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Improved method of adjustment of medium-wave directional-antenna systems

机译:调整中波定向天线系统的改进方法

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An improved method is described for adjusting medium-wave directional-antenna systems containing high radiators (of the order of ????????????????). It is pointed out that the determination of radiator driving-point impedances corresponding to the desired radiation pattern requires special consideration; namely, the radiation pattern determines the relationship between radiator currents near the current maximum, and not that between those at the base which is necessary for the calculation of driving-point impedances. It is shown that the two sets of current relationships may differ considerably. Since no reliable data for current distribution along high radiators in an array exist, an experimental method is proposed for obtaining the correlation between the two sets of current relations. Radiator driving-point impedances can then be calculated on the basis of circuit theory, the relationship found between currents at the radiator bases (corresponding to the desired radiation pattern), and the measured values of self and mutual impedances. For practical reasons, the method is limited to a few simple, but important, arrays. In order to avoid the usual lengthy trial-and-error method, the adjustment of the feeder system with dummy loads instead of the radiators is recommended, with the impedances of the dummy loads corresponding to the calculated driving-point impedances of the radiators.
机译:描述了一种用于调整包含高辐射体(数量级为)的中波定向天线系统的改进方法。应当指出,确定与所需辐射图相对应的辐射器驱动点阻抗需要特别考虑;即,辐射方向图决定了在电流最大值附近的辐射器电流之间的关系,而不是计算驱动点阻抗所必需的基极电流之间的关系。结果表明,两组当前关系可能存在很大差异。由于不存在沿阵列中高辐射器的电流分布的可靠数据,因此提出了一种实验方法来获得两组电流关系之间的相关性。然后可以根据电路理论,在散热器基极上的电流(对应于所需的辐射方向图)以及自阻抗和互阻抗的测量值之间找到的关系来计算散热器的驱动点阻抗。出于实际原因,该方法仅限于一些简单但重要的数组。为了避免通常的冗长的反复试验方法,建议使用假负载而不是散热器来调整馈线系统,假负载的阻抗应与计算得出的散热器驱动点阻抗相对应。

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