Occupancy Control Scheme for Reordering Buffer at 3GPP ARQ

3GPP ARQ를 위한 재정렬 버퍼의 점유량 조절 방식

  • Shin, Woo-Cheol (School of Electrical, Electronics and Computer Engineering, Dankook University) ;
  • Park, Jin-Kyung (School of Electrical, Electronics and Computer Engineering, Dankook University) ;
  • Ha, Jun (School of Electrical, Electronics and Computer Engineering, Dankook University) ;
  • Choi, Cheon-Won (School of Electrical, Electronics and Computer Engineering, Dankook University)
  • 신우철 (단국대학교 전기전자컴퓨터공학부) ;
  • 박진경 (단국대학교 전기전자컴퓨터공학부) ;
  • 하준 (단국대학교 전기전자컴퓨터공학부) ;
  • 최천원 (단국대학교 전기전자컴퓨터공학부)
  • Published : 2003.07.01

Abstract

3GPP's RLC protocol specification adopted an error control scheme based on selective repeat ARQ. In 3GPP ARQ, distinctive windows are provide at transmitting and receiving stations so that those stations are prohibited to send or receive data PDU's out of window. An increase in window size enhances delay performance. Such an increase, however, raises the occupancy at reordering buffer, which results in a long reordering time. Aiming at suppressing the occupancy at reordering buffer, we propose a occupancy control scheme in this paper. In this scheme, a threshold is created in the receiving station's window and a data PDU out of the threshold (but within the window) is treated according to go back N ARQ. By the employment of the occupancy control scheme, the occupancy at the reordering buffer is apparently reduced, while the delay performance may be degraded due to the properties of go back N ARQ. We, thus, investigate the peak occupancy and mean delay performance by a simulation method. From numerical examples, we observe a trade-off in both performance measures and conclude that the peak occupancy is effectively reduced by setting a proper threshold under a constraint on mean delay performance.

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