• 제목/요약/키워드: IEEE 802.11 channel model

검색결과 56건 처리시간 0.025초

Performance analysis and saturation bound research of cyclic-quorum multichannel MAC protocol based on Markov chain model

  • Hu, Xing;Ma, Linhua;Huang, Shaocheng;Huang, Jinke;Sun, Kangning;Huang, Tianyu
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권8호
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    • pp.3862-3888
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    • 2017
  • In high diversity node situation, single-channel MAC protocols suffer from many collisions. To solve this problem, the research of multichannel MAC protocol has become a hotspot. And the cyclic quorum-based multichannel (CQM) MAC protocol outperformed others owing to its high frequency utilization. In addition, it can avoid the bottleneck that others suffered from and can be easily realized with only one transceiver. To obtain the accurate performance of CQM MAC protocol, a Markov chain model, which combines the channel hopping strategy of CQM protocol and IEEE 802.11 distributed coordination function (DCF), is proposed. The metrics (throughput and average packet transmission delay) are calculated in performance analysis, with respect to node number, packet rate, channel slot length and channel number. The results of numerical analysis show that the optimal performance of CQM protocol can be obtained in saturation bound situation. And then we obtain the saturation bound of CQM system by bird swarm algorithm (BSA). Finally, the Markov chain model and saturation bound are verified by Qualnet platform. And the simulation results show that the analytic and simulation results match very well.

Pareto Optimized EDCA Parameter Control for Wireless Local Area Networks

  • Kim, Minseok;Oh, Wui Hwan;Chung, Jong-Moon;Lee, Bong Gyou;Seo, Myunghwan;Kim, Jung-Sik;Cho, Hyung-Weon
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제8권10호
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    • pp.3458-3474
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    • 2014
  • The performance of IEEE 802.11e enhanced distributed channel access (EDCA) is influenced by several interactive parameters that make quality of service (QoS) control complex and difficult. In EDCA, the most critical performance influencing parameters are the arbitration interframe space (AIFS) and contention window size (CW) of each access category (AC). The objective of this paper is to provide a scheme for parameter control such that the throughput per station as well as the overall system throughput of the network is maximized and controllable. For this purpose, a simple and accurate analytical model describing the throughput behavior of EDCA networks is presented in this paper. Based on this model, the paper further provides a scheme in which a Pareto optimal system configuration is obtained via an appropriate CW control for a given AIFS value, which is a different approach compared to relevant papers in the literature that deal with CW control only. The simulation results confirm the effectiveness of the proposed method which shows significant performance improvements compared to other existing algorithms.

On Rate-adaptive LDPC-based Cross-layer SVC over Bursty Wireless Channels

  • Cho, Yongju;Cha, Jihun;Radha, Hayder;Seo, Kwang-Deok
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제6권9호
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    • pp.2266-2284
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    • 2012
  • Recent studies have indicated that a significant improvement in wireless video throughput can be achieved by Cross Layer Design with Side-information (CLDS) protocols. In this paper, we derive the operational rate of a CLDS protocol operating over a realistic wireless channel. Then, a Rate-Distortion (R-D) empirical model for above-capacity Scalable Video Coding (SVC) is deduced to estimate the loss of video quality incurred under inaccurate rate estimation scenarios. Finally, we develop a novel Unequal Error Protection (UEP) scheme which leverages the characteristics of LDPC codes to reduce the distortion of video quality in case of typically-observed burst wireless errors. The efficacy of the proposed rate adaptation architecture over conventional protocols is demonstrated by realistic video simulations using actual IEEE 802.11b wireless traces.

A Linear Back-off Algorithm for IEEE 802.11 Wireless LAN

  • Cho Chi-woo;Son Jeong-ho;Pak Jin-suk;Son Jae-min;Han Ki-jun
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2004년도 ICEIC The International Conference on Electronics Informations and Communications
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    • pp.317-320
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    • 2004
  • The exponential back-off algorithm doubles the back-off size after each collision without considering network traffic status, which causes degradation of system performance. In this paper, we propose a linear random back-off mechanism which dynamically selects the back-off window size based on the channel status which includes the number of active stations and collisions to significantly increase the protocol capacity. We present an analytical model for the saturated throughput of our linear random back-off algorithm. Simulation results show that performance can be substantially enhanced if binary exponential back-off algorithm is replaced by a linear back- off algorithm.

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저속 WPAN용 비동기 OOK 방식 UWB 송수신기 성능 분석 (Performance Analysis of Noncoherent OOK UWB Transceiver for LR-WPAN)

  • 기명오;최성수;오휘명;김관호
    • 한국통신학회논문지
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    • 제30권11A호
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    • pp.1027-1034
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    • 2005
  • 수십 센터미터 이내의 오차를 만족시키는 거리/위치인식 기능 및 저속 데이터 송수신 기능 구현을 주목적으로 발족된 저속 WPAN(LR-WPAN: Low Rate Wireless Personal Area Network)의 표준화 그룹인 IEEE802.15.4a에서는 간단하고 경제적이며 전력 소모가 적은 송수신기 구조를 요구한다. 이에 본 논문에서는 PEWB(Parallel Energy Window Banks)를 이용한 독창적인 비동기 OOK(On-Off Keying) 방식 UWB(Ultra-Wide Band) 송수신기 구조를 제안한다. 또한 무선 다중경로 페이딩 채널 상황을 다소 극복할 수 있게 유연성 있는 운영이 가능한 송수신기 구조를 위해 펄스 및 비트 반복 기법을 사용한다. 제안된 송수신기 구조의 잡음 특성 분석을 위해 chi-square 분포가 적용되며, 반복적 계산을 통해 얻어진 최적임계값을 적용하며 비트오율 성능을 분석한다. 모의실험 결과, 10-5의 비트오율을 얻기 위한 신호대잡음비 및 수신에너지 적분시간은, LOS(Line-Of-Sight) 주거 환경의 경우 15.3dB, 32ns이고, NLOS(Non-Line-Of-Sight) 실외 환경의 경우 16.2dB, 72ns이다. 최소의 비트오율을 얻기 위한 적분에너지 대 전체 수신에너지 비는 약 $86\%$이다.

WAVE Communication-based V2I Channel Modeling

  • Lee, Soo-Hwan;Kim, Jong-Chan;Lim, Ki-Taek;Cho, Hyung-Rae;Seo, Dong-Hoan
    • Journal of Advanced Marine Engineering and Technology
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    • 제40권10호
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    • pp.899-905
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    • 2016
  • Wireless access in vehicle environment (WAVE) communication is currently being researched as core wireless communication technologies for cooperative intelligent transport systems (C-ITS). WAVE consists of both vehicle to vehicle (V2V) communication, which refers to communication between vehicles, and vehicle to infrastructure (V2I) communication, which refers to the communication between vehicles and road-side stations. V2I has a longer communication range than V2V, and its communication range and reception rate are heavily influenced by various factors such as structures on the road, the density of vehicles, and topography. Therefore, domestic environments in which there are many non-lines of sight (NLOS), such as mountains and urban areas, require optimized communication channel modeling based on research of V2I propagation characteristics. In the present study, the received signal strength indicator (RSSI) was measured on both an experience road and a test road, and the large-scale characteristics of the WAVE communication were analyzed using the data collected to assess the propagation environment of the WAVE-based V2I that is actually implemented on highways. Based on the results of this analysis, this paper proposes a WAVE communication channel model for domestic public roads by deriving the parameters of a dual-slope logarithmic distance implementing a two-ray ground-reflection model.