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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Adaptive Control of Undetected Radio Frequency Interference With a Spaceborne Microwave Radiometer
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Adaptive Control of Undetected Radio Frequency Interference With a Spaceborne Microwave Radiometer

机译:星载微波辐射计对未检测到的射频干扰的自适应控制

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摘要

In microwave radiometric remote sensing, undetected radio frequency interference (RFI) can adversely affect the accuracy of the science products. A method is presented to adaptively tune the parameters of an RFI detection algorithm which controls the equivalent brightness temperature of undetected RFI. The method is adaptive in the sense that it adjusts to variations in the RFI environment, e.g., from high RFI conditions near some population centers to low RFI conditions in the tropical Pacific Ocean. The RFI environment is characterized by inferring the distribution of low-level undetected RFI from that of high-level detected RFI using appropriate scaling arguments. The resulting tuned algorithm adjusts its detection threshold to equalize the brightness temperature calibration bias due to RFI at the expense of the now variable measurement precision (noise equivalent delta temperature). This tradeoff between calibration bias and measurement precision can be represented as a modified version of the classic receiver-operating-characteristic curve. The radiometer on the Aquarius/SAC-D mission is used as an example.
机译:在微波辐射遥感中,未检测到的射频干扰(RFI)可能会对科学产品的准确性产生不利影响。提出了一种自适应调整RFI检测算法参数的方法,该算法控制未检测到的RFI的等效亮度温度。从适应于RFI环境变化的角度来说,该方法是自适应的,例如,从某些人口中心附近的高RFI条件到热带太平洋中的低RFI条件。 RFI环境的特征在于,使用适当的缩放参数,可以从高级检测到的RFI推断出低电平未检测到的RFI的分布。调整后的结果算法会调整其检测阈值,以均衡由于RFI引起的亮度温度校准偏差,但要以现在可变的测量精度(噪声等效增量温度)为代价。校准偏差和测量精度之间的折衷可以表示为经典接收器工作特性曲线的修改版本。以水瓶座/ SAC-D任务中的辐射计为例。

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