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A novel simulation method of passive intermodulation in electrically large-size reflector antennas

机译:电大尺寸反射器天线中无源互调的新型仿真方法

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As a well-known and wide-range electromagnetic compatibility problem, passive intermodulation (PIM) caused by nonlinearities remains a considerable potential risk for high-power transceiver communication systems. A three-dimensional field-circuit mixed simulation method for the prediction of PIM in electrically large-size deployable reflector antennas is presented in this work. Based on the accurate electromagnetic field calculation and an equivalent nonlinear circuit analysis, a novel simulation method for PIM analysis is proposed, which shows universality in PIM analysis of passive microwave devices. This method solves the calculation challenge caused by the dimension discrepancy between the electrical contact of nanometers and the reflector of tens of centimeters through establishing the field-to-circuit equivalent model. PIM arisen from nonlinear electrical contacts bas been modeled by an equivalent behavior model and the inaccuracy caused by the background noise and calculation error is avoided. Simulation results demonstrate that low-order PIM of a deployable reflector antenna of 15 meters is calculated successfully and match with experimental results.
机译:作为众所周知的和宽范围的电磁兼容性问题,由非线性引起的被动互调(PIM)仍然是高功率收发器通信系统的相当大的潜在风险。在这项工作中提出了一种用于预测PIM的三维场电路混合模拟方法,在这项工作中介绍了电气大尺寸可展开的反射天线。基于精确的电磁场计算和等效的非线性电路分析,提出了一种新的PIM分析模拟方法,显示了被动微波器件PIM分析的普遍性。该方法通过建立现场到电路等效模型来解决纳米电接触与数十厘米的反射器之间的尺寸差异引起的计算挑战。 PIM从非线性电气触点出现BAS被等效行为模型建模,并且避免了由背景噪声和计算误差引起的不准确性。仿真结果表明,成功计算了15米的可展开反射器天线的低位PIM,并与实验结果相匹配。

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