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Development, simulation and evaluation of the IEEE 802.11a physical layer in a multipath environment

机译:在多路径环境中开发,仿真和评估IEEE 802.11a物理层

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摘要

This thesis describes the development and simulation of the newly proposed IEEE 802.11a physical layer and demonstrates the effects of Additive White Gaussian Noise (AWGN) and multipath on its performances. The IEEE 802.11a standardization group has selected Orthogonal Frequency Division Multiplexing (OFDM) as the basis for the new 5 GHz standard, targeting a range of data rates from 6 up to 54 Mbps. Coded OFDM (COFDM) is a channel coding and modulation scheme which mitigates the adverse effects of fading by using wideband multicarrier modulation combined with time interleaving and a convolutional error correcting code. A guard interval is inserted at the transition between successive symbols to absorb the intersymbol interference created by the time domain spread of the mobile radio channel. The decoding process is performed using differential demodulation in conjunction with a hard decision Viterbi decoder. The simulation results shown a COFDM system capable of indoor environment communications in the presence of known multipath and noise conditions. The results obtained also show that the COFDM configuration is immune to Doppler shift of 5 to 15 Hz.
机译:本文描述了新提议的IEEE 802.11a物理层的开发和仿真,并演示了加性高斯白噪声(AWGN)和多径对其性能的影响。 IEEE 802.11a标准化组织已选择正交频分复用(OFDM)作为新5 GHz标准的基础,目标是6到54 Mbps的数据速率范围。编码OFDM(COFDM)是一种信道编码和调制方案,它通过结合使用宽带多载波调制,时间交织和卷积纠错码来减轻衰落的不利影响。在连续符号之间的过渡处插入一个保护间隔,以吸收由移动无线电信道的时域扩展产生的符号间干扰。结合硬判决维特比解码器使用差分解调来执行解码过程。仿真结果显示了在已知多径和噪声条件下能够进行室内环境通信的COFDM系统。获得的结果还表明,COFDM配置不受5至15 Hz的多普勒频移的影响。

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    Tan Kok Chye.;

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  • 年度 2001
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