Department of Information Science & Electronic Engineering, Zhejiang University, Hangzhou 310027, China.
Opt Lett. 2013 Jan 15;38(2):136-8. doi: 10.1364/OL.38.000136.
An approach to realizing microwave spectrum sensing based on photonic time stretch and compressive sampling is proposed. The time stretch system is used to slow down the input high-speed signal and the compressive sampling based on random demodulation can further decrease the sampling rate. A spectrally sparse signal in a wide bandwidth can be captured with a sampling rate far lower than the Nyquist rate thanks to both time stretch and compressive sampling. It is demonstrated that a system with a time stretch factor 5 and a compression factor 8 can be used to capture a signal with multiple tones in a 50 GHz bandwidth, which means a sampling rate 40 times lower than the Nyquist rate. In addition, the time stretch of the microwave signal largely decreases the data rate of random data sequence and therefore the speed of the mixer in the random demodulator.
提出了一种基于光时拉伸和压缩采样的微波频谱感知方法。时拉伸系统用于降低输入高速信号的速率,而基于随机解调的压缩采样可以进一步降低采样率。由于时拉伸和压缩采样,宽带宽中的频谱稀疏信号可以用远低于奈奎斯特率的采样率进行捕获。实验结果表明,一个时拉伸因子为 5,压缩因子为 8 的系统可以用来捕获一个带宽为 50GHz 的多频信号,这意味着采样率比奈奎斯特率低 40 倍。此外,微波信号的时拉伸大大降低了随机数据序列的数据速率,从而降低了随机解调器中混频器的速度。