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A Dual Polarization, Active, Microstrip Antenna for an Orbital Imaging Radar System Operating at L-Band

机译:用于在L波段运行的轨道成像雷达系统的双极化有源微带天线

摘要

A highly successful Earth orbiting synthetic antenna aperture radar (SAR) system, known as the SIR-C mission, was carried into orbit in 1994 on a U.S. Shuttle (Space Transportation System) mission. The radar system was mounted in the cargo bay with no need to fold, or in any other way reduce the size of the antennas for launch. Weight and size were not limited for the L-Band, C-Band, and X-Band radar systems of the SIR-C radar imaging mission; the set of antennas weighed 10,500 kg, the L-Band antenna having the major share of the weight. This paper treats designing an L-Band antenna functionally similar to that used for SIR-C, but at a fraction of the cost and at a weight in the order of 250 kg. Further, the antenna must be folded to fit into the small payload shroud of low cost booster rocket systems. Over 31 square meters of antenna area is required. This low weight, foldable, electronic scanning antenna is for the proposed LightSAR radar system which is to be placed in Earth orbit on a small, dedicated space craft at the lowest possible cost for an efficient L- Band radar imaging system. This LightSAR spacecraft radar is to be continuously available for at least five operational years, and have the ability to map or repeat-map any area on earth within a few days of any request. A microstrip patch array, with microstrip transmission lines heavily employed in the aperture and in the corporate feed network, was chosen as the low cost approach for this active dual-polarization, 80 MHz (6.4%) bandwidth antenna design.
机译:1994年,一项非常成功的地球轨道合成天线孔径雷达(SAR)系统被称为SIR-C任务,并通过美国航天飞机(太空运输系统)任务进入了轨道。雷达系统无需折叠即可安装在货舱中,或以其他任何方式减小了发射天线的尺寸。 SIR-C雷达成像任务的L波段,C波段和X波段雷达系统的重量和大小不受限制;这套天线重10,500公斤,其中L波段天线占主要部分。本文认为,设计L波段天线的功能与SIR-C相似,但成本却不高,重量仅为250 kg。此外,天线必须折叠以适合低成本助推火箭系统的小型有效载荷罩。需要超过31平方米的天线面积。这种轻巧,可折叠的电子扫描天线适用于拟议的LightSAR雷达系统,该系统将以最小的成本以最小的成本放置在小型专用太空飞船的地球轨道上,以实现高效的L波段雷达成像系统。这款LightSAR航天器雷达至少要连续运行五年,并且能够在任何要求的几天之内绘制或重复绘制地球上的任何区域。在这种有源双极化,80 MHz(6.4%)带宽的有源天线设计中,选择一种微带贴片阵列作为其低成本方法,该微带贴片阵列在光圈和公司馈电网络中大量采用微带传输线。

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