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Isophoric Sparse Arrays Ensuring Global Coverage in Satellite Communications

机译:等距稀疏阵列确保卫星通信的全球覆盖

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Non-periodic, sparse Direct Radiating Arrays employing equi-amplitude (isophoric) radiators represent an appealing solution to meet the requirements of next satellite services. In this work we address the synthesis of isophoric sparse arrays capable of radiating highly steerable pencil beams, in order to meet the requirement of full Earth coverage from GEO orbits. To this aim, we first of all perform an analytical study that allows assessing the geometrical constraints that the desired beam steerability puts on the design of the array layout. Starting from such results, in the second part of the work we address the actual synthesis of the sparse array. The proposed strategy consists in the synthesis of the optimal radiating feed followed by the synthesis of the array layout capable of taking into account the aforementioned geometrical constraints as well as the feeds' pattern, in such a way to guarantee satisfaction of the side lobe level constraint for every steered beam. Numerical examples demonstrate the effectiveness of the proposed synthesis strategy.
机译:采用等幅(不连续)辐射器的非周期性,稀疏直接辐射阵列代表了一种有吸引力的解决方案,可以满足下一代卫星服务的需求。在这项工作中,我们解决了能够辐射高度可控笔形射束的同构稀疏阵列的合成问题,以满足GEO轨道对整个地球的需求。为此,我们首先进行分析研究,以评估所需束可控性对阵列布局设计所施加的几何约束。从这样的结果开始,在工作的第二部分中,我们将讨论稀疏数组的实际综合。所提出的策略包括合成最佳辐射馈源,然后合成能够考虑上述几何约束以及馈源模式的阵列布局,以确保满足旁瓣电平约束对于每个转向梁。数值例子证明了所提出的综合策略的有效性。

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