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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Time domain equalization method for TS-OFDM signal under higher mobile environments
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Time domain equalization method for TS-OFDM signal under higher mobile environments

机译:高移动环境下TS-OFDM信号的时域均衡方法

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In higher time-varying fading channels, the signal quality of orthogonal frequency division multiplexing (OFDM) technique would be degraded relatively due to the occurrence of inter-carrier interference (ICI). To solve this problem, this paper firstly proposes a new design of time domain training sequence (TS) in the estimation of channel impulse response (CIR) for the TS-OFDM signal which can reduce the leakage of power spectrum density (PSD) at the outside of OFDM allocated frequency bandwidth with keeping higher CIR estimation accuracy. Secondly, this paper proposes a time domain equalization (TDE) method which can achieve better bit error rate (BER) performance with keeping lower computation complexity even in higher time-varying fading channels. The salient feature of the proposed TDE method is to employ a partial differentiation for the time domain CIR matrix for solving the maximum likelihood (ML) equation in which the time domain CIR matrix becomes a symmetric banded matrix. From this feature, a low-complexity parallel block inverse matrix algorithm can be employed in the calculation of inverse matrix in keeping the same accuracy as that of the direct inverse matrix calculation. This paper presents various computer simulation results to demonstrate the effectiveness of the proposed TDE method for the TS-OFDM signal as compared with conventional frequency domain equalization (FDE) methods under higher mobile environments.
机译:在随时间变化的衰落信道中,由于载波间干扰(ICI)的出现,正交频分复用(OFDM)技术的信号质量将相对下降。为了解决这个问题,本文首先提出了一种新的时域训练序列(TS)设计,用于估计TS-OFDM信号的信道冲激响应(CIR),可以减少功率谱密度(PSD)时的泄漏。在OFDM分配的频率带宽之外保持较高的CIR估计精度。其次,本文提出了一种时域均衡(TDE)方法,即使在时变变化较大的衰落信道中,也可以在保持较低的计算复杂度的同时,实现更好的误码率(BER)性能。所提出的TDE方法的显着特征是对时域CIR矩阵采用偏微分,以解决其中时域CIR矩阵成为对称带状矩阵的最大似然(ML)方程。根据这一特征,可以在保持与直接逆矩阵计算相同的精度的同时,在逆矩阵的计算中采用低复杂度的并行块逆矩阵算法。本文提出了各种计算机仿真结果,以证明在较高的移动环境下,与传统的频域均衡(FDE)方法相比,所提出的TDE方法对TS-OFDM信号的有效性。

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