标题: 正交分频多工为基础的IEEE 802.11a无线区域网路之性能研究
Performance Evaluation of the IEEE 802.11a OFDM-based Wireless Local Area Network
作者: 黄文佐
Wen-Tso Huang
王莅君
Li-Chun Wang
电信工程研究所
关键字: 正交分频多工;无线区域网路;OFDM;WLAN
公开日期: 2001
摘要: 无线区域网路IEEE 802.11a根据不同的通道品质提供6 Mb/s ~ 54 Mb/s的资料传输速率供使用者选择;然而,在文献中去探讨各种资料传输速率的涵盖范围之研究并不多见。于是,本论文针对IEEE 802.11a 的标准,进行实体层(Physical layer)部分之模拟,得到各种资料速率在雷利(Rayleigh)以及莱斯(Rician)的衰减通道下,位元错误率(BER)对讯号杂讯比(SNR)的关系图,再利用这些模拟结果,进行连线预算分析(Link budget Analysis),求得有效的传输距离。结果发现,在室内NLOS环境下,传送功率为23 dBm,IEEE 802.11a传输距离为7公尺(54 Mb/s)~62公尺(6 Mb/s)。另外我们亦发现加入非线性放大器之后,IEEE 802.11a的系统涵盖范围大幅缩小成2.8 公尺~ 39.5公尺。另外,考虑非线性放大器的影响,且改用soft-decision Viterbi Decoder,系统涵盖范围小幅增加至3.3 公尺~ 47.7公尺。
另外,利用TDD(Time Division Duplex)系统通道可逆性(Channel reciprocity)的优点,吾人提出一种”Adaptive Channel Pre-compensation”方法,专门应用在TDD模式下,以相位调变为主的QPSK-OFDM系统,比起传统的接收端补偿方式,我们提出的方法不需要复杂的通道估测演算法就能得到不错的效能增益。另外,我们提出的技术也比现存的通道预补偿方法优异,因为不会有error floor出现。在一个简单的例子里,用我们的方法可达到 的BER,然而用Witrisal [28]的方法,则BER会因非线性放大器的影响而限制在 。
The IEEE 802.11a Wireless Local Area Network (WLAN) provides several data rates from 6 Mb/s to 54 Mb/s according to different channel quality. However, few studies about the coverage area for various data rates have appeared in the literature. The aim of this thesis is to simulate the physical layer performance of the IEEE 802.11a system and to obtain the BER performance for various data rates in Rayleigh and Rician fading channel. By incorporating the physical layer simulation results into the link budget analysis, we then calculate the effective coverage area of the IEEE 802.11a system for different service rates. Based upon our simulation results, for transmission power of 23 dBm and under a non-light-of sight channel, the indoor coverage range for 54 Mb/s is 7 meters and that for 6 Mb/s is 62 meters. With the nonlinear effects of power amplifier, our simulation results show that the transmitter has a range of 2.8 meters and 39.5 meters for data rates 54 Mb/s and 6 Mb/s, respectively. Soft decision Viterbi decoder can improve the range area to 3.3 meters for 54 Mb/s and 47.7 meters for 6 Mb/s when taking the nonlinearity of power amplifier into account.
Secondly, we have proposed an “Adaptive Channel Pre-compensation Method” for a TDD QPSK-OFDM system. By taking advantage of channel reciprocity of the TDD system, we avoid using complex channel estimation algorithms in the receiver. We demonstrate that the proposed pre-compensation method can still outperform the conventional post-compensation method by 1 dB of SNR. Furthermore, we show that the proposed pre-compensation method does not exhibit error floor phenomenon as other approaches. In a typical example, our approach can achieve a BER less than , while the conventional technique in [28] will be bounded by an error floor of due to the nonlinear effects of power amplifier.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT900435047
http://hdl.handle.net/11536/68922
显示于类别:Thesis