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Performance improvement of the OFDM system based on fractional Fourier transform over doubly dispersive channels

机译:双色散信道上基于分数阶傅里叶变换的OFDM系统性能改进

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Traditional orthogonal frequency-division multiplexing (OFDM) loses its optimality in high-mobility scenarios, intercarrier interference (ICI) occurs and the Doppler shifts destroy the orthogonality of the subcarriers. Many solutions are introduced by using complicated equalizers in the receiver to overcome this problem. The fractional Fourier transform (FrFT) has been suggested to improve the performance of the OFDM over doubly dispersive channels that cannot be achieved with traditional OFDM even with complex equalizers. In this paper the performance of OFDM based FrFT is studied with multiple fractional orders at different Doppler shift. Simulation results demonstrate processing improvement due to using FrFT instead of Fourier Transform (FT) in OFDM system. The same bit error rate (BER) is achieved without increasing the transmitting signal to noise ratio (SNR) and processing improvements are gained up to 3 dB for different Doppler frequencies.
机译:传统的正交频分复用(OFDM)在高移动性场景中失去了最优性,发生了载波间干扰(ICI),并且多普勒频移破坏了子载波的正交性。通过在接收机中使用复杂的均衡器来引入许多解决方案来克服此问题。已经提出了分数傅里叶变换(FrFT)来改善双色散信道上的OFDM性能,即使使用复杂的均衡器,传统的OFDM也无法实现双色散信道。本文研究了在不同多普勒频移下具有多个分数阶的基于OFDM的FrFT的性能。仿真结果表明,由于在OFDM系统中使用FrFT而不是傅立叶变换(FT),从而改善了处理过程。在不增加发射信噪比(SNR)的情况下,可以实现相同的误码率(BER),并且对于不同的多普勒频率,可以将处理改进提高到3 dB。

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