TY - GEN
T1 - Performance analysis of multiple rejects ARQ for RLC(Radio Link Control) in the third generation wireless communication
AU - Yoon, Uooyeol
AU - Park, Seongsoo
AU - Min, Paul S.
PY - 2000
Y1 - 2000
N2 - In this paper, we analyze the performance of Multiple Rejects (MR) ARQ for RLC proposed by 3GPP. The main purpose of MR ARQ is to get efficient use of radio resources at receiver by reducing number of acknowledgements. We analyze MR ARQ and compare its performance with Selective Repeat (SR) ARQ in the wireless fading channel environment. Based on analysis, it is shown that we need to increase the size of buffer for MR ARQ to hold data packets for the period of acknowledgement, and need to increase the size of buffer much more for MR ARQ in the noisier channel environment. And it is shown that as the length of period for acknowledgement is increased, we need to increase the size of buffer much more for the saturated throughput. Increasing the size of buffer is needed for the efficient use of radio resources to reduce number of acknowledgements.
AB - In this paper, we analyze the performance of Multiple Rejects (MR) ARQ for RLC proposed by 3GPP. The main purpose of MR ARQ is to get efficient use of radio resources at receiver by reducing number of acknowledgements. We analyze MR ARQ and compare its performance with Selective Repeat (SR) ARQ in the wireless fading channel environment. Based on analysis, it is shown that we need to increase the size of buffer for MR ARQ to hold data packets for the period of acknowledgement, and need to increase the size of buffer much more for MR ARQ in the noisier channel environment. And it is shown that as the length of period for acknowledgement is increased, we need to increase the size of buffer much more for the saturated throughput. Increasing the size of buffer is needed for the efficient use of radio resources to reduce number of acknowledgements.
UR - https://www.scopus.com/pages/publications/0034587902
M3 - Conference contribution
AN - SCOPUS:0034587902
SN - 0780365968
T3 - 2000 IEEE Wireless Communications and Networking Conference
SP - 460
EP - 464
BT - 2000 IEEE Wireless Communications and Networking Conference
T2 - 2000 IEEE Wireless Communications and Networking Conference
Y2 - 23 September 2000 through 28 September 2000
ER -