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Real-Time RFI Detection and Mitigation System for Microwave Radiometers

机译:微波辐射计的实时RFI检测和缓解系统

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Microwave radiometers are very sensitive passive sensors that measure the power of the thermal noise within a determined bandwidth. Therefore, any other signal present in the band modifies the value of the measured power, and the corresponding estimated antenna temperature, from which the geophysical parameters are retrieved. Due to the high sensitivity and accuracy required for these instruments, radio frequency interference (RFI) is becoming more and more a serious problem. On one hand, ground-based or global RFI surveys are helping to understand the occurrence and types of RFI sources. If RFI does not necessarily affect the whole bandwidth, or it is not present during the whole integration time, the application of either frequency blanking, time blanking or signal spectrogram techniques can be applied. However, it would be desirable to apply techniques to estimate the RFI signal so that it can be subtracted from the received signal itself so that some useful measurements are still possible. Such a real-time system is currently being developed for RFI detection and mitigation. This work focuses however in the description and performance of a wavelet-based RFI-mitigation technique implemented in a FPGA hardware back-end. The interfering signal is estimated by using the powerful denoising capabilities of the wavelet transform, and it is then subtracted from the total received signal to obtain a RFI-mitigated noise signal.
机译:微波辐射计是非常敏感的无源传感器,可以在确定的带宽内测量热噪声的功率。因此,该频带中存在的任何其他信号都会修改测得的功率值和相应的估计天线温度,从中检索地球物理参数。由于这些仪器需要很高的灵敏度和准确性,因此射频干扰(RFI)变得越来越严重。一方面,基于地面或全球的RFI调查有助于了解RFI来源的发生和类型。如果RFI不一定影响整个带宽,或者在整个积分时间内都不存在,则可以应用频率消隐,时间消隐或信号频谱图技术。但是,希望应用一些技术来估计RFI信号,以便可以从接收信号本身中减去RFI信号,从而仍然可以进行一些有用的测量。当前正在开发这样的实时系统以用于RFI检测和缓解。但是,这项工作的重点是在FPGA硬件后端中实现的基于小波的RFI缓解技术的描述和性能。通过使用小波变换强大的降噪功能来估算干扰信号,然后从总接收信号中减去干扰信号,从而获得RFI缓解的噪声信号。

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