先进正交频分复用(AOFDM)发射机的高效可重构结构

J. Shalini, Y. Manjunatha
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引用次数: 2

摘要

摘要正交频分复用(OFDM)是需要通过有线或无线信道传输大量数据的通信领域中最常用的技术。OFDM的主要应用领域是无线网络、互联网模式和数字视频/音频广播。数据需要在多个正交通道上进行分割,以尽量减少每个传输通道之间的干扰,通常使用模拟电路方法进行。然而,这种方法稳定性差,体积大。本文提出了一种用于高级OFDM传输的高效可重构体系结构。该体系结构由31个子载波信道组成,OFDM系统采用基于64点修正坐标旋转数字计算机(CORDIC)的快速反傅立叶变换(IFFT),每个信道采用新颖的4点正交调幅(QAM)进行调制。输入数据从串行转换为并行,使用厄米对称编码,循环前缀,并将串行转换为并行。对比结果表明,所提架构在硬件利用率方面优于现有架构。与现有技术相比,所提出的OFDM发射机所需的硬件资源几乎减少了35%。
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Efficient reconfigurable architecture for advanced orthogonal frequency division multiplexing (AOFDM) transmitter
and also describes the working of the general wireless communication system using the Abstract The orthogonal frequency division multiplexing (OFDM) is most commonly used in the area of communication where a large amount of data needs to be transmitted through a wired or wireless channel. The main application OFDM lies in wireless network, internet model and digital video/audio broadcasting. Data need to be divided over a number of orthogonal channels to minimize the interference between each transmission channel and commonly performed using analog circuitry method. However, this method is less stable and bulky. In this paper, an efficient reconfigurable architecture for advanced OFDM transmission has been proposed. The architecture consists of 31 subcarrier channel, OFDM system using 64 point modified coordinate rotation digital computer (CORDIC) based inverse fast Fourier transform (IFFT) and novel 4 point quadrature amplitude modulation (QAM) is used for modulations of each channel. The input data is converted from serial to parallel, encoded using Hermitian symmetry, cyclic prefix, and converted serial to parallel. The comparison result shows that the proposed architecture is better than existing in terms of hardware utilizations. The proposed OFDM transmitter requires almost 35% lesser hardware resources with respect to existing techniques.
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