首页> 外文期刊>Antennas and Propagation Magazine, IEEE >Transparent and Nontransparent Microstrip Antennas on a CubeSat: Novel low-profile antennas for CubeSats improve mission reliability.
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Transparent and Nontransparent Microstrip Antennas on a CubeSat: Novel low-profile antennas for CubeSats improve mission reliability.

机译:CubeSat上的透明和非透明微带天线:用于CubeSat的新型薄型天线提高了任务的可靠性。

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This article reviews the development of some novel low-profile antennas for CubeSats. The integrated antennas were developed using microstrip-antenna technology, and the antennas were designed to be low profile while having minimal (or zero) blockage of the solar panels on the CubeSat. Two types of designs were investigated: 1) transparent antennas, which are placed above the solar panels (supersolar) and 2) nontransparent antennas, which are placed below the solar panels (subsolar). For past: using transparent metal and using a wire mesh design. The transparent metal indium tin oxide has a comparatively high sheet impedance, which makes an antenna design less efficient. Also, there is a tradeoff between conductivity and transparency [6]. However, a highly conductive thin mesh structure has demonstrated a reasonable efficiency and a high transparency [7]. The substrate must then also be transparent, e.g., glass or quartz.
机译:本文回顾了一些适用于CubeSat的新型低调天线的开发。集成天线是使用微带天线技术开发的,天线设计为低矮,同时对CubeSat上的太阳能电池板的阻塞最小(或为零)。研究了两种类型的设计:1)透明天线,放置在太阳能电池板上方(超太阳能); 2)非透明天线,放置在太阳能电池板下方(亚太阳能)。过去:使用透明金属并使用丝网设计。透明金属铟锡氧化物具有较高的薄层阻抗,这使得天线设计的效率降低。同样,在电导率和透明度之间要权衡[6]。然而,高导电性的薄网状结构已显示出合理的效率和高透明性[7]。然后,衬底也必须是透明的,例如玻璃或石英。

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