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Design and compatibility analysis of a solar panel integrated UHF antenna for nanosatellite space mission

机译:用于纳米卫星太空飞行的太阳能电池板集成UHF天线的设计和兼容性分析

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摘要

A compact UHF antenna has been presented in this paper for nanosatellite space mission. A square ground plane with slotted rectangular radiating element have been used. Coaxial probe feeding is used to excite. The rectangular slot of the radiating patch is responsible for resonating at lower UHF bands. One of the square faces of the nanosatellite structure works as the ground plane for the slotted radiating element. The fabricated prototype of the proposed antenna has achieved an impedance bandwidth (S11< -10dB) of 7.0 MHz (398 MHz– 405 MHz) with small size of 97 mm× 90 mm radiating element. The overall ground plane size is 100 mm × 100 mm × 0.5 mm. The proposed antenna has achieved a gain of 1.18 dB with total efficiency of 62.5%. The proposed antenna addresses two design challenges of nanosatellite antenna, (a) assurance of the placement of solar panel beneath the radiating element; (b) providing about 50% open space for solar irradiance to pass onto the solar panel, enabling the solar panel to achieve up to 93.95% of power under of normal conditions.
机译:本文提出了一种紧凑的UHF天线,用于纳米卫星太空任务。已使用带有开槽矩形辐射元件的方形接地平面。同轴探针馈送用于激发。辐射贴片的矩形缝隙负责在较低的UHF频段产生谐振。纳米卫星结构的方形表面之一用作缝隙辐射元件的接地平面。拟议中的天线的原型已经实现了7.0 MHz(398 MHz– 405 MHz)的阻抗带宽(S11 <-10dB),具有97 mm x 90 mm辐射元件的小尺寸。总体接地平面尺寸为100 mm×100 mm×0.5 mm。拟议的天线实现了1.18 dB的增益,总效率为62.5%。拟议中的天线解决了纳米卫星天线的两个设计挑战:(a)确保将太阳能电池板放置在辐射元件下方; (b)提供约50%的开放空间,使太阳辐射能通过太阳能电池板,从而使太阳能电池板在正常条件下可达到93.95%的功率。

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