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首页> 外文期刊>IEICE Transactions on Electronics >Radiation Pattern Synthesis of a Lens Horn Antenna
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Radiation Pattern Synthesis of a Lens Horn Antenna

机译:透镜喇叭天线的辐射方向图合成

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In order to achieve a transponder antenna for intersection collision avoidance systems in Intelligent Transport Systems, a lens horn antenna that generates a cosecant squared beam is developed. This paper clarifies the method for designing the antenna to achieve accurate radiation pattern synthesis. A H-plane sectral horn is selected. The ray tracing method is employed in the design of the lens shape. The aperture of the horn is determined to be seven wavelengths based on a comparison of calculated radiation patterns and the desired cosecant squared beam shape. Accurate electrical performance, such as radiation patterns and electrical fields in the horn, is calculated using Finite Difference Time Domain software. Electrical field disturbances caused by reflected waves at the lens surfaces expanded widely inside the small horn. As a result, sidelobe levels of the radiation patterns are increased. In order to eliminate these disturbances, matching layers are attached to the shaped lens surface. Then, electrical field distributions in the horn are recovered and disturbances disappear. Measured radiation patterns become almost the same as that designed using the ray tracing method. The results show that application of the ray tracing method to radiation pattern synthesis of a small lens horn antenna is effective. We clarify the electrical field disturbances caused by reflections at the lens surfaces and show that eliminating the reflection at the lens surface by attaching matching layers is very important to achieving radiation pattern synthesis.
机译:为了在智能运输系统中实现用于交叉避免碰撞系统的应答器天线,开发了产生正割方波的透镜喇叭天线。本文阐明了设计天线以实现精确辐射方向图合成的方法。选择了H平面次喇叭。在镜片形状的设计中采用射线追踪法。基于计算出的辐射图与所需的余割平方光束形状的比较,确定喇叭的孔径为七个波长。使用有限时域软件可以计算出准确的电气性能,例如喇叭的辐射图和电场。镜头表面的反射波引起的电场干扰在小号角内部广泛扩展。结果,辐射图的旁瓣电平增加。为了消除这些干扰,将匹配层附接到成形的透镜表面。然后,喇叭中的电场分布得以恢复,干扰消失。测得的辐射方向图几乎与使用射线追踪法设计的方向图相同。结果表明,将射线追踪方法应用于小透镜喇叭天线辐射方向图合成是有效的。我们弄清了由透镜表面反射引起的电场干扰,并表明通过附着匹配层消除透镜表面反射对于实现辐射图合成非常重要。

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