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Modeling of Signal Distortion Caused by Passive Intermodulation and Cross Modulation in Coaxial Connectors

机译:同轴连接器中钝化互调和交叉调制引起的信号畸变建模

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Coaxial connectors play an important role in communication systems. However, passive intermodulation (PIM) and cross modulation resulting from slight nonlinear characteristics in coaxial connectors may negatively impact signal transmission quality. In addition, degradation of coaxial connectors tends to exacerbate such effects. In this work, the nonlinear characteristics of pristine coaxial connectors are analyzed and modeled. From these results, a new polynomial behavior model is developed to describe the nonlinear characteristics for connectors with various levels of degradation for the first time. A series of two-tone PIM tests on pristine connectors and degraded connectors is conducted with the input power from 35 to 44 dBm. The test results validate the model for pristine connectors and the model for connectors with various levels of degradation. The error vector magnitude (EVM) is selected as the index to quantify the level of signal distortion. The power of PIM and cross modulation interference and the impacts of PIM and cross modulation on EVM are theoretically calculated and simulated. This work serves to provide a behavior model that describes the nonlinear characteristics of pristine and degraded connectors, and a theoretical basis for evaluating the impacts of PIM and cross modulation on signal distortion.
机译:同轴连接器在通信系统中发挥着重要作用。然而,由同轴连接器中的轻微非线性特性产生的被动互调(PIM)和交叉调制可以产生负面影响信号传输质量。另外,同轴连接器的劣化趋于加剧这种效果。在这项工作中,分析了原始同轴连接器的非线性特性和建模。从这些结果开始,开发了一种新的多项式行为模型来描述第一次具有各种级别水平的连接器的非线性特性。原始连接器上的一系列双音PIM试验和降级连接器采用35至44 dBm的输入功率进行。测试结果验证了原始连接器的模型和具有各种劣化水平的连接器模型。选择误差矢量幅度(EVM)作为量化信号失真级别的索引。理论上和模拟PIM和交叉调制干扰的力量和PIM对EVM上的交叉调制的影响。这项工作有助于提供一种行为模型,该行为模型描述了原始和降级的连接器的非线性特性,以及评估PIM的影响和交叉调制对信号失真的影响的理论依据。

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