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Multi-frequency Dual-polarization Spaceborne Microwave Radiometer Antennas

机译:多频双极化星载微波辐射计天线

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As part of the overall Haiyang2C (HY2C) ocean dynamic satellite research, atmospheric correction microwave radiometer(ACMR) used to correct atmospheric path delay in the radar altimeter has recently been developed. Observing antenna of ACMR with three frequency bands and dual polarizations is realized by an offset deployable dish fed by a common corrugated horn. The deployable reflector is made of carbon fiber composite (CFRP) supported by a frame that connect to the satellite deck, and the deployment of the dish is implemented by two hinges. The feeding subsystem has a loaded rings corrugated horn, an ultra wideband orthomode transducer(OMT) that covers almost 2:1 bandwidth ratio followed by bandpass filters. Measured results show that the VSWRs are lower than 1.5 throughout all three working bands, the cross-polarization levels (CPs) are below -20 dB, and the main beam efficiency(MBE) is above 90%.
机译:作为整个Haiyang2C(HY2C)海洋动力卫星研究的一部分,最近开发了用于校正雷达高度计中的大气路径延迟的大气校正微波辐射计(ACMR)。具有三个频带和双极化的ACMR观测天线是由一个普通的波纹状喇叭形天线提供的可偏置的可部署碟形天线实现的。可展开反射镜由碳纤维复合材料(CFRP)制成,并由连接至卫星甲板的框架支撑,而碟形天线的展开则通过两个铰链实现。馈电子系统具有一个带负载的环形波纹状号角,一个超宽带正模换能器(OMT),其覆盖率几乎为2:1,其后是带通滤波器。测量结果表明,在所有三个工作频带中,驻波比均低于1.5,交叉极化电平(CP)低于-20 dB,主波束效率(MBE)高于90%。

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