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首页> 外文期刊>Journal of Computer and Communications >A Proposed Orthogonal Chirp Division Multiplexing (OCDM) Multicarrier Transceiver Based on the Discrete Fractional Cosine Transform
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A Proposed Orthogonal Chirp Division Multiplexing (OCDM) Multicarrier Transceiver Based on the Discrete Fractional Cosine Transform

机译:一种基于离散分数余弦变换的正交线性调频多路复用(OCDM)多载波收发器

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Doppler spread is a phenomenon caused by rapid changes in the channel response due to the movement of the transmitter/receiver through a multipath environment, which is also known as a doubly selective channel response. In doubly selective fading channel where the channel frequency response is regarded as rapidly time-varying, the inter carrier interference (ICI) occurs mainly because the traditional multicarrier transceivers are incapable to diagonalize the channel matrix. The proposed scenario is for an Orthogonal Chirp Division Multiplexing (OCDM) multicarrier system derived from Discrete Fractional Cosine Transform (DFrCT). The proposed DFrCT-OCDM multicarrier system is proofed to be less signal processing complexity and easier to implement, compared to the traditional Fast Fourier Transform (FFT). Simulation results reveal that the DFrCT provides superior performance reflected the significant improvement in the BitError Rate which reaches to 10 dB, better spectrum efficiency and better energy concentration properties than the conventional FFT. Finally, several equlizers are applied and they all show that the proposed DFrCT-OCDM over performs the other systems with all these equlizers.
机译:多普勒扩展是由于发射机/接收机通过多径环境而引起的信道响应快速变化所引起的现象,这也被称为双选择信道响应。在将信道频率响应视为快速时变的双选择性衰落信道中,发生载波间干扰(ICI)的主要原因是传统的多载波收发器无法对角化信道矩阵。拟议的方案是针对从离散分数余弦变换(DFrCT)派生的正交线性调频分频(OCDM)多载波系统。与传统的快速傅立叶变换(FFT)相比,所提出的DFrCT-OCDM多载波系统被证明具有较低的信号处理复杂度并且易于实现。仿真结果表明,DFrCT提供了卓越的性能,这反映出与传统FFT相比,BitError Rate的显着提高(达到10 dB),更好的频谱效率和更好的能量集中特性。最后,应用了几个均衡器,它们都表明,所提出的DFrCT-OCDM可以用所有这些均衡器来胜过其他系统。

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