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NOISE ANALYSIS IN NUMERICAL MODELING OF CROSSED FIELDS MICROWAVE TUBES

机译:交叉场微波管数值模拟中的噪声分析

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摘要

One of the most important parameters that characterize microwave tubes with crossed fields, both amplifiers, and generating tubes like magnetrons is the noise level. This type of tubes are characterized by relatively high noise levels, which is the main factor limiting their current use in radar transmitters. The main source of noise in microwave tubes of this type is the dispersion of the energy of electrons that are in phase with the spatial wave of the electromagnetic field propagating in the delay line (in case of a CFA) or in the resonant structure (in case of a magnetron).The results of the research presented in the article concern the technique of determination of Signal to Noise Ratio (SNR) based on the analysis of results obtained during the numerical simulations of the effect of electric charge on a high frequency electromagnetic field. Signal to noise ratio was determined by analysing in-phase and quadrature data recorded in the high frequency simulation. In order to assess the accuracy of the method under investigation, the results from the noise analysis obtained from numerical calculations were compared with the results obtained from real tube measurements performed by a spectrum analyser. On the basis of the research, it appears that performing analysis of noise generated in the interaction area may be useful for preliminary evaluation of the tube at the design stage.
机译:噪声水平是表征具有交叉场的微波管,两个放大器以及诸如磁控管之类的产生管的最重要参数之一。这类电子管的特点是噪声水平较高,这是限制其在雷达发射机中使用的主要因素。这种类型的微波管中的主要噪声源是与在延迟线(对于CFA)或谐振结构(在CFA中)传播的电磁场的空间波同相的电子能量的分散。本文介绍的研究结果涉及对电荷对高频电磁波影响的数值模拟过程中获得的结果的分析基础上的确定信噪比(SNR)的技术领域。通过分析在高频仿真中记录的同相和正交数据来确定信噪比。为了评估所研究方法的准确性,将通过数值计算获得的噪声分析结果与通过频谱分析仪执行的实际试管测量结果进行比较。在研究的基础上,似乎对相互作用区域中产生的噪声进行分析可能有助于在设计阶段对管进行初步评估。

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