IP Library Granted Patent US 8,477,634
Granted Patent B2
US 8,477,634 · App. 13/101,565 · Granted Jul 2, 2013

Method for detecting failures of random access procedures

Inventors: Seung-June Yi (Gyeonggi-Do, KR); Sung-Jun Park (Gyeonggi-Do, KR); Young-Dae Lee (Gyeonggi-Do, KR); Sung-Duck Chun (Gyeonggi-Do, KR)
Assignee: LG Electronics Inc.
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Quick Facts
Patent No.
US 8,477,634
App. No.
13/101,565
Granted
Jul 2, 2013
Kind
B2
Abstract

A method of performing a random access channel (RACH) procedure between a mobile terminal and a network includes the steps of detecting whether a random access response (RAR) is received from the network within a certain time period, the RAR including information about a random access channel (RACH) preamble transmitted to the network; and if the RAR is not received within the certain time period or if the information about the transmitted RACH preamble included in the RAR does not match the transmitted RACH preamble, performing a first procedure to detect failures in the RACH procedure; and if the RAR is received within the certain time period and if the information about the transmitted RACH preamble included in the RAR matches the transmitted RACH preamble, performing a second procedure to detect failures in the RACH procedure.

Claims (32)

1. A method of detecting a failure of a random access procedure, the method comprising:

transmitting, by a mobile terminal, a random access preamble;

if a random access response (RAR) is not received within a random access response window or if information related to the random access preamble included in the RAR does not match with the transmitted random access preamble,

incrementing, by the mobile terminal, a preamble transmission counter by 1;

if a value of the preamble transmission counter is equal to a maximum value of the preamble transmission +1, indicating to an upper layer that there is a problem with the random access procedure; and

applying, by the mobile terminal, a back-off time to delay a transmission of a subsequent random access preamble;

or

if the RAR is received within the random access response window and if the information related to the random access preamble included in the RAR matches with the transmitted random access preamble,

transmitting a uplink data which is transmitted through uplink channel including a C-RNTI MAC CE (control element) or CCCH SDU;

monitoring a reception of a physical downlink control channel (PDCCH) to check whether contention resolution is successful, the checking is based on whether the uplink data includes C-RNTI MAC CE or CCCH SDU, or a timer for the contention resolution expires;

if the contention resolution is not successful, incrementing, by the mobile terminal, the preamble transmission counter by 1;

if the value of the preamble transmission counter is equal to the maximum value of the preamble transmission +1, indicating to the upper layer that there is a problem with the random access procedure; and

applying, by the mobile terminal, a back-off time to delay a transmission of a subsequent random access preamble.

2. The method of claim 1 , wherein if the contention resolution is unsuccessful, applying a back-off time and selecting random access resources.

3. The method of claim 1 , wherein the random access response window is a transmission time interval (TTI) window.

4. The method of claim 1 , wherein, before transmitting the random access preamble, initializing one or more parameters related to random access.

5. The method of claim 4 , wherein the initialization step involves the initialization of the preamble transmission counter.

6. A mobile terminal for detecting a failure of a random access procedure comprising:

a transceiver configured to transmit a random access preamble; and

a processor configured to control the transceiver and operate such that if a random access response (RAR) is not received within a random access response window or if information related to the random access preamble included in the RAR does not match with the transmitted random access preamble,

incrementing a preamble transmission counter by 1;

if a value of the preamble transmission counter is equal to a maximum value of the preamble transmission +1, indicating to an upper layer that there is a problem with the random access procedure; and

applying a back-off time to delay a transmission of a subsequent random access preamble;

or

wherein the processor operates such that if the RAR is received within the random access response window and if the information related to the random access preamble included in the RAR matches with the transmitted random access preamble,

transmitting a uplink data which is transmitted through uplink channel including a C-RNTI MAC CE (control element) or CCCH SDU;

monitoring a reception of a physical downlink control channel (PDCCH) to check whether contention resolution is successful, the checking is based on whether the uplink data includes C-RNTI MAC CE or CCCH SDU, or a timer for the contention resolution expires;

if the contention resolution is not successful, incrementing the preamble transmission counter by 1;

if the value of the preamble transmission counter is equal to the maximum value of the preamble transmission +1, indicating to an upper layer that there is a problem with the random access procedure; and

applying a back-off time to delay a transmission of a subsequent random access preamble.

7. The terminal of claim 6 , wherein the processor applies the back-off time if the contention resolution is unsuccessful.

8. The terminal of claim 6 , wherein the random access response window is a transmission time interval (TTI) window.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2011
From: YI, SEUNG-JUNE; PARK, SUNG-JUN; LEE, YOUNG-DAE; CHUN, SUNG-DUCK
To: LG ELECTRONICS INC.
Reel/Frame 026231/0755 →
Priority Claims (1)
KR 10-2009-0053407 · Jun 16, 2009 · national
Continuity (4)
Continuation 12457654 · Jun 17, 2009
Provisional Application 61073743 · Jun 18, 2008
Provisional Application 61074998 · Jun 23, 2008
Related Publication 20110205908A1 · Aug 25, 2011