应用自适应调制和宏观分集组合技术增强鲁棒无线网络QoS控制

Jong‐Moon Chung, Wun-Cheol Jeong, K. Ramasamy, R. Ramasamy
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引用次数: 1

摘要

提出了一种通信系统和基站网络拓扑结构。他们采用基于约束的最优自适应调制算法和宏观分集接收相结合,增强了可靠宽带移动数据通信业务的鲁棒无线网络QoS支持。我们扩展了S.T. Chung和A.J. Goldsmith的自适应调制研究。Commun。第49卷,没有。9, p.1561-71, 2001)在两个方面。首先,除瑞利衰落外,还考虑了对数正态阴影信道特性。其次,将宏观选择分集方案与自适应调制拓扑相结合,提高了瞬时误码率和频谱效率性能。结果表明,最优自适应调制控制与宏观分集相结合,可以在更宽的信噪比条件下更可靠地支持基于QoS约束的业务。此外,宏观分集选择方案显著提高了频谱效率。在支持所需的误码率的同时,可以提高无线数据链路的利用率。宏观分集组合使自适应调制能够在时变信道条件下(即信噪比可能波动时)提供更鲁棒/可靠的网络QoS支持。随着组合分集链路数量的增加,支持瞬时误码率要求的最小信噪比限制显著降低,从而使无线网络信道QoS和支持的数据速率更加鲁棒/可靠。
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Enhanced robust wireless network QoS control applying adaptive modulation and macroscopic diversity combining techniques
We propose a communication system and base station network topology. They apply a constraint-based optimal adaptive modulation algorithm and macroscopic diversity reception combining for enhanced robust wireless network QoS support of reliable broadband mobile data communication services. We extend the adaptive modulation research of S.T. Chung and A.J. Goldsmith (see IEEE Trans. Commun., vol.49, no.9, p.1561-71, 2001) in two ways. First, the lognormal shadowing channel characteristic is included in addition to Rayleigh fading. Second, a macroscopic selection diversity scheme is combined with an adaptive modulation topology to enhance the instantaneous BER and spectral efficiency performance. The results show that optimal adaptive modulation control combined with macroscopic diversity enables QoS constraint-based services to be supported more reliably over a wider range of SNR conditions. Also, the macroscopic diversity selection scheme results in a significant improvement in the spectral efficiency. Wireless data link utilization can be increased while the required BER can be supported. Macroscopic diversity combining enables the adaptive modulation to provide more robust/reliable network QoS support under time varying channel conditions (i.e., as the SNR may fluctuate). As the number of combining diversity links increase, the minimum SNR limit that supports the instantaneous BER requirements is significantly lowered, thus making the wireless networking channel QoS and supportive data rate more robust/reliable.
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