基于MIMO OFDM的LDPC WiMAX系统分析

M. Cheema, S. Kulkarni
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引用次数: 4

摘要

在多媒体应用的驱动下,未来的无线系统需要高数据速率的技术。WiMAX吸引了全球对下一代无线通信的极大兴趣。对频谱高效的调制技术和功率高效的前向纠错方案的要求是实现这些技术的关键因素。无线链路质量由传输速率、距离和可靠性决定。多输入多输出(MIMO)和正交频分复用(OFDM)技术改善了这些参数,并在WiMAX中得到了应用。它采用智能天线技术,包括空间发射分集和空间复用(SM)。空间发射分集采用Alamouti时空编码实现。低密度奇偶校验码(Low-Density Parity-Check, LDPC)由于其纠错性能得到了广泛的应用,近年来受到了广泛的关注和关注。这些编码被称为坦纳图,其周期短,会降低LDPC解码器的性能。本文采用准循环LDPC作为信道编码方法。STBC被用作MIMO技术,提供了很强的分集增益。本文分析了在不同数字调制技术下使用LDPC的WiMAX中MIMO OFDM物理层的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of MIMO OFDM Based WiMAX System with LDPC
Driven by multimedia based applications, the future wireless systems require high data rate capable technologies. WiMAX has attracted immense interest globally for next generation wireless communication. The requirement of a spectrally efficient modulation technique and power efficient forward error correction scheme are key factors for these technologies. Wireless link quality is determined by transmission rate, range and reliability. Multiple Input Multiple Output (MIMO), along with Orthogonal Frequency Divsion Multiplexing(OFDM) techniques improve these parameters and are also habituated in WiMAX. It uses smart antenna techniques which include spatial transmit diversity and spatial multiplexing (SM). Spatial transmit diversity is achieved by applying Alamouti's Space Time coding. To achieve high capacity with minimum error rate Low-Density Parity-Check (LDPC) codes have recently drawn much attention and have superior interest because their error correction performance in wide applications. These codes are called Tanner graph which have short cycles that degrade the performance of LDPC decoders. The Quasi Cyclic (QC) LDPC as channel coding method is incorporated in the paper. STBC is used as a MIMO technique providing a strong diversity gain. Analysis of the performance of MIMO OFDM physical layer in WiMAX with the use of LDPC under different digital modulation techniques is presented in this paper.
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