IP Library Patent Application 19344700
Patent Application
App. No. 19/344,700

DISTRIBUTED UNIT MIGRATION METHOD AND CONTROL APPARATUS, AND COMMUNICATION SYSTEM

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Patent No.
US None
App. No.
19/344,700
Abstract

An apparatus for controlling migration of a distributed unit, applicable to an integrated access and backhaul node (IAB-node), includes: first processor circuitry controlling the node to execute the following: migrating an F1 terminating donor of the node from a first donor central unit (donor-CU) to a third donor-CU, wherein a radio resource control (RRC) terminating donor of the node is a second donor-CU, the second donor-CU being identical to the first donor-CU, or the second donor-CU being identical to the third donor-CU, or the second donor-CU being different from both the first donor-CU and the third donor-CU, and the node has two logical IAB-DUs, wherein the first IAB-DU has F1 connection with a first donor-CU and a second IAB-DU has F1 connection with the third donor-CU.

Claims (61)

1 . An apparatus for controlling migration of a distributed unit, applicable to an integrated access and backhaul node (IAB-node), the apparatus comprising:

first processor circuitry controlling the node to execute the following:

migrating an F1 terminating donor of the node from a first donor central unit (donor-CU) to a third donor-CU,

wherein a radio resource control (RRC) terminating donor of the node is a second donor-CU,

the second donor-CU being identical to the first donor-CU, or the second donor-CU being identical to the third donor-CU, or the second donor-CU being different from both the first donor-CU and the third donor-CU, and

the node has two logical IAB-DUs, wherein the first IAB-DU has F1 connection with a first donor-CU and a second IAB-DU has F1 connection with the third donor-CU.

2 . The apparatus according to claim 1 , wherein the first processor circuitry controls the node to execute the following:

receiving, by the first distributed unit (IAB-DU) of the node, information about the third donor-CU transmitted by the first donor-CU via F1AP signaling,

wherein the first IAB-DU receives first information transmitted by the first donor-CU to request the second IAB-DU to set up F1 association with the third donor-CU, the first information comprising information about the third donor-CU, and

the second IAB-DU is a collocated IAB-DU of the first IAB-DU.

3 . The apparatus according to claim 2 , wherein the first processor circuitry further controls the node to execute the following:

transmitting an F1 setup request message by the second distributed unit (IAB-DU) of the node to the third donor-CU,

wherein the F1 setup request message comprises a backhaul adaptation protocol (BAP) address of the node, one or more cell identifications of the second distributed unit (IAB-DU), a TNL address and/or a base station identifier of the second donor-CU.

4 . The apparatus according to claim 2 , wherein the first processor circuitry controls the node to execute the following:

notifying by the first distributed unit (IAB-DU) to the first donor-CU via F1AP signaling, a message regarding successful or failed setup of an F1 interface with the third donor-CU.

5 . The apparatus according to claim 1 , wherein the first processor circuitry controls the node to execute the following:

initiated by the first donor-CU, the F1 connection from the first IAB-DU to the first donor-CU is removed after one or multiple user equipment served by the node are handed over from a cell of the first IAB-DU to a cell of the second IAB-DU.

6 . An apparatus for controlling migration of an IAB distributed unit (IAB-DU), applicable to a first donor central unit (donor-CU), the apparatus comprising:

second processor circuitry controlling the first donor-CU so that an F1 terminating donor of an integrated access and backhaul node (IAB-node) is migrated from the first donor central unit (donor-CU) to a third donor-CU,

wherein a radio resource control (RRC) terminating donor of the node is a second donor-CU,

the second donor-CU being identical to the first donor-CU, or the second donor-CU being identical to the third donor-CU, or the second donor-CU being different from both the first donor-CU and the third donor-CU.

7 . The apparatus according to claim 6 , wherein the second processor circuitry controls the first donor-CU to execute the following:

notifying the first distributed unit (IAB-DU) of the node of information about the third donor-CU by the first donor-CU via F1AP signaling.

8 . The apparatus according to claim 7 , wherein,

the first donor-CU transmits first information to the first IAB-DU to request the second IAB-DU to set up F1 association with the third donor-CU, the first information comprising information about the third donor-CU, and

the second IAB-DU is a collocated IAB-DU of the first IAB-DU.

9 . The apparatus according to claim 7 , wherein,

the information about the third donor-CU comprises:

a transport network layer (TNL) address, and/or, a base station identifier.

10 . The apparatus according to claim 6 , wherein the second processor circuitry further controls the first donor-CU to execute the following:

transmitting a handover request message by the first donor-CU to the third donor-CU,

wherein the handover request message comprises user equipment context (UE context) information, and

the handover request message is used to apply for preparation for handover of a user equipment served by the node.

11 . The apparatus according to claim 6 , wherein,

the first donor-CU transmits an Xn message to the third donor-CU to inform the UE XnAP ID of the node at the second donor-CU.

12 . The apparatus according to claim 6 , wherein the second processor circuitry further controls the first donor-CU to execute the following:

receiving by the first donor-CU, an IAB transport migration modification request message transmitted by the second donor-CU, the IAB transport migration modification request message requesting for release of offloaded traffics.

13 . The apparatus according to claim 6 , wherein the second processor circuitry further controls the first donor-CU to execute the following:

transmitting an IAB transport migration management request message by the first donor-CU to the second donor-CU, the IAB transport migration management request message requesting for release of offloaded traffics.

14 . An apparatus for controlling migration of a distributed unit, applicable to a third donor central unit (donor-CU), the apparatus comprising:

third processor circuitry controlling the third donor-CU so that an F1 terminating donor of an integrated access and backhaul node (IAB-node) is migrated from a first donor central unit (donor-CU) to the third donor-CU,

wherein a radio resource control (RRC) terminating donor of the node is a second donor-CU,

the second donor-CU being identical to the first donor-CU, or the second donor-CU being identical to the third donor-CU, or the second donor-CU being different from both the first donor-CU and the third donor-CU.

15 . The apparatus according to claim 14 , wherein the third processor circuitry controls the third donor-CU to execute the following:

receiving by the third donor-CU, a handover request message transmitted by the first donor-CU,

wherein the handover request message comprises user equipment context (UE context) information, and

the handover request message is used to apply for preparation for handover of a user equipment served by the node.

16 . The apparatus according to claim 15 , wherein the third processor circuitry further controls the third donor-CU to execute the following:

transmitting an IAB transport migration management request message by the third donor-CU to the second donor-CU.

17 . The apparatus according to claim 16 , wherein,

the IAB transport migration management request message comprises identity information of the node,

the identity information of the node comprising a non-F1-terminating node UE XnAP ID and/or a BAP address of the node.

18 . The apparatus according to claim 16 , wherein,

the IAB transport migration management request message comprises a traffic profile, the traffic profile being obtained from the handover request message.

19 . The apparatus according to claim 16 , wherein the third processor circuitry further controls the third donor-CU to execute the following:

receiving by the third donor-CU, an IAB transport migration management response message transmitted by the second donor-CU,

wherein the IAB transport migration management response message comprises:

a differentiated services code point (DSCP) for a downstream traffic and a flow label; and/or

uplink non-F1 terminating backhaul information (UL non-F1 terminating BH Info) used to configure uplink backhaul mapping configuration of the node.

20 . The apparatus according to claim 19 , wherein the third processor circuitry further controls the third donor-CU to execute the following:

setting up a user equipment context on the second LAB-DU via a user equipment context setup (UE context setup) process of F1AP, and performing uplink backhaul mapping configuration for the node, by the third donor-CU.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2026
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 073838/0148 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2025
From: YI, SU; JIA, MEIYI; LI, GUORONG
To: FUJITSU LIMITED
Reel/Frame 072416/0737 →