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FFT Bit Templating - A Technique for Making Amplitude and Frequency Measurements of a BPSK Modulated Signal

机译:FFT位模板 - 一种用于制作BPSK调制信号的幅度和频率测量的技术

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In many spacecraft receiver applications, the Fast Fourier Transform (FFT) provides a powerful tool for measuring the amplitude and frequency of an unmodulated RF signal. By increasing the FFT acquisition time, tiny signals can be coaxed from the noise and their frequency measured by determining which frequency bin the signal energy appears. The greater the acquisition time, the narrower the bin bandwidth and the more accurate the frequency measurement. In modern satellite operations it is often desirable for the receiver to measure the frequency of a carrier which is modulated with BPSK data. The presence of the BPSK data limits the FFT acquisition time since the signal may switch polarities a number of times while the FFT samples are being acquired. This polarity switching spreads the signal energy into multiple frequency bins making frequency measurement difficult or impossible. The Bit Templating Technique, used for the first time in the CMC Electronics Cincinnati TDRSS/BPSK Spacecraft Receiver, collects the modulated waveform energy back into a signal bin so that accurate amplitude and frequency information can be calculated.
机译:在许多航天器接收器应用中,快速傅里叶变换(FFT)提供了一种用于测量未调制的RF信号的幅度和频率的强大工具。通过增加FFT采集时间,可以通过确定信号能量出现的频率箱来凸起的微小信号和它们的频率扑充。获取时间越大,越窄的箱带宽和更准确的频率测量。在现代卫星操作中,接收器通常希望测量用BPSK数据调制的载波的频率。 BPSK数据的存在限制了FFT采集时间,因为信号可以在获取FFT样本的同时将极性切换极性。这种极性切换将信号能量扩展到多个频率箱中,使频率测量困难或不可能。在CMC电子辛辛那提TDRS / BPSK航天器接收器中首次使用的位模板技术将调制波形能量收集回信号箱中,从而可以计算精确的幅度和频率信息。

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