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Low Complexity Equalization of Orthogonal Chirp Division Multiplexing in Doubly-Selective Channels

机译:双选择性通道中正交线性调频分频复用的低复杂度均衡

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摘要

Orthogonal Chirp Division Multiplexing (OCDM) is a modulation scheme which outperforms the conventional Orthogonal Frequency Division Multiplexing (OFDM) under frequency selective channels by using chirp subcarriers. However, low complexity equalization algorithms for OCDM based systems under doubly selective channels have not been investigated yet. Moreover, in OCDM, the usage of different phase matrices in modulation will lead to extra storage overhead. In this paper, we investigate an OCDM based modulation scheme termed uniform phase-Orthogonal Chirp Division Multiplexing (UP-OCDM) for high-speed communication over doubly selective channels. With uniform phase matrices equipped, UP-OCDM can reduce the storage requirement of modulation. We also prove that like OCDM, the transform matrix of UP-OCDM is circulant. Based on the circulant transform matrix, we show that the channel matrices in UP-OCDM system over doubly selective channels have special structures that (1) the equivalent frequency-domain channel matrix can be approximated as a band matrix, and (2) the transform domain channel matrix in the framework of the basis expansion model (BEM) is a sum of the product of diagonal and circulant matrices. Based on these special channel structures, two low-complexity equalization algorithms are proposed for UP-OCDM in this paper. The equalization algorithms are based on block LDL factorization and iterative matrix inversion, respectively. Numerical simulations are finally proposed to show the performance of UP-OCDM and the validity of the proposed low complexity equalization algorithms. It is shown that when the channel is doubly selective, UP-OCDM and OCDM have similar BER performance, and both of them outperform OFDM. Moreover, the proposed low complexity equalizers for UP-OCDM both show better BER performance than their OFDM counterparts.
机译:正交线性调频分频多路复用(OCDM)是一种调制方案,在频率选择信道下,通过使用线性调频副载波,其性能优于传统的正交频分多路复用(OFDM)。但是,尚未研究双选择性信道下基于OCDM的系统的低复杂度均衡算法。此外,在OCDM中,调制中使用不同的相位矩阵会导致额外的存储开销。在本文中,我们研究了一种基于OCDM的调制方案,该方案称为双相位正交线性调频分频多路复用(UP-OCDM),用于双选择信道上的高速通信。通过配备统一的相位矩阵,UP-OCDM可以减少调制的存储需求。我们还证明,像OCDM一样,UP-OCDM的变换矩阵是循环的。基于循环变换矩阵,我们表明双选择性信道上的UP-OCDM系统中的信道矩阵具有特殊的结构,(1)等效频域信道矩阵可以近似为频带矩阵,(2)变换基本扩展模型(BEM)框架中的域通道矩阵是对角矩阵和循环矩阵的乘积之和。基于这些特殊的信道结构,本文针对UP-OCDM提出了两种低复杂度均衡算法。均衡算法分别基于块LDL分解和迭代矩阵求逆。最后提出了数值模拟,以显示UP-OCDM的性能以及所提出的低复杂度均衡算法的有效性。结果表明,当信道为双选时,UP-OCDM和OCDM具有相似的BER性能,并且两者均优于OFDM。此外,针对UP-OCDM提出的低复杂度均衡器均显示出比OFDM同类产品更好的BER性能。

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