Mobility management for inter-gNB (next generation node-b) handover in new radio (NR) systems

US11190989B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11190989-B2
Application numberUS-201916419245-A
CountryUS
Kind codeB2
Filing dateMay 22, 2019
Priority dateMay 22, 2018
Publication dateNov 30, 2021
Grant dateNov 30, 2021

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  2. Abstract

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A Next Generation Node-B (gNB) and methods of communication are generally described herein. The gNB is configurable to operate as a source gNB. The gNB is configured with logical nodes including a gNB central unit (gNB-CU) and a gNB distributed unit (gNB-DU). The gNB-CU comprises a gNB-CU control plane (gNB-CU-CP) for control-plane functionality, and a gNB-CU user plane (gNB-CU-UP) for user-plane functionality. When a handover of a User Equipment (UE) from the source gNB to a target gNB is performed, the gNB transfers, from the gNB-DU to the gNB-CU-UP, a downlink data delivery status (DDDS) message to indicate that the gNB-CU-UP is to stop transfer, to the gNB-DU, of downlink data intended for the UE.

First claim

Opening claim text (preview).

What is claimed is: 1. An apparatus, comprising: a memory; and processing circuitry in communication with the memory, wherein the processing circuitry is included in a source Next Generation Node B (gNB) configured with logical nodes including a gNB central unit (gNB-CU) and a gNB distributed unit (gNB-DU), the gNB-CU comprising a gNB-CU control plane (gNB-CU-CP) for control-plane functionality, and a gNB-CU user plane (gNB-CU-UP) for user-plane functionality, wherein the processing circuitry is configured to: transfer, from the gNB-CU-CP to a target gNB, an Xn handover request message to initiate a handover of a User Equipment (UE) from the source gNB to the target gNB; receive, from the target gNB, Xn handover request acknowledgement message for the handover of the UE; transfer, from the gNB-CU-CP to the gNB-DU, an F1 UE context modification request message to indicate that the gNB-DU is to stop transmission of downlink data to the UE; transfer, from the gNB-DU to the gNB-CU-UP, a downlink data delivery status (DDDS) message to indicate that the gNB-CU-UP is to stop transfer, to the gNB-DU, of downlink data intended for the UE, wherein the DDDS message is encoded to include a cause field and a protocol date unit (PDU) type field, wherein a value of the cause field indicates a cause of the transfer stop, wherein the value is selected from a set of three or more predetermined values, wherein the set of three or more predetermined values includes a value to indicate an outage of a radio link, a value to indicate a resumption of the radio link, a value to indicate an outage of an uplink radio link, a value to indicate a resumption of the uplink radio link, a value to indicate an outage of a downlink radio link, and a value to indicate a resumption of the downlink radio link, and wherein the PDU type field is set to a value of 3 which notifies the gNB-CU-UP to stop delivering a packet data convergence protocol (PDCP) packet; and transfer, from the gNB-DU to the gNB-CU-CP, an F1 UE context modification response message to acknowledge the Fl UE context modification request message. 2. The apparatus according to claim 1 , wherein the set of three or more predetermined values further includes a value to indicate a stoppage of transmission of downlink data to the UE, and value to indicate a stoppage of transmission of uplink data from the UE. 3. The apparatus according to claim 2 , wherein the set of three or more predetermined values further includes a value to indicate both the stoppage of the transmission of the downlink data to the UE and the stoppage of the transmission of the uplink data from the UE. 4. The apparatus according to claim 1 , the processing circuitry further configured to: encode the ODDS message to further include one or more of: a highest sequence number (SN) of a packet data convergence protocol (PDCP) packet that was successfully delivered to the UE, and a highest SN of a PDCP packet that was transmitted to the UE. 5. The apparatus according to claim 1 , the processing circuitry further configured to: in response to reception of the DDDS message: stop transfer, from the gNB-CU-UP to the gNB-DU, of the downlink data intended for the UE. 6. The apparatus according to claim 1 , the processing circuitry further configured to: transfer, from the gNB-CU-CP to the target gNB, sequence number (SN) status message that indicates an SN of a downlink data packet for the UE; and after the transfer of the SN status message: if additional downlink data intended for the UE is received at the gNB-CU-UP from a user plane function (UPF) entity, forward the additional downlink data from the gNB-CU-UP to a gNB-CU-UP of the target gNB. 7. The apparatus according to claim 1 , the processing circuitry further configured to: transfer, from the gNB-CU-CP to the gNB-CU-UP, a bearer context modification request that includes data forwarding information for subsequent forwarding of downlink data intended for the UE to the target gNB. 8. The apparatus according to claim 7 , the processing circuitry further configured to: transfer the DDDS message to alleviate dropping of downlink data intended for the UE before the transfer of the bearer context modification request. 9. The apparatus according to claim 1 , wherein the processing circuitry is configured to transfer the El UE context modification request message, the DUDS message, and the F1 UE context modification response message as part of an F1 UE context modification procedure. 10. The apparatus according to claim 1 , wherein: the gNB-CU-CP is configured to communicate with the gNB-CU-UP over an E1 interface, the gNB-CU-UP is configured to communicate user plane messages with the gNB-DU over an F1 user-plane interface (F1-U), and the gNB-CU-CP is configured to communicate control plane messages with the gNB-DU over an F1 control plane interface (F1-C). 11. The apparatus of claim 1 , wherein the gNB-DU is configured to host radio-link control (RLC), medium access control (MAC) and physical (PHY) layers of the gNB, and wherein the gNB-DU is configured to communicate with the LIE over a user interface (uu). 12. The apparatus of claim 1 , wherein the source gNB is arranged to operate in accordance with a new radio (NR) protocol. 13. The apparatus of claim 1 , wherein: the processing circuitry includes a baseband processor to encode the downlink data, the apparatus further comprises a transceiver to transmit the downlink data. 14. A non-transitory computer-readable storage medium that stores instructions for execution by processing circuitry of a Next Generation Node-B (gNB), the gNB configurable to operate as a source gNB, the gNB configured with logical nodes including a gNB central unit (gNB-CU) and a gNB distributed unit (gNB-DU), the gNB-CU comprising a gNB-CU control plane (gNB-CU-CP) for control-plane functionality, a gNB-CU user plane (gNB-CU-UP) for user-plane functionality, the instructions to configure the processing circuitry to: transfer, from the qNB-CU-CP to the gNB-DU, an Fl UE context modification request message to indicate that the gNB-DU is to stop transmission of downlink data to a User Equipment (UE) before a handover of the UE from the source gNB to a target gNB; encode a downlink data delivery status (DDDS) message to indicate that the gNB-CU-UP is to stop transfer, to the gNB-DU, of downlink data intended for the UE, wherein the DDDS message is encoded to include a cause field and a protocol data unit (PDU) type field, wherein a value of the cause field indicates a cause of the transfer stop, and wherein the value is selected from a set of three or more predetermined values, and wherein the set of three or more predetermined values includes a value to indicate an outage of a radio link, a value to indicate a resumption of the radio link, a value to indicate an outage of an uplink radio link, a value to indicate a resumption of the uplink radio link, a value to indicate an outage of a downlink radio link, and a value to indicate a resumption of the downlink radio link, and wherein the PDU type field is set to a value of 3 which notifies the gNB-CU-UP to stop delivering a packet data convergence protocol (PDCP) packet; and transfer, from the gNB-DU to the gNB-CU-CP, an F1 UE context modification response message to acknowledge the F1 UE context modification request message. 15. The non-transitory computer-readable storage medium according to claim 14 , the instructions to further configure the processing circuitry to: transfer, from the gNB-CU-CP to a target gNB, an Xn handover request message to initiate the handover of th

Assignees

Inventors

Classifications

  • Control or signalling for completing the hand-off · CPC title

  • for resource allocation, admission control or handover · CPC title

  • Transitions between radio resource control [RRC] states · CPC title

  • Data link layer protocols · CPC title

  • with transfer of context information · CPC title

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What does patent US11190989B2 cover?
A Next Generation Node-B (gNB) and methods of communication are generally described herein. The gNB is configurable to operate as a source gNB. The gNB is configured with logical nodes including a gNB central unit (gNB-CU) and a gNB distributed unit (gNB-DU). The gNB-CU comprises a gNB-CU control plane (gNB-CU-CP) for control-plane functionality, and a gNB-CU user plane (gNB-CU-UP) for user-pla…
Who is the assignee on this patent?
Apple Inc
What technology area does this patent fall under?
Primary CPC classification H04W36/0033. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 30 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).