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Performance Comparison of 802.11 DCF in Fading with OFDM and Diversity

机译:802.11 DCF在褪色中的性能比较和多样性

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Performance of IEEE 802.11 distributed co-ordination function (DCF) Medium Access Control (MAC) significantly degrades in fading channel conditions because of both collisions and fading. In order to enhance the system performance in these circumstances, multiple antenna systems and Orthogonal Frequency Division Multiplexing (OFDM) are used at physical layer. In this paper an interlayer analysis is performed between physical layer and MAC layer to investigate the throughput performance of WLAN. The system is simulated using Orthogonal Frequency Division Multiplexing (OFDM) without diversity, OFDM with Selection Combining (SC) and Maximal Ratio Combining (MRC). At physical layer Bit Error Rate (BER) for different physical (PHY) layers is simulated and calculated Packet Error Rate (PER) plotted as a function of bit energy to noise power (E_b /N_o). DCF is simulated taking account of channel fading and performance of MAC layer is evaluated in terms of throughput. Results find that OFDM with diversity gives better performance in terms of PER and throughput, as compared to physical layers without diversity. These outcomes can be used to select a particular PHY layer technique for WLAN under fading channel conditions.
机译:IEEE 802.11的性能分布式协调功能(DCF)介质访问控制(MAC)由于碰撞和衰落,逐渐降低了衰落信道条件。为了在这些情况下提高系统性能,在物理层处使用多个天线系统和正交频分复用(OFDM)。在本文中,在物理层和MAC层之间进行中间分析,以研究WLAN的吞吐量性能。使用正交频分复用(OFDM)模拟系统,无需分集,OFDM具有选择组合(SC)和最大比组合(MRC)。在不同物理(PHY)层的物理层误码率(BER)是模拟的,并计算数据包错误率(每个)绘制为噪声功率的比特能量(E_B / N_O)的函数。考虑到DCF考虑到渠道衰落和MAC层的性能在吞吐量方面进行评估。结果发现,与没有多样性的物理层相比,OFDM具有多样性,在每次和吞吐量方面具有更好的性能。这些结果可用于在衰落通道条件下为WLAN选择特定的PHY层技术。

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