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Directivity computation of radio base station antennas via cylindrical NF-FF transformation

机译:通过圆柱形NF-FF变换计算无线电基站天线的方向性

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As well known, the directivity value associated to a radiating system denotes its capacity to concentrate the electromagnetic radiation in a desired direction. The computation of the total radiated power, which is obtained by integrating the radiation intensity on the far field (FF) spherical surface, represents the crucial point in the directivity evaluation. The full numerical integration can be used to this end only in numerical simulations, and becomes very time consuming when the computation of the radiation intensity is onerous, as in the case of electrically large antennas. An efficient Sampling Interpolation (SI) formula for determining the total radiated power from the knowledge of a nonredundant number of the radiation intensity samples has been proposed in [1]. It is in closed form, does not depend on the type of antenna under test (AUT) and allows one to efficiently estimate the directivity from simulated or measured samples with a very significant reduction of the number of data with respect to [2].
机译:众所周知,与辐射系统相关的方向性值表示其将电磁辐射集中在所需方向上的能力。通过对远场(FF)球形表面上的辐射强度进行积分获得的总辐射功率的计算代表了方向性评估中的关键点。为此,仅可以在数值模拟中使用完整的数值积分,并且在繁重的辐射强度计算时(如在使用大型天线时)会变得非常耗时。在[1]中提出了一种有效的采样插值(SI)公式,该公式可根据非冗余数量的辐射强度样本的知识来确定总辐射功率。它是封闭形式,不依赖于被测天线(AUT)的类型,并且允许人们从模拟或测量的样本中有效地估计方向性,而与[2]相比,数据量大大减少。

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