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Hybrid SD/MRC one-shot linear decorrelating detector for asynchronous CDMA systems

机译:异步CDMA系统混合动力SD / MRC单次线性切除探测器

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The one-shot linear decorrelating detector (LDD) was proposed to reduce the computational complexity and delay required in the conventional LDD, but it still requires high complexity. Another one-shot LDD with low complexity was proposed. To improve its performance, this detector uses maximal ratio combining (MRC) at the two outputs of the left piece of the present bit and the right piece of the next bit in a one-shot window. In spite of the aid from MRC, the performance of the one-shot LDD with post-MRC is worse than the one-shot LDD. To overcome this problem, we propose a one-shot LDD with pre-SDC/post-MRC that employs selection diversity combining (SDC) with multiple antenna elements in front of the one-shot LDD with post-MRC. In asynchronous random CDMA systems over fading channels, the largest SNR of SDC, near-far resistance (NFR) of the one-shot LDD, and the output SNR of MRC are random variables. We derive the probability density functions (PDFs) for these random variables and calculate the bit error rate (BER) of the proposed detector using the obtained PDFs. In comparison of mathematical analysis and computer simulation results, we observe good agreement.
机译:提出单次线性去相关检测器(LDD)以降低传统LDD所需的计算复杂性和延迟,但它仍然需要高复杂性。提出了另一种具有低复杂性的一次性LDD。为了提高其性能,该探测器使用最大比率组合(MRC)在一拍窗口中的下一个位的左侧的两个输出处。尽管援助MRC,但是使用后MRC的单次LDD的性能比单次LDD更糟糕。为了克服这个问题,我们提出了一个带有Pre-SDC /后MRC的一次性LDD,它采用与MRC的单次LDD前面的多个天线元素组合(SDC)。在异步随机CDMA系统上,通过衰落通道,SDC的最大SNR,单次LDD的近距离电阻(NFR)以及MRC的输出SNR是随机变量。我们导出了这些随机变量的概率密度函数(PDF),并使用所获得的PDF计算所提出的检测器的误码率(BER)。在数学分析和计算机仿真结果的比较中,我们遵守良好的一致性。

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