AbstractBecause the nonlinearity of contact junctions in a wire mesh is the main source of passive intermodulat'/> Passive intermodulation analysis of single contact junctions of wire mesh
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Passive intermodulation analysis of single contact junctions of wire mesh

机译:丝网单接触点的无源互调分析

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AbstractBecause the nonlinearity of contact junctions in a wire mesh is the main source of passive intermodulation (PIM) generation, this work aims to analyze the PIM problem of single contact junctions. This work first derives the formulas of micro-contact effects, which reveals the mathematical relationship between the contact force and the micro-contact effects for a single contact junction of a wire mesh. Then, an equivalent circuit model describing contact nonlinearity is constructed to evaluate the nonlinear current through a single contact junction. Finally, an experimental platform is built to test the current through a single contact junction of two metal wires. The PIM power levels of a single contact junction are determined by the finite difference time domain method. The comparison of PIM power levels between the theoretical and experimental results is illustrated to verify the validity of the proposed method. The research results indicate PIM is influenced greatly by the contact forces of junctions. The appropriate contact forces on junctions of wire mesh are beneficial to reduce PIM distortion.
机译: Abstract 因为金属丝网中接触点的非线性是被动的主要来源互调(PIM)生成,这项工作旨在分析单触点结的PIM问题。这项工作首先推导了微接触效应的公式,该公式揭示了丝网的单接触结的接触力和微接触效应之间的数学关系。然后,构建描述接触非线性的等效电路模型,以评估通过单个接触结的非线性电流。最后,建立了一个实验平台来测试通过两条金属线的单个接触点的电流。单个接触结的PIM功率水平通过时域有限差分法确定。通过对理论和实验结果之间的PIM功率电平进行比较,以验证该方法的有效性。研究结果表明,PIM受结点接触力的影响很大。丝网交界处适当的接触力有利于减小PIM畸变。

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