Performance analysis of symbol interleaving for next generation mm-Wave MIMO WLAN

Changgeng Li, Shiwen He, Su Gao, Haiming Wang, X. Yao, Yongming Huang, Luxi Yang
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Abstract

Interleaving, as an important module of wireless communication system, is used to resist burst errors caused by frequency-selective fading. Low Density Parity Check Code (LDPC) tone mapping would be adopted for Orthogonal Frequency Division Multiplexing (OFDM) systems in IEEE 802.11aj (45GHz). In this paper, an optimal symbol interleaving parameter selecting (OSIPS) algorithm is proposed to get the optimal interleaving parameter. Based on this algorithm, the optimal tone mapping distance for conventional bandwidth based tone mapping (BTM) mechanism is obtained. This paper also presents two adaptive tone mapping mechanisms, including spatial streams based adaptive tone mapping (SSATM) and MCS based adaptive tone mapping (MATM). Adopting the tone mapping distance selected by OSIPS algorithm can bring the best packet error rate gain (up to 4dB) for BTM. And SSATM and MATM perform better than BTM, especially for small number of spatial streams and low MCS.
新一代毫米波MIMO无线局域网的符号交错性能分析
交织作为无线通信系统的一个重要模块,用于抵抗频率选择性衰落引起的突发误差。在IEEE 802.11aj (45GHz)标准下,正交频分复用(OFDM)系统将采用低密度奇偶校验码(LDPC)色调映射。本文提出了一种最优符号交错参数选择(OSIPS)算法,以获得最优的交错参数。基于该算法,得到了传统基于带宽的音调映射(BTM)机制的最佳音调映射距离。本文还提出了两种自适应音调映射机制,即基于空间流的自适应音调映射(SSATM)和基于MCS的自适应音调映射(MATM)。采用OSIPS算法选择的音调映射距离可以为BTM带来最佳的包错误率增益(最高可达4dB)。SSATM和MATM的性能优于BTM,特别是在空间流数量少、MCS低的情况下。
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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