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首页> 外文期刊>Circuits, systems, and signal processing >Signal Processing by Generalized Receiver in DS-CDMA Wireless Communication Systems with Frequency-Selective Channels
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Signal Processing by Generalized Receiver in DS-CDMA Wireless Communication Systems with Frequency-Selective Channels

机译:带有选频信道的DS-CDMA无线通信系统中通用接收机的信号处理

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摘要

The generalized receiver (GR) based on a generalized approach to signal processing (GASP) in noise is investigated in a direct-sequence code-division multiple access (DS-CDMA) wireless communication system with frequency-selective channels. We consider four avenues: linear equalization with finite impulse response (FIR) beamforming filters; channel estimation and spatially correlation; optimal combining; and partial cancellation. We investigate the GR with simple linear equalization and FIR beamforming filters. Numerical results and simulation show that the GR with FIR beamforming filters surpasses in performance the optimum infinite impulse response beamforming filters with conventional receivers, and can closely approach the performance of GR with infinite impulse response beamforming filters. Channel estimation errors are taken into consideration so that DS-CDMA wireless communication system performance will not be degraded under practical channel estimation. GR takes an estimation error of a maximum likelihood (ML) multiple-input multiple-output (MIMO) channel estimation and GR spatially correlation into account in computation of minimum mean square error (MMSE) and log-likelihood ratio (LLR) of each coded bit. The symbol error rate (SER) performance of DS-CDMA employing GR with a quadrature sub-branch hybrid selection/maximal-ratio combining (HS/MRC) scheme for 1-D modulations in Rayleigh fading is obtained and compared with that of conventional HS/MRC receivers. Procedure of selecting a partial cancelation factor (PCF) for the first stage of a hard-decision partial parallel interference cancellation (PPIC) of the GR employed in DS-CDMA wireless communication system is proposed. A range of optimal PCFs is derived based on the Price's theorem. Computer simulation results show superiority in bit error rate (BER) performance that is very close to that potentially achieved and surpasses the BER performance of the real PCF for DS-CDMA systems discussed in literature.
机译:在具有选频信道的直接序列码分多址(DS-CDMA)无线通信系统中,研究了基于噪声中通用信号处理(GASP)方法的通用接收器(GR)。我们考虑了四种途径:带有有限脉冲响应(FIR)波束成形滤波器的线性均衡;以及信道估计和空间相关性;最佳组合;和部分取消。我们用简单的线性均衡和FIR波束成形滤波器研究GR。数值结果和仿真表明,具有FIR波束成形滤波器的GR在性能上优于传统接收器的最佳无限冲激响应波束成形滤波器,并且可以接近具有无限冲激响应波束成形滤波器的GR性能。考虑到信道估计误差,因此在实际的信道估计下不会降低DS-CDMA无线通信系统的性能。 GR在计算每个编码后的最小均方误差(MMSE)和对数似然比(LLR)时考虑了最大似然(ML)多输入多输出(MIMO)信道估计和GR空间相关性的估计误差一点。获得了采用GR与正交子分支混合选择/最大比合并(HS / MRC)方案在瑞利衰落中进行一维调制的DS-CDMA的符号误码率(SER)性能,并将其与常规HS进行了比较。 / MRC接收器。提出了在DS-CDMA无线通信系统中为GR的硬决策部分并行干扰消除(PPIC)的第一阶段选择部分消除因子(PCF)的过程。根据Price定理推导出一系列最佳PCF。计算机仿真结果表明,误码率(BER)性能的优势非常接近潜在实现的优势,并且超过了文献中讨论的DS-CDMA系统的实际PCF的BER性能。

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