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A Software-Defined Radio Based Adaptive HRPT/APT Signal Receiver

机译:基于软件无线电的自适应HRPT / APT信号接收器

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The paper discusses the design, implementation, and test of a software-defined radio (SDR) based receiver to acquire HRPT (high resolution picture transmission) and APT (automatic picture transmission) signals of NOAA weather satellites simultaneously, recognizes modulation types, and demodulates the signals. The captured HRPT RF signal is down-converted to the 137.5 MHz band in the RF (radio frequency) front-end and then combined with the APT RF signal. The combined signals are then down-converted and digitized at the programmable receiver platform. The digitized data are spectrally analyzed with short-time FFT (fast Fourier transform) to obtain an instantaneous spectrum for adjustment of the adaptive digital band-pass filter. The modulation recognition block identifies split-phase PSK (phase shift keying) for HRPT and FM (frequency modulation) for APT. The HRPT signal is then demodulated with a Costas loop because the two side bands have more power than the carrier. The APT signal is demodulated in an FM demodulator with Zoom-FFT and automatic gain control (AGC) to maintain the brightness of the whole weather map according to the brightness of the synchronization mark. The system functions are developed and realized in an SDR software platform. The resulting SDR-based receiver is then used to receive and process real signals.
机译:本文讨论了基于软件定义无线电(SDR)的接收机的设计,实现和测试,以同时获取NOAA天气卫星的HRPT(高分辨率图片传输)和APT(自动图片传输)信号,识别调制类型并进行解调信号。捕获的HRPT RF信号在RF(射频)前端下变频为137.5 MHz频段,然后与APT RF信号合并。然后,组合的信号在可编程接收器平台上被下变频并数字化。使用短时FFT(快速傅立叶变换)对数字化数据进行频谱分析,以获得用于调整自适应数字带通滤波器的瞬时频谱。调制识别块识别用于HRPT的分裂相PSK(相移键控)和用于APT的FM(频率调制)。然后,HRPT信号将通过Costas环路进行解调,因为两个边带的功率要大于载波。 APT信号在具有Zoom-FFT和自动增益控制(AGC)的FM解调器中进行解调,以根据同步标记的亮度保持整个天气图的亮度。系统功能是在SDR软件平台中开发和实现的。然后将所得的基于SDR的接收器用于接收和处理真实信号。

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