A novel adaptive modulation scheme for WIMAX OFDM system to improve QoS

Mrs. M. G. Sumithra, M. Sarumathi
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Abstract

WiMAX at 4.9GHz has been identified by the ITU as important in achieving harmonised spectrum for advanced public protection and disaster relief. The band is currently used for this purpose in the US for disaster relief. The most recent WiMAX standard (802.16e) supports broadband applications to mobile terminals and laptops. In particular, WiMAX technology is one of the most energy efficient systems among pre-4G systems and it is capable to provide a Broadband Wireless Access in metropolitan areas. In this paper, adaptive modulation technique is proposed with the aim of improving performances in Non Line-of-Sight communications, typical of urban environments. Through these techniques it is possible to switch the order of the modulation to better match the channel conditions even in the disaster situation, obtaining comforting results in terms of probability of error and throughput. The system has been modeled with a finite state structure in which every state consists in a possible scheme of transmission (i.e. a specific modulation and the switch among different states happens when multiple thresholds on channel attenuation are reached. The adaptation is realized at the physical level of the transmission for a WiMAX OFDMA structure. Additive White Gaussian Noise (AWGN) model is used with Rayleigh fading to resemble the real world scenario. The proposed technique is suitable for different kind of traffic to meet different QoS requirements. The Intent of this paper is to provide better performance by maintaining the block error rate under a limit and it achieves improved throughput even with less average bits per symbol in WiMAX system.
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提出了一种新的WIMAX OFDM系统自适应调制方案,提高了系统的服务质量
4.9GHz的WiMAX已被国际电联确定为实现高级公共保护和救灾的统一频谱的重要技术。目前,该波段在美国用于救灾。最新的WiMAX标准(802.16e)支持移动终端和笔记本电脑的宽带应用。特别是,WiMAX技术是前4g系统中最节能的系统之一,可以在大都市地区提供宽带无线接入。本文提出了自适应调制技术,目的是提高非视距通信的性能,特别是在城市环境中。通过这些技术,即使在灾难情况下,也可以切换调制顺序以更好地匹配信道条件,从而在错误概率和吞吐量方面获得令人满意的结果。系统采用有限状态结构建模,其中每个状态都包含一种可能的传输方案(即特定的调制),当达到信道衰减的多个阈值时,不同状态之间发生切换。这种自适应是在WiMAX OFDMA结构传输的物理层上实现的。采用加性高斯白噪声(AWGN)模型和瑞利衰落来模拟真实场景。该技术适用于不同类型的业务,以满足不同的QoS要求。本文的目的是通过将分组错误率保持在一定范围内来提供更好的性能,并且即使在WiMAX系统中每个符号的平均比特数较少的情况下也能实现更高的吞吐量。
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