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Equalization methods in OFDM and FMT systems for broadband wireless communications

机译:OFDM和FMT系统中用于宽带无线通信的均衡方法

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Multicarrier systems are adopted in several standards for their ability to achieve optimal performance in very dispersive channels. In particular, orthogonal-frequency division multiplexing (OFDM) and filtered multitone (FMT) systems are two examples where the modulation filter has an ideal rectangular amplitude characteristic in time and frequency domains, respectively. In this letter, we propose new equalization schemes for FMT and compare their performances with OFDM. In general, FMT has a greater spectral efficiency than OFDM, due to the absence of the cyclic prefix and a reduced number of virtual carriers. However, it exhibits a higher distortion per subchannel, due to the imperfect equalization of the transmit filters. As a performance comparison, we considered both the achievable bit rate (ABR) and the bit error rate (BER) in a multipath Rayleigh fading channel. We note that while ABR gives a theoretical bound on the system bit rate, assuming the knowledge of the channel at the transmit side, the BER refers to an uncoiled system with a fixed modulation. Although FMT requires a fixed structure with a higher computational complexity than OFDM, it turns out that FMT, even with the simplest one tap per subchannel adaptive equalizer, yields a better performance than OFDM, both in terms of ABR and BER. Hence, FMT can be a valid alternative to OFDM for broadband wireless applications, also.
机译:多载波系统因其在非常分散的信道中实现最佳性能的能力而在多个标准中被采用。特别地,正交频分复用(OFDM)和滤波多音(FMT)系统是两个示例,其中调制滤波器分别在时域和频域中具有理想的矩形幅度特性。在这封信中,我们提出了新的FMT均衡方案,并将其性能与OFDM进行了比较。通常,由于缺少循环前缀和减少的虚拟载波数量,FMT具有比OFDM更高的频谱效率。但是,由于发射滤波器的不完全均衡,每个子信道的失真更高。作为性能比较,我们考虑了多径瑞利衰落信道中可实现的比特率(ABR)和误码率(BER)。我们注意到,尽管ABR在系统比特率上给出了理论上的界限,但假设在发送端知道了信道,则BER指的是具有固定调制的未卷曲系统。尽管FMT需要比OFDM更高的计算复杂度的固定结构,但事实证明,就ABR和BER而言,即使使用每个子通道自适应均衡器最简单的抽头,FMT也会产生比OFDM更好的性能。因此,对于宽带无线应用,FMT也可以是OFDM的有效替代方案。

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