Method and apparatus for saving energy for a distributed unit in a wireless communication system
A method and apparatus for saving energy for a Distributed Unit in a wireless communication system is provided. A CU establishes a connection between a Distributed Unit (DU). The CU receives, from the DU, a first message including deactivation request for the DU. The CU determines whether to permit deactivation of the DU or not. The CU transmits, to the DU, a second message in response to the first message, wherein the second message includes information informing that the deactivation request for the DU is accepted or not based on the determination.
1. A method performed by an Integrated Access and Backhaul (IAB)-donor-Distributed Unit (DU) in a wireless communication system, the method comprising,
receiving, from a first IAB-node, a first message including a deactivation request, wherein the deactivation request informs the LAB-donor-DU that (i) there is no wireless device within a coverage of the first IAB-node or (ii) there is no data to be transmitted to or to be received from a child IAB-node related to the first IAB-node;
transmitting, to an IAB-donor-Central Unit (CU), the deactivation request, wherein the deactivation request is accepted by the IAB-donor-CU;
receiving, from the IAB-donor-CU, a second message including information informing the LAB-donor-DU that the deactivation request for the first IAB-node is accepted by the IAB-donor-CU;
transmitting, to the first IAB-node, the information that the deactivation request is accepted by the IAB-donor-CU, wherein the first IAB-node enters into an energy saving mode without releasing a backhaul Radio Link Control (RLC) channel with the IAB-donor-DU;
receiving, from the IAB-donor-CU, a third message including information informing the IAB-donor DU that the first IAB-node enters into the energy saving mode; and
transmitting, to a second IAB-node, the information that the first IAB-node enters into the energy saving mode.
2. The method of claim 1 , wherein the first message includes list of cells managed by the first IAB-node.
3. The method of claim 2 , wherein the deactivation request is accepted by the IAB-donor-CU based on the list of the cells managed by the first IAB-node.
4. The method of claim 1 , wherein the deactivation request is accepted by the IAB-donor-CU based on and one or more wireless devices one or more child IAB-nodes connected to the first IAB-node.
5. The method of claim 1 , wherein the method further comprises:
maintaining context related to the first IAB-node based on that the first IAB-node enters into the energy saving mode.
6. The method of claim 1 , wherein the LAB-donor-CU and the LAB-donor-DU are connected via a wireless backhaul.
7. A non-transitory computer-readable medium having stored thereon a plurality of instructions, which, when executed by a processor of an Integrated Access and Backhaul (IAB)-donor-Distributed Unit(DU), cause the IAB-donor-DU to:
receiving, from a first IAB-node, a first message including a deactivation request, wherein the deactivation request informs the IAB-donor-DU that (i) there is no wireless device within a coverage of the first IAB-node or (ii) there is no data to be transmitted to or to be received from a child IAB-node related to the first IAB-node;
transmitting, to an IAB-donor-Central Unit (CU), the deactivation request, wherein the deactivation request is accepted by the IAB-donor-CU;
receiving, from the IAB-donor-CU, a second message including information informing the IAB-donor-DU that the deactivation request for the first IAB-node is accepted by the IAB-donor-CU;
transmitting, to the first IAB-node, the information that the deactivation request is accepted by the LAB-donor-CU, wherein the first IAB-node enters into an energy saving mode without releasing a backhaul Radio Link Control (RLC) channel with the IAB-donor-DU;
receiving, from the IAB-donor-CU, a third message including information informing the IAB-donor-DU that the first IAB-node enters into the energy saving mode; and
transmitting, to a second IAB-node, the information that the first IAB-node enters into the energy saving mode.
8. An Integrated Access and Backhaul (IAB)-donor-Distributed Unit (DU) in a wireless communication system comprising:
a memory; and
at least one processor operatively coupled to the memory, and configured to:
receive, from a first IAB-node, a first message including a deactivation request, wherein the deactivation request informs the IAB-donor-DU that (i) there is no wireless device within a coverage of the first IAB-node or (ii) there is no data to be transmitted to or to be received from a child IAB-node related to the first IAB-node;
transmit, to an IAB-donor-Central Unit (CU), the deactivation request, wherein the deactivation request is accepted by the IAB-donor-CU;
receive, from the IAB-donor-CU, a second message including information informing the IAB-donor-DU that the deactivation request for the first IAB-node is accepted by the IAB-donor-CU;
transmit, to the first IAB-node, the information that the deactivation request is accepted by the IAB-donor-CU, wherein the first IAB-node enters into an energy saving mode without releasing backhaul Radio Link Control (RLC) channel with the IAB-donor-DU;
receive, from the IAB-donor-CU, a third message including information informing the IAB-donor-DU that the first IAB-node enters into the energy saving mode; and
transmit, to a second IAB-node, the information that the first IAB-node enters into the energy saving mode.