Method and system for providing move in construction service
Patent Information
- Application Number
- KR1020260034075
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2026-02-24
- Publication Date
- 2026-08-14
- Estimated Expiration
- 2046-02-24
Smart Images

Figure 112026022776129-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a method and system for providing move-in construction services. It falls within the technical field of generating and providing a construction work schedule based on a detailed work sequence determined according to pre-set process-specific work arrangement conditions and a move-in date. Background Technology
[0002] Generally, prospective residents moving into newly built apartments or villas utilize various construction services to enhance convenience and improve their living environment before moving in. These services include a wide range of items such as grout sealing, elastic coating, move-in cleaning, removal of sick building syndrome, nano-coating, and insulation film installation.
[0003] However, in the conventional move-in construction market, specialized companies are fragmented by construction item, causing inconvenience for prospective residents who must contact each company individually to coordinate schedules. In particular, despite the existence of a mandatory physical sequence that must be followed between construction items, problems frequently arise where the order of work is reversed because non-expert prospective residents are unaware of this.
[0004] For example, there are problems with process interference, such as having to clean up after moving in because work involving the installation of elastic coatings or system air conditioners, which generate a lot of dust, is scheduled after the move-in cleaning, or another worker being brought in immediately after joint work, which requires drying (curing) time for the finishing material, and damaging the construction area.
[0005] Furthermore, while the scheduled move-in date is fixed, the availability of each contractor is fluid; therefore, simply scheduling in sequential order results in cases where all construction cannot be completed by the move-in date.
[0006] Accordingly, the present invention aims to provide a method and system for providing move-in construction services that can provide a construction work schedule capable of minimizing interference between processes while adhering to deadlines by calculating backward from a fixed move-in date. Prior art literature
[0007] (01) Korean Registered Patent No. 10-2149818 (Aug. 25, 2020) The problem to be solved
[0008] The present invention aims to solve the aforementioned problems, and the objective of the present invention is to provide a method and system for providing move-in construction services that can classify each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process.
[0009] In addition, the purpose is to provide a method and system for providing move-in construction services that can determine the detailed work sequence of each preceding process group and succeeding process group by referring to process-specific work arrangement conditions that include work interference avoidance conditions and mandatory curing conditions.
[0010] In addition, the purpose is to provide a method and system for providing move-in construction services capable of providing a construction work schedule by applying a fixed move-in date and a determined work sequence to an AI-based reverse scheduling model.
[0011] The above and other objects and advantages of the present invention will become apparent from the following description describing preferred embodiments. means of solving the problem
[0012] A system for providing move-in construction services connected via a move-in management platform from a user terminal according to an embodiment of the present invention for achieving the above-mentioned purpose may include: an information receiving unit that receives move-in information including an address, housing type, exclusive area, floor plan, move-in date, and inspection date from the user terminal; a target selection unit that receives at least one construction request target by providing a list of construction items activated according to the move-in information to the user terminal; a target classification unit that classifies each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process, based on whether dust is generated and whether there is a risk of damage to finishing materials for each pre-set construction item; a work management unit that determines a first detailed work sequence for the preceding process group and a second detailed work sequence for the succeeding process group based on pre-set work arrangement conditions for each process; and an integrated service unit that generates a construction work schedule by applying the first and second detailed work sequences and the move-in date to a pre-set artificial intelligence-based inverse scheduling model and provides it to the user terminal.
[0013] In the embodiment, the pre-set process-specific work arrangement conditions may include work interference avoidance conditions to prevent physical collisions between construction items and curing requirements to block the commencement of subsequent work for a certain period of time to cure the finishing material after construction is completed.
[0014] In an embodiment, the integrated service unit includes a schedule analysis unit that analyzes the construction work schedule to derive work capability characteristics and a schedule, a company selection unit that selects matching company information from previously registered construction company information based on the work capability characteristics and a schedule, and a page management unit that generates a user-customized product payment page reflecting construction options and price information by construction item corresponding to the matching company information and provides it to the user terminal, and the construction company information may include a work availability schedule, work capability characteristics according to a construction portfolio, and price information by construction options and construction items.
[0015] In an embodiment, the company selection unit may include a construction ordering unit that confirms whether to accept the work by sending a construction assignment notification message to the corresponding matching company terminal upon confirming a payment signal through the user-customized product payment page; a company information management unit that updates the work availability schedule according to the construction work schedule in the previously registered construction company information when a work acceptance signal is received from the matching company terminal; and a company change unit that re-selects the matching company information based on the work capability characteristics and schedule when the work acceptance signal is not received within a preset threshold time or a work rejection signal is received.
[0016] In an embodiment, the page management unit includes an inspection information receiving unit that receives housing inspection information from the matching company terminal according to the inspection date, a schedule verification unit that applies the housing inspection information and the construction work schedule to a preset artificial intelligence-based construction suitability diagnosis model to diagnose whether the work period of the construction work schedule is suitable, and a consultation service providing unit that provides a user-company consultation service to the user terminal and the matching company terminal through the move-in management platform to manually adjust the construction work schedule based on the diagnosis result regarding the suitability of the work period, and the consultation service providing unit can correct a compensation function for a preset artificial intelligence-based inverse scheduling model using the schedule change history monitored through the user-company consultation service.
[0017] In an embodiment, the integrated service unit further includes an event management unit that receives event schedule information from the user terminal, and the event management unit may include a delay target identification unit that identifies a delayed construction target whose construction schedule changes from the construction work schedule according to the event schedule information, an index estimation unit that estimates a construction quality index by applying the standard construction data of the delayed construction target and the corresponding delay schedule to a preset rule-based construction quality index calculation algorithm, and a delay management unit that reschedules the delayed construction target so that construction commences based on the end time of the corresponding event schedule when the construction quality index is less than a preset threshold quality index.
[0018] In an embodiment, the integrated service unit further includes a construction management unit that receives information on defects occurring after construction is completed from the user terminal, and the construction management unit includes a response confirmation unit that receives information on the time of report receipt, the time of action completion, and response measures from the matching company terminal according to the information on defects, and a company evaluation unit that updates the management evaluation score by company with the construction management evaluation score calculated according to the user satisfaction evaluation score for the response measures information and the response measures period from the time of report receipt to the time of action completion, and the company selection unit can determine the priority selection ranking based on the management evaluation score by company when at least two of the matching company information are selected.
[0019] In an embodiment, the schedule analysis unit includes a slack period identification unit that identifies a slack period allocated for curing and drying for each detailed task from the construction work schedule; a slack period analysis unit that analyzes standard construction data of at least one construction request target and previously collected weather forecast data to derive a variable range for the slack period; and a schedule adjustment unit that adjusts the construction work schedule by adjusting the slack period based on the occupancy type received as a response upon querying the user terminal and the variable range. The occupancy type may include a fast occupancy type in which the slack period is reduced to a preset minimum period and a safe construction type in which it is extended to a preset maximum period. Effects of the invention
[0020] According to an embodiment of the present invention, a method and system for providing move-in construction services can prevent re-contamination and re-construction problems caused by errors in the order of processes by classifying each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process.
[0021] In addition, by determining the detailed work sequence of each process group by referring to process-specific work arrangement conditions that include work interference avoidance conditions and mandatory curing conditions, the need for the user to plan a complex work sequence to minimize construction defects can be eliminated.
[0022] In addition, by providing a construction work schedule through an AI model that works backward based on a fixed move-in date and a determined work sequence, it is possible to prevent the risk of delays in the move-in date caused by construction delays and support stable move-in preparations. Brief explanation of the drawing
[0023] FIG. 1 is a block diagram schematically showing an occupancy construction service provision system (1000) according to an embodiment of the present invention. FIG. 2 is a block diagram showing an embodiment of the integrated service unit (500) of FIG. 1. FIG. 3 is a block diagram specifically illustrating an embodiment of the company selection unit (520) of FIG. 2. FIG. 4 is a block diagram specifically illustrating an embodiment of the page management unit (530) of FIG. 2. FIG. 5 is a block diagram showing another embodiment of the integrated service unit (500_1) of FIG. 2. FIG. 6 is a block diagram specifically illustrating an embodiment of the event management unit (540) of FIG. 5. FIG. 7 is a block diagram showing another embodiment of the integrated service unit (500_2) of FIG. 2. FIG. 8 is a block diagram specifically illustrating an embodiment of the construction management unit (550) of FIG. 7. FIG. 9 is a block diagram showing an embodiment of the schedule analysis unit (410) of FIG. 2 in more detail. FIG. 10 is an operation process illustrating a method for providing an occupancy construction service according to an embodiment of the present invention. Specific details for implementing the invention
[0024] The present invention will be described in detail below with reference to the embodiments and drawings. These embodiments are presented merely as examples to explain the invention more specifically, and it will be obvious to those skilled in the art that the scope of the invention is not limited by these embodiments.
[0025] Furthermore, unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the present invention pertains, and in the event of a conflict, the description in this specification, including the definitions, shall prevail.
[0026] To clearly explain the proposed invention in the drawings, parts unrelated to the description have been omitted, and similar parts throughout the specification have been given similar reference numerals. Furthermore, when a part is described as "comprising" a certain component, this means that, unless specifically stated otherwise, it does not exclude other components but may include additional components. Additionally, the term "part" as described in the specification refers to a single unit or block that performs a specific function.
[0027] In each step, identification codes (1st, 2nd, etc.) are used for convenience of explanation and do not describe the order of the steps; the steps may be performed differently from the specified order unless a specific order is clearly indicated in the context. That is, the steps may be performed in the same order as specified, substantially simultaneously, or in the reverse order.
[0028] FIG. 1 is a block diagram schematically showing an occupancy construction service provision system (1000) according to an embodiment of the present invention.
[0029] Referring to FIG. 1, the move-in construction service provision system (1000) can communicate with and receive data from a user terminal (10) through a move-in management platform.
[0030] Here, the move-in management platform can be implemented in the form of a smartphone application, a mobile web, or a desktop website, and can include a central server that is connected to a user terminal (10) to perform scheduling operations, company matching, payment processing, and defect management processes required for move-in construction.
[0031] The move-in construction service provision system (1000) according to the embodiment may include an information receiving unit (100), a target selection unit (200), a target classification unit (300), a work management unit (400), and an integrated service unit (500).
[0032] First, the information receiving unit (100) can receive occupancy information from the user terminal (10).
[0033] Here, move-in information may include address, housing type, exclusive area, floor plan, move-in type, move-in date, and inspection date.
[0034] Next, the target selection unit (200) can receive at least one construction request target by providing a list of construction items that are activated according to occupancy information to the user terminal (10).
[0035] Here, the list of construction items may include grouting, elastic coating, lighting installation, system air conditioner installation, wallpapering, interior film, refrigerator cabinet renovation, built-in wardrobe installation, interior door installation, nano-coating, sick building syndrome removal treatment, insulation film application, and curtain / blind installation.
[0036] Next, the target classification unit (300) can classify each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process, based on whether dust is generated and whether there is a risk of damage to the finishing material for each pre-set construction item.
[0037] Here, the move-in cleaning process may refer to a process performed between a preceding process group and a succeeding process group.
[0038] Next, the work management unit (400) can determine a first detailed work order for a preceding process group and a second detailed work order for a succeeding process group based on pre-set process-specific work arrangement conditions.
[0039] Here, the pre-set work arrangement conditions for each process may include work interference avoidance conditions to prevent physical collisions between construction items and curing requirements to block the commencement of subsequent work for a certain period of time to cure the finishing material after construction is completed.
[0040] Next, the integrated service unit (500) can apply the first and second detailed work sequences determined through the work management unit (400) and the move-in date confirmed in the move-in information to a preset artificial intelligence-based reverse scheduling model to generate a construction work schedule and provide it to the user terminal (10).
[0041] Here, the construction work schedule is schedule data for each construction request object arranged chronologically between the move-in date and the inspection date, and may include a construction item name, identification process group, work start date, work end date, move-in cleaning date, and a buffer period.
[0042] In this case, the AI-based inverse scheduling model can be modeled by learning through machine learning that takes training data samples, including the first and second detailed task sequences and move-in dates, as input and outputs the construction work schedule for each training data sample. This AI-based inverse scheduling model may be an artificial neural network algorithm that receives the first and second detailed task sequences and move-in dates as input and derives a construction work schedule.
[0043] According to one embodiment, the integrated service unit (500) can classify and pre-register construction company information received from each construction company terminal (20_1 to 20_N) in a database (hereinafter 30 in FIG. 2). At this time, in order to ensure fair bidding competition, the integrated service unit (500) can mask the company name, company brand, and contact information identified from the construction company information to blind them and share them with the user terminal (10) through the move-in management platform.
[0044] According to another embodiment, the integrated service unit (500) may collect activity data for each construction company, including platform usage logs for each construction company, customer complaint rates for each construction company, and construction schedule compliance rates for each construction company. At this time, the integrated service unit (500) may calculate a platform integrity index by applying the activity data for each construction company to a pre-set integrity calculation formula. At this time, the integrated service unit (500) may filter out and remove matching targets from the corresponding matching company information in advance, provided that the platform integrity index is below the standard index.
[0045] According to another embodiment, the integrated service unit (500) may generate an alternative schedule in which, if matching company information is not selected, the work order is maintained from the construction work schedule, the work schedule is changed, and another matching company information is selected. At this time, the integrated service unit (500) may generate an alternative option payment page according to the alternative schedule and provide it to the user terminal (10).
[0046] According to another embodiment, the integrated service unit (500) can convert construction work schedules, matching company information, user payment history, and defect warranty information into hash values and distribute and record them on a blockchain network.
[0047] According to another embodiment, the integrated service unit (500) can analyze a pre-construction house image received from a user terminal (10) to identify constructible items from a construction item list. At this time, the target selection unit (200) can display constructible items in the construction item list and provide them to the user terminal (10).
[0048] According to another embodiment, the integrated service unit (500) can generate and provide 3D modeling data of the expected construction result to the user terminal (10) based on at least one construction request target selected by the user terminal (10) and a house image before construction.
[0049] According to another embodiment, the integrated service unit (500) can recommend a construction item tailored to a personality type from a list of construction items to the user terminal (10) based on the MBTI personality type identified by providing an MBTI test template to the user terminal (10).
[0050] For example, the integrated service department (500) can select and recommend items such as installing a middle door to block external noise, installing an insulating film, and blackout curtains for privacy protection when the person has an introverted (I) tendency, and items such as a coffered ceiling light to maximize the sense of openness in the living room and an island dining table renovation suitable for inviting guests when the person has an extroverted (E) tendency.
[0051] Hereinafter, the structure of the present invention and the resulting effects are to be explained in more detail through specific embodiments and comparative examples. However, these embodiments are intended to explain the present invention more specifically, and the scope of the present invention is not limited to these embodiments.
[0052] FIG. 2 is a block diagram showing an embodiment of the integrated service unit (500) of FIG. 1.
[0053] Referring to FIGS. 1 and FIGS. 2, the integrated service unit (500) may include a schedule analysis unit (510), a vendor selection unit (520), and a page management unit (530).
[0054] First, the schedule analysis unit (510) can analyze the construction work schedule to derive the work capability characteristics and work period schedule required for each process.
[0055] Here, work capability characteristics may include technical difficulty, required equipment, workforce size, specialized construction field, technical grade, and quality index based on past construction history.
[0056] Next, the company selection department (520) can select matching company information from construction company information already registered in the database (30) based on work capability characteristics and work period schedule.
[0057] Here, the registered construction company information may include work availability schedules, work capability characteristics analyzed based on the construction portfolio, construction options, and price information by construction item.
[0058] Next, the page management unit (530) can generate a user-customized product payment page that reflects construction options and price information for each construction item corresponding to the matching company information and provide it to the user terminal (10).
[0059] FIG. 3 is a block diagram specifically illustrating an embodiment of the company selection unit (520) of FIG. 2.
[0060] Referring to FIGS. 2 and FIGS. 3, the contractor selection unit (520) may include a construction ordering unit (521), a contractor information management unit (522), and a contractor change unit (523).
[0061] First, the construction ordering department (521) can confirm whether to accept the work by sending a construction assignment notification message to the corresponding construction company terminal (e.g., 20_1) that corresponds to the matching company information, as it confirms the payment signal through the user-customized product payment page.
[0062] Next, when the company information management unit (522) receives a work acceptance signal from the construction company terminal (e.g., 20_1), it can update the work availability schedule according to the construction work schedule in the previously registered construction company information.
[0063] Next, the company change unit (523) can re-select matching company information based on work capability characteristics and schedule if a work acceptance signal is not received within a preset threshold time or if a work rejection signal is received.
[0064] FIG. 4 is a block diagram specifically illustrating an embodiment of the page management unit (530) of FIG. 2.
[0065] Referring to FIGS. 2 and FIGS. 4, the page management unit (530) may include an inspection information receiving unit (531), a schedule verification unit (532), and a consultation service providing unit (533).
[0066] First, the inspection information receiving unit (531) can receive housing inspection information according to the inspection date from the relevant construction company terminal (e.g., 20_1).
[0067] Here, the housing inspection information may include actual housing measurement data, construction environment suitability data, and construction constraints collected by the matching construction company visiting the user's house.
[0068] Next, the schedule verification unit (532) can apply the housing inspection information and the construction work schedule to a preset artificial intelligence-based construction suitability diagnosis model to diagnose whether the work period of the construction work schedule is suitable.
[0069] Here, the construction suitability diagnosis model may be an artificial neural network algorithm modeled by learning through machine learning that takes multiple previously collected housing inspection information as input and outputs the construction work period for each housing inspection information.
[0070] Specifically, the schedule verification unit (532) can compare the construction work period and the construction work schedule for the housing inspection information confirmed through the construction suitability diagnosis model, and diagnose whether the work period of the construction work schedule is suitable based on the comparison result.
[0071] Next, the consultation service provider (533) can provide a user-company consultation service to manually adjust the construction work schedule based on the diagnosis result regarding suitability, through the move-in management platform to the user terminal (10) and the corresponding construction company terminal (e.g., 20_1).
[0072] According to an embodiment, the consultation service provider (533) can correct the compensation function for a preset artificial intelligence-based inverse scheduling model by using the schedule change history monitored through the user-company consultation service.
[0073] FIG. 5 is a block diagram showing another embodiment of the integrated service unit (500_1) of FIG. 2, and FIG. 6 is a block diagram specifically showing an embodiment of the event management unit (540) of FIG. 5.
[0074] Referring to FIGS. 2, 5 and 6, the integrated service unit (500_1) may include a schedule analysis unit (510), a vendor selection unit (520), a page management unit (530), and an event management unit (540).
[0075] Hereinafter, the redundant description of the schedule analysis unit (510), company selection unit (520), and page management unit (530) with the same member number as described in FIG. 2 is omitted.
[0076] As illustrated in FIG. 5, the event management unit (540) can receive event schedule information from the user terminal (10).
[0077] Here, event schedule information may refer to specific user schedules that cause physical occupation of the workspace or limitations on the availability of work hours due to external factors other than construction work. For example, event schedule information may include furniture and appliance delivery schedules, and infrastructure installation schedules such as internet and city gas.
[0078] Specifically, the event management unit (540) may include a delay target identification unit (541), an index estimation unit (542), and a delay management unit (543), as shown in FIG. 6.
[0079] First, the delay target identification unit (541) can identify a delayed construction target whose construction schedule changes from the construction work schedule according to the event schedule information.
[0080] Next, the index estimation unit (542) can estimate the construction quality index by applying the standard construction data of the delayed construction target and the corresponding delay schedule to a preset rule-based construction quality index calculation algorithm.
[0081] Here, the rule-based construction quality calculation algorithm may be an algorithm that calculates a construction quality index using standard construction data and a delay schedule as variables.
[0082] Next, the delay management unit (543) can reschedule the delayed construction target to proceed with construction based on the end time of the event schedule when the construction quality index is less than a preset threshold quality index.
[0083] According to the embodiment, the delay management unit (543) can reflect the corresponding delay schedule of the delayed construction target in the construction work schedule when the construction quality index exceeds a preset threshold quality index.
[0084] FIG. 7 is a block diagram showing another embodiment of the integrated service unit (500_2) of FIG. 2, and FIG. 8 is a block diagram specifically showing an embodiment of the construction management unit (550) of FIG. 7.
[0085] Referring to FIGS. 2, 5, 7 and 8, the integrated service unit (500_2) may include a schedule analysis unit (510), a vendor selection unit (520), a page management unit (530), an event management unit (540), and a construction management unit (550).
[0086] Hereinafter, the redundant description of the schedule analysis unit (510), vendor selection unit (520), page management unit (530), and event management unit (540) with the same member number as described in FIG. 5 is omitted.
[0087] As illustrated in FIG. 7, the construction management unit (550) can receive information on defects occurring after construction is completed from the user terminal (10).
[0088] Here, defect occurrence information may include photos, text descriptions, and related data including functional defects, aesthetic damage, or inadequate finishing of the construction target identified by the user after the construction work is completed.
[0089] Specifically, the construction management department (550) may include a response verification department (551) and a company evaluation department (552), as shown in FIG. 8.
[0090] First, the response confirmation unit (551) can receive information on the time of report receipt, time of action completion, and response action from the relevant construction company terminal (e.g., 20_1) according to the defect occurrence information.
[0091] Here, the response action information may be a result report containing repair details, explanation of the cause of the defect, and supporting data performed by the relevant matching company regarding the defect occurrence information.
[0092] According to an embodiment, the response verification unit (551) can diagnose the defect status of a construction target by applying defect occurrence information to a preset artificial intelligence-based defect status diagnosis model.
[0093] Here, the defect state diagnosis model may be an artificial neural network algorithm that is pre-modeled by learning through machine learning that takes previously collected defect occurrence information samples as input and outputs the defect state for each defect occurrence information sample.
[0094] At this time, the response verification unit (551) can extract a customized response guide from a list of response guides for each defect condition that has been registered based on the defect condition of the construction target and provide it to the construction company terminal (e.g., 20_1).
[0095] Next, the company evaluation department (552) can update the user satisfaction evaluation score for the response measure information received from the user terminal (10) and the construction management evaluation score calculated based on the response measure period from the time of report receipt to the time of completion of the measure to the company-specific management evaluation score already registered in the database (30).
[0096] At this time, the company selection unit (200) can determine the priority selection ranking based on the management evaluation score for each company when at least two or more matching company information are selected.
[0097] FIG. 9 is a block diagram showing an embodiment of the schedule analysis unit (410) of FIG. 2 in more detail.
[0098] Referring to FIGS. 1 and FIGS. 9, the schedule analysis unit (410) may include a slack period identification unit (411), a slack period analysis unit (412), and a schedule adjustment unit (413).
[0099] First, the slack period identification unit (411) can identify the slack period allocated for curing and drying for each detailed task from the construction work schedule.
[0100] Next, the slack period analysis unit (412) can analyze standard construction data of at least one construction request target and previously collected weather forecast data to derive a possible range of variation for the slack period.
[0101] Next, the schedule adjustment unit (413) can provide the user terminal (10) with a construction work schedule adjusted by adjusting the buffer period based on the move-in type and variable range confirmed in the move-in information.
[0102] Here, the move-in type may include a quick move-in type with a buffer period reduced to a preset minimum period and a safe construction type with a buffer period extended to a preset maximum period.
[0103] FIG. 10 is an operation process illustrating a method for providing an occupancy construction service according to an embodiment of the present invention.
[0104] Referring to FIGS. 1 and FIGS. 10, first, in step S110, the information collection unit (100) can receive occupancy information from the user terminal (10).
[0105] Then, in step S120, the target selection unit (200) can receive at least one construction request target by providing a list of construction items that are activated according to the occupancy information to the user terminal (10).
[0106] Then, in step S130, the target classification unit (300) can classify each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process, based on whether dust is generated and whether there is a risk of damage to the finishing material for each pre-set construction item.
[0107] At this time, in step S140, the work management unit (400) can determine a first detailed work order for a preceding process group and a second detailed work order for a succeeding process group based on pre-set work arrangement conditions.
[0108] Subsequently, at step S150, the integrated service unit (500) can apply the first and second detailed work sequences and the move-in date to a preset artificial intelligence-based reverse scheduling model to generate a construction work schedule and provide it to the user terminal (10).
[0109] In this specification, only a few examples among the various embodiments performed by the inventors are described; however, the technical concept of the present invention is not limited or restricted thereto, and it is obvious that it can be modified and implemented in various ways by those skilled in the art. Explanation of the symbols
[0110] 10: User terminal 20_1~20_N: Each construction company's terminal 100: Information receiving unit 200: Target selection section 300: Target Classification Section 400: Work Management Department 500: Integrated Services Department 1000: Move-in Construction Service Provision System
Claims
Claim 1 A move-in construction service providing system connected via a move-in management platform from a user terminal, comprising: an information receiving unit that receives move-in information including an address, housing type, exclusive area, floor plan, move-in date, and inspection date from the user terminal; a target selection unit that receives at least one construction request target by providing a list of construction items activated according to the move-in information to the user terminal; a target classification unit that classifies each construction request target into a preceding process group and a succeeding process group based on the move-in cleaning process, based on the pre-set dust generation and risk of damage to finishing materials for each construction item; and a work management unit that determines a first detailed work sequence for the preceding process group and a second detailed work sequence for the succeeding process group, based on pre-set work arrangement conditions for each process. The integrated service unit includes the first and second detailed work sequences and the move-in date, and generates a construction work schedule by applying them to a preset AI-based reverse scheduling model and provides it to the user terminal; the preset work arrangement conditions by process include work interference avoidance conditions to prevent physical collisions between construction items and curing essential conditions to block the commencement of subsequent work for a certain period of time to cure the finishing material after construction is completed; the integrated service unit includes a schedule analysis unit that analyzes the construction work schedule to derive work capability characteristics and a schedule; and a company selection unit that selects matching company information from preset construction company information based on the work capability characteristics and a schedule.The system includes a page management unit that generates a user-customized product payment page reflecting construction options and price information by construction item corresponding to the matching company information and provides it to the user terminal, wherein the construction company information includes a work availability schedule, work capability characteristics according to the construction portfolio, and price information by the construction options and construction items, and the company selection unit confirms the payment signal through the user-customized product payment page and, upon confirmation, sends a construction assignment notification message to the corresponding matching company terminal to confirm whether the work is accepted; and a company information management unit that, upon receiving a work acceptance signal from the matching company terminal, updates the work availability schedule according to the construction work schedule in the previously registered construction company information. and includes a company change unit that re-selects the matching company information based on the work capability characteristics and schedule when the above-mentioned work acceptance signal is not received within a preset threshold time or a work rejection signal is received, and the page management unit includes an inspection information receiving unit that receives housing inspection information from the matching company terminal according to the inspection date; and a schedule verification unit that applies the housing inspection information and the above-mentioned construction work schedule to a preset artificial intelligence-based construction suitability diagnosis model to diagnose whether the work period of the above-mentioned construction work schedule is suitable.Based on the diagnostic result regarding the suitability of the above work period, the consultation service providing unit provides a user-company consultation service to the user terminal and the matching company terminal through the occupancy management platform to manually adjust the construction work schedule, and the consultation service providing unit corrects a compensation function for a preset AI-based inverse scheduling model using the schedule change history monitored through the user-company consultation service, and the integrated service unit further includes an event management unit that receives event schedule information from the user terminal, and the event management unit includes a delay target identification unit that identifies a delayed construction target whose construction schedule changes from the construction work schedule according to the event schedule information; and an index estimation unit that estimates a construction quality index by applying the standard construction data of the delayed construction target and the corresponding delay schedule to a preset rule-based construction quality index calculation algorithm. ...and if the construction quality index is below a preset threshold quality index, the system includes a delay management unit that reschedules the delayed construction target so that construction commences based on the end time of the corresponding event schedule; the integrated service unit further includes a construction management unit that receives information on defects occurring after construction completion from the user terminal; the construction management unit includes a response confirmation unit that receives information on the time of report receipt, the time of action completion, and response measures from the matching company terminal according to the defect occurrence information; and a company evaluation unit that updates the company-specific management evaluation score with the construction management evaluation score calculated based on the user satisfaction evaluation score for the response measures information and the response measures period from the time of report receipt to the time of action completion; the company selection unit determines the priority selection ranking based on the company-specific management evaluation score when at least two of the matching company information are selected; and the schedule analysis unit includes a slack period identification unit that identifies the slack period allocated for curing and drying for each detailed task from the construction work schedule.A slack period analysis unit that analyzes standard construction data of at least one construction request target and previously collected weather forecast data to derive a possible range of variation for the slack period; The system includes a schedule adjustment unit that adjusts the construction work schedule by adjusting the buffer period based on the move-in type received as a response upon querying the user terminal and the variable range; the move-in type includes a fast move-in type in which the buffer period is reduced to a preset minimum period and a safe construction type in which the buffer period is extended to a preset maximum period; the integrated service unit selects and recommends a tendency-tailored construction item from the construction item list based on the MBTI personality type confirmed by providing an MBTI test template to the user terminal; if the MBTI personality type is introverted (I), the integrated service unit selects and recommends to the user terminal an item for installing a middle door to block external noise, an item for installing thermal insulation film, and an item for blackout curtains for privacy protection from the construction item list; if the MBTI personality type is extroverted (E), it selects and recommends to the user terminal a coffered ceiling lighting item to maximize the sense of openness in the living room and an item for refurbishing an island table suitable for inviting guests from the construction item list; and the integrated service unit [reviews] platform usage logs by construction company, customer complaint rates by construction company, and construction A system for providing move-in construction services, which collects activity data by construction company including compliance rates with construction schedules by company, calculates a platform integrity index by applying the said activity data by construction company to a preset integrity calculation formula, and filters out and removes matching targets from said matching company information whose platform integrity index is below a standard index. 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