EventsThe 7th International Multidisciplinary Conference on Optofluidics 2017
Published
This submission belongs to the session 14. Optical fibers and fabrics of the event The 7th International Multidisciplinary Conference on Optofluidics 2017
Published date
21 Jul, 2017
Citation
Wei Wei, Lilin Yi, Yves Jaouen, Weisheng Hu, Software-defined microwave photonic filter with high reconfigurable resolution, in Proceedings of The 7th International Multidisciplinary Conference on Optofluidics 2017, Singapore, 25 July–28 July 2017, MDPI: Basel, Switzerland, doi: 10.3390/optofluidics2017-04449
Share
Email
Facebook
Twitter
LinkedIn

Software-defined microwave photonic filter with high reconfigurable resolution

image
Wei Wei 1
1. Shanghai Jiao Tong University
2. Telecom ParisTech
Abstract

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.

Keywords
Microwave photonic filter
stimulated Brillouin scattering
high resolution
SELF-ROLLED UP TUBULAR OPTICAL MICROCAVITIES
Weak coupling fibers for MIMO-free mode division multiplexing systems