Joint Closed-Loop Power Control and Adaptive Beamforming for Wireless Networks with Antenna Arrays in a 2D Urban Environment

M. D. Moghadam, H. Bakhshi, G. Dadashzadeh
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引用次数: 7

Abstract

The interference reduction capability of antenna arrays and the power control algorithms have been considered separately as means to decrease the interference in wireless communication networks. In this paper, we propose smart step closed-loop power control (SSPC) algorithm in wireless networks in a 2D urban environment with constrained least mean squared (CLMS) algorithm. This algorithm is capable of efficiently adapting according to the environment and able to permanently maintain the chosen frequency response in the look direction while minimizing the output power of the array. Also, we present switched-beam (SB) technique for enhancing signal to interference plus noise ratio (SINR) in wireless networks. Also, we study an analytical approach for the evaluation of the impact of power control error (PCE) on wireless networks in a 2D urban environment. The simulation results indicate that the convergence speed of the SSPC algorithm is faster than other algorithms. Also, we observe that significant saving in total transmit power (TTP) are possible with our proposed algorithm. Finally, we discuss three parameters of the PCE, number of antenna elements, and path-loss exponent and their effects on capacity of the system via some computer simulations.
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二维城市环境下天线阵无线网络的联合闭环功率控制与自适应波束形成
在无线通信网络中,天线阵列的抗干扰能力和功率控制算法分别作为降低干扰的手段被考虑。本文提出了基于约束最小均方(CLMS)算法的二维城市环境下无线网络智能阶跃闭环功率控制(SSPC)算法。该算法能够根据环境进行有效的自适应,在使阵列输出功率最小的情况下,在注视方向上永久保持所选择的频率响应。此外,我们还提出了用于提高无线网络信噪比(SINR)的开关波束技术。此外,我们还研究了一种用于评估二维城市环境中功率控制误差(PCE)对无线网络影响的分析方法。仿真结果表明,SSPC算法的收敛速度比其他算法快。此外,我们观察到我们提出的算法可以显著节省总发射功率(TTP)。最后,我们通过计算机模拟讨论了PCE的三个参数,天线单元数和路径损耗指数对系统容量的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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