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首页> 外文期刊>Journal of Electrical & Electronic Systems >Electromagnetic Wave Theory for Calculation of Exact Magnetic Field in Case of BWO
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Electromagnetic Wave Theory for Calculation of Exact Magnetic Field in Case of BWO

机译:BWO情况下电磁波理论计算精确磁场

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摘要

Overall efficiency of high power microwave generating device depends upon input current in the form of electron beam and currents required for electromagnets. In order to increase the efficiency of device, if electromagnets are replaced by permanent magnets, overall efficiency of device shall increase. So, calculation of exact magnetic field is required. In this paper, the exact relation of magnetic field required in high power microwave generation using Backward Wave Oscillator (BWO) is found. BWO interacts with slow waves and is the most promising device to produce high power microwaves. The interaction involves the beams from high current density and the waveguide mode. An exact relation that specifically relates the various parameters of the waveguide like slow wave structures (SWS) dimensions, input beam voltage and operational frequency with axial magnetic field is derived. The derived equation gives calculation of exact values of magnetic field for focusing of beams. Theoretical and simulated work show good agreement with the previously available experimental data. So, with the derived electromagnetic wave relation exact value of magnetic field is calculated for desired frequency and power regime.
机译:高功率微波发生装置的整体效率取决于电子束形式的输入电流和电磁体所需的电流。为了提高设备的效率,如果用永磁体代替电磁体,则设备的整体效率应提高。因此,需要计算精确的磁场。在本文中,找到了使用反向波振荡器(BWO)产生大功率微波所需的磁场的精确关系。 BWO与慢波相互作用,是产生高功率微波的最有希望的设备。相互作用涉及来自高电流密度和波导模式的光束。得出了一个精确的关系,它具体地将波导的各种参数(如慢波结构(SWS)尺寸),输入束电压和工作频率与轴向磁场相关联。导出的方程式给出了用于聚焦光束的精确磁场值的计算。理论和模拟工作与先前可用的实验数据显示出良好的一致性。因此,利用导出的电磁波关系,可以为所需的频率和功率范围计算出准确的磁场值。

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