Cluster information management system for urban
Patent Information
- Application Number
- PCT/IB2024/060555
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-03-08
- Filing Date
- 2024-10-26
- Publication Date
- 2025-10-02
AI Technical Summary
Existing urban renewal systems lack transparency, precise mapping, real-time data updates, and integration challenges, leading to inefficient resource allocation and increased maintenance costs, while overlooking ancillary sectors like slums and unauthorized developments.
A cluster information management system (CIMS) that utilizes machine learning algorithms to process data from various sources, generate accurate route maps, and integrate beneficiary information for informed decision-making, optimizing infrastructure investments and reducing maintenance costs.
Enhances urban revitalization by providing comprehensive datasets for informed decisions, improving resource efficiency, and promoting economic development through streamlined data sharing and integration across government departments.
Smart Images

Figure IB2024060555_02102025_PF_FP_ABST
Abstract
Description
CLUSTER INFORMATION MANAGEMENT SYSTEM FOR URBAN RENEWALBACKGROUNDField of the invention
[0001] Embodiments of the present invention generally relate to a cluster information management system and particularly to a system and method for renewing urban areas that assist users in gaining access to a comprehensive dataset and information about the city, allowing them to make more informed decisions about urban growth, infrastructure improvements, and public service.Description of Related Art
[0002] Urban renewal is a broad endeavor that tries to revitalize urban areas, frequently in response to the challenges and opportunities that a city faces. It entails a variety of strategies, programmers, and initiatives aimed at improving and changing many aspects of an urban region, such as its physical, economic, social, and environmental characteristics. Population expansion, economic transformations, technology developments, and developing urban planning and design ideas are all catalysts for urban revival. Government agencies, urban planners, developers, and community organizations must work together frequently to complete projects successfully.
[0003] In each decade, there has been a consistent focus on the core industrial sector, while the ancillary sector has been overlooked. This has led to an alarming trend of unauthorized development, including the emergence of slums, squatter settlements, multi-story slums, multi-story squatter dwellings, and unauthorized multi-story buildings in the vicinity of industrial areas and towns. This unplanned and chaotic development has resulted in the creation of unhealthy settlements and colonies. Theseareas have now become hotspots for potential disasters and pandemics, posing a significant risk to both human life and property.
[0004] Although these traditional approaches have evolved and continue to be important in rehabilitation efforts, they are not without obstacles and issues. Historic preservation, for example, has financial and economic challenges associated with the restoration and upkeep of historical structures and places. Adapting older structures to modern uses, as seen in adaptive reuse, may pose questions about building code compliance and structural stability. Furthermore, these systems are opaque and lack extensive mapping, relying on human processes for route development. They lack accountability mechanisms, real-time data updates, slower processing rates, and integration challenges.
[0005] There is thus a need for a system and method that helps in addressing these challenges and foster successful urban renewal projects.SUMMARY
[0006] The objective of the present invention is to develop a system that contributes to urban revitalization, ultimately making cities more habitable, enjoyable, and inclusive. This, in turn, improves the general quality of life for local people. Furthermore, the system provides data and insights that serve as a source of inspiration for innovative solutions to urban difficulties.
[0007] Another objective of the present invention is to develop a system that supports cities in simplifying their infrastructure investments by identifying areas that need repair, expansion, or rejuvenation. This may result in more efficient resource allocation and lower maintenance costs.
[0008] Embodiments in accordance with the present invention provide a cluster information management system for urban renewal. The system includes an input module configured to receive data about land from a variety of sources. The data includes all types of structures such as residential, commercial, public, and semi-public amenities, infrastructurefacilities, utilities, trees, geographical features, topographic features, roads, gullies, and lanes. The system further includes a processing module configured to process and analyze the received data using a machine learning algorithms to generate a route map and connecting generated route map with the beneficiary finalization to build project structure. The system further includes an output module configured to display the project structure on the user interface of the user device. The system further includes a storage module configured to store data including, beneficial finalization, project structure, and their SUID number to ensure accessibility and data integrity for the urban renewal platform.
[0009] Embodiments in accordance with the present invention further provide a method for renovating the urban area. The method includes collecting data such as residential, commercial, public, and semi-public amenities, infrastructure facilities, utilities, trees, geographical features, topographic features, roads, gullies, lanes during input module. The method further includes transmitting collected data to the processing module for further processing. The method further processing and analyzing the received data using machine learning algorithm to generate the route map.
[0010] The method further includes connecting the generated route map with the pre-stored beneficiary finalization to build project structure. The method further includes displaying the building project structure om user interface of the user device, facilitating decision-making, and urban development initiatives. The method further includes that beneficiary finalization are the name of the owner, type of occupancy, number of family members, carpet area of existing DU, tenure of owner / occupant, eligibility proof and documents, etc. The method further includes that the input module utilizes a variety of sources such as drone survey, LiDAR survey, total station survey, reconnaissance survey, feature extracted includes man-made features, or a combination thereof, to collect data.
[0011] Embodiments of the present invention may provide a number of advantages depending on its particular configuration. First, embodimentsof the present application provide a method for renewing urban areas that assist users in gaining access to a comprehensive dataset and information about the urban area, allowing them to make more informed decisions about urban growth, infrastructure improvements, and public service.
[0012] Next, embodiments of the present application may help cities optimize their infrastructure investments by identifying areas in need of repair, expansion, or renovation. As a result, there may be more efficient use of resources and reduced maintenance costs.
[0013] Next, embodiment of the present invention may support economic development by identifying growth prospects, attracting enterprises, and improving the overall business climate. As a result, this may boost job development and result in increased tax income.
[0014] The cluster information management system (Cl MS) serves as a pivotal tool in the government's Urban Renewal Program, fostering enhanced collaboration and efficiency among various departments. Through seamless integration with existing online systems, CIMS ensures compatibility with any platform related to public interests, promoting a cohesive approach. The system facilitates real-time collaboration, allowing departments instant access to the most current beneficiary information. This not only minimizes redundant efforts but also contributes to informed decision-making. By promoting the sharing of data, CIMS becomes a central repository for information relevant to the Urban Renewal Program, ensuring that all involved departments have access to crucial data. Furthermore, the implementation of common standards for data sharing and integration enables a streamlined process across departments. The finance department benefits from CIMS by leveraging beneficiary information to expedite the verification process for financial aid programs, thereby accelerating disbursements and promoting financial inclusion. Additionally, the integration of CIMS with the property tax department establishes a transparent and efficient system for property tax collection, enhancing overall governance and ownership in the pursuit of urban development goals.
[0015] These and other advantages will be apparent from the present application of the embodiments described herein.
[0016] The preceding is a simplified summary to provide an understanding of some embodiments of the present invention. This summary is neither an extensive nor exhaustive overview of the present invention and its various embodiments. The summary presents selected concepts of the embodiments of the present invention in a simplified form as an introduction to the more detailed description presented below. As will be appreciated, other embodiments of the present invention are possible utilizing, alone or in combination, one or more of the features set forth above or described in detail below.BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The above and still further features and advantages of embodiments of the present invention will become apparent upon consideration of the following detailed description of embodiments thereof, especially when taken in conjunction with the accompanying drawings, and wherein:
[0018] FIG. 1 depicts a cluster information management system for urban renewal, according to an embodiment of the present invention;
[0019] FIG. 2 depicts a block diagram of one or more components of the urban renewal platform, according to an embodiment of the present invention;
[0020] FIG. 3 depicts a flowchart of a method for renovating urban areas, according to an embodiment of the present invention; and
[0021] FIG. 4 depicts a flowchart of a method for accessing the application, according to an embodiment of the present invention.
[0022] The headings used herein are for organizational purposes only and are not meant to be used to limit the scope of the description or the claims. As used throughout this application, the word "may" is used in apermissive sense ( / .e., meaning having the potential to), rather than the mandatory sense ( / .e., meaning must). Similarly, the words “include”, “including”, and “includes” mean including but not limited to. To facilitate understanding, like reference numerals have been used, where possible, to designate like elements common to the figures. Optional portions of the figures may be illustrated using dashed or dotted lines, unless the context of usage indicates otherwise.DETAILED DESCRIPTION
[0023] The following description includes the preferred best mode of one embodiment of the present invention. It will be clear from this description of the invention that the invention is not limited to these illustrated embodiments but that the invention also includes a variety of modifications and embodiments thereto. Therefore, the present description should be seen as illustrative and not limiting. While the invention is susceptible to various modifications and alternative constructions, it should be understood, that there is no intention to limit the invention to the specific form disclosed, but, on the contrary, the invention is to cover all modifications, alternative constructions, and equivalents falling within the spirit and scope of the invention as defined in the claims.
[0024] In any embodiment described herein, the open-ended terms "comprising," "comprises,” and the like (which are synonymous with "including," "having” and "characterized by") may be replaced by the respective partially closed phrases "consisting essentially of," consists essentially of," and the like or the respective closed phrases "consisting of," "consists of, the like.
[0025] As used herein, the singular forms “a”, “an”, and “the” designate both the singular and the plural, unless expressly stated to designate the singular only.
[0026] FIG. 1 depicts a cluster information management system 100 for urban renewal, according to an embodiment of the present invention. In one embodiment of the current invention, a cluster is defined as acollection of items, individuals, or entities that are closely clustered or positioned near each other. The cluster, in its ideal form, refers to an area characterized by a grouping of houses. Further, the system 100 may be configured to improve the accuracy of project structure creation and reduce the risk of project failure. Furthermore, this system 100 is intended to handle and alleviate a variety of issues faced during the project structure construction process.
[0027] According to one embodiment of the present invention, these issues may include concerns such as a lack of transparency, imprecise mapping, excessive human labor, a lack of accountability, a lack of realtime data updates, reduced operational speed, integration difficulties, and others. Embodiments of the present invention are intended to include or otherwise cover any type of the problem including known, related art, and / or later developed technologies. The system 100 further includes a smart card, aids in monitoring the project's status and the implementation progress through their login credentials.
[0028] Furthermore, the system 100 is configured to aid communities in optimizing their infrastructure investments by identifying regions in need of maintenance, expansion, or renewal.
[0029] According to an embodiment of the present invention, the cluster information management system 100 further includes a user device 102, a data center 104, and a communication network 106.
[0030] The communication network 106 may include a data network such as, but not limited to, an Internet, a Local Area Network (LAN), a Wide Area Network (WAN), a Metropolitan Area Network (MAN), and so forth. In some embodiments of the present invention, the communication network 106 may include a wireless network, such as, but not limited to, a cellular network and may employ various technologies including an Enhanced Data Rates for Global Evolution (EDGE), a General Packet Radio Service (GPRS), and so forth. In some embodiments of the present invention, the communication network 106 may include or otherwise cover networks orsub-networks, each of which may include, for example, a wired or a wireless data pathway. According to an embodiment of the present invention, the user device 102 and the data center 104 may be configured to communicate with each other by one or more communication mediums connected to the communication network 106. The communication mediums include, but are not limited to, a coaxial cable, a copper wire, a fiber optic, a wire that comprise a system bus coupled to a processor of a computing device, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the communication mediums, including known, related art, and / or later developed technologies.
[0031] The user device 102 may be configured to enable the user to receive data and transmit data within the system 100. According to embodiments of the present invention, the user device 102 may be, but not limited to, a mobile device, a smart phone, a tablet computer, a portable computer, a laptop computer, a desktop computer, a smart device, a smart watch, a smart glass, and so forth. Embodiments are intended to include or otherwise cover any type of the user device 102, including known, related art, and / or later developed technologies. Further, the user device 102 includes a user interface 108, a memory 110, a processing unit 112, and an application 114.
[0032] The user interface 108 may be configured to enable the user to receive and transmit data within the cluster information management system 100, according to an embodiment of the present invention. The user interface 108 may be further configured to display output data associated with the system 100, in an embodiment of the present invention.
[0033] Further, the user interface 108 may be, but is not limited to, a digital display, a touch screen display, a graphical user interface, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the user interface 108 including known, related art, and / or later developed technologies that may be capable of enabling theuser to input data and to display an output data.
[0034] The memory 110 may be configured for storing data and one or more executable programs. In one embodiment, non-limiting examples of the memory 110 may be a Read Only Memory ROM, a Random-Access Memory RAM, an erasable programmable read only memory, an electrically erasable programmable read only memory, a hard drive, a removable media drive for handling memory cards including known, related art, and / or later developed technologies.
[0035] The processing unit 112 used to process any input data for providing an appropriate output data. As used herein, the processing unit 112 may be any type of a computational circuit, such as, but not limited to, a microprocessor, a microcontroller, a complex instruction set computing microprocessor, a reduced instruction set computing microprocessor, a very long instruction word microprocessor, an explicitly parallel instruction computing microprocessor, a digital signal processor, or any other type of processing circuit, or a combination thereof.
[0036] The application 114 is a software application that the user installs on the user device 102 in order to access one or more services. In one example, the user may access the application 114's services after installing the application 114. In another aspect, the application 114 may be accessed directly by the user over the communication network 106 using a web browser.
[0037] The data center 104 may be configured to receive, store, process, and transmit the data related to the system 100. According to the embodiment of the present invention, the data center 104 may further include an urban renewal platform 116 and a database 118. The urban renewal platform 116 controls an operation of the application 114 installed within the user device 102 via the communication network 106. The urban renewal platform 116 also controls an operation of website accessed using the user device 102 via the communication network 106. In one specific embodiment, the urban renewal platform 116 fetches the details from adatabase 118 in order to control the operation of the application 114. In one embodiment, the urban renewal platform 116 may be hosted on a server not shown. In another embodiment, the urban renewal platform 116 may be installed as a software application within the user device 102.
[0038] The database 118 may be configured to store and retrieve the data associated with the system 100. According to embodiments of the present invention, the database 118 may be, but not limited to, a centralised database, a distributed database, a personal database, an end-user database, a commercial database, a Structured Input Language (SQL) database, a non-SQL database, an operational database, a relational database, a cloud database, an object-oriented database, a graph database, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the database 118 including known, related art, and / or later developed technologies that may be capable of the data storage and retrieval.
[0039] In the preferred embodiment, the data may be, for example, but not limited to collected data, beneficiary finalization, all the applicant’s data, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the data including known, related art, and / or later developed technologies that are required for urban renewal program. In the preferred embodiment, these data are stored with firewall protection.
[0040] FIG. 2 depicts a block diagram 200 of one or more components of the urban renewal platform 116, according to an embodiment of the present invention. The components include an input module 202, a processing module 204, an output module 206, and a storage module 208.
[0041] The input module 202 may be configured to receive data from a variety of sources. In this embodiment of the invention, the data may include but is not limited to, all types of structures such as residential, commercial, public, and semi-public amenities, infrastructure facilities, utilities, trees, geographical features, topographic features, roads, gullies,lanes, and so forth. This invention covers all types of data, whether established, related, or emerging technology. Similarly, all sorts of processors, whether existent, related, or invented in the future, are covered by the embodiments of this invention. Further, the sources utilized for collecting these data are included, but are not limited to Drone survey, LiDAR survey, total station survey, reconnaissance survey, data collection from land records, local authority, coordinate-based land record system, google maps, open street maps, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the source including known, related art, and / or later developed technologies. After collecting the data, the input module 202 sends it to the processing module 204.
[0042] The processing module 204 may be configured to process and analyze the received data using a machine learning algorithms to generate a route map. Furthermore, the processing module 204 is capable of standardizing and preprocessing the data, resulting in the development of a highly accurate route map. In the preferred embodiment, the processing module 204 is responsible for processing both 360-degree images and LiDAR images to create the route map. The route map further includes buildings footprints, cadastral / revenue records, natural / physical features, and so forth. Embodiments of the present invention are intended to include or otherwise cover any type of the data including known, related art, and / or later developed technologies, effectively visualizes all the collected data with precise and accurate geographical positioning.
[0043] Moreover, the processing module 204 connects the generated route map with the information of beneficiary finalization to build project structure. According to an embodiment of the present invention, the information may include, but not limited to name of owner / occupant, types of occupancy, number of family members, carpet area of existing dwelling unit (DU), tenure of owner, eligibility proofs / documents, and so forth. Embodiments of the present invention may include any type of the information including known, related art, and / or later developedtechnologies. The processing module 204 then sends the results of the data analysis and processing to the output module 206.
[0044] The output module 206 may be configured to display the project structure on the user interface 108 of their user device 102. According to one aspect of the present invention, the project structure is developed based on the generated route map. In addition, the output module 206 displays the project structure as well as a unique Structure Unique Identification (SUID) number. This SUID number is provided to each project structure to help with issues like duplicate entries, suspicious entries, missing documents, incomplete data, and probable multiple claims of ownership for dwelling units, among other things. Further, the output module 206 aids in fostering effective communication and decision-making in the context of urban renewal and development.
[0045] The storage module 208 may be configured to store data related to the urban renewal platform 116. According to an embodiment of the present invention, the data may be, for example, but not limited to, applicant’s data, beneficial finalization, project structure, their SUID number, and similar data types. This includes any existing, relevant, or future data types that are required for an effective training program. Moreover, the storage module 208 may be designed to centralize data in a digital format, offering robust query capabilities and synchronizing the database 118 with land records, a foundational base map, and administrative boundaries. Additionally, the storage module 208 may be tailored to enhance accountability, bolster data security, increase transparency, and facilitate effortless data retrieval through queries.
[0046] FIG. 3 depicts a flowchart of method 300 for renovating urban areas, according to an embodiment of the present invention.
[0047] At 302, the system 100 enables the input module 202 to collect a variety of data. This data comprises a wide range of structures, including residential, commercial, public, and semi-public amenities, infrastructural facilities, utilities, trees, geographical features, topographic features,roads, alleys, and more, and is derived from a variety of data sources. Following that, the input module 202 sends the collected data to the processing module 204.
[0048] At 304, the processing module 204 processes and analyses the received data, which results in the generation of a route map. This route map effectively visualizes all the collected data with precise and accurate geographical positioning.
[0049] At 306, the resulting route map is smoothly connecting with the beneficiary finalization. Beneficiary finalization, according to one embodiment of the present invention, entails key information such as the owner / occupant's name, type of occupancy, family member count, carpet area of existing dwelling units (DU), owner / occupant tenure, and eligibility proofs such as PAN, Aadhar, ownership documents, and others. The link between the route map and beneficiary finalization leads to the provision of land ownership details, land use classification, structure categorization based on land use, and Management Information System (MIS) status. This data serves as a basis for building project structures. Further, it overlays the specified boundary and the cluster boundary. Each structure of the entire city is granted a unique SUID number to avoid duplication and simplify identification within the city.
[0050] At 308, the built project structures along with their SUID number are displayed on the user interface 108 of the user device 102, facilitating decision-making and urban development initiatives. In addition, the implementing agency may create a master layout based on the built project structure in accordance with the planning norms and standards.
[0051] FIG. 4 depicts a flowchart of a method 400 for accessing the application 114, according to an embodiment of the present invention.
[0052] At 402, the system 100 allows users to open the application 114 on their user device 102. After opening the application 114, users must log in using their smart card to access the application 114's features.
[0053] At 404, upon successful login into the application 114, users may choose an option from selecting a specific dwelling point (DU) point or upload new data to the application 114. If the user wishes to add new data to the folder, the method 400 proceeds to step 406. If the user wishes to choose a specific DU point, the method 400 proceeds to step 408.
[0054] At step 406, a folder structure becomes accessible, allowing users to insert new data into the folder (as shown in table 1). According to the current form of the invention, only the implementing agency is authorized to upload new data to application 114. Moreover, to upload new data, the implementing agency must establish a connection through a physical server. Once this connection is established, secured by a high-end firewall, and a folder structure becomes accessible. In addition to this, the users are also given a smart card to help them track the project's status and implementation progress.Table 1 : folder structure
[0055] In step 408, when the user clicks on a DU point, the user interface 108 presents all information, MIS data, and survey data. According to this embodiment of the invention, the information contains the occupant's photo, gathered papers, SUID number, land use classification, and structure classification based on land use. This data is also available in graphical and text formats (as shown in table 2), with filters based on the SUID number. Furthermore, the data may be displayed in a variety of formats, such as bar charts, pie charts, and other geographical representations.Table 2: representation of data
[0056] Overall, the present invention relates to a cluster information management system 100 for urban renewal. The present invention is specifically designed to make it easier to create project structures in metropolitan locations. The real-time route map is used to help construct these project structures. Furthermore, system 100 may be tailored to reduce the workload of various types of users, such as end users, administrative personnel, governing authorities, implementing agencies, infrastructure planners, master layout planners, city management entities, environmental planners, traffic management teams, and other relevant stakeholders. The embodiments of this invention are intended to embrace all kinds of users who play a role in the revitalization of metropolitan areas, whether they are established in the field or use advanced technology.
[0057] The cluster information management system (Cl MS) is set to revolutionize the coordination and efficiency of government departments involved in the Urban Renewal Program through its robust integration features. As an online application, the CIMS seamlessly integrates with existing government systems, fostering a synchronized network of information-sharing in the public interest. The system 100 ensures realtime collaboration among departments, facilitating access to the most current beneficiary information. This not only reduces duplication of efforts but also enhances the accuracy of decision-making. By promoting thedevelopment of common standards for data sharing and integration, CIMS establishes a cohesive framework for streamlined communication across government entities. The finance department stands to benefit significantly, utilizing CIMS to verify beneficiary eligibility for financial aid programs, thereby expediting disbursements and promoting financial inclusion.
[0058] Moreover, the integration with the property tax department ensures a transparent and efficient system for property tax collection, contributing to good governance and ownership of information. Overall, CIMS emerges as a pivotal tool in promoting interdepartmental synergy, transparency, and effectiveness within the framework of the Urban Renewal Program.
[0059] Embodiments of the invention are described above with reference to block diagrams and schematic illustrations of methods and systems according to embodiments of the invention. It will be understood that each block of the diagrams and combinations of blocks in the diagrams can be implemented by computer program instructions. These computer program instructions may be loaded onto one or more general purpose computers, special purpose computers, or other programmable data processing apparatus to produce machines, such that the instructions which execute on the computers or other programmable data processing apparatus create means for implementing the functions specified in the block or blocks. Such computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means that implement the function specified in the block or blocks.
[0001] While the invention has been described in connection with what is presently considered to be the most practical and various embodiments, it is to be understood that the invention is not to be limited to the disclosed embodiments, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit andscope of the appended claims.
[0060] This written description uses examples to disclose the invention, including the best mode, and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated methods. The patentable scope the invention is defined in the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements within substantial differences from the literal languages of the claims.
Claims
CLAIMS l / We Claim:
1. A cluster information management system (100) for urban renewal, the system (100) comprising: an input module (202) configured to receive data about an area from a variety of sources; a processing module (204) configured to process and analyze the received data using a machine learning algorithms to generate a route map and connecting generated route map with the beneficiary finalization to build project structure; an output module (206) configured to display the building project structure on the user interface (108) of the user device (102); and a storage module (208) configured to store data including, information related to beneficial finalization, project structure, their SUID number, or a combination thereof to ensure accessibility and data integrity for the urban renewal platform (116).
2. The system (100) as claimed in claim 1 , wherein the input module (202) further receives user details such as name, employee id, mobile number, and e-mail address to register user on the urban renewal platform 116.
3. The system (100) as claimed in claim 1 , wherein the beneficiary finalization including, but not limited to name of owner, type of occupancy, number of family members, carpet area of existing DU, tenure of owner / occupant, eligibility proofs / documents, or a combination thereof.
4. The system (100) as claimed in claim 1 , wherein the system (100) is accessed by the user having a smart card, aids in monitoringthe project's status and the implementation progress through their login credentials.
5. The system (100) as claimed in claim 1, wherein the route map includes building footprints, cadastral / revenue records, natural and physical features, or a combination thereof.
6. The system (100) as claimed in claim 1 , wherein a structure unique identification (SUID) number is provided to each built project structure to streamline and simplify the process of identifying each project structure.
7. A method (300) for renovating the urban area, the method (300) comprises: collecting data includes all types of structures such as residential, commercial, public, and semi-public amenities, infrastructure facilities, utilities, trees, geographical features, topographic features, roads, gullies, lanes using input module (202), followed by transmitting to the processing module (204) for further processing; processing and analyzing the received data using machine learning algorithms to generate the route map; connecting the generated route map with the pre-stored beneficiary finalization to build project structure with unique structure identification (SUID) number; and displaying the building project structure on user interface (108) of the user device (102), facilitating decision-making and urban development initiatives.
8. The method (300) as claimed in claim 7, wherein the input module (202) utilizes variety of source to collect data such as a drone survey, a LiDAR survey, a total station survey, a reconnaissancesurvey, a feature extracted includes man-made features, or a combination thereof.
9. The method (300) as claimed in claim 7, wherein the generated route map involves effectively visualizing all the collected data with precise and accurate geographical positioning buildings footprints, cadastral / revenue records, natural / physical features, and so forth.
10. The method (300) as claimed in claim 7, wherein the beneficiary finalization including, but not limited to name of owner, type of occupancy, number of family members, carpet area of existing DU, tenure of owner / occupant, eligibility proofs / documents, or a combination thereof.