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Software-defined microwave photonic filter with high reconfigurable resolution

机译:具有高分辨率的软件定义的微波光子滤波器

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摘要

Microwave photonic filters (MPFs) are of great interest in radio frequency systems since they provide prominent flexibility on microwave signal processing. Although filter reconfigurability and tunability have been demonstrated repeatedly, it is still difficult to control the filter shape with very high precision. Thus the MPF application is basically limited to signal selection. Here we present a polarization-insensitive single-passband arbitrary-shaped MPF with ~GHz bandwidth based on stimulated Brillouin scattering (SBS) in optical fibre. For the first time the filter shape, bandwidth and central frequency can all be precisely defined by software with ~MHz resolution. The unprecedented multi-dimensional filter flexibility offers new possibilities to process microwave signals directly in optical domain with high precision thus enhancing the MPF functionality. Nanosecond pulse shaping by implementing precisely defined filters is demonstrated to prove the filter superiority and practicability.
机译:微波光子滤波器(MPF)在射频系统中倍受关注,因为它们为微波信号处理提供了显着的灵活性。尽管已经反复证明了滤波器的可重构性和可调性,但仍然很难以很高的精度控制滤波器的形状。因此,MPF应用基本上仅限于信号选择。在这里,我们基于光纤中的受激布里渊散射(SBS),提出了具有〜GHz带宽的偏振不敏感的单通带任意形状MPF。滤波器的形状,带宽和中心频率首次都可以通过分辨率为〜MHz的软件精确定义。前所未有的多维滤波器灵活性为在光学领域直接高精度处理微波信号提供了新的可能性,从而增强了MPF功能。通过实现精确定义的滤波器,纳秒脉冲整形被证明可以证明滤波器的优越性和实用性。

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