首页> 外文会议>AIAA aerospace sciences meeting >The Design, Fabrication, and Evaluation of Millimeter Wave Lenses for Beamed Energy Applications
【24h】

The Design, Fabrication, and Evaluation of Millimeter Wave Lenses for Beamed Energy Applications

机译:毫米波透镜的设计,制造和评估,用于光束能量应用

获取原文

摘要

Beamed energy methods have the potential to open doors to improved space-based energy transfer systems. The sheer diversity and quantity of both proven and theoretical beamed energy applications provide ample reason to research methods by which they can be improved. Sufficient transmission efficiency can lead to the creation of links along which collected or generated energy can be transmitted to benefit the receiving system. While ground-based facilities will likely possess sufficient acreage to create a system using hundreds of large parabolic reflectors, satellites do not possess such a luxury. This study seeks to show another way in which the propagation of electromagnetic energy in the millimeter wave range can be improved. Three metal lenses were designed using the optical properties of electromagnetic waves, fabricated with aluminum sheet metal, and tested inside an anechoic chamber to quantify their effects upon a propagating beam of microwave energy. Radial data sweeps taken at different distances show a consistent improvement in energy beam propagation in the boresight direction. Up to 70% higher normalized power values were achieved at increasing distances from the source accompanying an expected decrease in beamwidth thereby showing the lenses' successful focusing of electromagnetic energy in free space. These results have the potential to aid in the creation of an improved beamed energy system concept, particularly when the transmitting constituent is not ground-based.
机译:光束能量方法有可能开门以改善基于空间的能量转移系统。经过验证和理论梁能源应用的纯粹多样性和数量提供了充分的理由来研究它们可以改善它们的方法。足够的传输效率可以导致创建链路,可以传输收集或产生的能量以使接收系统受益。虽然基于地面设施可能拥有足够的面积来创建使用数百个大抛物面的系统,但卫星不具备这种奢侈品。该研究寻求示出另一种方式,其中可以提高毫米波范围中的电磁能量在毫米波范围内的传播。使用用铝板金属制造的电磁波的光学性质设计了三个金属透镜,并在透明室内测试,以量化它们对微波能量的传播束的影响。在不同距离处拍摄的径向数据扫描显示了在触摸方向上的能量光束传播的一致性改进。在伴随波束宽度的预期降低的距离增加距离时,实现了高达70%的归一功率值,从而显示镜片在自由空间中的电磁能成功聚焦。这些结果具有有助于创建改进的光束能量系统概念,特别是当发送成分不是基于地面时的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号