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Iterative Irregular Sphere Detection in High-Rate Downlink SDMA Systems

机译:高速下行SDMA系统中的迭代不规则球检测

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摘要

Downlink spatial division multiple-access (DL-SDMA)-assisted multiuser transmission (MUT) employing linear dispersion codes (LDCs) is proposed for space–time signaling, which attains a high diversity order and may support a high-rate data transmission. However, a potentially high complexity may be imposed by the signal detection when aiming to achieve optimum maximum-likelihood (ML) performance. Hence, a novel irregular sphere detection (IrSD) design is proposed to maintain an infinitesimally low bit error rate (BER) at the lowest possible iterative decoding complexity. Quantitatively, in the specific scenario, when six 4-quadratic-amplitude-modulated (QAM) data symbol streams were transmitted by the DL-SDMA system, the full-search-based ML detector had to evaluate all $4^{6} = 4096$ possible decision candidates. By contrast, when searching through a fraction of this space, the proposed IrSD may reduce the complexity by three orders of magnitude, quantified in terms of the number of add–compare–select (ACS) arithmetic operations, namely, from the order of $10^{8}$ to about $10^{5}$ at $E_{b}/N_{0} = 5 hbox{dB}$, and still approach the ML performance.
机译:提出了采用线性色散码(LDC)的下行空分多址(DL-SDMA)辅助多用户传输(MUT)进行时空信令的方法,该方法具有较高的分集阶数并可以支持高速率数据传输。但是,当旨在实现最佳最大似然(ML)性能时,信号检测可能会带来潜在的高复杂性。因此,提出了一种新颖的不规则球检测(IrSD)设计,以尽可能低的迭代解码复杂度保持无限低的误码率(BER)。定量地,在特定情况下,当DL-SDMA系统传输六个4二次振幅调制(QAM)数据符号流时,基于完全搜索的ML检测器必须评估所有$ 4 ^ {6} = 4096 $可能的决策候选人。相比之下,在此空间的一小部分进行搜索时,建议的IrSD可以将复杂度降低三个数量级,以加-比较-选择(ACS)算术运算的数量进行量化,即从$ 10的数量级开始。在$ E_ {b} / N_ {0} = 5 hbox {dB} $时从^ {8} $到大约$ 10 ^ {5} $,并且仍然接近ML性能。

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