preset coordinate in the region where each upper sublayer of the lowest sublayer is located.
  • the implementation is completed by changing to the "detail correction icon” according to the selection signal for the "sub-correction icon” on the user terminal 1, or the “detailed correction” in accordance with the selection signal for the "sub-correction mark"
  • the responsive web-based homepage composition and management server 3b is configured to perform the result corresponding to the completion of the operation by selecting the 'detailed modification icon' or the 'detailed modification mark'.
  • the change to the responsive web homepage information applied to the selected area for the received change information is performed through the cloud network 2 through the cloud web hard-based homepage responsive web.
  • Request to the server 3a (S430). Accordingly, the cloud web hard-based home page responsive web server 3a changes and stores a file corresponding to change information constituting a folder corresponding to a sub layer of the selected area information.
  • the responsive web-based homepage configuration and management server 3b changes the first layer according to the selection of one 'modification icon' constituting one area information with respect to the selection signal of step S310. Wait for reception (S510).
  • the responsive web-based homepage composition and management server 3b configures the first layer as the bottom layer, and if there is a configuration change for the correction mark, the change information received in the step S360 At least one layer of the corresponding second to nth layers, and / or a layer that sequentially stacks at least one or more layers of the second to nth sublayers corresponding to the change information received in operation S430 in ascending order.
  • the structure is configured to request to the cloud web hard-based homepage responsive web server 3a through the cloud network 2 (S520). Accordingly, the cloud web hard-based homepage responsive web server 3a performs a change on a file corresponding to the detailed lowest layer change information constituting a folder corresponding to the lowest layer of the selected area information.
  • step S360 If there is a configuration change for the correction mark in step S360, a change is made to a file in a folder against change information among the second to nth layer folders located in the lower folder of the changed file, and stored in step S430. If there is a configuration change with respect to the correction mark, a change is made to a file of a folder corresponding to the change information in the second to nth sublayer folders and stored (S520).
  • the responsive web homepage can be configured with different depths such as "1depth> Parent Folder> Background Image, 2depth> Child Folder> Background Image, 3depth> Child Folder> Folder Image, 3depth> Child Folder> Folder Letter". You can configure folders and file units separated by depth.
  • the invention can also be embodied as computer readable code on a computer readable recording medium.
  • Computer-readable recording media include all kinds of recording devices that store data that can be read by a computer system.
  • Examples of computer-readable recording media include ROM, RAM, CD-ROM, magnetic tape, floppy disks, optical data storage devices, and the like, which are also implemented in the form of carrier waves (eg, transmission over the Internet). It also includes.
  • the computer readable recording medium can also be distributed over network coupled computer systems so that the computer readable code is stored and executed in a distributed fashion.
  • functional programs, codes and code segments for implementing the present invention can be easily inferred by programmers in the art to which the present invention belongs.

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  • Information Transfer Between Computers (AREA)

Abstract

La présente invention concerne un procédé de configuration automatique de page d'accueil par un fichier Web Hard nuagique et une architecture de dossier, et un système associé. La présente invention est caractérisée en ce qu'elle comprend : une première étape par laquelle un serveur Web sensible à une page d'accueil à base de Web Hard nuagique (3a) transmet à un terminal utilisateur des informations de page d'accueil à base de Web sensible qui correspondent à un compte de connexion (1) et amène ces dernières à être mises en œuvre sur le terminal d'utilisateur (1); une deuxième étape par laquelle le serveur Web sensible à une page d'accueil à base de Web Hard nuagique (3a) réalise le réglage d'un changement de session de données sur un serveur de configuration et de gestion de page d'accueil à base de Web sensible (3b) pour le terminal d'utilisateur (1) à travers un réseau nuagique (2), selon une requête de changement des informations de page d'accueil à base de Web sensible à partir du terminal utilisateur (1); et une troisième étape par laquelle, selon la commande du serveur de configuration et de gestion de page d'accueil à base de Web sensible (3b), le terminal utilisateur (1) met en œuvre des éléments constitutifs, qui constituent une page d'accueil à base de Web sensible, par division de ces derniers en éléments d'informations de région (40) pour des unités de modification respectives, met en œuvre, dans une région périphérique des informations de région, une « icône de modification » (20) pour modifier une couche la plus basse (une première couche) selon les éléments respectifs d'informations de région, et met en œuvre au moins une « marque de modification » (30) pour modifier des couches séquentielles (deuxième à nième couches, où n est un nombre entier naturel supérieur ou égal à 3), qui constituent des couches supérieures de la couche la plus basse, à des coordonnées préréglées parmi des régions dans lesquelles les couches supérieures respectives de la couche la plus basse sont positionnées. Par conséquent, la présente invention présente l'effet de permettre à toute personne de fournir facilement un style pour un document Web (HTML) pour un dossier sur un Web Hard, de régler un ordre d'affichage, et de restituer des pages d'accueil sous diverses formes.
PCT/KR2016/012914 2015-11-11 2016-11-10 Procédé de configuration automatique de page d'accueil par un fichier web hard nuagique et une architecture de dossier, et système associé WO2017082648A1 (fr)

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KR1020150158269A KR101629383B1 (ko) 2015-11-11 2015-11-11 클라우드 웹하드 파일 및 폴더 아키텍처에 의한 홈페이지 자동구성을 위한 방법, 그 시스템
KR10-2015-0158269 2015-11-11

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