Method and device for receiving feedback signal in wireless communication system
A user equipment may transmit a multicast/broadcast signal to a plurality of second UEs, and receive, in response to the multicast/broadcast signal, one or more HARQ feedback signals from one or more of the plurality of second UEs, based on a HARQ feedback resource that is commonly allocated to the plurality of second UEs.
1. A method of receiving, by a first user equipment (UE), a hybrid automatic repeat request (HARQ) feedback signal in a wireless communication system comprising:
transmitting, by the first UE, a multicast/broadcast signal to a plurality of second UEs; and
receiving, by the first UE in response to the multicast/broadcast signal, one or more HARQ feedback signals from one or more of the plurality of second UEs,
wherein the one or more HARQ feedback signals are received based on a HARQ feedback resource that is commonly allocated to the plurality of second UEs, and
wherein the first UE retransmits the multicast/broadcast signal based on an average reference signal received power (RSRP) of the one or more HARQ feedback signals on the HARQ feedback resource exceeding an RSRP threshold.
2. The method according to claim 1 , wherein:
the RSRP threshold is determined by the first UE based on at least one of a channel congestion level or a channel busy ratio (CBR).
3. The method according to claim 1 , wherein:
the RSRP threshold is determined based on at least one of a received signal strength indicator (RSSI), a signal to noise ratio (SNR), a signal to interference plus noise ratio (SINR), or a reference signal received quality (RSRQ).
4. The method according to claim 1 , wherein:
the RSRP threshold is determined based on whether the first UE has received previously a negative acknowledgement (NACK) message.
5. The method according to claim 4 , wherein
based on the first UE has not received previously the NACK message, the RSRP threshold is reset to a higher threshold.
6. The method according to claim 1 , wherein:
the RSRP threshold is determined based on at least one of a ProSe (proximity-based service) per packet priority (PPPP) or a ProSe per packet reliability (PPPR).
7. The method according to claim 1 , wherein the one or more HARQ feedback signals are received with transmission power determined by the first UE.
8. The method according to claim 1 , wherein the reception of the one or more HARQ feedback signals is determined as a negative acknowledgement (NACK) based on the average RSRP exceeding the RSRP threshold.
9. A first user equipment (UE) configured to receive a hybrid automatic repeat request (HARQ) feedback signal in a wireless communication system, the first UE comprising:
a transceiver; and
a processor configured to control the transceiver to: transmit a multicast/broadcast signal to a plurality of second UEs, and to receive, in response to the multicast/broadcast signal, one or more HARQ feedback signals from one or more of the plurality of second UEs,
wherein the one or more HARQ feedback signals are received based on a HARQ feedback resource that is commonly allocated to the plurality of second UEs, and
wherein the multicast/broadcast signal is retransmitted based on an average reference signal received power (RSRP) of the one or more HARQ feedback signals on the HARQ feedback resource exceeding an RSRP threshold.
10. The first UE according to claim 9 , wherein:
the first UE is configured to communicate with at least one of a mobile terminal, a network, or an autonomous driving vehicle other than the device.
11. The first UE according to claim 9 , wherein:
the first UE is configured to implement at least one advanced driver assistance system (ADAS) based on a signal for controlling movement of the first UE.
12. The first UE according to claim 9 , wherein:
the first UE receives a user input signal from a user, switches a driving mode of the device from an autonomous driving mode to a manual driving mode, or switches a driving mode of the device from the manual driving mode to the autonomous driving mode.
13. The first UE according to claim 9 , wherein:
the first UE is autonomously driven based on external object information,
wherein the external object information includes at least one of information indicating presence or absence of an object, position information of the object, information about a distance between the first UE and the object, or information about a relative speed between the first UE and the object.