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The coaxial beam-rotating antenna (COBRA): theory of operation and measured performance

机译:同轴波束旋转天线(COBRA):工作原理和测量性能

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Many microwave generators, especially high-power sources, utilize an azimuthally symmetric output mode such as the TM/sub 01/ circular waveguide or the coaxial TEM mode. If such a mode is projected into an antenna aperture and radiated directly, then a doughnut-shaped radiation pattern with a boresight null will result. Antenna designs to directly accommodate an azimuthally symmetric output mode and the high electric fields of high-power sources have been considered, but they tend to be low gain, do not radiate a boresight peak along the axis of the source, and the pattern peak direction changes with frequency. Mode conversion techniques to alter the aperture field distribution have also been explored, but losses and weight, size and cost additions impact negatively on total system design. This paper describes a novel antenna we call the coaxial beam-rotating antenna (COBRA) that mitigates many of the problems normally associated with the azimuthally symmetric output modes of high-power microwave sources. The COBRA accepts directly an azimuthally symmetric guided mode of a microwave source and radiates a high-gain pattern with a boresight peak. In addition, the COBRA operates with a wide bandwidth, is compatible with the intense electric fields associated with high-power microwave sources, and the geometry of the antenna can be easily configured to produce an arbitrarily (elliptically) polarized boresight field. This paper presents the fundamental theory of operation, derives pertinent design and performance equations, and gives the measured operating characteristics of a COBRA prototype.
机译:许多微波发生器,尤其是高功率源,都使用方位角对称的输出模式,例如TM / sub 01 /圆形波导或同轴TEM模式。如果将这种模式投射到天线孔径中并直接辐射,则将导致带有视轴无效点的环形辐射图。已经考虑了天线设计以直接适应方位角对称的输出模式,并且已经考虑了大功率光源的高电场,但是它们倾向于低增益,不会沿着光源的轴辐射视轴峰值,并且方向图峰值方向随频率变化。还研究了用于改变孔径场分布的模式转换技术,但是损耗,重量,尺寸和成本增加对整个系统设计产生负面影响。本文介绍了一种新颖的天线,我们称之为同轴波束旋转天线(COBRA),它可以缓解通常与大功率微波源的方位对称输出模式相关的许多问题。 COBRA直接接受微波源的方位角对称引导模式,并辐射具有视轴峰值的高增益模式。此外,COBRA具有宽带宽,可与高功率微波源相关的强电场兼容,并且天线的几何形状可轻松配置为产生任意(椭圆)极化视轴场。本文介绍了操作的基本理论,推导了相关的设计和性能方程式,并给出了COBRA原型的实测操作特性。

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