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Concept design of a multi-band shared aperture reflectarray/reflector antenna

机译:多频带共享孔径反射阵列/反射天线的概念设计

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A scalable dual-band (Ka/W) shared-aperture antenna system design has been developed as a proposed solution to meet the needs of the planned NASA Earth Science Aerosol, Clouds, and Ecosystem (ACE) mission. The design is comprised of a compact Cassegrain reflector/reflectarray with a fixed pointing W-band feed and a cross track scanned Ka-band Active Electronically Scanned Array (AESA). Critical Sub-scale prototype testing and flight tests have validated some of the key aspects of this innovative antenna design, including the low loss reflector/reflectarray surface. More recently the science community has expressed interest in a mission that offers the ability to measure precipitation in addition to clouds and aerosols. In this paper we present summaries of multiple designs that explore options for realizing a tri-frequency (Ku/Ka/W), shared-aperture antenna system to meet these science objectives. Design considerations include meeting performance requirements while emphasizing payload size, weight, prime power, and cost. The extensive trades and lessons learned from our previous dual-band ACE system development were utilized as the foundation for this work.
机译:已开发出可扩展的双频(Ka / W)共享孔径天线系统设计,作为拟议的解决方案来满足计划中的NASA地球科学气溶胶,云和生态系统(ACE)任务的需求。该设计由紧凑的Cassegrain反射器/反射阵列组成,具有固定的指向性W波段馈源和交叉轨迹扫描的Ka波段有源电子扫描阵列(AESA)。关键的子规模原型测试和飞行测试已经验证了这种创新天线设计的一些关键方面,包括低损耗反射器/反射阵列表面。最近,科学界对一项任务表示出了兴趣,该任务除了提供云和气溶胶外,还提供了测量降水的功能。在本文中,我们介绍了多种设计的摘要,探讨了实现三频(Ku / Ka / W),共享孔径天线系统以满足这些科学目标的选项。设计注意事项包括满足性能要求,同时强调有效负载大小,重量,主要功率和成本。从我们先前的双频ACE系统开发中吸取的广泛经验和教训被用作这项工作的基础。

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