EARTHQUAKE-FOCUSED BASE STATION SITE NETWORK LEASING MANAGEMENT SYSTEM
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- TURKCELL TEKNOLOJI ARASTIRMA & GELISTIRME AS
- Filing Date
- 2023-12-30
- Publication Date
- 2026-06-22
Smart Images

Figure 00000012_0000
Abstract
Description
1 TARIFF EARTHQUAKE-FOCUSED BASE STATION SITE NETWORK LEASING MANAGEMENT SYSTEM Technical Area 5 This invention relates to the installation of existing base stations and base station sites. or the rental of building-like structures where the planned sites are located earthquake-focused analysis and the warnings it generates, which are integrated into the processes. with this mechanism, teams that will be leasing will receive sound financial investment management and 10 Managing the land leasing processes for earthquake-resistant base stations It is related to a system that provides. Previous Technique In today's telecommunications industry, the methods used to provide services on the network from the installation phases to the dismantling phases of base stations Many problems can arise. Identifying these problems in advance... This can reduce or even prevent installation or dismantling costs. Passing through is extremely important. Site leasing processes for base stations, relevant 20 Coordination of teams (Planning-Facility-Leasing-Installation) through the system The work is done through an approval-flow management mechanism. A base station installation. The first step in building a base station is technical location planning. Potential over a specific range using the planned location. The buildings are being demolished and rental teams are meeting with the owners of the buildings and structures on 25 days. Meetings are being held. The processes in this period are being tracked through the system. It is managed through workflows and approvals. The strongest and most crucial during an earthquake... Since communication is one of the important parameters, for newly established or existing projects... earthquake-focused analysis of established base stations and building inspection scores are considered. This should be taken into consideration. Therefore, base station planning-30 During the coordination process leading up to its installation, potential earthquake-focused leases will be acquired. 2 By entering the building identification information of the structures, both financial sound investment is ensured. and gains in the area of earthquake-resistant and stable base stations This is of great importance. In the current state of technology, the location of base stations... the areas it acquired or potential base station sites are earthquake-prone There is no rental management and alert system in place. 5 Chinese patent CN111343570A, which is included in the prior art. the positioning of base stations in urban areas in the document The patent in question refers to an early warning system for services. The invention discussed in the document is a location-based urban surveillance system in the early 10th century. The alert information push method provides and the method includes the following steps: a communication base all base station antennas according to the station's location, power, and orientation information Creation of a coverage map; analysis of the location of the ponding point. the filling of the pond area using land, the depth of the pond, and If the flooding range exceeds the early warning threshold, early warning information will be provided on the 15th. creation and filling of the information pool with early warning information; pooling Overlapping the base station antenna coverage map with the spacing and pooling Scanning of antennas in the range. Antenna via communication base station. By sending early warning information to all users within the coverage area, effective and accurate early warning is provided. 20 Brief Description of the Invention The purpose of this invention is to improve the existing base station and base station sites. 25 building-shaped structures where installations are being or will be carried out. earthquake-focused analysis and development that works integrated into rental processes Financially sound investment management for teams that will be making rental arrangements through a warning mechanism. and managing the land leasing processes for earthquake-resistant base stations The goal is to create a system that provides this. 3 Detailed Description of the Invention The "Earthquake-Focused Base Station" project was carried out to achieve the purpose of this invention. The "Network Leasing Management System" is shown in the attached document; Figure 1. Schematic view of the system described in the invention. The parts shown in the figure are individually numbered, and the corresponding numbers correspond to these numbers. given below: 1. System 2. Electronic device 3. Application 4. Database 5. Server 15 Regarding existing base stations and base station sites, installations have been made or rental processes for building-shaped structures where the planned fields are located working in an integrated manner, with earthquake-focused analysis and the warning mechanism it generates. Financial sound investment management and earthquake-resistant 20 for teams that will be renting The invention enables the management of land leasing processes for base stations. system (1); -capable of running at least one application and any remote communication at least one electronic device capable of communicating with remote servers using the protocol device (2), 25 - electronic device (2) and base station setup by users at least one structured to enable it to carry out operations related to the process application (3), - Recording all data related to the area where the base station is intended to be installed. at least one database (4) and 30 designed to ensure that it is kept under control 4 -During the leasing process for the area where the base station site will be installed, the area without an agreement on the rental price with the owners of the surrounding buildings First, obtaining the technical analysis data of the area through the application (3), relevant Obtaining earthquake and building inspection information for buildings surrounding the area, Based on the evaluation of the information received, a decision was made to lease an area focused on earthquakes. 5 It includes at least one server (5) that enables its creation. The electronic device (2) included in the system (1) which is the subject of the invention, base station site Used by the teams working on the installation, it enables data entry. smartphones, tablets or portable devices with keys or touch screens It is a device that is a computer. In the preferred arrangement of the invention, it is an electronic device. (2), the actions of users regarding the base station installation process It is structured to run at least one application that enables its execution. The subject of the electronic device (2) is any remote device in the known state of the art. to establish a connection with the server (5) using the communication protocol and this established 15 data exchange between application (3) and server (5) via connection It is structured to enable its realization. The preferred method of the invention. In its application, the Internet is used as a data bus with electronic devices (2) and server (5). It is configured to exchange data using this method. The application (3) in the system (1) which is the subject of the invention, on the electronic device (2) communication is being carried out between the electronic device (2) and the server (5). It is configured to exchange data with the server (5) via. The application in question (3) allows base station field installation teams to perform field installations. planning regarding this, determining the area where the base station will be installed, 25 the relevant area to be used when deciding on the lease of the designated area Building identification information for surrounding buildings, including year of construction, number of floors, and occupancy permit. status, field number, field name, field code, upper region, region, subregion, province, district, village, neighborhood, latitude, longitude, earthquake location in the form of DD-1, DD-2, DD-3 and DD-4 Movement level, local soil classification as ZA, ZB, ZC, ZD and ZE, AFAD 30 The information should be entered in the form of PGA values, and the analysis should be based on earthquake-related data. At least the ability to view the analysis results of the station installation area. It is structured to provide an interface. The database (4) in the system (1) which is the subject of the invention is in communication with the server (5) and is configured to be managed by the server (5). The invention is preferred by 5 In the arrangement made, the database (4) includes the entry via the application (3). the area surrounding the site where the base station site installation is intended to be carried out Building identification information, year of construction, number of floors, occupancy status, site number, field name, field code, upper region, region, subregion, province, district, village, neighborhood, latitude, Longitude, seismic ground motion level, local soil class, AFAD PGA value 10 It is structured to ensure that information in this form is kept on record. The database (4) belongs to the areas where agreements have been made to install base stations. to ensure that contract and payment information is kept on record It is being structured. The server (5) in the system (1) which is the subject of the invention, any remote communication to communicate with the electronic device (2) using the protocol and the established protocol data through communication with the application (3) carried out on the electronic device (2) It is configured to carry out the shopping. Server (5), database (4) 20 new data entries into the database (4) deletion or modification of registered data in the database (4) and data data by updating the registered data in the database (4) The server (5) is configured to manage the base (4). Obtaining location information for the area where the station field installation is desired. It is configured to. The server (5) has 1 km 25 around the relevant location information. Any distance in this shape is considered as the diameter, and the building located in this area application to carry out earthquake and structural inspections of structures of this type (3) Building identification information, year of construction, number of floors, occupancy status, site number, field name, field code, upper region, region, subregion, province, district, village, neighborhood, latitude, longitude, seismic ground motion level, local soil class, AFAD PGA 30 It is configured to request the entry of information in the form of a value. Server 6 (5), information entered via application (3) for the buildings in the relevant area providing access to state-owned earthquake-related institutions and the relevant region to enable the calculation of earthquake-focused workshop scores for buildings It is configured. The server (5) takes into account the calculated score of the relevant region. Determining the safety situation in terms of earthquakes and basing the selected area on 5 to enable a decision to be made on whether or not the station should be established is being configured. The server (5) has been reviewed for all potential domains. then to determine the most suitable installation location, focused on earthquake preparedness. It is structured. The server (5) scores the earthquake-focused workshop for the selected areas. If the area is identified as critical, then 10 new locations should be explored around that area. It is configured to generate alerts and deliver them via application (3). The server (5) is responsible for carrying out the leasing and control operations for the decided area. It is structured to provide this. Industrial Application of the Invention 15 The system (1) that is the subject of the invention is both earthquake-resistant and suitable for the region where the base station will be installed. By making the right financial decisions, the right investment can be made in telecommunications. This ensures that added value is generated for companies. Based on these fundamental concepts, the subject of the invention is "Earthquake-Focused Base Station Site". A wide variety of applications related to the Network Leasing Management System (1)” It is possible to develop further, and the invention cannot be limited to the examples described here. It is essentially as stated in the requests.
Claims
7 REQUESTS 1. Installation work related to existing base stations and base station sites. or the rental of building-like structures where the planned sites are located working integrated into the processes, earthquake-focused analysis and the 5 it has created A warning mechanism will enable teams to make the right financial investment when hiring. management and land leasing processes for earthquake-resistant base stations enabling its management; -capable of running at least one application and any remote communication at least one 10 that can communicate with remote servers using the protocol electronic device (2), -electronic device (2) and users base station to enable it to carry out the procedures related to the installation process at least one application configured (3), -All data regarding the area where the base station is to be installed 15 at least one database structured to ensure records are kept (4) and - Leasing procedures for the area where the base station will be installed. during the discussions with the owners of the buildings surrounding the area regarding the rental amount. Technical information regarding the area via application (3) before an agreement is made Obtaining analysis data, earthquake and other information about buildings in the surrounding area obtaining building inspection information, evaluating the information obtained. at least one that enables the creation of a land lease decision focused on earthquakes. a system (1) characterized by containing server (5).
2. Data used by teams working on base station field installation. a smartphone with a keypad or touchscreen that allows input, electronic device (2) which is a tablet computer or portable computer A system like the one in Claim 1, characterized (1). 8 3. On it, the actions users take regarding the base station installation process. configured to run at least one application that enables its execution a system such as in Claim 1 or 2 characterized by an electronic device (2) (1).
4. Connect to the server (5) using any remote communication protocol. to establish and connect the application (3) and the server (5) through this established connection structured to enable data exchange between them any of the above claims characterized by an electronic device (2) a system like one of them (1). 10 5. Data exchange with the server (5) using the Internet as a data bus. characterized by an electronic device (2) configured to perform a system like any of the above-mentioned requests (1).
6. It is carried out on electronic device (2) and with electronic device (2). data exchange with server (5) through communication established between server (5) characterized by the application structured to perform (3) a system like any of the above requests (1).
7. Planning for the field installation of base station by the field installation teams. to do, to determine the area where the base station will be installed, and the determined area around the relevant area to be used when deciding on the rental Information about the buildings found, including building identification details, year of construction, number of floors, and occupancy status. field number, field name, field code, upper region, region, subregion, province, district, village, 25 Neighborhood, latitude, longitude, earthquake magnitudes DD-1, DD-2, DD-3 and DD-4. ground motion level, local soil class as ZA, ZB, ZC, ZD and ZE, Please enter the information in the form of AFAD PGA value, focusing on earthquakes. analysis results of the analyzed base station installation area 30 configured to provide at least one interface that allows its display 9 any of the above requests characterized by application (3) a system like one of them (1).
8. To be in communication with Server (5) and to be managed by Server (5) 5 of the above requests characterized by the structured database (4). a system like any other (1).
9. Base station field accessed via application (3) buildings surrounding the area where the installation is intended to be carried out Identity information, year of construction, number of floors, occupancy status, site number, site name, 10 area code, upper region, region, subregion, province, district, village, neighborhood, latitude, longitude, earthquake ground motion level, local soil class, AFAD PGA value structured to ensure that information in this form is kept on record any of the above requests characterized by the database (4) a system like one of them (1). 15 10. Contracts for areas agreed upon for the installation of base stations. and to ensure that payment information is kept on record from the above requests characterized by the structured database (4) a system like any other (1). 20 11. Using any remote communication protocol, electronic device (2) to communicate with and through this communication with electronic devices (2) to exchange data with the application (3) being run on it 25 of the above requests characterized by the configured server (5) a system like any other (1).
12. Making new data entries into the database (4), database (4) deletion of the registered data in it or within the database (4) Modification of registered data and 30 registered data in the database (4) to manage the database (4) by operations such as updating from the above requests characterized by the configured server (5) a system like any other (1).
13. Location of the area where the base station is to be installed. 5 characterized by the server (5) which is configured to receive the information. a system like any of the above requests (1).
14. Any distance of 1 km around the relevant location information Earthquake and structural elements in this area, taking into account the diameter, Building identification via application (3) to carry out building inspection 10 information, year of construction, number of floors, occupancy status, site number, site name, site code, upper region, region, subregion, province, district, village, neighborhood, latitude, longitude, earthquake ground motion level, local soil class, AFAD PGA value The server is configured to request the entry of information in the form of (5) A system like any of the above characterized claims 15 (1).
15. Information entered via application (3) regarding the buildings in the relevant area providing access to state-owned earthquake-related institutions and relevant Calculation of earthquake-focused workshop scores for buildings in the region 20 The above is characterized by the server (5) configured to provide a system like any of the requests (1).
16. Taking the calculated score into account, the seismic safety of the relevant region. the situation is assessed and a base station is installed in the selected area 25 structured to ensure a decision is made against its establishment any of the above requests characterized by the server (5) such a system (1).
17. After reviewing all potential areas, at least 30 earthquake-focused areas will be identified. with the server (5) configured to determine the correct installation location 11 a system like any of the above characterized claims (1).
18. If the earthquake-focused workshop score of the selected areas was determined to be critical, then... to create a warning about exploring new locations around the site and 5 server (5) configured to deliver via application (3) a system like any of the above characterized claims (1).
19. Carrying out the leasing and control procedures for the decided area. 10 The above is characterized by the server (5) configured to provide a system like any of the requests (1). 20 30