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Enhanced performance of OFDM and single-carrier systems using frequency domain equalization and phase modulation

机译:使用频域均衡和相位调制增强OFDM和单载体系统的性能

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Phase modulation based systems have the advantages of constant envelope (CE) signals and the ability to improve the diversity of multipath channels. In this paper, we study the performance of single-carrier (SC) and orthogonal frequency-division multiplexing (OFDM) systems using phase modulation (PM). Both systems are implemented with frequency domain equalization (FDE) to obtain high diversity gains over the frequency selective multipath fading channels. FDE performance using both zero forcing (ZF) and minimum mean square error (MMSE) is studied over a wide range of multipath fading channel models. Simulation results show that, the PM based systems performance with multipath fading can outperform their performance with single path fading. The performance over the multipath channels is at least 5 dB and 12 dB better than the performance over the single path channel, using PM based OFDM and SC-FDE systems, respectively. The results also show that, when PM is utilized, SC-FDE systems can outperform OFDM systems by about 5 dB.
机译:基于相位调制的系统具有恒定包络(CE)信号的优点以及改善多径通道的多样性的能力。在本文中,我们研究了使用相位调制(PM)的单载波(SC)和正交频分复用(OFDM)系统的性能。两个系统都以频域均衡(FDE)实现,以通过频率选择性多径衰落通道获得高分集的增益。使用零强制(ZF)和最小均方误差(MMSE)的FDE性能在各种多径衰落通道模型上进行了研究。仿真结果表明,基于PM的Mulipath衰落的系统性能可以通过单路径衰落优于它们的性能。通过基于PM的OFDM和SC-FDE系统,多径通道上的性能至少比单路径通道的性能更高为5 dB和12 dB。结果还表明,当利用PM时,SC-FDE系统可以以大约5 dB的OFDM系统优于OFDM系统。

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