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A comparison of tracking-beam arrays and switching-beam arrays operating in a CDMA mobile communication channel

机译:在CDMA移动通信信道中工作的跟踪波束阵列和交换波束阵列的比较

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摘要

This paper presents an overview of two different types of smart antenna systems: the tracking-beam array (TEA) and the switching-beam array (SEA) systems. A conceptual description of each system is given, to analyze the inherent advantages and disadvantages of the two systems. The array systems shown in this paper are aimed at code-division multiple-access (CDMA) mobile communications. The desired beam pattern can be obtained from the weight vector through the scalar product between the weight vector and the signals, because the in-phase and quadrature components of the baseband signal preserve the magnitude and phase of the signal at each antenna element. Since the weight vector of the TEA system is computed from the solution of the eigenvector corresponding to the largest-magnitude eigenvalue, the TEA system outperforms the switching-beam array system when the desired signal is sufficiently larger than each of the interfering signals, because of the high processing gain. As the ratio of the power of the desired signals to the power of the interfering signals becomes lower, the superiority in the performance of the two systems is reversed.
机译:本文概述了两种不同类型的智能天线系统:跟踪波束阵列(TEA)和开关波束阵列(SEA)系统。给出了每个系统的概念描述,以分析这两个系统的固有优点和缺点。本文所示的阵列系统针对码分多址(CDMA)移动通信。由于基带信号的同相和正交分量保留了每个天线元件处信号的幅度和相位,因此可以从权重矢量通过权重矢量和信号之间的标量积获得所需的波束方向图。由于TEA系统的权重向量是根据对应于最大幅度特征值的特征向量的解来计算的,因此,由于所需信号比每个干扰信号都足够大,因此TEA系统的性能优于开关波束阵列系统高处理增益。随着期望信号的功率与干扰信号的功率之比变低,这两个系统的性能优势相反。

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