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Particle swarm optimization-based power allocation for Alamouti amplify and forward relaying protocol

机译:基于粒子群优化的Alamouti放大和前向中继协议的功率分配

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摘要

The performance of wireless communication systems is improved over flat fading channel by using Alamouti coding scheme, which provides the quality of diversity gain. In this paper, performance analysis of symbol error rate (SER) and particle swarm optimization (PSO)-based power allocation (PA) for Alamouti amplify and forward (AF) relaying protocol using maximum ratio combining (MRC) technique is presented. Analytical expression of SER upper bound and SER approximation is derived for Alamouti AF relaying protocol with quadrature phase shift keying (QPSK) modulation over Rayleigh fading channel and Rician fading channel. In addition, PSO-based optimum PA factor is calculated on the basis of the minimum SER of proposed method. PSO-based optimum PA gives 0.5 dB of improved signal-to-noise ratio (SNR) compared with the equal power allocation (EPA). The theoretical approximate SER result is compared with the simulated SER. The proposed protocol provides full diversity gain and reduces SER compared with the existing AF and decode and forward (DF) relaying protocols over Rayleigh fading channel and Rician fading channel.
机译:通过使用Alamouti编码方案,通过使用Alamouti编码方案来提高无线通信系统的性能,这提供了分集增益的质量。本文介绍了使用最大比率组合(MRC)技术的符号误差率(SER)和粒子群优化(PA)的符号误差率(SER)和粒子群优化(PA)的算法分配(PA)。 SER上界和SER近似的分析表达用于具有正交相移键控(QPSK)调制的Alamouti AF中继协议,通过瑞利衰落通道和瑞典衰落通道进行正交相移键控调制。此外,基于PSO的最佳PA因子是基于所提出的方法的最小顺序来计算。与等电功率分配(EPA)相比,PSO的最佳PA提供0.5 dB改善的信噪比(SNR)。理论近似偶数结果与模拟Ser进行比较。该拟议的协议提供了与Rayleigh衰落通道和Rician衰落通道的现有AF和解码和前进(DF)中继协议进行全部多样性增益并减少了SER。

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