Method and apparatus for performing random access in wireless communication system
Abstract
A terminal in a wireless communication system is provided. The terminal includes a transceiver, and at least one processor configured to receive, from BS, a RRC reconfiguration message including a reconfiguration with synchronization, transmit, to the BS, a first message including a PRACH, a PUSCH, and a C-RNTI MAC CE based on the reconfiguration with synchronization, control the transceiver to receive, from the BS, a first PDCCH and a PDSCH, wherein, for the case when the BS receives the PRACH and does not receive the PUSCH, the first PDCCH is a PDCCH addressed to RA-RNTI and the PDSCH includes a fallback RAR, and for the case when the BS receives the PUSCH, the first PDCCH is a PDCCH addressed to a C-RNTI corresponding to the C-RNTI MAC CE and the PDSCH includes an absolute timing advance command MAC CE, determine that a RAR reception is successful based on the at least one of the fallback RAR or the PDSCH, when a DRX is configured for the terminal via a RRC signalling, determine that active time for the DRX includes a time while a second PDCCH indicating new transmission addressed to a C-RNTI corresponding to the C-RNTI MAC CE has not been received after determining that the RAR reception is successful, and monitor the second PDCCH during the active time.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A terminal in a wireless communication system, the terminal comprising:
a transceiver; and at least one processor configured to:
control the transceiver to receive, from a base station (BS), a radio resource control (RRC) reconfiguration message comprising a reconfiguration with synchronization,
control the transceiver to transmit, to the BS, a first message comprising a physical random access channel (PRACH), a physical uplink shared channel (PUSCH), and a cell radio network temporary identity (C-RNTI) medium access control (MAC) control element (CE) based on the reconfiguration with synchronization,
control the transceiver to receive, from the BS, a first physical downlink control channel (PDCCH) and a physical downlink shared channel (PDSCH),
wherein in case that the BS received the PRACH and did not receive the PUSCH, the PDSCH includes a fallback random access response (RAR), and
wherein in case that the BS received the PUSCH, the PDSCH includes an absolute timing advance command MAC CE,
determine that a RAR reception is successful based on the PDSCH, and
in case that a discontinuous reception (DRX) is configured for the terminal via a RRC signalling, monitor a second PDCCH indicating a new transmission addressed to a C-RNTI corresponding to the C-RNTI MAC CE during an active time for the DRX.
2 . The terminal of claim 1 ,
wherein in case that the BS received the PRACH and did not receive the PUSCH, the first PDCCH is addressed to random access RNTI (RA-RNTI), and wherein in case that the BS received the PUSCH, the first PDCCH is addressed to the C-RNTI corresponding to the C-RNTI MAC CE.
3 . The terminal of claim 1 , the at least one processor further configured to:
determine whether the active time for the DRX includes a time while the second PDCCH has not been received after determining that the RAR reception is successful.
4 . The terminal of claim 1 ,
wherein the reconfiguration with synchronization comprises at least one of a terminal identity, timer information, or resource information for random access, and wherein the resource information for random access comprises at least one of first dedicated resource information for contention-free 4-step random access comprising first synchronization signal block (SSB) resource information, or second dedicated resource information for contention-free 2-step random access comprising second SSB resource information and resource information for the PUSCH of the first message.
5 . The terminal of claim 1 , wherein the at least one processor is further configured to determine to perform a 2-step random access procedure:
when the terminal receives, from the BS, both resource information for 4-step random access and resource information for 2-step random access and first reference signal received power (RSRP) of downlink pathloss reference signal is above a first RSRP threshold configured by the BS, when the terminal receives, from the BS, the resource information for 2-step random access and does not receive the resource information for 4-step random access, or when the reconfiguration with synchronization includes dedicated resource information for contention-free 2-step random access.
6 . The terminal of claim 1 ,
wherein the reconfiguration with synchronization comprises dedicated resource information for contention-free 4-step random access, and wherein the at least one processor is further configured to determine to perform a 4-step random access procedure.
7 . The terminal of claim 4 ,
wherein the reconfiguration with synchronization comprises second dedicated resource information for contention-free 2-step random access comprising second SSB resource information associated with a plurality of SSBs, and wherein the at least one processor is further configured to:
identify whether at least one SSB with a second RSRP above a second RSRP threshold among the plurality of SSBs is available,
when the at least one SSB with the second RSRP above the second RSRP threshold among the plurality of SSBs is available, determine to perform contention-free random access, and
when the at least one SSB with the second RSRP above the second RSRP threshold among the plurality of SSBs is not available, determine to perform contention-based random access.
8 . The terminal of claim 1 , wherein the reconfiguration with synchronization indicates a handover command.
9 . A base station (BS) in a wireless communication system, the BS comprising:
a transceiver; and at least one processor configured to:
control the transceiver to transmit, to a terminal, a radio resource control (RRC) reconfiguration message comprising a reconfiguration with synchronization,
control the transceiver to receive, from the terminal, a first message comprising a cell radio network temporary identity (C-RNTI) medium access control (MAC) control element (CE) based on the reconfiguration with synchronization,
identify whether the BS receives at least one of a physical random access channel (PRACH) or a physical uplink shared channel (PUSCH) via the first message,
in case that the BS received the PRACH and the PUSCH, control the transceiver to transmit, to the terminal, a third message comprising a first physical downlink control channel (PDCCH) and a physical downlink shared channel (PDSCH) comprising an absolute timing advance command MAC CE,
in case that the BS received the PRACH and did not receive the PUSCH, control the transceiver to transmit, to the terminal, a fallback random access response (RAR), and
control the transceiver to transmit, to the terminal, a second PDCCH indicating a new transmission addressed to a C-RNTI corresponding to the C-RNTI MAC CE,
wherein the second PDCCH is received by the terminal configured with a discontinuous reception (DRX) during an active time of the DRX.
10 . The BS of claim 9 , wherein the active time comprises a time while the second PDCCH has not been received after determining by the terminal that a RAR reception is successful.
11 . The BS of claim 9 ,
wherein the reconfiguration with synchronization comprises at least one of a terminal identity, timer information, or resource information for random access, and wherein the resource information for random access comprises at least one of first dedicated resource information for contention-free 4-step random access comprising first synchronization signal block (SSB) resource information, or second dedicated resource information for contention-free 2-step random access comprising second SSB resource information and resource information for the PUSCH of the first message.
12 . The BS of claim 9 , wherein the terminal performs a 2-step random access procedure:
when the terminal receives, from the BS, both resource information for 4-step random access and resource information for 2-step random access and first reference signal received power (RSRP) of downlink pathloss reference signal is above a first RSRP threshold configured by the BS, when the terminal receives, from the BS, the resource information for 2-step random access and does not receive the resource information for 4-step random access, or when the reconfiguration with synchronization comprises dedicated resource information for contention-free 2-step random access.
13 . The BS of claim 9 , wherein the terminal performs a 4-step random access procedure when the reconfiguration with synchronization includes dedicated resource information for contention-free 4-step random access.
14 . The BS of claim 11 ,
wherein the reconfiguration with synchronization comprises second dedicated resource information for contention-free 2-step random access comprising second SSB resource information associated with a plurality of SSBs, wherein the terminal performs contention-free random access when at least one SSB with a second RSRP above a second RSRP threshold among the plurality of SSBs is available, and wherein the terminal performs contention-based random access when the at least one SSB with the second RSRP above the second RSRP threshold among the plurality of SSBs is not available.
15 . The BS of claim 9 , wherein the reconfiguration with synchronization indicates a handover command.
16 . A method, performed by a terminal, in a wireless communication system, the method comprising:
receiving, from a base station (BS), a radio resource control (RRC) reconfiguration message comprising a reconfiguration with synchronization; transmitting, to the BS, a first message comprising a physical random access channel (PRACH), a physical uplink shared channel (PUSCH), and a cell radio network temporary identity (C-RNTI) medium access control (MAC) control element (CE) based on the reconfiguration with synchronization; receiving, from the BS, a first physical downlink control channel (PDCCH) and a physical downlink shared channel (PDSCH),
wherein in case that the BS received the PRACH and did not receive the PUSCH, the PDSCH includes a fallback random access response (RAR), and
wherein in case that the BS received the PUSCH, the PDSCH includes an absolute timing advance command MAC CE;
determining that a RAR reception is successful based on the PDSCH; and in case that a discontinuous reception (DRX) is configured for the terminal via a RRC signalling, monitoring a second PDCCH indicating a new transmission addressed to a C-RNTI corresponding to the C-RNTI MAC CE during an active time for the DRX.
17 . The method of claim 16 ,
wherein in case that the BS received the PRACH and did not receive the PUSCH, the first PDCCH is addressed to random access RNTI (RA-RNTI), and wherein in case that the BS received the PUSCH, the first PDCCH is addressed to the C-RNTI corresponding to the C-RNTI MAC CE.
18 . The method of claim 16 , further comprising:
determining whether the active time for the DRX includes a time while the second PDCCH has not been received after determining that the RAR reception is successful.
19 . A method, performed by a base station (BS), in a wireless communication system, the method comprising:
transmitting, to a terminal, a radio resource control (RRC) reconfiguration message comprising a reconfiguration with synchronization; receiving, from the terminal, a first message comprising a cell radio network temporary identity (C-RNTI) medium access control (MAC) control element (CE) based on the reconfiguration with synchronization; identifying whether the BS receives at least one of a physical random access channel (PRACH) or a physical uplink shared channel (PUSCH) via the first message; in case that the BS received the PRACH and the PUSCH, transmitting, to the terminal, a third message comprising a first physical downlink control channel (PDCCH) and a physical downlink shared channel (PDSCH) comprising an absolute timing advance command MAC CE; in case that the BS received the PRACH and did not receive the PUSCH, transmitting, to the terminal, a fallback random access response (RAR); and transmitting, to the terminal, a second PDCCH indicating a new transmission addressed to a C-RNTI corresponding to the C-RNTI MAC CE, wherein the second PDCCH is received by the terminal configured with a discontinuous reception (DRX) during an active time of the DRX.
20 . The method of claim 19 , wherein the active time comprises a time while the second PDCCH has not been received after determining by the terminal that a RAR reception is successful.Join the waitlist — get patent alerts
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