Multi-Carrier Differential Trellis-Coded Modulation/Demodulation Employing Multiple Differential Detection with Channel Prediction

Tetsuro Kubo, H. Kubo
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Abstract

This paper proposes a multi-carrier (MC) modulation scheme employing differential trellis-coded modulation (DTCM) and multiple differential detection with channel prediction in order to cope with doubly-selective fading at the good required signal-to-noise power ratio (SNR), where doubly-selective channels correspond to severe time/frequency-selective channels. For frequency-selective fading, MC modulation schemes are effective. For time-selective fading, multiple differential detection employing per-survivor processing (PSP-MDD) with channel prediction is effective. However, channel prediction degrades the required SNR for PSP-MDD. In order to cope with doubly-selective fading and improve the required SNR, this paper proposes MC-DTCM employing PSP-MDD with channel prediction. Finally, computer simulation results show that the proposed scheme can improve both the performance for doubly-selective fading and the required SNR compared with the conventional PSP-MDD with channel prediction.
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采用多差分检测和信道预测的多载波差分栅格编码调制/解调
本文提出了一种采用差分栅格编码调制(DTCM)和带信道预测的多重差分检测的多载波(MC)调制方案,以便在良好的信噪比(SNR)要求下应对双选择性衰落,其中双选择性信道对应于严重的时/频选择性信道。对于频率选择性衰落,MC调制方案是有效的。对于时间选择性衰落,采用每个幸存者处理(PSP-MDD)和信道预测的多重差分检测是有效的。然而,信道预测降低了PSP-MDD所需的信噪比。为了应对双选择性衰落和提高所需的信噪比,本文提出了利用PSP-MDD进行信道预测的MC-DTCM。最后,计算机仿真结果表明,与传统的带信道预测的PSP-MDD相比,该方案可以提高双选择性衰落的性能和所需的信噪比。
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