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Effects of Carrier Frequency Offset, Timing Offset, and Channel Spread Factor on the Performance of Hexagonal Multicarrier Modulation Systems

机译:载波频率偏移,定时偏移和信道扩展因子对六角形多载波调制系统性能的影响

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摘要

Hexagonal multicarrier modulation (HMM) system is the technique of choice to overcome the impact of time-frequency dispersive transmission channel. This paper examines the effects of insufficient synchronization (carrier frequency offset, timing offset) on the amplitude and phase of the demodulated symbol by using a projection receiver in hexagonal multicarrier modulation systems. Furthermore, effects of CFO, TO, and channel spread factor on the performance of signal-to-interference-plus-noise ratio (SINR) in hexagonal multicarrier modulation systems are further discussed. The exact SINR expression versus insufficient synchronization and channel spread factor is derived. Theoretical analysis shows that similar degradation on symbol amplitude and phase caused by insufficient synchronization is incurred as in traditional cyclic prefix orthogonal frequency-division multiplexing (CP-OFDM) transmission. Our theoretical analysis is confirmed by numerical simulations in a doubly dispersive (DD) channel with exponential delay power profile and U-shape Doppler power spectrum, showing that HMM systems outperform traditional CP-OFDM systems with respect to SINR against ISI/ICI caused by insufficient synchronization and doubly dispersive channel.
机译:六边形多载波调制(HMM)系统是克服时频色散传输信道影响的首选技术。本文通过在六边形多载波调制系统中使用投影接收机,研究了同步不充分(载波频率偏移,时序偏移)对解调符号的幅度和相位的影响。此外,还讨论了CFO,TO和信道扩展因子对六角形多载波调制系统中信噪比(SINR)性能的影响。得出了准确的SINR表达式与同步和信道扩展因子不足的关系。理论分析表明,与传统的循环前缀正交频分多路复用(CP-OFDM)传输相比,由于同步不足而导致的符号幅度和相位下降也类似。我们的理论分析已通过在具有指数延迟功率分布和U型多普勒功率谱的双色散(DD)信道中进行的数值模拟得到了证实,表明对于因ISI / ICI不足引起的SINR方面,HMM系统优于传统CP-OFDM系统同步和双色散通道。

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