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Adaptive Chip-Rate Equalization of Downlink Multirate Wideband CDMA

机译:下行链路多速率宽带CDMA的自适应码率均衡

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We consider a downlink direct sequence-code division multiple access (DS-CDMA) system in which multirate user signals are transmitted via synchronous orthogonal short codes overlaid with a common scrambling sequence. The transmitted signal is subjected to significant time- and frequency-selective multipath fading. In response to this scenario, a novel two-mode receiver is proposed that accomplishes chip-rate adaptive equalization aided by filtering and/or cancellation of multiaccess interference (MAI). In the acquisition mode, a code-multiplexed pilot is used to adapt the equalizer from cold start or loss-of-lock. The use of MAI filtering results in a third-order least mean squares (LMS) algorithm, which has significant advantages over standard (i.e., first-order) LMS in nonstationary environments. In the tracking mode, decision-direction facilitates MAI-cancellation in the equalizer update, which enhances performance. The receiver monitors pilot decision quality as a means of switching between the two modes. The performance of the adaptive receiver is studied through analysis and simulation.
机译:我们考虑一种下行链路直接序列码分多址(DS-CDMA)系统,在该系统中,通过覆盖有公共扰码序列的同步正交短码来传输多速率用户信号。传输的信号会受到明显的时间和频率选择性多径衰落的影响。响应于这种情况,提出了一种新颖的双模接收机,其通过过滤和/或消除多址干扰(MAI)来实现码片速率自适应均衡。在采集模式下,码复用导频用于使均衡器适应冷启动或失锁。 MAI过滤的使用会导致三阶最小均方(LMS)算法,与非平稳环境中的标准(即一阶)LMS相比,它具有明显的优势。在跟踪模式下,决策方向有助于均衡器更新中的MAI取消,从而提高了性能。接收机监视飞行员决策质量,作为在两种模式之间切换的一种手段。通过分析和仿真研究了自适应接收机的性能。

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