首页> 外文会议>Vehicular Technology Conference, 2009. VTC Spring 2009 >A Low-PAPR Differential Frequency Shift Orthogonal Keying Transceiver for Multi-Carrier Spread Spectrum Communication System over High Mobility Multipath Channels
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A Low-PAPR Differential Frequency Shift Orthogonal Keying Transceiver for Multi-Carrier Spread Spectrum Communication System over High Mobility Multipath Channels

机译:用于高移动多径信道上多载波扩频通信系统的低PAPR差分频移正交键控收发器

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A new differential transceiver with frequency-shift orthogonal keying (FSOK) technique is proposed for the multi- carrier spread spectrum (MC-SS) system over the fast changing frequency selective fading channels. The design of the transceiver involves the following procedures. First, the data stream is mapped into QPSK-FSOK symbols and spreaded by the frequency-shift orthogonal sequences. Second, the differential block encoder is exploited to combat the fast fading channels. The Chu sequence is adapted for the initial differential encoding, which conducts the post-FFT transmitted signal involving the low peak-to-average power ratio (PAPR) property. Next, at receiver, the maximum ratio combining (MRC) technique is used for the block-based differential frequency-domain equalizer, which can overcome fading channel effect without requiring channel estimation. Finally, an efficient maximum likelihood (ML) despreading and demapping scheme is used to detect the modulation symbols. Simulation result shows that, under mobile multipath fading environment, the proposed transceiver of MRC differential decoder can outperform the theoretical QPSK system and the conventional MC-SS system.
机译:针对快速变化的频率选择性衰落信道上的多载波扩频(MC-SS)系统,提出了一种采用频移正交键控(FSOK)技术的新型差分收发器。收发器的设计涉及以下过程。首先,将数据流映射到QPSK-FSOK符号中,并通过频移正交序列进行扩展。其次,利用差分块编码器来对抗快速衰落信道。 Chu序列适用于初始差分编码,该差分编码会执行包含低峰均功率比(PAPR)属性的FFT后传输信号。接下来,在接收器处,最大比率合并(MRC)技术用于基于块的差分频域均衡器,该技术可以克服衰落信道效应,而无需进行信道估计。最后,使用有效的最大似然(ML)解扩和解映射方案来检测调制符号。仿真结果表明,在移动多径衰落环境下,所提出的MRC差分解码器收发器可以胜过理论上的QPSK系统和传统的MC-SS系统。

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