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MIMO Adaptive Array Antenna Using Parasitic Antennas ~ Fast non-iterative algorithm based on correlation matrix

机译:寄生天线的MIMO自适应阵列天线〜基于相关矩阵的快速非迭代算法

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摘要

The parasitic antenna elements with tunable terminations can be used for interference suppression in multi-antenna system without using the degrees of freedom. Authors have proposed a fast non-iterative algorithm for optimizing the termination conditions. However, this method cannot be used for suppressing the interference from unknown system since it requires the channel state information. In this report, a fast non-iterative algorithm based on the correlation matrix, which can be obtained even from unknown interference, is proposed for the multi-antenna system with the parasitic antenna elements. The correlation matrix including both receiving and parasitic antennas can be estimated from a few channel trainings even without receiving signals at the parasitic antenna. By using this correlation matrix, the power of the interference with the arbitrary termination conditions can be easily estimated. Therefore, the termination condition, which minimizes the interference power, can be calculated without the knowledge of the channel state information or additional measurements. The results of the numerical analysis indicate that proposed method requires only 3 trainings in this model, and can suppress the interference without the perfect channel state information.
机译:具有可调端接的寄生天线元件可用于多天线系统中的干扰抑制,而无需使用自由度。作者提出了一种用于优化终止条件的快速非迭代算法。但是,由于该方法需要信道状态信息,因此不能用于抑制来自未知系统的干扰。在这份报告中,针对具有寄生天线元件的多天线系统,提出了一种基于相关矩阵的快速非迭代算法,该算法甚至可以从未知干扰中获得。即使没有在寄生天线处接收信号,也可以从一些信道训练中估算出包括接收天线和寄生天线的相关矩阵。通过使用该相关矩阵,可以容易地估计任意终止条件下的干扰功率。因此,可以在不知道信道状态信息或不进行其他测量的情况下计算使干扰功率最小的终止条件。数值分析结果表明,该方法在该模型中仅需3次训练,就可以在没有理想信道状态信息的情况下抑制干扰。

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