EP4616594A1 - Application management in mobile communication networks - Google Patents
Application management in mobile communication networksInfo
- Publication number
- EP4616594A1 EP4616594A1 EP23787020.9A EP23787020A EP4616594A1 EP 4616594 A1 EP4616594 A1 EP 4616594A1 EP 23787020 A EP23787020 A EP 23787020A EP 4616594 A1 EP4616594 A1 EP 4616594A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- procedure
- requested
- predefined procedure
- mobile communication
- communication network
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/02—Arrangements for optimising operational condition
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/12—Access point controller devices
Definitions
- the present disclosure generally relates to the communication network field. More particularly, the present disclosure relates to a mobile communication network featuring SelfOrganizing Network (“SON”) capabilities.
- SON SelfOrganizing Network
- Modern mobile communication networks such as 4G, 5G mobile communication networks, are capable of implementing Self-Organizing Network (“SON") capabilities for the automatic configuration and management of network nodes of the mobile communication network.
- SON Self-Organizing Network
- the mobile communication network comprises one or more controller platforms (referred to as near-real-time RAN Intelligent Controllers (near-RT RICs)), configured to perform near-real-time control of (or, concisely, to manage) network resources used by the network nodes.
- near-RT RICs near-real-time RAN Intelligent Controllers
- each controller platform is configured to collect information from the network nodes and, by exploiting Machine Learning (ML) and/or Artificial Intelligence (Al) engines, to control the network nodes in order to carry out corresponding tasks.
- tasks include, but are not limited to, monitoring of potentials network faults, handling of Quality of Experience (QoE), handling of Quality of Service (QoS), handling of network traffic balance, and handling of network interference.
- QoE Quality of Experience
- QoS Quality of Service
- network traffic balance handles network interference.
- Each controller platform is a platform node of the mobile communication network where multiple applications (referred to as “xAPPs” in the O-RAN architecture) can run concurrently, each one for carrying out a corresponding task.
- xAPPs applications
- the controller platform can efficiently control the execution of the xAPPs for performing the corresponding tasks.
- each application is aimed at carrying out a corresponding task through execution of one or more procedures.
- 0-RAN.WG3.RICARCH-v02.00 contains the description of a near-RT RIC according to the O-RAN standard.
- US20190253912 discloses an apparatus of a management service producer comprising one or more processors to create a measurement job for one or more NFs, NSSIs, NSIs, networks or subnetworks by receiving a CreateMeasurem entJob operation request for creating a measurement job for the one or more NFs, NSSIs, NSIs, networks or subnetworks from a consumer, checking if one or more new measurement types need to be collected for the one or more NFs or constituent NSSIs or constituent NFs, requesting the NFs or the management service producer of the constituent NSSIs or constituent NFs to collect the performance data when one or more new measurements types are to be collected for the one or more NFs or constituent NSSIs or constituent NFs.
- the management service producer allows the consumer to choose the reporting method from performance data file reporting and performance data streaming for the collected performance data in the CreateMeasurementJob operation request.
- the Applicant has devised a controller platform and a corresponding method capable of efficiently managing the common procedures.
- An aspect of the present disclosure relates to a controller platform.
- the controller platform is configured to control a plurality of applications for executing a plurality of procedures in a mobile communication network.
- the controller platform comprises an interface module configured to interface the controller platform to one or more network nodes of the mobile communication network for controlling the execution of the plurality of procedures.
- the controller platform comprises a database module configured to store configuration data of at least one predefined procedure of said plurality of procedures, and current radio access network parameters indicative of a current status of the mobile communication network.
- the controller platform comprises a procedure module.
- the procedure module in response to a request, from a requesting application among said plurality of applications, to execute a requested one of the at least one predefined procedure for the requesting application, is configured to: if the requested predefined procedure matches an ongoing predefined procedure, of the at least one predefined procedure, that is already under execution, prevent the execution of the requested predefined procedure and cause the requesting application to receive a result of the ongoing predefined procedure as a result of the requested predefined procedure, or if, according to said one or more current radio access network parameters, the result of the requested predefined procedure is already available at the database module, prevent the execution of the requested predefined procedure and cause the requesting application to receive the result of the requested predefined procedure.
- the procedure module in response to said request is configured to, if the requested predefined procedure does not match an ongoing predefined procedure, of the at least one predefined procedure, that is already under execution, and if, according to said one or more current radio access network parameters, the result of the requested predefined procedure is not already available at the database module: retrieve the configuration data of the requested predefined procedure from the database module, and provide the request and the retrieved configuration data to the interface module to cause the interface module to control the execution of the requested predefined procedure and the requesting application to receive the result of the requested predefined procedure.
- the request comprises a procedure identifier identifying the requested predefined procedure and at least one among:
- one or more radio network node identifiers each one identifying a respective target radio network node, among said one or more radio network nodes, to be involved in the requested predefined procedure;
- one or more user equipment identifiers each one identifying a respective target user equipment, among a plurality of user equipment connected to the mobile communication network, to be involved in the selected predefined procedure.
- each one of said one or more user equipment identifiers comprises a string identifier identifying (e.g., uniquely and univocally identifying) the user equipment.
- the corresponding string identifier comprises a serialized version of a data structure including any user equipment identifiers associated with that user equipment at different protocol levels of the mobile communication network.
- the at least one predefined procedure comprises a subscription to a periodic report of one or more performance parameters indicative of performance of the mobile communication network.
- the configuration data comprises one or more among:
- the at least one predefined procedure comprises a subscription to an event-based report of one or more radio access network parameters indicative of a status of the mobile communication network at the occurrence of one or more events.
- the configuration data comprises one or more among:
- the one or more radio access network parameters the measurements of which are to be included in the event-based report
- said configuration data comprises a procedure subject associated with the requested predefined procedure, said procedure subject comprising one or both between: a topic adapted to be published on a data buffer module of the controller platform together with the result of the requested predefined procedure, thereby allowing any applications to identify and access the result of the requested predefined procedure on the data buffer module; and an end-point, such as a “Uniform Resource Locator” (URL) address, where the result of the requested predefined procedure is published, thereby allowing any applications accessing the endpoint to access the result of the requested predefined procedure.
- URL Uniform Resource Locator
- Another aspect of the present disclosure relates to a mobile communication network comprising the controller platform of above.
- the mobile communication network is a 4G or a 5G mobile communication network configured to implement Self-Organizing Network capabilities.
- the mobile communication network is compliant with the Open Radio Access Network architecture.
- the controller platform comprises a near-Real-Time RAN Intelligent Controller.
- Another aspect of the present disclosure relates to a method for controlling a plurality of applications for executing a plurality of procedures in a mobile communication network.
- the method comprises storing configuration data of at least one predefined procedure of said plurality of procedures, and current radio access network parameters indicative of a current status of the mobile communication network.
- the method comprises, in response to a request, from a requesting application among said plurality of applications, to execute a requested one of the at least one predefined procedure for the requesting application: if the requested predefined procedure matches an ongoing predefined procedure, of the at least one predefined procedure, that is already under execution, preventing the execution of the requested predefined procedure and causing the requesting application to receive a result of the ongoing predefined procedure as a result of the requested predefined procedure; or if, according to said one or more current radio access network parameters, the result of the requested predefined procedure is already available, preventing the execution of the requested predefined procedure and causing the requesting application to receive the result of the requested predefined procedure.
- Figure 1 schematically shows a mobile communication network according to embodiments of the present disclosure
- Figure 2 shows a method implemented by a controller platform of the mobile communication network of Figure 1 according to embodiments of the present disclosure.
- Figure 1 schematically shows a mobile communication network 100 (e.g., a portion thereof) according to embodiments of the present disclosure.
- each node and/or module and/or platform and/or unit of the mobile communication network 100 may be implemented by software, hardware, and/or a combination thereof.
- each node and/or module and/or platform and/or unit of the mobile communication network 100 may also reflect, at least conceptually, physical structures of one or more portions of the mobile communication network 100.
- the mobile communication network 100 may be a 4G mobile communication network or a 5G mobile communication network. Without losing generality, the principles of the present disclosure may be applied to any other mobile communication network.
- the mobile communication network 100 is configured to implement SON functionalities.
- the mobile communication network 100 is compliant with the Open Radio Access Network (O-RAN) architecture, for example the O-RAN architecture disclosed in “O-RAN Use Cases and Deployment Scenarios, Towards Open and Smart RANT .
- O-RAN Open Radio Access Network
- the principles of the present disclosure may be adopted and/or adapted to other architectures.
- the network nodes NN may comprise radio network nodes.
- radio network nodes include, but are not limited to, eNodeB base stations (e.g., when the mobile communication network 100 is a 4G mobile communication network) and gNodeB base stations (e.g., when the mobile communication network 100 is a 5G mobile communication network).
- each network node NN may comprise a respective O-RAN Central Unit (O-CU) (or more thereof), a respective O-RAN Distributed Unit (O-DU) (or more thereof), and a respective O-RAN Radio Unit (O-RU) (or more thereof) - the O-CUs, the O-DUs and the O-RUs being not shown in the figure.
- O-CU O-RAN Central Unit
- O-DU O-RAN Distributed Unit
- O-RU O-RAN Radio Unit
- the mobile communication network 100 comprises a controller platform CP (or more thereof).
- the controller platform CP is associated with the network nodes NN, (or a subset thereof).
- any interaction between the controller platform CP and the network nodes NN, is intended as an interaction between the controller platform CP and the network nodes, among the network nodes NN,, that are associated with the controller platform CP.
- the controller platform CP is configured to perform near-real-time control of (or, concisely, to manage) network resources used by the network nodes NN,.
- each application APP may be aimed at carrying out a corresponding task through execution of respective one or more procedures.
- tasks include, but are not limited to, monitoring of potentials network faults, handling of Quality of Experience (QoE), handling of Quality of Service (QoS), handling of network traffic balance, and handling of network interference.
- QoE Quality of Experience
- QoS Quality of Service
- the controller platform CP may comprise the O-RAN near-real-time RAN Intelligent Controller (near-RT RIC) identified in the O-RAN architecture, and each software plug-in or application APP may comprise the “xAPP” identified in the O-RAN architecture.
- near-RT RIC near-real-time RAN Intelligent Controller
- the controller platform CP is configured to perform data exchange with the network nodes NN,.
- data include, but are not limited to, instruction data (for example, to instruct the network nodes NN, when a procedure is requested to be executed), and response data (for example, data including a procedure result).
- the controller platform CP is configured to perform data exchange with the network nodes NN, through a corresponding interface E2.
- the interface E2 may comprise the E2 interface identified in the O-RAN architecture.
- the mobile communication network 100 comprises a management module MGM.
- the management module MGM may comprise the Service Manager Orchestrator (SMO) module identified in the O-RAN architecture.
- SMO Service Manager Orchestrator
- the management module MGM is configured to provide configuration data to the controller platform CP for a configuration (or reconfiguration) thereof.
- the management module MGM and the controller platform CP are interfaced with each other (e.g., for provision of the configuration data) through a corresponding interface Ol.
- the interface Ol may comprise the 01 interface identified in the O-RAN architecture.
- the controller platform CP comprises a database module 105 configured to store the configuration data.
- the configuration data comprises configuration parameters of one or more predefined procedures (among the plurality of procedures that may be executed on behalf of the applications APP ), and current radio access network (RAN) parameters indicative of a current status of the mobile communication network 100.
- RAN radio access network
- the predefined procedures comprise procedures (hereinafter, common procedures) that are common to two or more applications APPy z.e., procedures that two or more applications APP execute (z.e., are configured to execute) with same configuration data (known at an application deploy time).
- Examples of common procedures include, but are not limited to, subscription creation, subscription removal, get list of active subscriptions, get list of network nodes connected to the controller platform, get list of user equipment connected to a specific network node, get network node data recovering information saved and updated in the controller platform (for example, in order to obtain detailed information on a specific network node, such as list of supported services and/or list of transmitted cells/carriers), and get user equipment data recovering information saved and updated in the controller platform (for example, in order to obtain detailed information on a specific user equipment, such as list of network slices and/or configured QoS).
- Examples of subscriptions an application APP can make to one or more of the network nodes NN, include, but are not limited to, report, insert, control and policy services from one or more of the network nodes NN,.
- the common procedure may comprise a subscription to a periodic report of one or more performance parameters indicative of performance of the mobile communication network 100.
- the periodic report of one or more performance parameters may be associated with the Key Performance Measurement (KPM) service model identified in the O-RAN architecture.
- KPM Key Performance Measurement
- the configuration data of the periodic report may comprise one or more among:
- the reporting period represents the time (e.g., expressed in milliseconds) between two subsequent reports of an active subscription
- the measurements of one or more additional performance parameters in addition to the measurements of the performance parameter(s) specified in the configuration data may also be included in the periodic report (the additional performance parameters the measurements of which are to be included in the periodic report being for example provided as request parameters included in a procedure request from a requesting application, as better discussed in the following);
- the format of the periodic report may be expressed in the form of an integer value.
- value 1 may represent cell reporting
- value 2 may represent single user equipment reporting
- value 3 may represent conditional based user equipment-group reporting;
- the subscription subject may comprise a topic
- the response data of the periodic report (or, more generally, of a common procedure) may be published together with the topic associated with the corresponding subscription, thereby allowing any applications (z.e., any application in addition to a requesting application having requested the execution of the periodic report, or, more generally, of the common procedure) to identify and access the corresponding response data (without redundantly re-executing additional procedures).
- the subscription subject may comprise an endpoint (such as a “Uniform Resource Locator” (URL) address, for example a URL address of a web page), and the response data of the periodic report (or, more generally, of a common procedure) may be available at the end-point, thereby allowing any applications (z.e., any application in addition to a requesting application having requested the execution of the periodic report, or, more generally, of the common procedure) to access the corresponding response data (without redundantly re-executing additional procedures) available at the end-point.
- the response data may be published together with a default subscription subject (such as a default topic or a default end-point).
- the common procedure may comprise a subscription to an event-based report of one or more radio access network (RAN) parameters indicative of a status of the mobile communication network at the occurrence of one or more events.
- RAN radio access network
- the event-based report of one or more RAN parameters may be associated with the Radio Control (RC) service model defined by the O-RAN architecture.
- RC Radio Control
- the configuration data of the event-based report may comprise one or more among:
- triggering event(s) the one or more events (hereinafter, triggering event(s)) the occurrence of which triggers the event-based report.
- the triggering event(s) may be provided in the form of integer values representing RAN parameters enabling the report; - the one or more RAN parameters the measurements of which are to be included in the event-based reporting;
- the subscription subject may comprise a topic
- the response data of the periodic report (or, more generally, of a common procedure) may be published together with the topic associated with the corresponding subscription, thereby allowing any applications (z.e., any application in addition to a requesting application having requested the execution of the periodic report, or, more generally, of the common procedure) to identify and access the corresponding response data (without redundantly re-executing additional procedures).
- the subscription subject may comprise an endpoint (such as a “Uniform Resource Locator” (URL) address, for example a URL address of a web page), and the response data of the periodic report (or, more generally, of a common procedure) may be available at the end-point, thereby allowing any applications (z.e., any application in addition to a requesting application having requested the execution of the periodic report, or, more generally, of the common procedure) to access the corresponding response data (without redundantly re-executing additional procedures) by accessing the end-point.
- the response data may be published together with a default subscription subject (such as a default topic or a default end-point).
- the configuration data is stored in the database module 105, for example in form of a configuration file.
- the configuration file may be in any suitable format (including, but not limited to, xml format, yang format, and Json format).
- An exemplary configuration file is provided here below (e.g., in xml format):
- subscription id' represents the subscription identifier
- reporting period ms represents the reporting period
- Measure list represents the performance parameter(s) the measurements of which are to be included in the periodic report
- Report style represents the format of the periodic report
- end-point represents the end-point (such as the URL address) associated with the subscription
- Event trigger id list represents the triggering event(s) the occurrence of which triggers the event-based report
- Random parameter list represents the RAN parameter(s) the measurements of which are to be included in the event-based report.
- the information related to a block is contained inside ⁇ block namex/block name>.
- the exemplary configuration file defines three subscriptions to periodic reports.
- this subscription features cell reporting ( ⁇ report style> 1 ⁇ /r eport style> a 100 ms reporting period ( ⁇ r eporting _period ms> 100 reporting period ms ), performance parameters DRB.PdcpSduVolumeDL and DRB.PdcpSduVolumeUL to be measured and reported in the periodic report ( ⁇ measure> DRB.PdcpSdu VolumeDL ⁇ /measure> ⁇ measure> DRB.PdcpSduVolumeUL ⁇ /measure> ⁇ and periodic report (e.g., available at a data buffer module, discussed in the following) identified by the topic “periodic cell report” ( ⁇ topic> periodic cell report ⁇ /topic>).
- periodic report e.g., available at a data buffer module, discussed in the following
- this subscription features single user equipment reporting ( ⁇ report style> 2 ⁇ /r eport style> a 300 ms reporting period ( reporting period ms> 300 performance parameters DRB.
- UEThpUL to be measured and reported in the periodic report ( ⁇ measure> DRB.
- the exemplary configuration also defines three subscriptions to event-based reports.
- this subscription features “Message Copy” report style ( ⁇ report style> 1 ⁇ /r eport style> triggering events 1, 6, 8 (f ⁇ event trigger id list> 1, 6, 8 ⁇ event trigger id list>” RAN parameters 1, 3 and 4 to be measured and reported in the event based report (f ⁇ ran _parameter> 1 ⁇ /ran _parameter> ; ⁇ ran _parameter> 3 ⁇ /ran _parameter> ; ⁇ ran _parameter> 4 ⁇ /ran parameter ”), and report (e.g., available at a data buffer module, discussed in the following) identified by the topic "e2 node info report” ( ⁇ topic> e2_node_info_report ⁇ /topic>).
- the controller platform CP comprises a configuration server module 110.
- the configuration server module 110 is configured to receive (e.g., through the interface Ol) the configuration data (such as the configuration file) from the management module MGM and to accordingly store it in the database module 105 or (or to accordingly update/modify the configuration data stored in the database module 105).
- the configuration server module 110 may also be configured to inspect the database module 105 when the configuration data stored therein is modified (e.g., so as to assess modifications on the stored configuration data).
- the controller platform CP comprises a procedure module 115.
- the procedure module 115 is configured to control execution of the common procedures.
- the procedure module 115 is configured to, in response to reception, from a requesting application among the applications APPy of a request (hereinafter, procedure request) to execute one of the common procedures (or requested common procedure, hereinafter concisely referred to as requested procedure) for the requesting application, prevent execution of the requested procedure either if the requested procedure matches an ongoing common procedure (hereinafter concisely referred to as ongoing procedure) that is already under execution or if the result of the requested procedure is already available at the database module 105.
- procedure request a request
- requested common procedure or requested common procedure, hereinafter concisely referred to as requested procedure
- the procedure module 115 avoids unnecessary repetition of a procedure (particularly, a procedure matching an ongoing predefined procedure or a procedure the result of which is already available), which would negatively affect the performance of the mobile communication network 100.
- the procedure module 115 is communicably coupled with the applications APP .
- the procedure module 115 is configured to receive, from the requesting application, the procedure request for the requesting application.
- the procedure module 115 is configured to provide, to the requesting application, one or more information about the ongoing procedure (hereinafter, procedure information), e.g., when the requested procedure matches an ongoing procedure.
- procedure information one or more information about the ongoing procedure
- the procedure information may comprise a procedure subject associated with the ongoing procedure.
- An example of procedure subject comprises the subscription subject discussed above.
- the procedure subject (for example, in the form of a string) may be indicative of a subject or content of the ongoing procedure, and may comprise a topic (so that the response data of the ongoing procedure, when published together with the associated topic, may be identified and accessed by any applications without redundantly re-executing the requested procedure), and/or an end-point (such as a “Uniform Resource Locator” (URL) address, for example a URL address of a web page, so that the response data of the ongoing procedure, when available at the end-point, may be accessed by any applications accessing the end-point, without redundantly re- executing the requested procedure).
- a default procedure subject (such as a default topic or a default endpoint) may be assumed to be used for publishing the response data of the
- the procedure information may comprise a notification of availability of the response data (or result) of the requested procedure (as discussed in the following).
- the controller platform CP comprises an interface module 120.
- the interface module 120 is configured to interface the controller platform CP to the network nodes NN,.
- the interface module 120 is configured to interface the controller platform CP to one or more target network nodes, among the network nodes NN;, being involved (or to be involved) in the requested procedures for controlling (e.g., through the interface E2) the execution of the requested procedures (as better discussed in the following).
- the interface module 120 is configured to interface the controller platform CP to the target network nodes to allow said data exchange (between the controller platform CP and the target network nodes) including the transmission of the instruction data (for example, to instruct the target network nodes to execute the requested procedures), and of the corresponding response data (for example, the data including the procedure results of the requested procedures).
- the controller platform CP comprises a data buffer module 125.
- the data buffer module 125 is configured to allow communication among the applications APPy the procedure module 115, and the interface module 120.
- the data buffer module 125 is communicably coupled with the interface module 120.
- the data buffer module 125 is configured to provide to the interface module 120 the procedure request and the configuration data corresponding to the requested procedure, and to receive from it the response data corresponding to the requested procedure.
- the data buffer module 125 is communicably coupled with the applications APP .
- the data buffer module 125 is configured to allow the applications APP to access the response data.
- the data buffer module 125 is communicably coupled with the procedure module 115.
- the data buffer module 125 is configured to receive from the procedure module 115 the procedure request and the configuration data corresponding to the requested procedure (for example, in case that the requested procedure has to be executed, e.g., in that the requested procedure does not match an ongoing procedure), or the response data (for example, in case that the requested procedure has not to be executed, e.g., in that the response data of the requested procedure is already available at the database module 105).
- the controller platform CP comprises a deploying module 130.
- the deploying module 130 is configured to handle a deploying of the applications APP on the controller platform CP.
- the deploying module 130 is communicably coupled with the applications APP through the data buffer module 125.
- the deploying module 130 is communicably coupled with the database module 105.
- each application APPy during the corresponding deploying phase is configured to access the database 105 and to retrieve from it a current configuration of the controller platform CP, e.g., in order to acknowledge the common procedures (and the corresponding configuration data) that are available in the controller platform CP (hereinafter, available common procedures).
- a current configuration of the controller platform CP e.g., in order to acknowledge the common procedures (and the corresponding configuration data) that are available in the controller platform CP (hereinafter, available common procedures).
- FIG. 2 shows an activity diagram of a method 200 according to embodiments of the present disclosure.
- Figure 2 shows a swim-lane activity diagram which describes the flow of activities relating to exemplary embodiments of the present disclosure.
- each step of the activity diagram may correspond to one or more executable instructions for implementing the specified logical function(s) on a relevant software component of a respective entity.
- the following entities are exemplary considered as being involved in the method: the applications APPy the procedure module 115, the data buffer module 125, the interface module 120, the database module 105 and the network nodes NN,.
- the method steps may be implemented by respective computer program products loadable into a digital memory of the entities (i.e., a digital memory of computational resources where the entities are implemented).
- each computer program product comprises software code means for performing the method steps when the computer program product is run on the corresponding entity.
- the method 200 comprises, in response to reception (from a requesting application) of a procedure request to execute a requested procedure for the requesting application: if the requested procedure matches an ongoing procedure that is already under execution, preventing the execution of the requested procedure and causing the requesting application to receive the result of the ongoing procedure as the result of the requested procedure, or if, according to the current RAN parameters, the result of the requested procedure is already available at the database module 105, preventing the execution of the requested procedure and causing the requesting application to receive the result of the requested procedure.
- the method 200 avoids unnecessary repetition of a procedure (e.g., a procedure matching an ongoing predefined procedure or a procedure the result of which is already available), which would negatively affect the performance of the mobile communication network 100.
- a procedure e.g., a procedure matching an ongoing predefined procedure or a procedure the result of which is already available
- the bidirectional arrow between the first entity and a second entity (such as between the procedure module 115 and the data buffer module 125, between the data buffer module 125 and the interface module 120, between the applications APP and the data buffer module 125, between the procedure module 115 and the database module 105, and between the interface module 120 and the network nodes NN,) is intended to represent a bidirectional signal flow between the first and second entities aimed at achieving the action represented by that method step.
- the method 200 comprises generating the procedure request to execute one or more of the common procedures (ie., the requested procedure) (step 205).
- the procedure request may be generated by a requesting application among the applications APP .
- the procedure request comprises a procedure identifier identifying the requested procedure among the available common procedures.
- the procedure identifier may identify a common procedure, for example, among: subscription creation, subscription removal, get list of active subscriptions, get a list of network nodes connected to the controller platform, get a list of user equipment connected to a specific network node, get network node data recovering information saved and updated in the controller platform, and get user equipment data recovering information saved and updated in the controller platform.
- the procedure request may comprise, in addition to the procedure identifier, one or more request parameters.
- request parameters may include, but are not limited to, the (above-mentioned) additional performance parameters the measurements of which are to be included in the periodic report, and/or one or more network node identifiers each one identifying a respective target network node, among the network nodes NN, (z.e., among the network nodes associated with the controller platform CP) to be involved in the requested procedure, and/or one or more user equipment identifiers each one identifying a respective target user equipment, among a plurality of user equipment connected to the mobile communication network 100, to be involved in the requested procedure.
- provision of the request parameters may depend on the requested procedure.
- the request parameters may comprise the subscription identifier and/or the network node identifier(s) and/or the user equipment identifier(s).
- the request parameters may comprise the subscription identifier and/or the network node identifier(s) and/or the user equipment identifier(s).
- the target network nodes if no network node identifier is included in the procedure request, all the network nodes associated with the controller platform may be regarded as the target network nodes.
- all the user equipment associated with (z.e., connected to or served by) the target network node(s) may be regarded as the target user equipment.
- the request parameters may comprise the subscription identifier and/or the network node identifier(s).
- subscription removal may take place when no other same subscriptions for the same target network nodes are active.
- the procedure request may not include any procedure parameters.
- the procedure request may not include any procedure parameters.
- the request parameters may comprise the network node identifier of that specific network node.
- the request parameters may comprise the network node identifier.
- the request parameters may comprise the user equipment identifier.
- each user equipment identifier comprises unique user equipment identifier uniquely and univocally identifying the user equipment.
- each user equipment identifier comprises a string identifier uniquely and univocally identifying the user equipment.
- the corresponding string identifier may comprise a serialized version of a data structure including all user equipment identifiers associated with that user equipment at different protocol levels of the mobile communication network (for example, when considering a mobile communication network compliant with the O-RAN architecture, a same user equipment may be associated with a first user equipment identifier in the O-DU, and with a second user equipment identifier in the O-CU, different from the first user equipment identifier).
- serialized version of the data structure into the string identifier may be achieved based on Protocol Buffers (Protobuf) serialization technique and/or on a hexadecimal representation of encoded bytes in ASN.l of the data structure defined in the O-RAN architecture.
- Protocol Buffers Protobuf
- the method 200 comprises transmitting (by the requesting application APP ) the procedure request to the procedure module 115 (step 210).
- the method 200 comprises checking if the requested procedure matches an ongoing procedure, among the available common procedures, that is already under execution (steps 215-220). This could be the case, for example, of a requested procedure matching an ongoing procedure already under execution on behalf (z.e., under request) of a different requesting application other than the requesting application APPy and already under execution with same request parameters (such as with same target network nodes and same target user equipment) as the requested procedure.
- the target network node(s) and/or the target user equipment may be the same for both the requested procedure and the ongoing procedure due to same network node identifiers and/or same user equipment identifiers included in the corresponding procedure requests (z.e., in the respective request parameters).
- the target network node(s) and/or the target user equipment may be the same for both the requested procedure and the ongoing procedure due to absence of any network node identifiers in the corresponding procedure requests (z.e., default selection of all the network nodes associated with the controller platform CP) and/or due to absence of any user equipment identifiers in the corresponding procedure requests (z.e., default selection of all the user equipment connected to the network nodes, or to a subset thereof, associated with the controller platform CP).
- the method 200 comprises, at the procedure module 115, accessing the interface module 120 (step 215) to retrieve one or more information allowing to check if the requested procedure matches an ongoing procedure.
- the procedure module 115 is configured to access the interface module 120 by intermediation of the data buffer module 125 (although this should not be construed limitatively, in that any direct or indirect communication within the reach of the skilled person may be envisaged between the procedure module 115 and the interface module 120).
- the one or more information may comprise the instruction data (or portions thereof) used by the interface module 120 to control the execution of the ongoing procedures.
- the one or more information may comprise the target network nodes and/or the target user equipment and/or measured parameters (for example, the performance parameter(s) and/or the RAN parameter(s)) associated with the ongoing procedures).
- step 225 if the requested procedure matches an ongoing procedure (exit branch Y of step 220), re-execution of the requested procedure is prevented (step 225), and the requesting application APP is caused to receive a result (e.g., the response data) of the (matching) ongoing procedure as a result of the requested procedure (steps 230-235).
- a result e.g., the response data
- the method 200 comprises, at the procedure module 115, transmitting to the requesting application APP the procedure information to notify it that the result of the requested procedure is being made available at the data buffer module 125 and/or at an end-point, for example by reporting the corresponding procedure subject (e.g., the topic and/or the end-point, respectively) to the requesting application APP (step 230), and, at the requesting application APPy accessing the data buffer module 125 and/or the end-point to retrieve the result of the (matching) ongoing procedure, for example the response data associated with the reported topic and/or the response data available at the end-point (step 235).
- the procedure module 115 transmitting to the requesting application APP the procedure information to notify it that the result of the requested procedure is being made available at the data buffer module 125 and/or at an end-point, for example by reporting the corresponding procedure subject (e.g., the topic and/or the end-point, respectively) to the requesting application APP (step 230), and, at the requesting application
- the method 200 comprises, if the requested procedure does not match any ongoing procedure (exit branch N of step 220), checking if, according to the current RAN parameters (e.g., the current RAN parameters stored in the database module 105), the result of the requested procedure is already available at the database module 105 (steps 240-245).
- a RAN parameter stored in the database module 105 is considered to be a current RAN parameter for the purposes of (z.e., to be used for) checking if it represents or includes already the result of the requested procedure, if the RAN parameter was measured within a respective predefined time interval before a current time instant (the current time instant being for example a time instant of transmission or reception of the procedure request).
- the predefined time interval associated with a RAN parameter may correspond to an expected or estimated or average time interval of evolution of the RAN parameter.
- the method 200 comprises, at the procedure module 115, accessing the database module 105 (step 240) to retrieve the current RAN parameters to check if the result of the requested procedure is already available.
- the current RAN parameters may be (e.g., directly) transmitted from the procedure module 115 to the requesting application APP (step 255).
- the current RAN parameters may be published on the data buffer module 125 (e.g., together with a respective topic) and/or at an end-point
- the procedure module 115 may transmit to the requesting application APP the procedure information to notify it that the result of the requested procedure is available at the data buffer module 125 and/or at the end-point, for example by reporting the corresponding subscription subject to the requesting application APPy and the requesting application APP may access the information provided by the data buffer module 125 (e.g., in case the procedure subject comprises a topic) and/or the information provided at the end-point (e.g., in case the procedure subject comprises an end-point)
- the method 200 comprises, in response to reception (from the requesting application) of the procedure request: if the requested procedure matches an ongoing procedure that is already under execution, preventing the execution of the requested procedure and causing the requesting application to receive the result of the ongoing procedure as the result of the requested procedure (see steps 215-235 discussed above); or if, according to the current RAN parameters, the result of the requested procedure is already available at the database module 105, preventing the execution of the requested procedure and causing the requesting application to receive the result of the requested procedure (see steps 240-255 discussed above), otherwise, execution of the requested procedure takes place (see steps 260-285 discussed below). However, steps 260-285 may be omitted or differently implemented in basic embodiments.
- the method 200 comprises, if no current RAN parameters are provided at the database module 105 that represent (or include) the result of the requested procedure (exit branch N of step 245), retrieving the configuration data of the requested procedure from the database module 105 (step 260), and providing to the interface module 120 an instructive message including the procedure request (and the corresponding request parameters included therein, if any) and the retrieved configuration data (step 265), so as to cause the interface module 120 to control the execution the requested procedure and the requesting application APP to receive the result of the requested procedure (as discussed here below).
- transmission of the instructive message directly takes place from the procedure module 115 to the interface module 120, for example through a Remote Procedure Call (RPC) message framework (such as the gRPC message framework), or through a Representational state transfer (REST) interface.
- RPC Remote Procedure Call
- REST Representational state transfer
- transmission of the instructive message takes place from the procedure module 115 to the data buffer module 125, and hence from the data buffer module 125 to the interface module 120.
- the method 200 comprises, upon reception of the instructive message at the interface module 120, and preferably after consistency checks of the instructive message by the interface module 120, executing the requested procedure (step 270).
- execution of the requested procedure determines data exchanges (e.g., through the interface 02) between the interface module 120 and the target network nodes NN,. According to an embodiment, execution of the requested procedure determines, at the interface module 120, transmission of the instruction data (corresponding to the instructive message) aimed at instructing the target network nodes NN,, and reception of the corresponding response data.
- the method 200 comprises, at the interface module 120, publishing the result (e.g., the response data) of the requested procedure (for example, together with the associated procedure subject) on the data buffer module 125 and/or on the end-point (step 275).
- the result e.g., the response data
- the interface module 120 publishing the result (e.g., the response data) of the requested procedure (for example, together with the associated procedure subject) on the data buffer module 125 and/or on the end-point (step 275).
- the publication of the result of the requested procedure may take place while the requested procedure is still under execution (with the interface module 120 that may for example transmit to the data buffer module 125 and/or to the end-point the response data resulting from the execution of the requested procedure as soon as (and while) they are acquired by the interface module 120 from the target network node(s) and/or the involved user equipment), or at an end of the execution of the requested procedure (with the end of the execution of the requested procedure that may for example be decreed by the controller platform CP and/or as soon as all response data has been obtained).
- the method 200 comprises, at the interface module 120, transmitting the procedure information to the requesting application APP to notify it that the result of the requested procedure is being made available at the data buffer module 125 and/or at the end-point, for example by reporting the corresponding procedure subject (z.e., topic and/or end-point, respectively) to the requesting application APP (step 280), and, at the requesting application APPy accessing the data buffer module 125 and/or the end-point to retrieve the result of the requested procedure, for example the response data associated with the reported topic and/or the response data published at the end-point, respectively (step 285).
- the procedure information to the requesting application APP to notify it that the result of the requested procedure is being made available at the data buffer module 125 and/or at the end-point, for example by reporting the corresponding procedure subject (z.e., topic and/or end-point, respectively) to the requesting application APP (step 280), and, at the requesting application APPy accessing the data buffer module 125 and/or the
- controller platform and, more generally, the mobile communication network
- the controller platform has a different structure, comprises equivalent components or it has other operative characteristics.
- every component thereof may be separated into more elements, or two or more components may be combined together into a single element; moreover, each component may be replicated to support the execution of the corresponding operations in parallel.
- any interaction between different components generally does not need to be continuous, and it may be either direct or indirect through one or more intermediaries.
- the present disclosure lends itself to be implemented through an equivalent method (by using similar steps, removing some steps being not essential, or adding further optional steps); moreover, the steps may be performed in different order, concurrently or in an interleaved way (at least partly).
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Mobile Radio Communication Systems (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IT102022000023052A IT202200023052A1 (en) | 2022-11-08 | 2022-11-08 | MANAGEMENT OF APPLICATIONS IN MOBILE COMMUNICATION NETWORKS |
| PCT/EP2023/076732 WO2024099635A1 (en) | 2022-11-08 | 2023-09-27 | Application management in mobile communication networks |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4616594A1 true EP4616594A1 (en) | 2025-09-17 |
Family
ID=84829906
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23787020.9A Pending EP4616594A1 (en) | 2022-11-08 | 2023-09-27 | Application management in mobile communication networks |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4616594A1 (en) |
| IT (1) | IT202200023052A1 (en) |
| WO (1) | WO2024099635A1 (en) |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US10382587B2 (en) * | 2015-06-26 | 2019-08-13 | International Business Machines Corporation | De-duplicating remote procedure calls |
| US11051195B2 (en) | 2018-05-02 | 2021-06-29 | Apple Inc. | Operations and notifications for performance management of 5G networks and network slicing |
-
2022
- 2022-11-08 IT IT102022000023052A patent/IT202200023052A1/en unknown
-
2023
- 2023-09-27 WO PCT/EP2023/076732 patent/WO2024099635A1/en not_active Ceased
- 2023-09-27 EP EP23787020.9A patent/EP4616594A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| WO2024099635A1 (en) | 2024-05-16 |
| IT202200023052A1 (en) | 2024-05-08 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US11089516B2 (en) | Systems and methods for network performance monitoring, event detection, and remediation | |
| WO2022011862A1 (en) | Method and system for communication between o-ran and mec | |
| CN111600930A (en) | Traffic management method, device, server and storage medium for microservice request | |
| EP3621244B1 (en) | System and method for enabling intelligent network services by cognitive sense-analyze-decide-respond framework | |
| CN112883024A (en) | Model updating method, device and system | |
| US20240388512A1 (en) | Method for aligning quality of service in mobile network and edge cloud | |
| CN115442376B (en) | Calculation scheduling method and device and network equipment | |
| KR20190039757A (en) | How to manage virtual radio access networks and how to tune software components | |
| KR102233894B1 (en) | Network function and method for processing request using the same | |
| US11922224B2 (en) | Method for installing a virtualised network function | |
| US20250016053A1 (en) | Application management in mobile communication networks | |
| US11936527B2 (en) | Multi-access edge computing (MEC) | |
| US10338971B2 (en) | Information processing apparatus, information processing system, information processing method, and program | |
| US20240275860A1 (en) | Management, discovery, registration and communication methods and entities configured to carry out these methods | |
| CN109391982B (en) | Information packet generation method and arrangement management method, network element and storage medium | |
| EP4616594A1 (en) | Application management in mobile communication networks | |
| JP7478702B2 (en) | Base station function allocation control device, base station function allocation control method, and computer program | |
| US20250310184A1 (en) | Service management and orchestration for private and public mobile networks | |
| US20250184220A1 (en) | Intent-based service management | |
| CN120238913A (en) | Machine learning system for predicting resource usage of 5G network slices or cells | |
| CN118646808A (en) | Communication protocol switching method, device, storage medium and electronic device | |
| US20260113645A1 (en) | Conflict management of non-realtime ran intelligent controller (ric) and other optimization systems | |
| EP4718905A1 (en) | Open-loop execution of radio access network intelligent controller applications | |
| US20260089605A1 (en) | Scaling of open radio access network (o-ran) applications | |
| EP4730735A1 (en) | Conflict management of non-realtime ran intelligent controller (ric) and other optimization systems |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: UNKNOWN |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE |
|
| PUAI | Public reference made under article 153(3) epc to a published international application that has entered the european phase |
Free format text: ORIGINAL CODE: 0009012 |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE |
|
| 17P | Request for examination filed |
Effective date: 20250603 |
|
| AK | Designated contracting states |
Kind code of ref document: A1 Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC ME MK MT NL NO PL PT RO RS SE SI SK SM TR |
|
| STAA | Information on the status of an ep patent application or granted ep patent |
Free format text: STATUS: EXAMINATION IS IN PROGRESS |
|
| DAV | Request for validation of the european patent (deleted) | ||
| DAX | Request for extension of the european patent (deleted) | ||
| 17Q | First examination report despatched |
Effective date: 20260121 |