基于闭环功率控制、基站分配和波束形成的DS-CDMA系统干扰管理

M. D. Moghadam, H. Bakhshi, G. Dadashzadeh
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引用次数: 11

摘要

在频率选择性瑞利衰落的直接顺序码分多址(DS-CDMA)接收机中,提出了一种智能阶跃闭环功率控制(SSPC)算法和一种基于最小发射机功率(BSA-MTP)技术的基站分配方法。这个接收器由三个阶段组成。在第一阶段,利用约束最小均方(CLMS)算法,在每个RAKE指中传递任意路径上的期望用户信号,并减少其他路径上的路径间干扰(IPI)。在此阶段,还可以减少来自其他用户的多址干扰。因此,匹配滤波器(MF)可以在第二阶段用于每个耙指的IPI和MAI的更多减少。在第三阶段,根据传统的最大比组合(MRC)原理将匹配滤波器的输出信号组合,然后送入目标用户的决策电路。仿真结果表明,与其他方法相比,SSPC算法和BSA-MTP技术可以显著降低网络误码率。此外,我们还观察到,使用我们的方法可以显著节省总发射功率(TTP)。
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Interference Management for DS-CDMA Systems through Closed-Loop Power Control, Base Station Assignment, and Beamforming
In this paper, we propose a smart step closed-loop power control (SSPC) algorithm and a base station assignment method based on minimizing the transmitter power (BSA-MTP) technique in a direct sequence-code division multiple access (DS-CDMA) receiver with frequency-selective Rayleigh fading. This receiver consists of three stages. In the first stage, with constrained least mean squared (CLMS) algorithm, the desired users’ signal in an arbitrary path is passed and the inter-path interference (IPI) is reduced in other paths in each RAKE finger. Also in this stage, the multiple access interference (MAI) from other users is reduced. Thus, the matched filter (MF) can use for more reduction of the IPI and MAI in each RAKE finger in the second stage. Also in the third stage, the output signals from the matched filters are combined according to the conventional maximal ratio combining (MRC) principle and then are fed into the decision circuit of the desired user. The simulation results indicate that the SSPC algorithm and the BSA-MTP technique can significantly reduce the network bit error rate (BER) compared to the other methods. Also, we observe that significant savings in total transmit power (TTP) are possible with our methods.
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