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Main Lobe Control of a Beam Tilting Antenna Array Laid on a Deformable Surface

机译:主叶控制梁倾斜天线阵列放置在可变形表面上

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摘要

The projection method (PM) is a simple and low-cost pattern recovery technique that already proved its effectiveness in retrieving the radiation properties of different types of arrays that change shape in time. However, when dealing with deformable beam-tilting arrays, this method requires to compute new compensating phase shifts every time that the main lobe is steered, since these shifts depend on both the deformation geometry and the steering angle. This tight requirement causes additional signal processing and complicates the prediction of the array behavior, especially if the deformation geometry is not a priori known: this can be an issue since the PM is mainly used for simple and low-cost systems. In this letter, we propose a simplification of this technique for beam-tilting arrays that requires only basic signal processing. In fact the phase shifts that we use are the sum of two components: one can be directly extracted from strain sensor data that measure surface deformation and the other one can be precomputed according to basic antenna theory. The effectiveness of our approach has been tested on two antennas: a 4 × 4 array (trough full-wave simulations and measurements) and on an 8 × 8 array (trough full-wave simulations) placed on a doubly wedge-shaped surface with a beam tilt up to 40 degrees.
机译:投影方法(PM)是一种简单而低成本的模式恢复技术,其已经证明了其在检索改变时间改变形状的不同类型阵列的辐射特性的有效性。然而,在处理可变形的光束倾斜阵列时,该方法每次转向时都需要计算新的补偿相移,因为这些换档取决于变形几何形状和转向角。这种紧张的要求导致额外的信号处理并使阵列行为的预测复杂化,特别是如果变形几何形状不是已知的先验:这可能是一个问题,因为PM主要用于简单和低成本系统。在这封信中,我们提出了简化了仅需要基本信号处理的光束倾斜阵列的这种技术。事实上,我们使用的相移是两个组件的总和:可以从测量表面变形的应变传感器数据直接提取,另一个可以根据基本天线理论预先计算。我们的方法的有效性已经在两个天线上进行了测试:4×4阵列(槽全波模拟和测量),并放置在双楔形表面上的8×8阵列(槽全波模拟)上光束倾斜高达40度。

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