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RLS Adaptive Beamforming Algorithm Interms Of Energy Efficiency For Smart Antenna System

机译:智能天线系统能效的RLS自适应波束成形算法的有效性

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In modern wireless communication the need of smart antenna arises to address the challenges like limited capacity in allocated spectrum and signal fading due to propagation environment. To achieve the maximum signal quality towards the desired direction is the greatest deal. Therefore, antennas play a vital role in receiving the signal with desired quality and also transmit the signal energy with desired directivity. To achieve high gain in any given direction, antenna arrays are used and it is possible only with the electronically steerable arrays, which are crucial for modern wireless communication. The smart antenna uses signal processing techniques in such a way that desired signal can be spatially filtered out from the wireless channel with improved gain. Therefore, the quality of the signal reception may be enhanced by changing the directionality of radiation pattern in response to the signal environment. Our focus is to design a smart antenna system that generates desired radiation characteristics with higher directivity towards user direction and nulls in certain interference directions by reducing the side lobe levels by using the adaptive beam forming techniques. It is also proposed to develop the new energy model with the proper selection of inter element spacing between the antenna elements varies from 0.5λ to 1λ with the calculation of SNIR.
机译:在现代无线通信中,出现了对智能天线的需求,以解决诸如分配频谱中的容量受限以及由于传播环境而导致的信号衰落之类的挑战。为了朝着期望的方向获得最大的信号质量是最重要的。因此,天线在接收具有所需质量的信号并以所需方向性发送信号能量方面起着至关重要的作用。为了在任何给定方向上获得高增益,都使用天线阵列,并且只有通过电子可控阵列才有可能,这对现代无线通信至关重要。智能天线以这样的方式使用信号处理技术,即可以从无线信道中以改善的增益在空间上滤除所需信号。因此,可以通过响应于信号环境而改变辐射图案的方向性来提高信号接收的质量。我们的重点是设计一种智能天线系统,该系统可通过使用自适应波束形成技术来降低旁瓣电平,从而生成具有较高指向用户方向的期望辐射特性并在某些干扰方向上无效的辐射特性。还建议开发与天线元件之间的间单元间隔的适当选择新能源模型从0.5λ到1λ与SNIR的计算而改变。

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