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首页> 外文期刊>IEEE communications letters >Dynamic Grouped Chip-Level Iterated Multiuser Detection Based on Gaussian Forcing Technique
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Dynamic Grouped Chip-Level Iterated Multiuser Detection Based on Gaussian Forcing Technique

机译:基于高斯强迫技术的动态分组码片级迭代多用户检测

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摘要

The brute-force MAP-based chip-level iterated (CLi) multiuser detection techniques exploiting the newly proposed low-density signature (LDS) structure have been shown to approach the performance of single-user even at overloading condition of up to 200%. However, their complexity is exponential to the number of interfering users in a chip that can be impractical. In this letter, by using Gaussian-forcing (GF) technique, we trade-off performance and complexity and it results in a dynamic grouped GF (G-GF) CLi MUD technique. We show via computer simulation, at the system with 200% condition, the loss of approximately 0.3 dB compared to its brute-force counterpart is observed while reducing the complexity to more than half.
机译:已经证明,利用最新提出的低密度签名(LDS)结构的基于蛮力MAP的芯片级迭代(CLi)多用户检测技术即使在高达200%的过载条件下也能达到单用户的性能。但是,它们的复杂性与芯片中可能不切实际的干扰用户数量成指数关系。在这封信中,通过使用高斯强迫(GF)技术,我们在性能和复杂性之间进行了权衡,从而得出了动态分组GF(G-GF)CLi MUD技术。我们通过计算机仿真显示,在200%条件下的系统中,与之相比,它的蛮力损失约为0.3 dB,同时将复杂度降低了一半以上。

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