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An Intuitive Way to Understand Mutual Coupling Effects in Antenna Arrays Using the Poynting Streamline Method

机译:用Poynting流线法直观理解天线阵列中相互耦合效应的直观方法

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The flow of energy around array antenna in receiving mode can be modeled by generating streamlines of the Poynting vector field. From the streamlines that terminate on the array element loads, a geometrical shape can be assigned to the effective area of the array. These concepts provide an intuitive tool for understanding mutual coupling effects in antenna arrays. The decrease in directivity associated with mutual coupling effects, the so-called element-gain paradox, can be explained by the overlap of the element effective area shapes. The critical element spacing for the element-gain paradox effect can be predicted from the effective area shape for a single isolated array element. Antenna design for minimizing mutual coupling, which is of interest in multiple input multiple output communications systems, magnetic resonance imaging arrays, astronomical arrays, and other applications, can be guided by analysing the effective area shape for a single isolated array element.
机译:接收模式下阵列天线周围的能量流可以通过生成Poynting矢量场的流线来建模。从终止于阵列单元载荷的流线,可以将几何形状分配给阵列的有效区域。这些概念为理解天线阵列中的互耦效应提供了一种直观的工具。与相互耦合效应有关的指向性降低,即所谓的元素增益悖论,可以通过元素有效面积形状的重叠来解释。可以从单个隔离阵列元素的有效面积形状预测元素增益悖论效应的关键元素间距。通过分析单个隔离阵列元件的有效面积形状,可以指导在多输入多输出通信系统,磁共振成像阵列,天文阵列和其他应用中关注的用于最小化互耦合的天线设计。

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