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Novel AESA Architecture for Earth Observation and Planetary Sciences

机译:地球观测和行星科学的新型AESA建筑

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In this paper we present a description and evaluation of Gallium Nitride (GaN) Transceivers within AESA frontends for space-based Synthetic-aperture radar (SAR). The GaN power switches are evaluated in a voltage mode Class-D (VMCD) RF amplifier and as a DC-DC converter. The efficiency of the circuit when evaluated as a Class D power amplifier (PA) is 73% at 250 MHz and delivers an output power of 37.3 dBm. The measured DC-DC converter circuit has an efficiency of over 89.7% at 100 MHz, delivering 38.6 dBm. These are the highest reported efficiencies for the RF PA and the switching modulator performance is comparable to state of the art at its respective operating frequencies. A flat panel metasurface antenna topology that can be integrated into the RF front end to facilitate a variety of SAR modalities. This antenna structure can substantially simplify the deployment mechanism of airborne and spaceborne SAR instruments.
机译:在本文中,我们介绍了AESA前端内的氮化镓(GaN)收发器的描述和评估,用于空间基合成孔径雷达(SAR)。 在电压模式-D(VMCD)RF放大器和DC-DC转换器中评估GaN电源开关。 当作为D类功率放大器(PA)评估时,电路的效率在250 MHz时为73%,并提供37.3 dBm的输出功率。 测量的DC-DC转换器电路的效率在100MHz时具有超过89.7%,提供38.6 dBm。 这些是RF PA的最高效率,并且切换调制器性能与其各自的操作频率的最新状态相当。 平板元缝表面天线拓扑,可以集成到RF前端,以便于各种SAR模式。 该天线结构可以基本上简化了空机和星载SAR仪器的展开机理。

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