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引用次数: 2

摘要

当多个系统在一个平台(如装甲航母、航空母舰或飞机)上近距离操作时,就会出现这种情况。在其中一些系统中,如雷达,辐射射频功率很高,并且由于与其他系统的距离很近,高场强可能通过天线到天线耦合、天线到箱耦合和天线到线耦合与它们耦合。对于电磁干扰预测,有必要对大型天线近场范围内的耦合场进行评估,而天线近场预测是必需的。在孔径附近发射的电磁场是无功的,它们的自由空间阻抗不同于120/spl pi/, E和H场的相位关系没有很好地定义,就像在远场区域一样。对天线近场区域的电磁场进行了分析,得到了一种封闭形式的预测解,使其结果适合于计算机编码进行自动预测分析。为进行这种分析,提出了两种方法。第一种是基于球面波展开的远场到近场变换。另一种方法精度较低,但对大型天线近场的计算比较简单。该方法基于一个概念阵列,其天线参数如增益、波束宽度和旁瓣与所考虑的天线相似。
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Antenna near field intensity prediction
Situations arise where several systems operate in close proximity on a given platform like an armoured carrier, aircraft carrier, or an aircraft. In some of these systems, like radar, the radiated RF powers are high and due to close proximity with other systems, high field intensities are likely to get coupled to them through antenna to antenna coupling, antenna to box coupling, and antenna to wire coupling. For EMI prediction it is necessary to have an assessment of the coupled fields within the near field ranges of large antennas for which antenna near field prediction is required. The emitted EM fields in close proximity to the aperture are reactive, their free space impedance different than 120/spl pi/ and the E and H field phase relationship not well defined as it is in case of the far field regions. An analysis is carried out to bring about a closed form solution for the prediction of the EM fields in the near field regions of the antennas such that the results are amenable to computer coding for automated prediction analysis. For this analysis two procedures are presented. The first one is based on the far field to near field transformation using spherical wave expansion. The other is for less accuracy, yet is simpler for the computation of the near fields of a large antenna. This method is based on a notional array with antenna parameters like gain beam widths and sidelobes similar to the antenna under consideration.
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