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Adaptive BLAST-type decision-feedback equalizers for DS-CDMA systems

机译:用于DS-CDMA系统的自适应BLAST型判决反馈均衡器

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摘要

In this paper, we propose two new adaptive equalization algorithms for direct sequence code division multiple access (DS-CDMA) systems operating over time-varying and frequency selective channels. The equalization schemes consist of a number of serially connected stages and detect users in an ordered manner, applying a decision feedback equalizer (DFE) at each stage. Both the equalizer filters and the order in which the users are extracted are updated in a recursive least squares (RLS) manner, efficiently realized through time- and order-update recursions. V-BLAST detection ordering is implemented, that is, the stronger signal is extracted first so that the weaker users can be more easily detected. The spreading codes are unavailable at the receiver of the first scheme, whereas the second algorithm employs the RAKE receiver concept, incorporating knowledge of the spreading sequences to offer performance improvement. The bit error rate (BER) performance of the equalizers is evaluated via simulations, in both mild and severe near-far environments. Their superiority over existing techniques is demonstrated.
机译:在本文中,我们针对在时变和频率选择性信道上运行的直接序列码分多址(DS-CDMA)系统提出了两种新的自适应均衡算法。均衡方案由多个串行连接的级组成,并以有序方式检测用户,并在每个级应用决策反馈均衡器(DFE)。均衡器滤波器和提取用户的顺序都以递归最小二乘(RLS)方式更新,可通过时间和顺序更新递归有效地实现。实现了V-BLAST检测排序,即首先提取较强的信号,以便更容易检测较弱的用户。扩展码在第一种方案的接收器处不可用,而第二种算法采用RAKE接收器概念,并结合了扩展序列的知识以提供性能改进。均衡器的误码率(BER)性能是通过模拟在轻度和严重近距离环境中进行评估的。证明了它们相对于现有技术的优越性。

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