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On the importance of sub-array design in the suppression of undesirable grating lobes

机译:关于子阵列设计在抑制不希望的光栅波瓣中的重要性

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A useful strategy in simplifying the development of large antenna arrays is to use sub-arrays as a building-block. When employing this strategy, care must be taken in designing and implementing the sub-arrays because they can be considered array elements that are more than one wavelength apart resulting in array factor grating lobes. In ideal situations, the grating lobes that one would expect are cancelled out by the individual sub-array pattern nulls. However, if care is not taken in the design of the sub-array, errors in that design can distort the sub-array pattern and cause it to no longer properly cancel the grating lobes and ultimately degrade the overall array pattern. Thus, it is essential to understand the mechanism that can cause unwanted distortion in the sub-array pattern. Here, we investigate a number of situations that can cause unwanted distortions in the sub-array pattern and their effects on the final overall pattern. We will focus on 1×4 sub-arrays, which are one of the more common sub-array designs that are implemented in large arrays. Analysis of the array factor and simple simulations will demonstrate the possible mechanisms of these distortions and illustrate the importance of the sub-array design.
机译:简化大天线阵列的开发的有用策略是使用子阵列作为构建块。在采用此策略时,必须在设计和实施子阵列时注意,因为它们可以被视为阵列元素,这些元素多于一个波长,导致阵列因子光栅凸起。在理想的情况下,一个人预期的光栅裂片被各个子阵列模式无效取消。但是,如果在子阵列的设计中没有考虑小心,则该设计中的错误可以扭曲子阵列模式,并使它不再正确地取消光栅叶片并最终降低整体阵列模式。因此,必须了解可以在子阵列模式中导致不希望的失真的机制。在这里,我们调查多种情况,这可能导致子阵列模式中的不希望的扭曲及其对最终整体模式的影响。我们将专注于1×4个子阵列,这些子阵列是在大阵列中实现的更常见的子阵列设计之一。分析阵列因子和简单模拟将展示这些扭曲的可能机制,并说明了子阵列设计的重要性。

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