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辐射场中金属接触非线性源的无源互调仿真方法

曹智 赵小龙 周昊楠 张可越 陈雄 贺永宁

空间电子技术2023,Vol.20Issue(6):30-35,6.
空间电子技术2023,Vol.20Issue(6):30-35,6.DOI:10.3969/j.issn.1674-7135.2023.06.005

辐射场中金属接触非线性源的无源互调仿真方法

A simulation method of passive intermodulation for metallic contact in radiation field

曹智 1赵小龙 1周昊楠 1张可越 1陈雄 2贺永宁1

作者信息

  • 1. 西安交通大学 电子与信息工程学部,西安 710049
  • 2. 南方科技大学 电子与电气工程系,深圳 518055||香港中文大学 电子工程学系,香港 999077
  • 折叠

摘要

Abstract

The paper proposes and verifies a simulation method that can predict the passive intermodulation(PIM)product for metallic contact received by an antenna.The metallic contact interface in the radiation field is set as a discrete port of a nonlinear current source,and the PIM response accepted by the receiving port of the antenna can be obtained by CST field simulation with the nonlinear current source as the excitation source.A small amount of PIM test results can be applied to simulate and extract the nonlinear parameters of the device under test(DUT),which enables us to simulate and predict the PIM level of DUT at any position in the radiation field.Firstly,we employ a slotted coaxial antenna to measure the third-order PIM(PIM3)amplitude for the DUT of aluminum metallic contact at a specific position in the radiation field.Then,based on the field simulation the third-order nonlinear coefficient of DUT can be extracted.Finally,by adopting the determined nonlinear current sources,we can simulate and predict the PIM3 levels at different positions in the radiation field.The simulation evaluation and experimental results are consistent.This research provides a reliable and convenient approach to evaluating the PIM response of metallic contact and extracting the DUT's nonlinear parameter in complex radiation field scenarios.

关键词

无源互调/金属接触/辐射场/非线性电流源/非线性参数

Key words

passive intermodulation/metallic contact/radiation field/nonlinear current source/nonlinear coefficient

引用本文复制引用

曹智,赵小龙,周昊楠,张可越,陈雄,贺永宁..辐射场中金属接触非线性源的无源互调仿真方法[J].空间电子技术,2023,20(6):30-35,6.

基金项目

国家自然科学基金项目(编号:62271240) (编号:62271240)

国家重点实验室基金项目(编号:6142411122115) (编号:6142411122115)

空间电子技术

1674-7135

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