WO2025004071A1 - System and method for active bandwidth part (bwp) selection - Google Patents
System and method for active bandwidth part (bwp) selection Download PDFInfo
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- WO2025004071A1 WO2025004071A1 PCT/IN2024/050590 IN2024050590W WO2025004071A1 WO 2025004071 A1 WO2025004071 A1 WO 2025004071A1 IN 2024050590 W IN2024050590 W IN 2024050590W WO 2025004071 A1 WO2025004071 A1 WO 2025004071A1
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- bandwidth part
- bandwidth
- establishment cause
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- setup request
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0453—Resources in frequency domain, e.g. a carrier in FDMA
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/20—Manipulation of established connections
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/51—Allocation or scheduling criteria for wireless resources based on terminal or device properties
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/50—Connection management for emergency connections
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 (herein after 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 to wireless communications, and specifically to a system and a method for selecting an active Bandwidth Part (BWP) upon receiving a connection setup request.
- BWP Bandwidth Part
- BWP Band Wideband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband Physical Broadband (S), load, aggregation level, core set size, interleaved/non-interleaved Control Channel Element (CCE) indexes, and channel report during the selection and may result in an incorrect matching of the active BWP with respect to a service request received from a User Equipment (UE).
- SCS Subcarrier Spacing
- CCE Interleaved/non-interleaved Control Channel Element
- UE User Equipment
- the RRC is a protocol is used in Universal Mobile Telecommunications Service (UMTS), long-term evolution (LTE) and 5G on the air interface. It is a layer 3 (network layer) protocol used between a user equipment (UE) and a base station.
- UMTS Universal Mobile Telecommunications Service
- LTE long-term evolution
- 5G 5th Generation
- UE user equipment
- SCS refers to subcarrier spacing.
- the SCS is the distance between two adjacent subcarriers in an Orthogonal Frequency Division Multiplexing (OFDM) signal. It is a key parameter that affects the bandwidth and performance of a 5G network.
- OFDM Orthogonal Frequency Division Multiplexing
- SSB refers to synchronization signal block.
- the SSB is used by the UE for 5G NR cell search and synchronization.
- the term CORESET as used herein refers to the control resource set.
- the CORESET is a set of physical resources (i.e., a specific area on the NR downlink resource grid) and a set of parameters that are used to carry Physical Downlink Control Channel (PDDCH))/Downlink Channel Indicator (DCI).
- PDDCH Physical Downlink Control Channel
- DCI Downlink Channel Indicator
- the E-UTRA PUSCH is the main uplink channel and is used to carry the uplink shared channel (UL-SCH) transport channel.
- PUCCH refers to the Physical Uplink Control Channel.
- the PUCCH carries a set of information called Uplink Control Information (UCI).
- UCI Uplink Control Information
- NAS refers to non-access stratum.
- the Non-Access Stratum (NAS) is a functional layer running between the User Equipment (UE) and the Core Network (CN).
- BWP refers to bandwidth part.
- the BWP is a part of the total channel bandwidth configured for a cell that is used for a UE at a specific moment of operation.
- BWP Bandwidth Part
- RRC Radio Resource Control
- UE User Equipment
- the present invention discloses a method of selecting at least one bandwidth part for a user equipment (UE) connected to a network.
- the method comprising receiving a radio resource control (RRC) connection setup request from the UE.
- the method comprising checking an establishment cause associated with the received RRC connection setup request.
- the method comprising configuring a plurality of bandwidth parts based on the checked establishment cause.
- the method comprising selecting at least one bandwidth part from the plurality of configured bandwidth parts.
- the method comprising allocating, to the UE, the at least one selected bandwidth part.
- the method comprising transmitting, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the method comprising attaching the UE to the at least one allocated bandwidth part.
- the establishment cause includes of a plurality of parameters associated with a service requirement of the UE.
- the plurality of configured bandwidth parts comprises of a plurality of bandwidth part characteristics.
- the method further comprising matching the plurality of bandwidth part characteristics with the plurality of parameters.
- the method further comprising ranking the plurality of bandwidth parts based on the matched plurality of bandwidth part characteristics.
- the method further comprising selecting the at least one bandwidth part from the plurality of ranked bandwidth parts.
- the at least one selected bandwidth part comprises of at least one bandwidth part characteristic having a maximum match with the plurality of parameters included in the establishment cause.
- the method the plurality of parameters included in the establishment cause comprising one or more of an emergency access, a high priority access, a mobile terminating (MT) access, a mobile originating (MO) signalling, a mobile originating (MO) data, a mobile originated (MO) voice call, a mobile originated (MO) video call, a mobile originated SMS, a multimedia priority service (MPS) priority access, and a mission critical service (MCS) priority access.
- an emergency access a high priority access
- MT mobile terminating
- MO mobile originating
- MO mobile originating
- MO mobile originating
- MO mobile originated
- MO mobile originated
- video call a mobile originated SMS
- MCS mission critical service
- the plurality of bandwidth part characteristics comprising one or more of a subcarrier spacing (SCS), load, an aggregation level, a coreset size, interleaved control channel element (CCE) indexes, non-interleaved control channel element (CCE) indexes, and channel report.
- SCS subcarrier spacing
- CCE interleaved control channel element
- CCE non-interleaved control channel element
- the method further comprising monitoring a channel measurement report of the UE attached to the at least one allocated bandwidth part. [0030] In some embodiments, the method further comprising switching the UE to at least one other ranked bandwidth part based on the monitored channel measurement report.
- the present invention discloses a system for selecting at least one bandwidth part for a user equipment (UE) connected to a network.
- the system comprising a receiving unit (212) configured to receive a radio resource control (RRC) connection setup request from the UE.
- the system comprising a processing unit (214) configured to check an establishment cause associated with the received RRC connection setup request.
- the system is configured to configure a plurality of bandwidth parts based on the checked establishment cause.
- the system is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the system is configured to allocate, to the UE, the at least one selected bandwidth part.
- the system is configured to transmit, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the system is configured to attach the UE to the at least one allocated bandwidth part.
- the establishment cause includes of a plurality of parameters associated with a service requirement of the UE.
- the plurality of configured bandwidth parts comprises of a plurality of bandwidth part characteristics.
- the system is configured to match the plurality of bandwidth part characteristics with the plurality of parameters.
- the system is configured to rank the plurality of bandwidth parts based on the matched plurality of bandwidth part characteristics. [0036] In some embodiments, the system is configured to select the at least one bandwidth part from the plurality of ranked bandwidth parts.
- the at least one selected bandwidth part comprises of at least one bandwidth part characteristic having a maximum match with the plurality of parameters included in the establishment cause.
- the plurality of parameters included in the establishment cause comprising one or more of an emergency access, a high priority access, a mobile terminating (MT) access, a mobile originating (MO) signalling, a mobile originating (MO) data, a mobile originated (MO) voice call, a mobile originated (MO) video call, a mobile originated SMS, a multimedia priority service (MPS) priority access, and a mission critical service (MCS) priority access.
- an emergency access a high priority access
- MT mobile terminating
- MO mobile originating
- MO mobile originating
- MO mobile originating
- MO mobile originated
- MO mobile originated
- video call a mobile originated SMS
- MCS mission critical service
- the plurality of bandwidth part characteristics comprising one or more of a subcarrier spacing (SCS), load, an aggregation level, a coreset size, interleaved control channel element (CCE) indexes, non-interleaved control channel element (CCE) indexes, and channel report.
- SCS subcarrier spacing
- CCE interleaved control channel element
- CCE non-interleaved control channel element
- the system is configured to monitor a channel measurement report of the UE attached to the at least one allocated bandwidth part. [0041] In some embodiments, the system is configured to switch the UE to at least one other ranked bandwidth part based on the monitored channel measurement report.
- the present invention discloses network comprising one or more network elements for selecting at least one bandwidth part for a user equipment (UE) communicatively coupled to the network.
- the one or more network elements are configured to receive a radio resource control (RRC) connection setup request from the UE.
- the system is configured to check an establishment cause associated with the received RRC connection setup request.
- the system is configured to configure a plurality of bandwidth parts based on the checked establishment cause.
- the system is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the system is configured to allocate, to the UE, the at least one selected bandwidth part.
- the system is configured to transmit, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the system is configured to attach the UE to the at least one allocated bandwidth part.
- the present invention discloses user equipment (UE) communicatively coupled with a network.
- the network comprising one or more network elements configured for receiving a radio resource control (RRC) connection setup request from the UE, sending an acknowledgment of the RRC connection setup request to the UE, and checking an establishment cause associated with the received RRC connection setup request for configuring a plurality of bandwidth parts.
- the one or more network elements are further configured for allocating, to the UE, the at least one bandwidth part and transmitting, to the UE, a RRC reconfiguration message for attaching the UE to the at least one bandwidth part.
- RRC radio resource control
- FIG. 1 illustrates an exemplary representation of elements of a Radio Resource Control (RRC) setup request including an establishment cause, in accordance with an embodiment of the present disclosure.
- RRC Radio Resource Control
- FIG. 2A illustrates a network architecture for selecting at least one bandwidth part for a user equipment (UE), in accordance with embodiments of the present disclosure.
- FIG. 2B illustrates an exemplary flow representation for a selection of an active Bandwidth Part (BWP) upon receiving a Radio Resource Control (RRC) setup request, in accordance with an embodiment of the present disclosure.
- FIG. 3 illustrates an exemplary flow representation of the UE switching the BWP based on a generated periodic channel report, in accordance with an embodiment of the present disclosure.
- FIG. 4 illustrates an exemplary computer system in which or with which embodiments of the present disclosure may be implemented.
- FIG. 5 illustrates an exemplary flow chart for selecting at least one bandwidth part for the UE, in accordance with an embodiment of the present disclosure.
- RRC Radio Resource Control
- gNodeB gNodeB
- AMF access and mobility function
- a process is terminated when its operations are completed but could have additional steps not included in a figure.
- a process may correspond to a method, a function, a procedure, a subroutine, a subprogram, etc.
- a process corresponds to a function
- its termination can correspond to a return of the function to the calling function or the main function.
- exemplary and/or “demonstrative” is used herein to mean serving as an example, instance, or illustration. For the avoidance of doubt, the subject matter disclosed herein is not limited by such examples.
- any aspect or design described herein as “exemplary” and/or “demonstrative” is not necessarily to be construed as preferred or advantageous over other aspects or designs, nor is it meant to preclude equivalent exemplary structures and techniques known to those of ordinary skill in the art.
- BWPs Bandwidth Parts
- 5G Fifth Generation
- NR New Radio
- 3GPP 3rd Generation Partnership Project
- the BWP dynamically adapts carrier bandwidth and numerology in which a User Equipment (UE) operates.
- UE User Equipment
- the BWP allows supporting multiple services per carrier, for example, an Enhanced Mobile Broadband (eMBB) service, and a Massive Machine-Type Communications (mMTC) service.
- eMBB Enhanced Mobile Broadband
- mMTC Massive Machine-Type Communications
- the BWP is a carrier bandwidth part that is a contiguous set of physical resource blocks, selected from a contiguous subset of the common resource blocks for a given numerology (u) on a given carrier.
- the BWP allocation for Downlink (DL) involves:
- the UE to be configured with up to four carrier bandwidth parts. 2. Setting the bandwidth of each of the Bandwidth part (BWP) to be equal or greater than Synchronization Signal Block (SSB) BW, but it may or may not contain SSB.
- BWP Bandwidth part
- SSB Synchronization Signal Block
- the UE to not expect to receive a physical downlink shared channel (PDSCH), Physical Downlink Control Channel (PDCCH), Channel- State Information - Reference Signals (CSI-RS), or Tracking Reference Signal (TRS) outside an active BWP.
- PDSCH physical downlink shared channel
- PDCCH Physical Downlink Control Channel
- CSI-RS Channel- State Information - Reference Signals
- TRS Tracking Reference Signal
- At least one of the configured DL BWPs may include one CORESET with common search space (CSS).
- CSS common search space
- the UE may, in addition, be configured with up to four carrier bandwidth parts in a supplementary uplink.
- Only one carrier bandwidth part may be active at a given time.
- the UE may not transmit the PUSCH or the PUCCH outside an active bandwidth part.
- the establishment cause in the RRC setup request may be, for example, an emergency, a high priority access, a mobile terminating access, a mobile originating signalling, a mobile originating data, and the like.
- the establishment cause may be determined by a Non-access stratum (NAS) procedure for which the RRC setup is being established.
- NAS Non-access stratum
- the establishment cause may be represented as:
- FIG. 1 illustrates an exemplary representation 100 of elements of the RRC setup request including the establishment cause, in accordance with an embodiment of the present disclosure.
- the RRC setup request (102) includes parameters such as UE-Identity (104), and the establishment cause (106).
- the UE-Identity (104) may be, for example, a Serving Temporary Mobile Subscriber Identity (S-TMSI) or it may be a random allocated identity.
- S-TMSI Serving Temporary Mobile Subscriber Identity
- selection of the active BWP is initiated when the gNB receives the RRC setup request at step (102).
- the establishment cause is evaluated. Based on the evaluation, for the connection request cases with the establishment cause mentioned as, for example, the MO voice, the MT voice, and the MCS/MPS high priority access, an active BWP may be configured that has a low latency (i.e., high sub carrier spacing), low load, and higher aggregation level, i.e., better channel measurement reports.
- any active BWP may be assigned whose load or channel characteristics have the capacity to service the requested connection request.
- a BWP ranking may be generated for each of the available BWP based on the channel characteristics.
- the BWP ranking may be generated for each of the requested services of the RRC setup request. Based on the generated BWP ranking, an active BWP may be selected that best suits the requested service in the establishment cause.
- the BWP may be ranked in an ascending order based on attributes such as SCS, load, aggregation level, core set size, interleaved/non-interleaved CCE indexes, and channel report.
- the BWP may be ranked in descending order based on the attributes such as SCS, load, aggregation level, core set size, interleaved/non-interleaved CCE indexes, channel report, etc.
- the BWP may be ranked using a combination of one or more attributes such as SCS, load, aggregation level, core set size, interleaved/non- interleaved CCE indexes, channel report, etc, in ascending or descending order.
- the BWP may be ranked based on a weightage of the one or more attributes such as SCS, load, aggregation level, core set size, interleaved/non- interleaved CCE indexes, and channel report etc.
- a channel measurement report may be generated when the UE is attached to the active BWP.
- the channel measurement report may be monitored regularly to determine if the selected active BWP satisfies the requested service. Else, selection of the active BWP is switched to the next best BWP.
- FIG. 2A illustrates a network architecture for selecting at least one bandwidth part for a user equipment (UE), in accordance with embodiments of the present disclosure.
- the network architecture (200A) may include a user equipment UE (204) and a gNodeB (202).
- UE user equipment
- gNodeB gNodeB
- the UE (204) may include smart devices operating in a smart environment, for example, an Internet of Things (loT) system.
- the UE (204) may include, but is not limited to, smart phones, smart watches, smart sensors (e.g., mechanical, thermal, electrical, magnetic, etc.), networked appliances, networked peripheral devices, networked lighting system, communication devices, networked vehicle accessories, networked vehicular devices, smart accessories, tablets, smart television (TV), computers, smart security system, smart home system, other devices for monitoring or interacting with or for the users and/or entities, or any combination thereof.
- the UE (204) may include, but is not limited to, intelligent, multi-sensing, network-connected devices, that can integrate seamlessly with each other and/or with a central server or a cloudcomputing system or any other device that is network-connected.
- the UE (204) may include, but is not limited to, a handheld wireless communication device (e.g., a mobile phone, a smart phone, a phablet device, and so on), a wearable computer device(e.g., a head-mounted display computer device, a head-mounted camera device, a wristwatch computer device, and so on), a Global Positioning System (GPS) device, a laptop computer, a tablet computer, or another type of portable computer, a media playing device, a portable gaming system, and/or any other type of computer device with wireless communication capabilities, and the like.
- a handheld wireless communication device e.g., a mobile phone, a smart phone, a phablet device, and so on
- a wearable computer device e.g., a head-mounted display computer device, a head-mounted camera device, a wristwatch computer device, and so on
- GPS Global Positioning System
- the UE (204) may include, but is not limited to, any electrical, electronic, electro-mechanical, or an equipment, or a combination of one or more of the above devices such as virtual reality (VR) devices, augmented reality (AR) devices, laptop, a general-purpose computer, desktop, personal digital assistant, tablet computer, mainframe computer, or any other computing device, wherein the UE (204) may include one or more in-built or externally coupled accessories including, but not limited to, a visual aid device such as a camera, an audio aid, a microphone, a keyboard, and input devices for receiving input from the user (102) or the entity such as touch pad, touch enabled screen, electronic pen, and the like.
- a visual aid device such as a camera, an audio aid, a microphone, a keyboard, and input devices for receiving input from the user (102) or the entity such as touch pad, touch enabled screen, electronic pen, and the like.
- the UE (204) may not be restricted to the mentioned devices and various other devices may be used.
- the UE (204) may communicate with a system (210), through a network (203).
- the network (203) may include at least one of a Second Generation (2G), Third Generation (3G), Fourth Generation (4G) network, a Fifth Generation (5G) network, Sixth Generation (6G) and beyond or the like.
- the network (203) may enable the user equipment (204) to communicate with other devices in the network architecture (200A) and/or with the system (210).
- the network (203) may include a wireless card or some other transceiver connection to facilitate this communication.
- the network (203) may be implemented as or include any of a variety of different communication technologies such as a wide area network (WAN), a local area network (LAN), a wireless network, a mobile network, a Virtual Private Network (VPN), the Internet, the Public Switched Telephone Network (PSTN), or the like.
- WAN wide area network
- LAN local area network
- VPN Virtual Private Network
- PSTN Public Switched Telephone Network
- the system (210) may include a receiving unit (212), a processing unit (214), a database (216), and an interfacing unit (218).
- the receiving unit (212) is configured to receive a radio resource control (RRC) connection setup request from the UE.
- the processing unit (214) is coupled to the receiving unit (212).
- the processing unit (214) is configured to check an establishment cause associated with the received RRC connection setup request.
- the RRC connection setup request is a message used in cellular networks, particularly in the context of LTE (Long-Term Evolution) and 5G networks.
- a device When a device, such as a smartphone or loT device, wants to establish a connection with the network, it sends an RRC connection setup request to the base station (eNodeB in LTE or gNodeB in 5G).
- the RRC connection setup request includes essential information such as the device's identity, capabilities, and the type of service it is requesting.
- a base station Upon receiving this request, a base station processes it and initiates the necessary procedures to establish a connection with the device, allowing it to access the network services.
- the processing unit (214) configures a plurality of bandwidth parts based on the checked establishment cause.
- the processing unit (214) is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the processing unit (214) allocates at least one selected bandwidth part to the UE (204) and transmits the RRC reconfiguration message comprising the allocated at least one bandwidth part to the UE (204).
- the RRC reconfiguration message includes instructions for the device to adjust its radio configuration parameters, such as modulation and coding schemes, bandwidth allocation, power control, handover parameters, and other network-related settings along with the allocated at least one bandwidth part.
- the RRC reconfiguration message allows the network to adapt dynamically to changing conditions, optimize resource allocation, and enhance overall network performance while maintaining the continuity of service for connected devices.
- the processing unit (214) attaches the UE (204) to the at least one allocated bandwidth part.
- the processing unit (214) may be implemented as one or more microprocessors, microcomputers, microcontrollers, digital signal processors, central processing units, logic circuitries, and/or any devices that process data based on operational instructions.
- the processing unit (214) may be configured to fetch and execute computer-readable instructions stored in a memory of the system (210).
- the memory may be configured to store one or more computer-readable instructions or routines in a non- transitory computer readable storage medium, which may be fetched and executed to create or share data packets over a network service.
- the memory may comprise any non-transitory storage device including, for example, volatile memory such as random-access memory (RAM), or non-volatile memory such as erasable programmable read only memory (EPROM), flash memory, and the like.
- RAM random-access memory
- EPROM erasable programmable read only memory
- the database (216) may store information including the RRC connection setup request, the RRC configuration message, bandwidth parts, and the like.
- the interfacing unit (218) may comprise a variety of interfaces, for example, interfaces for data input and output devices (VO), storage devices, and the like.
- the interfacing unit (218) may facilitate communication through the system (210).
- the interfacing unit (218) may also provide a communication pathway for one or more components of the system (210).
- FIG. 2B illustrates an exemplary flow representation 200B for the selection of the active BWP upon receiving the RRC setup request, in accordance with an embodiment of the present disclosure.
- the UE 204 sends the RRC setup request with the establishment cause mentioned as MO Voice (i.e., a high-priority access) to the gNB/AMF 202.
- MO Voice i.e., a high-priority access
- the gNB evaluates a best BWP out of available four BWPs based on the attributes such as the SCS, the load, and channel estimates.
- the BWP that best matches a service request received from the RRC setup request is selected as the active BWP for the UE.
- a high-priority access request may require a BWP that supports low latency (i.e., high SCS), low load, and has the best channel characteristics (or maximum match with the plurality of parameters included in the establishment clause).
- a RRC setup message is sent to the UE having information about an active BWP with index 2.
- the UE sets the BWP as the active BWP with the index 2.
- the BWP whose subcarrier spacing, load, and channel configuration best matches the service and latency requirements for the type of service requested may be set as the active BWP.
- the matching of parameters helps in finding the correct BWP.
- the service level agreement (SLA) requirement for the requested service should be fulfilled by the BWP (to be selected).
- SLA service level agreement
- Scenario 2 For establishment cause mentioned as: Emergency/High Priority Access
- Scenario 5 For establishment cause mentioned as: MPS -Priority Access
- the BWP attributes such as the Core set size, the CCE indexes (interleaved/non-interleaved), and the other BWP attributes may be taken into account to determine the best suit for the establishment cause service.
- periodic channel measurement may be performed and monitored.
- switching to the next best BWP ranking may be done if current channel reports are not sufficient enough to sustain the Quality Of service (QoS) requirements of the establishment cause service.
- QoS Quality Of service
- the present invention discloses a method of selecting at least one bandwidth part for a user equipment (UE).
- the method comprises receiving a radio resource control (RRC) connection setup request from the UE.
- the method comprises checking an establishment cause associated with the received RRC connection setup request.
- the method comprises configuring a plurality of bandwidth parts based on the checked establishment cause.
- the method comprises selecting at least one bandwidth part from the plurality of configured bandwidth parts.
- the method comprises allocating, to the UE, at least one selected bandwidth part.
- the method comprises transmitting, to the UE, an RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the method comprises attaching the UE to at least one allocated bandwidth part.
- the establishment cause includes of a plurality of parameters associated with a service requirement of the UE.
- the plurality of configured bandwidth parts comprises a plurality of bandwidth part characteristics.
- the method further comprises matching the plurality of bandwidth part characteristics with the plurality of parameters.
- At least one selected bandwidth part comprises at least one bandwidth part characteristic having a maximum match with the plurality of parameters included in the establishment clause.
- the method the plurality of parameters included in the establishment cause comprising one or more of emergency access, a high priority access, a mobile terminating (MT) access, a mobile originating (MO) signalling, a mobile originating (MO) data, a mobile originated (MO) voice call, a mobile originated (MO) video call, a mobile originated SMS, a multimedia priority service (MPS) priority access, and a mission-critical service (MCS) priority access.
- emergency access a high priority access
- MT mobile terminating
- MO mobile originating
- MO mobile originating
- MO mobile originating
- MO mobile originated
- MO mobile originated
- video call a mobile originated SMS
- MCS mission-critical service
- the plurality of bandwidth part characteristics comprising one or more of a subcarrier spacing (SCS), load, an aggregation level, a coreset size, interleaved control channel element (CCE) indexes, non-interleaved control channel element (CCE) indexes, and channel report.
- SCS subcarrier spacing
- CCE interleaved control channel element
- CCE non-interleaved control channel element
- the method further comprises monitoring a channel measurement report of the UE attached to at least one allocated bandwidth part. [0094] In some embodiments, the method further comprises switching the UE to at least one other ranked bandwidth part based on the monitored channel measurement report.
- the present invention discloses a system for selecting at least one bandwidth part for a user equipment (UE).
- the system is configured to receive a radio resource control (RRC) connection setup request from the UE.
- the system is configured to check an establishment cause associated with the received RRC connection setup request.
- the system is configured to configure a plurality of bandwidth parts based on the checked establishment cause.
- the system is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the system is configured to allocate, to the UE, the at least one selected bandwidth part.
- the system is configured to transmit, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the system is configured to attach the UE to the at least one allocated bandwidth part.
- FIG. 3 illustrates an exemplary flow representation 300 of the UE 304 switching the B WP based on a generated periodic channel report, in accordance with an embodiment of the present disclosure.
- the UE is informed about a best-suited active BWP by the Gnb/AMF 302.
- the UE attaches itself to the best- suited active BWP and periodically generates a channel report.
- the periodically generated channel report is shared with the gNB comprising information related to quality and performance of the active BWP.
- the gNB informs the UE of the next best available active BWP to be used.
- the next best active BWP is selected based on the rank assigned to each of the available BWP.
- the disclosure facilitates the provision of a system and a method for allocating the active BWP to the UE based on the establishment cause mentioned in the RRC setup request.
- the BWP whose subcarrier spacing, load, and channel configuration best matches the service and latency requirements for the type of service requested may be set as the active BWP. This mechanism for selection of the active BWP enables better resource utilization and provides enhanced user experience.
- the present disclosure prioritizes the BWP attributes based on an establishment cause mentioned in the received RRC setup request.
- the present invention can be implemented in a wireless communication network architecture for better resource utilization.
- FIG. 4 illustrates an exemplary computer system 400 in which or with which embodiments of the present disclosure may be implemented.
- the computer system 400 may include an external storage device 410, a bus 420, a main memory 430, a read-only memory 440, a mass storage device 450, communication port(s) 460, and a processor 470.
- the computer system 400 may include more than one processor and communication ports.
- the processor 470 may include various modules associated with embodiments of the present disclosure.
- the communication port(s) 460 may be any of an RS-232 port for use with a modem-based 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) 460 may be chosen depending on a network, such a Local Area Network (LAN), Wide Area Network (WAN), or any network to which the computer system 400 connects.
- LAN Local Area Network
- WAN Wide Area Network
- the main memory 430 may be random access memory (RAM), or any other dynamic storage device commonly known in the art.
- the read-only memory 440 may be any static storage device(s) e.g., but not limited to, a Programmable Read Only Memory (PROM) chips for storing static information e.g., start-up or Basic Input/Output System (BIOS) instructions for the processor 470.
- the mass storage device 450 may be any current or future mass storage solution, which can be used to store information and/or instructions.
- Exemplary mass storage device 450 includes, but is not limited to, Parallel Advanced Technology Attachment (PATA) or Serial Advanced Technology Attachment (SATA) hard disk drives or solid-state drives (internal or external, e.g., having Universal Serial Bus (USB) and/or Firewire interfaces), one or more optical discs, Redundant Array of Independent Disks (RAID) storage, e.g. an array of disks.
- PATA Parallel Advanced Technology Attachment
- SATA Serial Advanced Technology Attachment
- SSD Universal Serial Bus
- RAID Redundant Array of Independent Disks
- the bus 420 communicatively couples the processor 470 with the other memory, storage, and communication blocks.
- the bus 420 may be, e.g.
- PCI Peripheral Component Interconnect
- PCI-X PCI Extended
- SCSI Small Computer System Interface
- USB Universal Serial Bus
- operator and administrative interfaces e.g., a display, keyboard, joystick, and a cursor control device
- Other operator and administrative interfaces can be provided through network connections connected through the communication port(s) 460.
- Components described above are meant only to exemplify various possibilities. In no way should the aforementioned exemplary computer system 400 limit the scope of the present disclosure.
- FIG. 5 illustrates an exemplary flow diagram 500 for a method of selecting at least one bandwidth part for a user equipment (UE) (204) connected to a network (203).
- UE user equipment
- the method includes receiving a radio resource control (RRC) connection setup request from the UE (204).
- RRC radio resource control
- the method includes checking an establishment cause associated with the received RRC connection setup request.
- the method includes configuring a plurality of bandwidth parts based on the checked establishment cause.
- the method includes selecting at least one bandwidth part from the plurality of configured bandwidth parts.
- the method includes allocating, to the UE (204), the at least one selected bandwidth part.
- the method includes transmitting, to the UE (204), a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the method includes attaching the UE (204) to the at least one allocated bandwidth part.
- the establishment cause includes of a plurality of parameters associated with a service requirement of the UE.
- the plurality of configured bandwidth parts comprises of a plurality of bandwidth part characteristics.
- the method further comprises matching the plurality of bandwidth part characteristics with the plurality of parameters.
- the method further comprises ranking the plurality of bandwidth parts based on the matched plurality of bandwidth part characteristics.
- the method further comprises selecting at least one bandwidth part from the plurality of ranked bandwidth parts.
- at least one selected bandwidth part comprises at least one bandwidth part characteristic having a maximum match with the plurality of parameters included in the establishment clause.
- the plurality of bandwidth part characteristics comprising one or more of a subcarrier spacing (SCS), load, an aggregation level, a coreset size, interleaved control channel element (CCE) indexes, non-interleaved control channel element (CCE) indexes, and channel report.
- the method further comprises monitoring a channel measurement report of the UE attached to at least one allocated bandwidth part. In some embodiments, the method further comprises switching the UE to at least one other ranked bandwidth part based on the monitored channel measurement report.
- the present invention discloses a system for selecting at least one bandwidth part for a user equipment (UE) connected to a network.
- the system comprises a receiving unit (212) configured to receive a radio resource control (RRC) connection setup request from the UE.
- the system comprises a processing unit (214) configured to check an establishment cause associated with the received RRC connection setup request.
- the system is configured to configure a plurality of bandwidth parts based on the checked establishment cause.
- the system is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the system is configured to allocate, to the UE, the at least one selected bandwidth part.
- the system is configured to transmit, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the system is configured to attach the UE to the at least one allocated bandwidth part.
- the present invention discloses network comprising one or more network elements for selecting at least one bandwidth part for a user equipment (UE) communicatively coupled to the network.
- the one or more network elements are configured to receive a radio resource control (RRC) connection setup request from the UE.
- the system is configured to check an establishment cause associated with the received RRC connection setup request.
- the system is configured to configure a plurality of bandwidth parts based on the checked establishment cause.
- the system is configured to select at least one bandwidth part from the plurality of configured bandwidth parts.
- the system is configured to allocate, to the UE, the at least one selected bandwidth part.
- the system is configured to transmit, to the UE, a RRC reconfiguration message comprising the allocated at least one bandwidth part.
- the system is configured to attach the UE to the at least one allocated bandwidth part.
- the present invention discloses user equipment (UE) communicatively coupled with a network.
- the network comprising one or more network elements configured for receiving a radio resource control (RRC) connection setup request from the UE, sending an acknowledgment of the RRC connection setup request to the UE, and checking an establishment cause associated with the received RRC connection setup request for configuring a plurality of bandwidth parts.
- the one or more network elements are further configured for allocating, to the UE, the at least one bandwidth part and transmitting, to the UE, a RRC reconfiguration message for attaching the UE to the at least one bandwidth part.
- RRC radio resource control
- the present disclosure facilitates selection of an active Bandwidth Part (BWP) upon receiving a Radio Resource Control (RRC) setup request.
- BWP Bandwidth Part
- RRC Radio Resource Control
- the present disclosure allocates the active BWP to a User Equipment (UE) while considering BWP attributes.
- UE User Equipment
- the present disclosure selects the active BWP based on a BWP subcarrier spacing attribute, an aggregation level attribute, a current load attribute that best matches a requested service.
- the present disclosure provides better resource utilization of a wireless network and enhanced user experience.
- the present disclosure prioritizes the BWP attributes based on an establishment cause mentioned in the received RRC setup request.
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Abstract
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Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP24831255.5A EP4736567A1 (en) | 2023-06-29 | 2024-05-20 | System and method for active bandwidth part (bwp) selection |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IN202321043757 | 2023-06-29 | ||
| IN202321043757 | 2023-06-29 |
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| PCT/IN2024/050590 Ceased WO2025004071A1 (en) | 2023-06-29 | 2024-05-20 | System and method for active bandwidth part (bwp) selection |
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| EP (1) | EP4736567A1 (en) |
| WO (1) | WO2025004071A1 (en) |
Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20200053811A1 (en) * | 2018-08-09 | 2020-02-13 | Qualcomm Incorporated | Bandwidth configuration techniques in wireless communications |
| WO2020186092A2 (en) * | 2019-03-12 | 2020-09-17 | Kyungmin Park | Wireless connection activity information update |
-
2024
- 2024-05-20 EP EP24831255.5A patent/EP4736567A1/en active Pending
- 2024-05-20 WO PCT/IN2024/050590 patent/WO2025004071A1/en not_active Ceased
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20200053811A1 (en) * | 2018-08-09 | 2020-02-13 | Qualcomm Incorporated | Bandwidth configuration techniques in wireless communications |
| WO2020186092A2 (en) * | 2019-03-12 | 2020-09-17 | Kyungmin Park | Wireless connection activity information update |
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| Publication number | Publication date |
|---|---|
| EP4736567A1 (en) | 2026-05-06 |
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