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Microwave Material Electromagnetic Parameter Testing System Based on the Resonant Cavity Method

机译:基于谐振腔法的微波材料电磁参数检测系统

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This paper presents a testing system for electromagnetic parameters of microwave materials based on resonant cavity. The system uses the split cylindrical resonant cavity. The electric field changes when the cavity is loaded with material, then the frequency shift and the quality factor of the resonator are changed. The system deduces the electromagnetic properties repeatedly and presented visualization by graph and list based on the mathematical relationship between the electromagnetic characteristics of the sample and the microwave parameters. The system designs the derivation algorithm of resonance frequency that is more convenient than in the past and simplifies the realization of the measurement process. The measure of multi-mode iteration also improves the measurement precision of material dielectric constant. Multi-threading and custom messages are designed in software, which realize the parallel execution of instrument control and data analysis, and improves the test efficiency. This paper mainly introduces the measurement principle and the implementation scheme and the problems and solutions encountered in the implementation process.
机译:本文介绍了基于谐振腔的微波材料电磁参数的测试系统。该系统使用分开的圆柱谐振腔。当腔装载材料时,电场改变,然后改变谐振器的频移和质量因子。该系统反复推导电磁特性并根据样品的电磁特性与微波参数之间的数学关系呈现曲线图和列表。该系统设计了比过去更方便的谐振频率的推导算法,并简化了测量过程的实现。多模迭代的测量还提高了材料介电常数的测量精度。多线程和自定义消息设计在软件中,实现了仪器控制和数据分析的并行执行,并提高了测试效率。本文主要介绍了实施过程中遇到的测量原理和实施方案及问题和解决方案。

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