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A Radon Slantlet Transforms Based OFDM System Design and Performance Simulation under Different Channel Conditions

机译:基于Radon Slantlet变换的不同信道条件下的OFDM系统设计与性能仿真

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Due to its good orthogonality, slantlet transform (SLT) is used in orthogonal frequency division multiplexing (OFDM) systems to reduce intersymbol interference (ISI) and intercarrier interference (ICI). This eliminates the need for cyclic prefix (CP) and increases the spectral efficiency of the design. Finite Radon transform (FRAT) mapper has the ability to increase orthogonality of subcarriers, is nonsensitive to channel parameters variations, and has a small constellation energy compared with conventional fast-Fourier-transform- (FFT-) based OFDM. It is also able to work as a good interleaver, which significantly reduces the bit error rate (BER). In this paper both FRAT mapping technique and SLT modulator are implemented in a new design of an OFDM system. The new structure was tested and compared with conventional FFT-based OFDM, Radon transform-based OFDM, and SLT-based OFDM for additive white Gaussian noise (AWGN) channel, flat fading channel (FFC), and multipath selective fading channel (SFC). Simulation tests were generated for different channel parameters values. The obtained results showed that the proposed system has increased the spectral efficiency, reduced ISI and ICI, and improved BER performance compared with other systems.
机译:由于其良好的正交性,斜波变换(SLT)用于正交频分复用(OFDM)系统中,以减少符号间干扰(ISI)和载波间干扰(ICI)。这消除了对循环前缀(CP)的需要,并提高了设计的频谱效率。与传统的基于快速傅里叶变换(FFT)的OFDM相比,有限Radon变换(FRAT)映射器具有增加子载波正交性的能力,对信道参数变化不敏感,并且星座图能量小。它也可以作为一个很好的交织器,大大降低了误码率(BER)。在本文中,FRAT映射技术和SLT调制器均在OFDM系统的新设计中实现。测试了该新结构,并将其与传统的基于FFT的OFDM,基于Radon变换的OFDM和基于SLT的OFDM进行了比较,以用于加性高斯白噪声(AWGN)信道,平坦衰落信道(FFC)和多径选择性衰落信道(SFC) 。针对不同的通道参数值生成了仿真测试。获得的结果表明,与其他系统相比,该系统提高了频谱效率,降低了ISI和ICI,并提高了BER性能。

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