WO2025008932A1 - System and method for managing deployment of network elements in a wireless network - Google Patents
System and method for managing deployment of network elements in a wireless network Download PDFInfo
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- WO2025008932A1 WO2025008932A1 PCT/IN2024/050862 IN2024050862W WO2025008932A1 WO 2025008932 A1 WO2025008932 A1 WO 2025008932A1 IN 2024050862 W IN2024050862 W IN 2024050862W WO 2025008932 A1 WO2025008932 A1 WO 2025008932A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/08—Configuration management of networks or network elements
- H04L41/0803—Configuration setting
- H04L41/0806—Configuration setting for initial configuration or provisioning, e.g. plug-and-play
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/08—Configuration management of networks or network elements
- H04L41/0876—Aspects of the degree of configuration automation
- H04L41/0886—Fully automatic configuration
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/16—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks using machine learning or artificial intelligence
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/18—Network planning tools
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/02—Arrangements for optimising operational condition
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
- H04L41/08—Configuration management of networks or network elements
- H04L41/0803—Configuration setting
- H04L41/0813—Configuration setting characterised by the conditions triggering a change of settings
- H04L41/0816—Configuration setting characterised by the conditions triggering a change of settings the condition being an adaptation, e.g. in response to network events
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L43/00—Arrangements for monitoring or testing data switching networks
- H04L43/08—Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
- H04L43/0805—Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability
- H04L43/0817—Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters by checking availability by checking functioning
Definitions
- a portion of the disclosure of this patent document contains material, which is subject to intellectual property rights such as, but are not limited to, copyright, design, trademark, Integrated Circuit (IC) layout design, and/or trade dress protection, belonging to Jio Platforms Limited (JPL) or its affiliates (hereinafter referred as owner).
- JPL Jio Platforms Limited
- owner has no objection to the facsimile reproduction by anyone of the patent document or the patent disclosure, as it appears in the Patent and Trademark Office patent files or records, but otherwise reserves all rights whatsoever. All rights to such intellectual property are fully reserved by the owner.
- the present disclosure relates generally to a field of data automation for network deployment and expansion.
- the present disclosure pertains to a system and a method for managing deployment of network elements in a wireless network.
- the present disclosure discloses a method for managing deployment of network elements in a wireless network.
- the method includes receiving, by a processing engine, at least one input from a user corresponding to a new network element.
- the method includes dynamically computing, by the processing engine, at least one configuration parameter corresponding to the new network element based on the at least one input and a preloaded data in a wireless network using a machine learning technique.
- the method includes creating, by the processing engine, an Optimum Deployment Data (ODD) for the new network element based on the at least one configuration parameter.
- the method includes transmitting, by the processing engine, the ODD to an Element Management System (EMS) for deploying the new network element in the wireless network based on each of the at least one configuration parameter.
- ODD Optimum Deployment Data
- the method includes a step of executing, by the EMS, the ODD on a repository to create the new network element based on an associated set of attributes.
- the associated set of attributes includes at least one of a network connectivity, a software version, a firmware version, a hardware configuration, and an availability of resources.
- the method includes integrating, by the EMS, the new network element within the wireless network by tuning and optimizing each of the at least one configuration parameter in response to executing.
- the method includes a step of monitoring in realtime, the new network element for improved network operation over a period of time by validating a status and a health of the wireless network in which the new network element is deployed.
- the method includes a step of determining, configurations and functioning of the new network element based on the real-time monitoring of the new network element.
- the at least one input includes a network element name, a band, a network element number, and geography details of the new network element
- the at least one configuration parameter includes an antenna tilt, a power, and a frequency allocation corresponding to the new network element.
- the present disclosure discloses a system for managing deployment of network elements in a wireless network.
- the system includes a memory and a processing engine communicatively coupled with the memory.
- the processing engine is configured to receive at least one input from a user corresponding to a new network element.
- the processing engine is configured to dynamically compute at least one configuration parameter corresponding to the new network element based on the at least one input and a preloaded data in a wireless network using a machine learning technique.
- the processing engine is configured to create an Optimum Deployment Data (ODD) for the new network element based on the at least one configuration parameter.
- the processing engine is configured to transmit the ODD to an Element Management System (EMS) for adding the new network element to the wireless network based on each of the at least one configuration parameter.
- EMS Element Management System
- the system is configured to execute the ODD on a repository via the EMS, to create the new network element based on an associated set of attributes.
- the associated set of attributes includes at least one of a network connectivity, a software version, a firmware version, a hardware configuration, and an availability of resources.
- the system is configured to integrate the new network element within the wireless network via the EMS by tuning and optimizing each of the at least one configuration parameter in response to executing.
- the system is configured to monitor in real-time, the new network element for improved network operation over a period of time by validating a status and a health of the wireless network in which the new network element is added.
- the system is configured to determine configurations and functioning of the new network element based on the real-time monitoring of the new network element.
- the at least one input includes a network element name, a band, a network element number, and geography details of the new network element
- the at least one configuration parameter includes an antenna tilt, a power, and a frequency allocation corresponding to the new network element.
- the present disclosure discloses a user equipment (UE) coupled to a system.
- the UE is configured to send at least one input corresponding to a new network element to the system, for deploying the new network element in a wireless network.
- the UE is configured to receive an acknowledgement from the system in response to deploying the new network element.
- An object of the present disclosure is to provide a method and a system to manage deployment of network elements in a wireless network in a way that achieves high-scale and error-free deployment.
- An object of the present disclosure is to dynamically generate configuration parameters corresponding to a new network element for adding the new network element to the wireless network based on minimum inputs from users (e.g., network administrators).
- An object of the present disclosure is to enable on-demand deployment of the new network elements based on required capacity of the wireless network to maintain optimal network performance.
- An object of the present disclosure is to enhance a quality of service (QoS) for end-users by improving network coverage, capacity, and performance.
- QoS quality of service
- An object of the present disclosure is to provide real-time monitoring and reporting of the new network elements to ensure that the new network elements are configured correctly and functioning optimally.
- An object of the present disclosure is to leverage machine learning techniques to analyze network data and optimize the configuration parameters for deploying the new network element.
- FIG. 1 illustrates a block diagram of an exemplary system configured for managing deployment of network elements in a wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 2 illustrates a flow diagram of an exemplary process overview for managing deployment of network elements in a wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 3A illustrates an exemplary control logic for managing deployment of network elements in a wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 5A illustrates an exemplary Graphical User Interface (GUI) depiction uploading of an Optimum Deployment Data (ODD) for executing the ODD on a Uogical System Module Repository (USMR), in accordance with an embodiment of the present disclosure.
- GUI Graphical User Interface
- ODD Optimum Deployment Data
- USMR Uogical System Module Repository
- FIG. 5B illustrates another exemplary GUI depicting at least one input received from a user, in accordance with an embodiment of the present disclosure.
- FIG. 6 illustrates an exemplary GUI depicting a deployment progress status of new network elements in real-time, in accordance with an embodiment of the present disclosure.
- FIG. 7 illustrates a flow chart of a method for managing deployment of network elements in the wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 8 illustrates an exemplary computer system in which or with which embodiments of the present invention can be utilized, in accordance with embodiments of the present disclosure.
- CMDB Configuration Management Database
- the system 102 may include the interface(s) 108.
- the interface(s) 108 may comprise a variety of interfaces, for example, interfaces for data input and output devices, referred to as Input/ Output devices, storage devices, and the like.
- the interface(s) 108 may facilitate communication to/from the system 102.
- the interface(s) 108 may also provide a communication pathway for one or more components of the system 102. Examples of such components include, but are not limited to, the processing engine 110 and a database 126.
- the processing engine 110 may create an Optimum Deployment Data (ODD) for the new network element based on each of the at least one configuration parameter.
- ODD may be a minimum most suitable configuration required to deploy the new network element on an Element Management System (EMS). Further, the processing engine 110 transmit the ODD to the EMS for deploying the new network element in the wireless network based on each of the at least one configuration parameter.
- the processing engine 110 may execute the ODD on a repository (e.g., a Logical System Module Repository (LSMR)) via the EMS to deploy the new network element based on an associated set of attributes.
- LSMR Logical System Module Repository
- the set of attributes may include, but are not limited to, a network connectivity, a software version, a firmware version, a hardware configuration, and an availability of resources on the new cell.
- the processing engine 110 may further integrate the new network element within the wireless network by tuning and optimizing each of at least one configuration parameter in response to execution. Further, after deployment of the new network element, the system 102 may be configured to send an acknowledgement depicting a successful deployment of the new network element to the UE via the network.
- the processing engine 110 may manage and monitor in real-time the new network element for improved network operation over a period of time by validating a status and a health of the wireless network on which the new network element is deployed.
- the period of time may be defined by the network administrator. For example, the period of time may be 30 minutes, 60 minutes, or the like.
- the processing engine 110 may determine configuration and functioning of the new network element. The configurations and functioning may be determined to check if the new network element is functioning optimally. Further, information determined related to the configurations and the functioning of the new network element may be reported to the network administrator after the pre-defined time interval.
- the pre-defined time interval may be defined by the network administrator. For example, the pre-defined time interval may be 30 minutes, 60 minutes, and the like.
- the processing engine 110 may include a work order module 112 for capturing inputs, i.e., the at least one input from the network administrator, including the network element name, the band, the network element number, and geography details; a health check module 114 for executing commands on the EMS to validate a status and a health of the wireless network (e.g., the existing wireless network or the existing node) on which the new network element is to be deployed; a configuration module 116 for computing the at least one configuration parameters based on the at least one input captured and performing logical operations on the preloaded data in the system 102 to create a minimum configuration for deploying the new network element; a firmware upgrade module 118 for upgrading node's hardware to a latest software and firmware versions, if necessary; a tuning and optimization module 120 for generating tuning and optimizing each of the at least one configuration parameter using different logics and executing them on the new network element; a post-check module 122 for validating that all commands have been executed correctly and all Key Performance Indic
- the work order module 112 may capture various inputs (i.e., the at least one input), such as the network element name, the band, the network element number, and geography details, from the network administrator.
- the network administrator is a person designated in an organization whose responsibility includes maintaining one or more network operations (e.g., allocating resource, managing power, or the like). These inputs are used by the system 102 to compute the configuration parameters required for the new network element. The network administrator inputs these details through a user-friendly and intuitive interface provided by the system 102.
- the network element name is a name of the existing node on which the new cell is to be deployed or a name of the new node that needs to be deployed in the wireless network.
- the band is a frequency band on which the new network element may operate.
- the network element number may be a unique identifier of the new network element.
- the geography details include a latitude and a longitude of a location of the new network element.
- the configuration module 116 may be configured to compute the configuration parameters required for the new network element based on one or more machine -learning techniques.
- the configuration module 116 may consider various factors, such as a node's capacity, a frequency band, a cell's location, and a number of users in an area to compute the configuration parameters.
- the configuration module 116 uses logical operations on the pre-fed data in the system 102 to determine the configuration parameters for the new network element.
- the configuration module 116 considers the pre-fed data, for example, an existing network topology, a number of cells already present in the area, and a network load to determine the configuration parameters for the new network element.
- the configuration parameters may include, but are not limited to, the antenna tilt, the power, and the frequency allocation.
- the post-check module 122 may also validate that all commands executed during an installation process have been executed correctly and that the new cell or the new node has been configured correctly. If the postcheck module 122 detects any issues or errors during a validation process, it alerts the network administrator and initiates corrective actions to resolve the issues or errors. The post-check module 122 may ensure that the new cell or the new node is functioning correctly and is meeting the expected KPIs.
- the system 102 may also include the one or more machine learning techniques for computing the configuration parameters or the associated set of attributes required for new network elements based on inputs, i.e., the at least one input received from the network administrator and the pre-fed data in the system 102.
- the system 102 may use the inputs from the network administrator and the pre-fed data in the system 102 to compute the configuration parameters.
- the one or more machine learning techniques work by analyzing historical data from the network, including performance metrics and the previous configuration parameters, to identify patterns and trends. The one or more machine learning techniques then use this data to compute the configuration parameters for deploying the new network elements.
- the one or more machine learning techniques may continuously learn and adapt based on new data and feedback from the network administrator.
- the configuration module 116 may use data from neighbouring cells to compute the configuration parameters for the new network element.
- the configuration module 116 may analyze the performance metrics and previous configuration parameters of neighbouring cells to identify patterns and trends. The configuration module 116 may then use this data to compute the configuration parameters for the new network element.
- the configuration module 116 may take inputs from the neighbouring cells, such as cell type, frequency band, and power output, and combines them with other data, such as the network element name, the band, the network element number, and geography details, to compute the configuration parameters for the new network element.
- Using data from the neighbouring cells to compute the configuration parameters for the new network element may be beneficial because it ensures that the new network element is optimized for performance and is compatible with the wireless network, i.e., the existing wireless network.
- the configuration module 116 uses the neighbouring cells as a reference point to ensure that the new network element is configured in a way that is consistent with the existing network and does not cause interference or other issues.
- the system 102 may automate a process of creating the ODD for the new network element.
- the novelty of the ODD creation process lies in a fact that with just four inputs, i.e., the at least one input from the network administrator, the system 102 may generate around more than 90 configuration parameters on the fly using the one or more machine learning techniques and the pre-fed data in the system 102.
- the network administrator can execute the ODD on the LSMR with a single click, which deploys the new network element with all required configuration parameters. This process significantly reduces the time taken to deploy the new network element and eliminates a risk of errors associated with a manual approach.
- the system 102 provides a solution for this by automatically generating around 500 commands to tune the configuration parameters of the new network element, based on the data from neighbouring cells and other logics in the system 102. This process ensures that the new network element integrates seamlessly with the existing network and provides required services to customers.
- FIG. 2 illustrates a flow diagram 200 of an exemplary process overview for managing the deployment of network elements in a wireless network in accordance with an embodiment of the present disclosure.
- the system 102 may automate the process of deploying the new network element by creating the ODD for the new network element.
- the ODD is a minimum most suitable configuration required to create the new network elements on the EMS.
- the system 102 may compute configuration parameters, e.g., around 90 configuration parameters on the fly based on the at least one input and the pre-fed data using the machine learning technique. Further, based on the configuration parameters, the system 102 may create the ODD with each of the at least one input parameter.
- the ODD may be transmitted on the EMS to execute the ODD of the LSMR viathe EMS.
- the network administrator may execute the ODD on the LSMR with a single click, which deploys the new network element with all required configuration parameters.
- This process significantly reduces a time taken to deploy the new network element and eliminates a risk of errors associated with a manual approach.
- the set of attributes may be tuned and optimized for deploying the new network element.
- the series of commands may be generated to tune and optimize the configuration parameters for deploying the new network element. For example, around 500 commands may be automatically generated to tune the configuration parameters of the new network element based on the data from the neighbouring cells and other logic in system 102. This process ensures that the new network element may integrate seamlessly with the existing network and provides all the required services to customers.
- FIG. 3A illustrates an exemplary control logic 300A for managing deployment of network elements in a wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 3 A is explained in conjunction with FIGS. 1 -2.
- FIG. 3 A exhibits the control logic for automated deployment of the new network element in the wireless network.
- the control logic 300A depicts a system builder recipe 302A.
- the system builder recipe 302A may include various operations required to be performed to enable a system 304A to manage the deployment of the new network element in the wireless network.
- the system 304A may correspond to the system 102.
- the system builder recipe 302 A may include operations such as alarm check commands, a pre-check operation, lock parent sector commands, and the like, as depicted via the control logic 300A.
- the system 304A may perform various operations including creating a work order (i.e., the at least one input) for the node or cell to be deployed in the wireless network, including node name, band, cell number, and geography details; performing a health check by executing commands on the EMS for the new network element and validating the status and the health of the new network element; creating a minimum most suitable configuration required to deploy the new network element and other logics in the system; upgrading the node's hardware to the latest software and firmware versions, if necessary; checking if the existing node is operational and healthy by executing and validating health check commands; generating tuning and optimizing parameters, i.e., the associated set of attributes using different logics and executing them on the new network element; performing a post-check to validate that all commands have been executed correctly and all KPI of the new network element are normal; and restoring any node-level settings if required.
- a work order i.e., the at least one input
- the system 304A may perform various operations including creating a
- the system 304A may execute the ODD on an LSMR 306A via the EMS. Further, the system 304A may integrate the new network element in the wireless network by tuning and optimizing each of the at least one configuration parameter. In order to integrate the new network element, the system 304A may access more services 308A corresponding to the LSMR 306A. In an embodiment, the system 304A also includes the one or more machine learning techniques to configure the configuration parameters required for the new network element based on the inputs from the network administrator and the pre-fed data in the system 102. The one or more machine learning techniques works by analyzing historical data from the wireless network, including performance metrics and configuration parameters, to identify patterns and trends.
- the system 304A may also test and validate the new network element to ensure that it is functioning correctly and providing required services to customers.
- the testing and validation process involves running the series of commands on the new network element to ensure that it meets required performance and service level parameters. These commands can include, verifying that the new network element can communicate with neighbouring nodes, that it can handle required amount of traffic, and that it is providing required services to customers. Once the tests have been completed, results are analyzed to ensure that the new network element is functioning correctly and providing required services to the customers. If any issues are identified, they are addressed before the new network element is deployed in the wireless network.
- the system 304A may also reduce a risk of network failures, downtime, and customer dissatisfaction through an error-free deployment process.
- the error-free deployment process involves following a set of predefined procedures and best practices to ensure that the new network element is added to the wireless network correctly. This process can include steps, such as verifying that all necessary equipment is available, ensuring that the new network element is configured correctly, and testing and validating the new network element before it is added to the wireless network. This may reduce the risk of network failures, downtime, and customer dissatisfaction is critical in success of the new element deployment process.
- the network administrator may minimize an impact of the new network element on the existing wireless network and ensure that customers receive uninterrupted service.
- FIG. 3B illustrates a flow diagram of a method 300B depicting interaction of a user with a system for managing deployment of network elements in a wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 3B is explained in conjunction with FIGS. 1 - 3A.
- a user 302B may provide the at least one input corresponding to the new network element to a system 304.
- the system 304 may correspond to the system 102.
- the at least one input may include the network element name, the band, the network element number, and the geography details of the new network element.
- the system 304 may computes other required parameters, i.e., each of the at least one configuration parameter.
- the at least one configuration parameter may include the antenna tilt, the power, and the frequency allocation corresponding to the new network element, and the like.
- the system 304B may transmit the required parameters to an EMS 306B.
- the EMS 306B may deploy the new network element.
- the new network element is the new cell that needs to be added on the existing node (e.g., a node 308B)
- the EMS 306B may create and add the new cell to the node 308B.
- the EMS 306B may create and add the new node 310B to the wireless network, e.g., the existing network.
- the EMS 306B may send an acknowledgement depicting the deployment to the system 304B as mentioned via step 320B.
- the system 304B may render the acknowledgment to the user 302B.
- the user 302B may acknowledge the creation and the addition of the new cell or the new node and test results corresponding to the new cell or the new node 310B. In other words, the user 302B may send an acknowledgment depicted reception of the acknowledgement of the deployment.
- FIG. 4 illustrates an exemplary block diagram of an architecture 400 of the system 102 configured for managing deployment of network elements in the wireless network, in accordance with an embodiment of the present disclosure.
- FIG. 4 is explained in conjunction with FIGS. 1 - 3.
- the architecture 400 of the system 102 may include several components that work together seamlessly to automate a process of deploying the new network elements in the wireless network.
- the components may include a user plane 404, an abstraction layer 406, an applications and tools unit 408, a scheduler 410, biz rule settings 420, a vendor/equipment library 422, a multi-vendor/ multi-version support unit 430, and an integration and load balancing plane 432.
- the scheduler 410 may further include an analytics engine 412, a change management engine (work order) 414, a query engine and a reporting engine 416, a recipe - microservices unit 418, and a Configuration Management Database (CMDB) 424.
- CMDB Configuration Management Database
- the CMDB 424 may further include a history unit 426, and a configuration unit 428.
- a user 402 (same as the user 302B), i.e., the network administrator or the network operator, may interact with system 102 via the user plane 404. Each of these components may function together to provide assistance to the user 402 in managing deployment of the new network element in the wireless network.
- an EMS-VI and an EMS- V2 may interact with the system 102 via the integration and load balancing plane 432. Further, the EMS- VI and EMS-V2 may be associated with various gNodeB (GNB), such as GNB-1, GNB-2, GNB-3, and GNB-4.
- GNB gNodeB
- an EMS may correspond to a system that hosts various nodes and its associated cell for management and operations.
- the EMS provides a centralized platform for managing and monitoring nodes and cells in the wireless network.
- the system 102 may also include servers and database(s) 126 that contain vendor libraries and logic to compute each of at least one configuration parameter required for configuring the new network element, i.e., the new cell orthe new node.
- These libraries and logics may be based on machine learning techniques and the preloaded data in the system 102. They help in computing at least one configuration parameter required for creating and operationalizing the new network element.
- FIG. 5A illustrates an exemplary GUI 500A depiction uploading of the ODD for executing the ODD on the LSMR, in accordance with an embodiment of the present disclosure.
- FIG. 5A is explained in conjunction with FIGS. 1 - 4.
- the user i.e., the network administrator may be able to upload the ODD depicted as an ODD template via the GUI 500A for further execution.
- the network administrator may be able to select project type and sub domain from a drop-down list using the GUI 500A.
- FIG. 5B illustrates another exemplary GUI 500B depicting the at least one input received from a user, in accordance with an embodiment of the present disclosure.
- FIG. 5B is explained in conjunction with FIGS. 1 - 5A.
- the GUI 500B is designed to be user-friendly and intuitive, allowing the network administrator to input the at least one input required to deploy the new network element.
- the network administrator may be able to provide information such as a circle, Data Unit (DU) type, a band, a Service Access Point Identified (SAP ID), and the like, corresponding to the new network element.
- DU Data Unit
- SAP ID Service Access Point Identified
- FIG. 6 illustrates an exemplary GUI 600 depicting a deployment progress status of new network elements in real-time, in accordance with an embodiment of the present disclosure.
- FIG. 6 is explained in conjunction with FIGS. 1 - 5B.
- the GUI 600 depicts the deployment progress status of each new network element that is being deployed at various zones and circle .
- the deployment process status may enable the user to know a progress in the deployment of each new network element along with the time left for the deployment to complete.
- the GUI 600 depicts the at least one input received from the user.
- the at least one input may correspond to a work order list.
- the work order list includes information associated with the new network element, such as the network element name, the band, the network element number, and geography details associated with the new network element. Further, each of the at least one configuration parameters required for deploying the new network element may be computed based on the at least one input and the preloaded data associated with the wireless network using the machine learning technique.
- the system 102 may automatically executes a series of commands to validate the status and the health of the wireless network in which the new network element is to be deployed. For example, in some embodiments, the system 102 may validate the status and the health of an existing node on which the new cell is to be added.
- the system 102 may also upgrade the existing node's hardware to a latest software and firmware versions, if necessary.
- the system 102 then creates the ODD based on each of the at least one configuration parameter to add the new cell on the existing node using the at least one input received from the user, e.g., the network administrator, and the preloaded data associated with the wireless network that is present in the system 102.
- FIG. 7 illustrates a flow chart 700 of a method for managing deployment of network elements in the wireless network, in accordance with an embodiment of the present disclosure.
- the at least one input may be received corresponding to the new network element from the user, e.g., the network administrator or the network operator.
- the new network element may be one of a new cell that needs to be added to an existing node or a new node that needs to be created in the wireless network.
- the wireless network may be one of an existing wireless network or a new wireless network. Examples of the wireless network may be the 4G network, the 5G network, the 6G network, and the like.
- the at least one input may include the network element name (e.g., a name of the new cell or a name of the new node), the band, the network element number (e.g., a number of the new cell or a number of the new node), and the geography details of the new network element.
- the network element name e.g., a name of the new cell or a name of the new node
- the band e.g., a number of the new cell or a number of the new node
- the network element number e.g., a number of the new cell or a number of the new node
- geography details of the new network element e.g., geography details of the new network element.
- the at least one configuration parameter corresponding to the new network element may be dynamically computed.
- the at least one configuration parameter may be dynamically computed based on the at least one input and the preloaded data, i.e., the pre-fed data in the wireless network.
- the pre-fed data may include, for example, an existing network topology, a number of cells already present in the area, and a network load to determine the configuration parameters for the new network element
- the at least one configuration parameter may be computed using the machine learning technique.
- the processing engine 110 may be configured to receive the at least one input from the network administrator to compute the at least one configuration parameter dynamically using the machine learning technique and the pre-fed data in the wireless network.
- the at least one configuration parameter may include, but are not limited to, an antenna tilt, a power, and a frequency allocation corresponding to the new network element. It should be noted that, the at least one configuration parameter are not limited to above listed parameters and may include 90 configuration parameters or more based on the new network element.
- the communication port(s) 860 can be any of an RS-232 port for use with a modembased dialup connection, a 10/100 Ethernet port, a Gigabit or 10 Gigabit port using copper or fiber, a serial port, a parallel port, or other existing or future ports.
- the communication port(s) 860 may be chosen depending on a network, such a Local Area Network (LAN), Wide Area Network (WAN), or any network to which computer system 800 connects.
- LAN Local Area Network
- WAN Wide Area Network
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| Application Number | Priority Date | Filing Date | Title |
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| EP24835653.7A EP4736490A1 (en) | 2023-07-02 | 2024-06-19 | System and method for managing deployment of network elements in a wireless network |
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| IN202321044266 | 2023-07-02 | ||
| IN202321044266 | 2023-07-02 |
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| PCT/IN2024/050862 Ceased WO2025008932A1 (en) | 2023-07-02 | 2024-06-19 | System and method for managing deployment of network elements in a wireless network |
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Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9380639B2 (en) * | 2011-09-30 | 2016-06-28 | Airhop Communications, Inc. | Self-organization network architectures for heterogeneous networks |
| US9585031B2 (en) * | 2012-12-07 | 2017-02-28 | Deutsche Telekom Ag | Method to guide the placement of new small cell |
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2024
- 2024-06-19 WO PCT/IN2024/050862 patent/WO2025008932A1/en not_active Ceased
- 2024-06-19 EP EP24835653.7A patent/EP4736490A1/en active Pending
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9380639B2 (en) * | 2011-09-30 | 2016-06-28 | Airhop Communications, Inc. | Self-organization network architectures for heterogeneous networks |
| US9585031B2 (en) * | 2012-12-07 | 2017-02-28 | Deutsche Telekom Ag | Method to guide the placement of new small cell |
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| EP4736490A1 (en) | 2026-05-06 |
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