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Mutual Coupling Mitigation in Broadband Multiple-Antenna Communication Systems Using Feedforward Technique

机译:使用前馈技术的宽带多天线通信系统中的互耦缓解

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An efficient method to mitigate the forward scattering (shadowing) effect and the near-field coupling among elements of broadband multiple-antenna communication systems is proposed. The technique is based on provision of a passive feedforward coupling among elements to cancel out the mutual couplings. Electrical current paths, with appropriate shape, location, and length, between adjacent elements are established to provide current distributions on adjacent elements that are approximately equal in magnitude and out of phase with the induced current on the same antenna due to the near-field coupling and scattering effects. As the coupling level decreases, the radiation pattern of an excited array element, in the presence of the other array elements, approaches the pattern of the antenna element in isolation. The technique is first detailed for a two-element wideband monoconical antenna array and is then extended to a uniform 12-element circular array of the same monoconical antennas where only feedforward paths are applied to circumferentially adjacent elements to reduce the coupling over a very wide bandwidth. The experimental results indicate that the application of the proposed feedforward technique to a 12-element circular array of monoconical antennas can provide a minimum of 2-dB reduction in the average gain deviation from omnidirectional radiation over an about 30% fractional bandwidth. Another important feature of the feedforward technique is removal of radiation nulls of the array elements at all frequencies and all directions.
机译:提出了一种有效的方法来减轻宽带多天线通信系统各元件之间的前向散射(阴影)效应和近场耦合。该技术基于在元件之间提供无源前馈耦合以抵消相互耦合。建立相邻元件之间具有适当形状,位置和长度的电流路径,以在相邻元件上提供电流分布,该电流分布在大小上近似相等,并且由于近场耦合而与同一天线上的感应电流异相和散射效应。随着耦合水平的降低,在存在其他阵列元件的情况下,受激阵列元件的辐射方向图会独立地接近天线元件的方向图。该技术首先针对两元素宽带单圆锥天线阵列进行了详细介绍,然后扩展到同一单圆锥天线的均匀12元素圆形阵列,其中仅将前馈路径应用于周向相邻的元素,以在非常宽的带宽上减少耦合。实验结果表明,将所提出的前馈技术应用于单圆锥形天线的12个元素的圆形阵列可以在大约30%的分带宽内使全向辐射的平均增益偏差最小降低2 dB。前馈技术的另一个重要特征是在所有频率和所有方向上去除阵列元件的零位辐射。

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