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Linear Beamforming Assisted Receiver for Binary Phase Shift Keying Modulation Systems

机译:用于二进制相移键控调制系统的线性波束形成辅助接收机

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摘要

The paper considers adaptive beamforming assisted receiver for multiple antenna aided multiuser systems that employ binary phase shift keying (BPSK) modulation. The standard minimum mean square error (MMSE) design is based on the principle of minimising the mean square error (MSE) between the beamformer’s desired output and complex-valued beamformer output. Since the desired output for BPSK systems is real-valued, minimising the MSE between the beamformer’s desired output and real-part of the beamformer output can significantly improve the bit error rate (BER) performance, and we refer to this alternative MMSE design as the realvalued MMSE (RV-MMSE) to contrast to the standard complex valued MMSE (CV-MMSE). The minimum BER (MBER) design however still outperforms the RV-MMSE solution, particularly for overloaded systems where degree of freedom of the antenna array is smaller than the number of BPSK users. Adaptive implementation of this RV-MMSE design is realised using a least mean square (LMS) type adaptive algorithm, which we refer to as the RV-LMS, in comparison to the standard CV-LMS algorithm. The RV-LMS adaptive beamformer has the same computational complexity as the adaptive least bit error (LBER) algorithm, imposing half of the computational requirements of the CV-LMS algorithm.
机译:本文考虑了采用二进制相移键控(BPSK)调制的多天线辅助多用户系统的自适应波束成形辅助接收机。标准最小均方误差(MMSE)设计基于最小化波束形成器所需输出和复数值波束形成器输出之间的均方误差(MSE)的原理。由于BPSK系统的期望输出是实值,因此,最小化波束形成器的期望输出和波束形成器输出的实部之间的MSE可以显着提高误码率(BER)性能,因此我们将这种替代MMSE设计称为实值MMSE(RV-MMSE)与标准复值MMSE(CV-MMSE)形成对比。但是,最小BER(MBER)设计仍然胜过RV-MMSE解决方案,尤其是对于天线阵列的自由度小于BPSK用户数量的过载系统。与标准CV-LMS算法相比,该RV-MMSE设计的自适应实现是使用最小均方(LMS)类型的自适应算法实现的,我们将其称为RV-LMS。 RV-LMS自适应波束形成器具有与自适应最小比特错误(LBER)算法相同的计算复杂度,仅占CV-LMS算法的一半计算要求。

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    Chen S.; Tan S.; Hanzo L.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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