Puncturing and interleaving analysis of a physical layer link based on IEEE802.11a

Bo Yang, Jihua Lu, Kuixi Chen, Jiannan Zhang, Chengran Dai
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引用次数: 2

Abstract

We built a Simulink PHY Layer platform of OFDM-based IEEE802.11a standard. An improved puncturing method was proposed according to the principle of Viterbi decoding, and we did some simulations and analysis of the link layer properties under different Eb/N0 based on the same parameters of the PHY Layer in IEEE802.11a. We could reach the conclusion of the improved puncturing method increases about 3dB in the bit error probability of the OFDM system comparing with the puncturing method in the IEEE802.11a. Moreover, the simulations of our new matrix interleaving constructor based on relevant theory we proposed reveals that when the Eb/N0 is greater than 5dB, the bit error probability will improve 1 to 2dB.
基于IEEE802.11a的物理层链路的穿刺和交错分析
我们构建了一个基于ofdm的IEEE802.11a标准的Simulink物理层平台。根据Viterbi解码原理,提出了一种改进的穿刺方法,并在IEEE802.11a中物理层参数相同的情况下,对不同Eb/N0下的链路层特性进行了仿真分析。我们可以得出结论,改进的穿刺方法与IEEE802.11a中的穿刺方法相比,使OFDM系统的误码概率提高了约3dB。此外,基于我们提出的相关理论,我们的新矩阵交错构造器的仿真表明,当Eb/N0大于5dB时,误码率将提高1到2dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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