WO2023124076A1 - Procédé et appareil de génération de schéma d'installation de maison intelligente et support de stockage lisible par ordinateur - Google Patents

Procédé et appareil de génération de schéma d'installation de maison intelligente et support de stockage lisible par ordinateur Download PDF

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WO2023124076A1
WO2023124076A1 PCT/CN2022/109683 CN2022109683W WO2023124076A1 WO 2023124076 A1 WO2023124076 A1 WO 2023124076A1 CN 2022109683 W CN2022109683 W CN 2022109683W WO 2023124076 A1 WO2023124076 A1 WO 2023124076A1
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room
smart
deployment
coordinates
information
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PCT/CN2022/109683
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English (en)
Chinese (zh)
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杨倩
王丹妮
张腾
徐泽明
张政
刘凯强
孔鹮
章峰
李�杰
廖亮
于宏全
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中兴通讯股份有限公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]
    • G06F30/10Geometric CAD
    • G06F30/13Architectural design, e.g. computer-aided architectural design [CAAD] related to design of buildings, bridges, landscapes, production plants or roads
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Definitions

  • the present disclosure relates to but not limited to the field of smart home, in particular, relates to but not limited to a method, a device and a computer-readable storage medium for generating a layout map of a smart home.
  • the smart home layout drawing generation method, device and computer-readable storage medium provided by the present disclosure solve the technical problem that the deployment and design process of the smart home is complicated and the user experience is low.
  • the present disclosure provides a method for generating a smart home layout diagram, including: acquiring room information of a target house and determining coordinate information of each room; determining deployment requirement information of smart devices according to preset layout rules based on the room information and coordinate information, Deployment demand information includes the type, quantity, and deployment location of smart devices; generate a smart home layout diagram of the target house, and the smart home layout diagram corresponds to the deployment location of each smart device. Reflect the types of smart devices.
  • the present disclosure also provides a smart home layout diagram generating device, including a processor, a memory, and a communication bus; the communication bus is used to realize connection and communication between the processor and the memory; the processor is used to execute one or more computer programs stored in the memory A program to realize the steps of the method for generating a smart home layout diagram as described above.
  • the present disclosure also provides a computer-readable storage medium storing one or more programs, and one or more programs can be executed by one or more processors to implement the above steps of the method for generating a smart home layout diagram.
  • FIG. 1 is a schematic flowchart of a method for generating a smart home layout diagram according to Embodiment 1 of the present disclosure
  • FIG. 2 is a schematic diagram of a detailed flow chart of a method for generating a smart home layout diagram according to Embodiment 1 of the present disclosure
  • FIG. 3 is a schematic diagram of determining a rectangular area corresponding to a target house according to Embodiment 1 of the present disclosure
  • FIG. 4 is a first schematic diagram of the distribution of idealized deployment coordinates of hotspot devices according to Embodiment 1 of the present disclosure
  • FIG. 5 is a second schematic diagram of the distribution of idealized deployment coordinates of hotspot devices according to Embodiment 1 of the present disclosure
  • FIG. 6 is a second schematic flow diagram of the refinement process of the method for generating a smart home layout diagram according to Embodiment 1 of the present disclosure
  • FIG. 7 is a schematic diagram of the coordinates of a certain room in Embodiment 1 of the present disclosure.
  • FIG. 8 is a third schematic flow diagram of the refinement of the method for generating a smart home layout diagram according to Embodiment 1 of the present disclosure.
  • FIG. 9 is a schematic flowchart of a method for generating a smart home layout diagram according to Embodiment 2 of the present disclosure.
  • FIG. 10 is a schematic flow diagram of determining the actual deployment coordinates of hotspot devices according to Embodiment 2 of the present disclosure.
  • FIG. 11 is a schematic diagram of determining actual deployment coordinates of hotspot devices according to Embodiment 2 of the present disclosure.
  • Fig. 12 is a schematic diagram of windows in the hallway according to Embodiment 2 of the present disclosure.
  • FIG. 13 is a generated smart home layout diagram according to Embodiment 2 of the present disclosure.
  • FIG. 14 is a schematic structural diagram of a device for generating a smart home layout diagram according to Embodiment 3 of the present disclosure.
  • this embodiment provides a method for generating a smart home layout diagram, as shown in FIG. 1 , including steps S101 to S103.
  • the acquisition of the room information of the target house and determining the coordinate information of each room includes, but is not limited to, identification based on the floor plan, or input by the user in other ways.
  • Room information includes but is not limited to the type of the room, such as marking whether the room is a living room, bedroom, study, toilet or kitchen, etc. In some implementations, in order to simplify the complexity, areas such as corridors and balconies are also treated as one room. deal with.
  • the coordinate information of each room includes but not limited to at least one of the coordinates of each vertex of the room, the coordinates of various objects in the room, and the coordinates of the central area of the room. The coordinate information uses a certain point as the coordinate origin.
  • a certain corner of the target house may be selected as the coordinate origin, for example, the lower left corner of the target house is the coordinate origin.
  • a certain corner of the floor plan is used as the coordinate origin, such as the lower left corner of the floor plan.
  • the adjacent side of the floor plan or the corner of the room is usually vertical, the horizontal and vertical coordinate axes can be set along the direction of the adjacent side of the floor plan or the corner of the room, which is convenient for determining the coordinate information.
  • the relative relationship between the various coordinate information of the target house is certain, and the coordinate origin and the horizontal and vertical coordinate axes can be arbitrarily determined in practical applications.
  • Deployment requirement information includes the type, quantity and deployment location of smart devices.
  • the smart home layout diagram generation method in this embodiment does not require the user to put forward requirements in advance, and the deployment requirements of smart devices are determined based on the actual situation of the target house, and the deployment requirement information can provide reference suggestions for users for the deployment of smart devices.
  • the area corresponding to the deployment location of each smart device on the smart home layout map indicates the information of the smart device.
  • the information of the smart device at least reflects the type of the smart device.
  • the smart devices are marked at their suggested deployment locations. When the user views the smart home layout diagram, he can intuitively know what kind of smart device needs to be deployed at which location.
  • the smart home layout diagram includes but is not limited to text, pictures and other forms of information labeling of smart devices.
  • the smart home layout diagram can directly present the smart device in the area corresponding to the deployment location of a certain smart device. The name of the type of device.
  • a picture of the smart device is set in an area corresponding to the deployment location of the smart device on the smart home layout map.
  • the information of the smart device may further include more content, such as optional models, specifications, and precautions of the smart device.
  • the smart home layout map only part of the information of the smart device can be directly displayed in the area corresponding to the smart device. When the user clicks on this area, a more complete and specific information will be presented. information.
  • the previous example needs to be based on the fact that the smart home layout diagram is a dynamic and interactive presentation form, but the smart home layout diagram in this embodiment also includes static images. When the home layout diagram is a static image, according to The actual needs show the required information on the smart home layout diagram.
  • determining deployment requirement information of smart devices according to preset layout rules based on room information and coordinate information includes steps S201 to S202.
  • S201 Determine the number of hotspot devices and the ideal deployment coordinates of each hotspot device according to the length and width of the target house.
  • the coverage capabilities of the hotspot devices can be preset, considering that several hotspot devices can completely cover the target house or cover a certain percentage of the area of the target house.
  • Hotspot devices include but are not limited to CPE equipment (Customer Premise Equipment, customer terminal equipment), home routers and other network devices that can convert mobile communication signals or wired broadband signals into local area network signals for other smart devices to connect to.
  • CPE equipment Customer Premise Equipment, customer terminal equipment
  • home routers and other network devices that can convert mobile communication signals or wired broadband signals into local area network signals for other smart devices to connect to.
  • the coverage capability of the hotspot device can be set according to the actual situation.
  • the length and width of the target house can be the length of the longest side and the width of the widest side, and the longest side and the widest side are used to determine the number of hotspot devices to ensure that the number of hotspot devices can meet the requirements of the target house. Coverage needs.
  • the length and width of the target house may also be the maximum difference in coordinates in the length direction and the maximum difference in coordinates in the width direction.
  • determining the number of hotspot devices and the ideal deployment coordinates of each hotspot device according to the length and width of the target house includes: determining a rectangular area corresponding to the target house according to the house type information, as shown in FIG. 3 , The target house is surrounded by the rectangular area, which is the smallest rectangle that can enclose the target house.
  • the length and width of the rectangular area are used as the length X0 and width Y0 of the target house to determine the hotspot device
  • the ideal deployment coordinates of hotspot devices are the coordinates when these hotspot devices are uniformly arranged in the rectangular area.
  • the setting of the hotspot device in this embodiment includes, but is not limited to, equal division in the length and width directions, setting the hotspot device on the equal line in the length and width directions; or dividing the rectangular area into multiple smaller ones zones, placing the hotspot device at the center of these smaller zones.
  • the number of hotspot devices is one
  • its ideal deployment coordinates are the center of the rectangular area.
  • the rectangular area 100 corresponding to the target house is a rectangular area
  • the idealized deployment coordinates 201 of the two hotspot devices are in the length of the rectangular area
  • the directions are at one-third and two-thirds of the length respectively.
  • FIG. 5 there are four hotspot devices, the rectangular area 100 can be divided into four sub-rectangular areas, and the ideal deployment coordinate 201 of each hotspot device is the center of the equally divided sub-rectangular area.
  • the idealized deployment coordinates determined in step S201 are not necessarily equal to the actual location where the hotspot device is to be deployed.
  • the location corresponding to the idealized deployment coordinates may have other factors that are not suitable for deploying the hotspot device.
  • step S202 on the basis of the idealized deployment coordinates, the actual deployment coordinates suitable for deploying the hotspot device need to be determined through the following step S202.
  • step S202 may include: steps S2021 to S2022.
  • the coordinates of a certain corner of each room can be obtained, for example, the coordinates of the lower left corner can be obtained, and whether the position corresponding to the idealized deployment coordinates can be determined according to the length, width and other information of each room in that room.
  • the coordinates of the lower left corner of a room are (Xn, Ym), the positive direction of the X-axis is to the right, and the Y-axis The positive direction of is upward, the length of the room is 3 (in meters), and the width is 2.
  • the X value of the idealized deployment coordinates is not less than Xn, not greater than Xn+3; the Y value is not less than Ym, not greater than Ym+ 2, it can be considered that the idealized deployment coordinates are in the house of the room.
  • the target room in this embodiment includes but is not limited to the main activity area of the residents in real life, and in order to set up hotspot devices, the target room can be equipped with a network port.
  • the target room includes, but is not limited to, at least one of the following rooms configured with network ports: bedroom, study room, and living room. In practical applications, the target room can also be confirmed according to actual needs.
  • the hotspot The actual deployment coordinates of the equipment are determined in the target room with the highest priority.
  • determining the deployment requirement information of the smart device according to the preset layout rules based on the room information and coordinate information includes steps S301 to S302.
  • S301 Determine coordinate information of a reference object in each room that is correlated with the location of the smart device.
  • Determining the coordinate information of each room includes determining the coordinate information of these reference objects.
  • the reference object is used to more accurately locate the actual deployment coordinates of the smart device.
  • the smart device and the reference objects related to the location of the smart device include at least one of the following: the smart device is a hotspot device, and the reference objects include network ports; the smart device is a smart switch, and the reference objects include various The door of the room; the smart device is an audio-visual device, and the reference object includes the TV wall; the smart device is a smart curtain, and the reference object includes the window.
  • acquiring the room information of the target house and determining the coordinate information of each room includes any of the following: acquiring a floor plan input by the user, acquiring room information from the floor plan and determining the coordinate information of each room; According to the real estate and room number of the target house, obtain the floor plan of the target house according to the real estate and house number, obtain the room information from the floor plan and determine the coordinate information of each room; obtain the photos of the target house, and determine the Room information and determine the coordinate information of each room.
  • Ways to obtain the floor plan of the target house according to the real estate and the room number include but are not limited to searching the Internet, such as querying the developer's website, or establishing and maintaining a corresponding database, and querying from the database.
  • the smart home layout map generation method obtains the room information of the target house and determines the coordinate information of each room; based on the room information and coordinate information, the deployment requirement information of the smart device is determined according to the preset layout rules, and the deployment requirement
  • the information includes the type, quantity, and deployment location of smart devices; the smart home layout diagram of the target house is generated, and users can intuitively know what kind of smart devices need to be deployed at any location; it improves the convenience of users when deploying smart homes, and improves user experience.
  • the method for generating a smart home layout diagram includes steps S401 to S404.
  • the floor plan can be identified to determine each room in the house.
  • the floor plan input by the user marks the dimensions of each room in the entire house, and the coordinates of each room can be determined according to the dimensions marked in the floor plan.
  • the lower left corner of the floor plan (the direction in this example is based on the direction when the user enters the floor plan) is used as the origin of the coordinates.
  • the coordinates of the corners are described as the coordinates of the room.
  • the coordinates of the network port are also obtained. If the network port is marked on the floor plan, the coordinates of the network port can be obtained when the floor plan is recognized. If the floor plan does not mark the position of the network port, the user can input the position of the network port. .
  • the house information in this example includes the identified types of rooms, and the types of rooms may be input by the user. For example, after the user inputs the floor plan, the user marks each room on the floor plan. In other examples, the type of the room can also be determined when the floor plan is recognized.
  • the characteristic elements in each room can be identified to determine the type of the room, for example including but not limited to if a certain room is identified If the figure of the bed is drawn in the room, it is determined that the type of the room is a bedroom; if the figure of the toilet is drawn in a certain room, it is determined that the type of the room is a toilet; if the figure of the dining table is drawn in a certain room , then it is determined that the type of the room is a restaurant; if it is recognized that a stove is drawn in a certain room, then it is determined that the type of the room is a kitchen; if it is recognized that a sofa and/or a TV is drawn in a certain room, then Determine the type of the room as a living room.
  • some floor plans may also be directly printed with the text of the room type, which can also be directly recognized.
  • the coordinate information in this example also includes the coordinates of the door and the window, and information such as the size of the door and the window has been obtained.
  • the floor plan of this example reflects the overall shape of the target house as a rectangle, with the long side of the target house being X0 and the wide side being Y0.
  • This example assumes that there are three windows in each room. In practice, the number of windows and the width of the windows reflect the actual situation of the target house.
  • Table 1 shows part of the information obtained before generating the smart home layout diagram in this example (the units of the lengths in the table are all meters).
  • S402. Determine the number and location of hotspot devices.
  • the number of hotspot devices is (rounded up).
  • hotspot devices can only be placed in the study, bedroom 1, bedroom 2, bedroom 3, and living room with network ports, that is, the study, bedroom 1, bedroom 2, bedroom 3, and living room are the target rooms.
  • the process of determining the actual deployment coordinates of each hotspot device according to the idealized deployment coordinates and room information includes steps S501 to S510 .
  • step S501 Whether the idealized deployment coordinates are in the target room; if yes, execute step S502; otherwise, execute step S505; the target rooms in this example include study, bedroom and living room.
  • step S510 the increased step size is set according to the actual situation, such as 0.5 meter, 1 meter, 1.5 meter and so on.
  • the idealized deployment coordinates are not in the target room, search whether there is a target room within the range of ⁇ meters near the idealized deployment coordinates, and if it still does not exist, increase the search range with a predetermined step size, that is, increase ⁇ The value of , until there is a target room within the range of ⁇ meters near the idealized deployment coordinates, then it is determined that the hotspot device is set in the target room, that is, the actual deployment coordinates are in the target room.
  • the actual deployment coordinates will be determined in the order of priority of the study, bedroom, and living room from high to low. in the higher-level target room.
  • this embodiment also provides another example, please refer to Figure 11, first determine the number of hotspot devices as 1, and determine the coordinates of the center of the house as the hotspot device
  • the coordinates of the center of the house can be determined based on converting the house into a more approximate rectangular area 100, and the center of the rectangular area 100 is regarded as the center of the house, which can avoid the There are difficulties in determining the center of the entire house caused by some irregular shapes or arc-shaped rooms.
  • the smallest rectangular area that can enclose the house is used as the rectangular area to determine the center of the house.
  • the center of the house can also be determined by determining a rectangle similar to the overall layout of the house or even other basic graphics in other ways.
  • the idealized deployment coordinates 201 of the hotspot device are determined, and according to the coordinates and sizes of each room, it can be known that the idealized deployment coordinates 201 are in the corridor.
  • the distance z1 from the idealized deployment coordinates 201 to the bedroom 103 is 0.8 meters
  • the distance z2 to the living room 104 is 1.3 meters.
  • Expand the search range to 1 meter, and determine that there is a bedroom 103 within 1 meter of the idealized deployment coordinates 201 then determine that the actual deployment coordinates of the hotspot device are in the bedroom 103 .
  • this embodiment also acquires the coordinates of the network port, and the hotspot device is set in an area close to the network port, for example, the hotspot device may be set within 1 meter from the network port.
  • the actual deployment coordinates of the hotspot device are determined according to the coordinates of the network ports in the target room.
  • these hotspot devices can respectively determine corresponding actual deployment coordinates according to the above steps based on their respective idealized deployment coordinates.
  • S403. Determine the quantity and location of other smart devices.
  • the smart device in this embodiment also includes a smart light.
  • the smart light can determine requirement information such as specifications and quantities according to the size of each room. In this embodiment, it is assumed that only one smart light is deployed in each room, and the coordinates of the deployment position of the smart light are shown in Table 2 below.
  • the smart lights in each room are deployed in the middle of the room.
  • the coordinates of the deployment location of the smart lights may not be able to deploy the smart lights due to some factors, which can be based on the deployment locations of the smart lights in Table 2 above.
  • the coordinates of other smart lights in the room are determined as the actual deployment positions of the smart lights.
  • the coordinate information of objects such as doors and windows is also obtained.
  • the smart switch there is a certain positional relationship between the smart switch and the door. Therefore, when determining the coordinates of the deployment position of the smart switch, the door can be used as a reference object, and the coordinates of the deployment position of the smart switch can be accurately determined based on the door.
  • the layout rule for the smart switch can be: when the door is on the left side of the long side of the room, the deployment position of the smart switch is 20 cm to the right of the threshold on the right side of the door; When the long side of the room is on the right side, the smart switch is deployed at a position 20 cm to the left of the threshold on the left side of the door; when the door is on the upper side of the short side of the room, the smart switch is deployed at the lower side of the door 20 cm below the threshold; when the door is on the lower side of the short side of the room, the deployment position of the smart switch is 20 cm above the threshold on the upper side of the door.
  • the coordinates of the deployment positions of each smart switch determined according to the above process are shown in Table 3 below, and the coordinates in Table 3 are the coordinates of the deployment positions of the smart switches.
  • FIG. 12 is a schematic diagram of windows in the hallway in this embodiment.
  • the windows in other rooms are similar to the hallway, and are not shown in this embodiment.
  • the coordinates of the windows are obtained according to the actual situation.
  • the smart curtain is wider than X i on one side of the window.
  • the coordinates of the exit window can be determined, see Table 4 below, and the unit of the length in the table is meter.
  • This embodiment also recognizes the position of the TV wall.
  • the TV graphic in the floor plan can be identified, and the wall close to the TV is the TV wall; or the position of the sofa graphic in the living room can be identified.
  • the wall opposite to the wall close to the sofa figure is the TV wall.
  • the coordinates of the deployment position of the audio-visual equipment can be determined according to the coordinates of the TV wall, for example, the audio-visual equipment is deployed in the middle of the TV wall; the sofa in the living room can also be used as a reference object to determine the deployment position of the audio-visual equipment
  • the coordinates are the position directly opposite the sofa on the TV wall.
  • the deployment requirement information of the audio-visual equipment may also include the recommended size of the TV set, the viewing distance is obtained, and the recommended size is determined according to the viewing distance.
  • the recommended size of the TV can be marked on the deployment position of the audio-visual equipment as the information of the audio-visual equipment in the final smart home layout diagram. It can be understood that the recommended size of the TV in this embodiment is also applicable to the size of other video-playing audio-visual equipment such as the size projected by a projector. Table 5 below shows a comparison between the recommended size of a TV set and the viewing distance:
  • the viewing distance can be assumed to be the length of the adjacent side of the TV wall-1 meter (or other predetermined distance parameters), or it can be based on the coordinates of the deployment position of the audio-visual equipment and the opposite wall of the sofa or audio-visual equipment The distance between -1 meter (or other predetermined distance parameters) is determined as the viewing distance.
  • smart devices such as air purifiers that have a certain coverage when working can use layout rules similar to hotspot devices to determine the coordinates of the deployment location
  • the target rooms can be residents such as study rooms, bedrooms, and living rooms.
  • a room where you may often stay; for example, a smart night light can adopt a layout rule similar to that of a smart switch.
  • the coordinates of the bed or the bedside cabinet based on the coordinates of the bed or the bedside cabinet, accurately determine the coordinates of the deployment position of the smart night light.
  • the smart toilet can determine the coordinates of the sewer pipe, and use the sewer pipe as a reference object to determine the coordinates of the deployment position of the smart toilet.
  • the deployment requirement information of the smart device is determined, at least a part of the deployment requirement information is reflected on the layout diagram of the smart home.
  • the smart device is displayed on the layout diagram of the smart home in the form of a graphic identification, and the graphic identification can reflect what kind of smart device the smart device is.
  • the generated smart home layout diagram is marked with a graphic corresponding to the hotspot device 30 at the position where the hotspot device 30 is set. If the smart home layout diagram is interactive, then In some examples, more information of the hotspot device 30 , such as model, coverage, etc., may be displayed after receiving a user's click on the graphic of the hotspot device 30 .
  • the smart home layout diagram shown in Fig. 13 also shows the smart lamps 31 in each room in a circular shape. For other smart devices, they can also be presented with corresponding signs in the smart home layout diagram, which will not be repeated in this example.
  • the user can input a photo of the house, and obtain room information and coordinate information of each room according to the photo of the house.
  • the smart home layout diagram generated in this disclosure includes, but is not limited to, a floor plan similar to a floor plan.
  • the corresponding smart device is marked on the corresponding position.
  • the smart home layout diagram can also be a three-dimensional rendering or a three-dimensional graphic of a house AR ⁇ VR scene, and corresponding smart devices can also be marked on corresponding positions.
  • the deployment requirements of the house for smart devices can be determined, and a smart home layout plan suitable for the house can be generated for the user.
  • a smart home layout plan suitable for the house can be generated for the user.
  • the user After the user enters the floor plan or selects the floor plan of his house, he can directly obtain a smart home layout map that identifies the deployment location of the smart device, which improves the convenience of the user when deploying the smart home, even if the technology is small Bai can also know how to realize the smart home deployment of his own house and improve the user experience.
  • This embodiment also provides a device for generating a smart home layout diagram, as shown in FIG. connection and communication; the processor 401 is configured to execute one or more computer programs stored in the memory 402, so as to realize at least one step in the method for generating a smart home layout diagram in the first and second embodiments above.
  • the present embodiment also provides a computer-readable storage medium, including any method or technology for storing information, such as computer-readable instructions, data structures, computer program modules, or other data.
  • volatile or nonvolatile, removable or non-removable media include but are not limited to RAM (Random Access Memory, random access memory), ROM (Read-Only Memory, read-only memory), EEPROM (Electrically Erasable Programmable read only memory, electrically erasable programmable read-only memory ), flash memory or other memory technology, CD-ROM (Compact Disc Read-Only Memory, compact disk read-only memory), digital versatile disk (DVD) or other optical disk storage, magnetic cartridges, tapes, magnetic disk storage or other magnetic storage devices, Or any other medium that can be used to store desired information and that can be accessed by a computer.
  • the computer-readable storage medium in this embodiment can be used to store one or more computer programs, and the one or more computer programs stored in it can be executed by the processor to realize the smart home layout in the first and second embodiments above At least one step in a graph generation method.
  • the functional modules/units in the system and the device can be implemented as software (the computer program code executable by the computing device can be used to realize ), firmware, hardware, and appropriate combinations thereof.
  • the division between functional modules/units mentioned in the above description does not necessarily correspond to the division of physical components; for example, one physical component may have multiple functions, or one function or step may be composed of several physical components. Components cooperate to execute.
  • Some or all of the physical components may be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit .
  • communication media typically embodies computer readable instructions, data structures, computer program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery medium. Therefore, the present disclosure is not limited to any specific combination of hardware and software.
  • the deployment requirement information of smart devices is determined according to the preset layout rules through the room information and the coordinate information of each room, and the graphical In this way, the deployment of smart devices is marked, and users can intuitively know what kind of smart devices need to be deployed at any location. In some implementation processes, the convenience of users when deploying smart homes is improved, and the user experience is improved.

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Abstract

La présente invention concerne un procédé et un appareil de génération d'un schéma d'installation d'une maison intelligente et un support de stockage lisible par ordinateur. Le procédé consiste : à obtenir des informations de pièce d'une maison cible et à déterminer des informations de coordonnées de chaque pièce ; à déterminer des informations de demande de déploiement d'un dispositif intelligent selon une règle de disposition prédéfinie sur la base des informations de pièce et des informations de coordonnées, les informations de demande de déploiement comprenant les types, le nombre et les positions de déploiement de dispositifs intelligents ; et à générer un schéma d'installation de maison intelligente de la maison cible, la zone du schéma d'installation de maison intelligente correspondant aux positions de déploiement des dispositifs intelligents indiquant des informations des dispositifs intelligents et les informations des dispositifs intelligents reflétant au moins les types des dispositifs intelligents.
PCT/CN2022/109683 2021-12-28 2022-08-02 Procédé et appareil de génération de schéma d'installation de maison intelligente et support de stockage lisible par ordinateur WO2023124076A1 (fr)

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