Prediction of radiation-induced frequency locking and shifting in a microwave oscillator

N. Kuo, Han-Chang Hsieh, Jay-San Chen, Cheng-Nan Chiu, Ming-Shing Lin, C. Chen
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Abstract

In this paper, an effective and efficient approach is proposed to evaluate the frequency shifting and locking degradation in a microwave oscillator, illuminated by an incident plane wave. The analysis is performed by using equation-based equivalent sources embedded in the circuit schematic and incorporating the harmonic balance (HB) simulator. Most importantly, an auxiliary source is added in the simulation under the non-perturbation condition to search for the non-trivial solutions. A 795-MHz oscillator is created and simulated by this approach. The circuit performance measured inside an anechoic chamber is compared to the simulation with good agreement.
微波振荡器中辐射诱发频率锁定和移频的预测
本文提出了一种评估平面波照射下微波振荡器频移和锁定退化的有效方法。在电路原理图中嵌入基于方程的等效源,并结合谐波平衡(HB)模拟器进行分析。最重要的是,在非摄动条件下,在模拟中加入辅助源来搜索非平凡解。用这种方法创建了一个795 mhz的振荡器并进行了仿真。将消声室内实测电路性能与仿真结果进行了比较,结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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