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Adaptive minimum bit error rate beamforming assisted receiver for QPSK wireless communication

机译:用于QPSK无线通信的自适应最小误码率波束成形辅助接收机

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This paper considers interference limited communication systems where the desired user and interfering users are symbol-synchronized. A novel adaptive beamforming technique is proposed for quadrature phase shift keying (QPSK) receiver based directly on minimizing the bit error rate. It is demonstrated that the proposed minimum bit error rate (MBER) approach utilizes the system resource (antenna array elements) more intelligently, than the standard minimum mean square error (MMSE) approach. Consequently, an MBER beamforming assisted receiver is capable of providing significant performance gains in terms of a reduced bit error rate over an MMSE beamforming one. A block-data based adaptive implementation of the theoretical MBER beamforming solution is developed based on the classical Parzen window estimate of probability density function. Furthermore, a sample-by-sample adaptive implementation is also considered, and a stochastic gradient algorithm, called the least bit error rate, is derived for the beamforming assisted QPSK receiver. (c) 2005 Elsevier Inc. All rights reserved.
机译:本文考虑了干扰受限的通信系统,其中所需用户和干扰用户是符号同步的。提出了一种基于最小化误码率的正交相移键控(QPSK)接收机的新型自适应波束成形技术。事实证明,与标准最小均方误差(MMSE)方法相比,建议的最小误码率(MBER)方法更智能地利用了系统资源(天线阵列元素)。因此,就比MMSE波束成形的误码率降低的误码率而言,MBER波束成形辅助的接收机能够提供显着的性能增益。基于经典的概率密度函数的Parzen窗估计,开发了基于块数据的MBER理论波束成形解决方案的自适应实现。此外,还考虑了逐个样本的自适应实现,并为波束形成辅助的QPSK接收机推导了一种称为最小误码率的随机梯度算法。 (c)2005 Elsevier Inc.保留所有权利。

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