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Enhanced RLS in Smart Antennas for Long Range Communication Networks

机译:用于远程通信网络的智能天线中的增强型RLS

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The utilisation of smart antenna (SA) techniques in future wireless and cellular networks is expected to have an impact on the efficient use of the spectrum and the optimization of service quality. This is because SAs can enhance the maximization of output power of the signal in desired directions amongst a whole lot of functions. Despite these benefits of SAs, long range communications still face unsolved challenges such as signal fading. Therefore, this paper focuses on enhancing the recursive least squares (RLS) in SA design for long range communication networks. The conventional RLS algorithm does not need any matrix inversion computations because the inverse correlation matrix is determined directly. Therefore, the RLS saves computational power. Hence, we have enhanced the RLS algorithm by introducing a constantmto the gain factor in order to yield an improved gain vector. Results from our simulations show that the enhanced RLS reduces mean square error (MSE), smoothens filter output and improves signal-to-noise ratio (SNR). These benefits further result in the antenna’s gain improvement leading to an increased range and directivity of the smart antenna over a long range communication networks.
机译:预计在未来的无线和蜂窝网络中使用智能天线(SA)技术将对频谱的有效使用和服务质量的优化产生影响。这是因为SA可以在许多功能中提高所需方向上信号输出功率的最大化。尽管SA具有这些优点,但远程通信仍面临信号衰落等尚未解决的挑战。因此,本文着重于在用于远程通信网络的SA设计中增强递归最小二乘(RLS)。常规的RLS算法不需要任何矩阵求逆运算,因为反相关矩阵是直接确定的。因此,RLS节省了计算能力。因此,我们通过在增益因子中引入常数来增强RLS算法,以产生改进的增益矢量。我们的仿真结果表明,增强的RLS降低了均方误差(MSE),使滤波器输出平滑并提高了信噪比(SNR)。这些优势进一步提高了天线的增益,从而延长了智能天线在远程通信网络上的范围和方向性。

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