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Code-aided interference suppression for DS/CDMA communications. II. Parallel blind adaptive implementations

机译:用于DS / CDMA通信的代码辅助干扰抑制。二。并行盲自适应实现

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For pt.I see ibid., vol.45, no.9, p.1101-11 (1997). An adaptive code-aided technique for the simultaneous suppression of narrow-band interference (NBI) and multiple-access interference (MAI) in direct-sequence code-division multiple-access (DS/CDMA) networks is proposed. This technique is based on the recursive least-squares (RLS) version of the minimum mean-square error (MMSE) algorithm for multiuser detection. The convergence dynamics of the RLS blind adaptive algorithm for suppressing the combined NBI and MAI are analyzed. The steady-state performance of this algorithm in terms of the signal-to-interference ratio (SIR) is also derived. Systolic array structures for parallel implementations of the RLS adaptive interference suppression algorithms are then proposed. Versions of the rotation-based QR-RLS algorithms for both the blind adaptation mode and the decision-directed adaptation mode are derived. These algorithms exhibit high degrees of parallelism, and can be mapped to VLSI systolic arrays to exploit massively parallel signal processing computation.
机译:关于第一部分,见同上,第45卷,第9期,第1101-11页(1997年)。提出了一种在直序码分多址(DS / CDMA)网络中同时抑制窄带干扰(NBI)和多址干扰(MAI)的自适应码辅助技术。此技术基于最小均方误差(MMSE)算法的递归最小二乘(RLS)版本,用于多用户检测。分析了抑制NBI和MAI相结合的RLS盲自适应算法的收敛动力学。还推导了该算法在信号干扰比(SIR)方面的稳态性能。然后提出了用于RLS自适应干扰抑制算法的并行实现的脉动阵列结构。推导了针对盲自适应模式和决策导向自适应模式的基于旋转的QR-RLS算法版本。这些算法具有很高的并行度,可以映射到VLSI脉动阵列,以利用大规模并行信号处理计算。

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