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Photonic compressive sensing of GHz-band RF signals

机译:GHz波段RF信号的光子压缩感测

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摘要

Compressive sensing is receiving attention for resource-limited remote-sensing platforms as an alternative to direct digitization of GHz-band RF signals. Microwave photonics can efficiently implement the random measurement matrices used in conventional compressive sensing schemes. Here we recover chirped long-pulse signals using a photonic multi-coset sampling system and orthogonal matching pursuit. Results are presented for superposed 20 MHz/30 μs pulses at a carrier frequency of 2.453 GHz.
机译:压缩感测正受到资源有限的遥感平台的关注,作为对GHz波段RF信号进行直接数字化的替代方法。微波光子学可以有效地实现常规压缩感测方案中使用的随机测量矩阵。在这里,我们使用光子多陪集采样系统和正交匹配追踪来恢复chi长脉冲信号。给出了在2.453 GHz载波频率下叠加的20 MHz / 30μs脉冲的结果。

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