Author:
Lim Jaechan,Kim Taejin,Hong Daehyoung
Abstract
Abstract
Estimating the number of competing terminals n (who wish to transmit a packet at the same time) in the IEEE 802.11 system is important for system throughput performance because optimal back-off window size needs to be selected based on n. Therefore, as a new approach for estimating n, we propose H infinity filter that does not need a state variation detector as opposed to the cases of previously proposed approaches. The state variation detector’s flaw is incurring tracking latency in addition to the side effect of increased computational cost. All previously proposed approaches demand the employment of the state variation detector to detect the variation of n in the IEEE 802.11 system. By employing H infinity filter, we show improved throughput performance of the system compared to that of previously proposed approaches (e.g., the Kalman filter and particle filter) based on the improved performance in tracking n. In this paper, we justify the superiority of the proposed approach in the terms of tracking performance, throughput performance, and computational complexity.
Publisher
Springer Science and Business Media LLC
Reference19 articles.
1. IEEE: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications. Piscataway: IEEE; 1999.
2. Romaszko S, Blondia C: Cross layer PHY-MAC protocol for wireless static and mobile ad hoc networks. EURASIP J. Adv Signal Processing 2009, 2009: 278041. 10.1155/2009/278041
3. Hewer T, Nekkovee M, Coveney P: Reducing congestion in obstructed highways with traffic data dissemination using ad hoc vehicular. EURASIP J. Adv. Signal Process 2010, 2010: 169503. 10.1155/2010/169503
4. Bianchi G, Fratta L, Oliveri M: Performance evaluation and enhancement of the CSMA/CA MAC protocol for 802.11 wireless LANs. Proc, PIMRC 1996 1996, 2: 392-396.
5. Hwang G, Cho D: Performance analysis on coexistence of EDCA and legacy DCF stations in IEEE 802.11 wireless LANs. IEEE Trans. Wireless Commun 2006, 5(12):3355-3359.
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