TY - JOUR
T1 - An efficient quality-of-service MAC protocol for infrastructure WLANs
AU - Wu, Shih Lin
AU - Fan-Jiang, Sui
AU - Chou, Zi Tsan
PY - 2006/11
Y1 - 2006/11
N2 - In this paper, we propose a new efficient MAC protocol, named quality-of-service MAC (QMAC), which is an integrated solution for providing QoS guarantees to real-time multimedia applications in infrastructure WLANs. In addition, QMAC has the following attractive features: (i) its reservation scheme ensures that real-time stations enter the polling list in bounded time, (ii) it supports multiple priority levels and guarantees that high-priority stations always join the polling list earlier than low-priority stations, (iii) it employs the distributed pre-check technique such that the access point can admit as many newly flows as possible, while not violating admitted flows' guarantees, (iv) its dynamic bandwidth allocation scheme provides real-time traffic transmission with per-flow probabilistic bandwidth assurances, and (v) it uses a multipoll frame to poll all stations on the polling list at a time, therefore, the bandwidth can be utilized more efficient. Through simulations, we demonstrate the advantage of our QMAC.
AB - In this paper, we propose a new efficient MAC protocol, named quality-of-service MAC (QMAC), which is an integrated solution for providing QoS guarantees to real-time multimedia applications in infrastructure WLANs. In addition, QMAC has the following attractive features: (i) its reservation scheme ensures that real-time stations enter the polling list in bounded time, (ii) it supports multiple priority levels and guarantees that high-priority stations always join the polling list earlier than low-priority stations, (iii) it employs the distributed pre-check technique such that the access point can admit as many newly flows as possible, while not violating admitted flows' guarantees, (iv) its dynamic bandwidth allocation scheme provides real-time traffic transmission with per-flow probabilistic bandwidth assurances, and (v) it uses a multipoll frame to poll all stations on the polling list at a time, therefore, the bandwidth can be utilized more efficient. Through simulations, we demonstrate the advantage of our QMAC.
KW - IEEE 802.11
KW - Medium access control (MAC)
KW - Multi-priority
KW - Quality of Service (QoS)
KW - Real-time
KW - Wireless local area network (WLAN)
UR - https://www.scopus.com/pages/publications/33646171679
U2 - 10.1016/j.jnca.2005.03.004
DO - 10.1016/j.jnca.2005.03.004
M3 - 文章
AN - SCOPUS:33646171679
SN - 1084-8045
VL - 29
SP - 235
EP - 261
JO - Journal of Network and Computer Applications
JF - Journal of Network and Computer Applications
IS - 4
ER -