Microwave Photonics Advancements in Radar Application

Author:

Mittal Sanchita, ,R Vallikannu,

Abstract

Microwave photonics (MWP) Technology brings Microwave and optical domains together. Due to its extraordinary capabilities and solution especially towards generation, transmission and processing of Microwave signals, the MWP field has potential to break barrier, which was not possible with RF technology alone. MWP technologies provide new opportunities in many areas like 5G networks, Advanced Radar and Internet of things. As demand for multi-functionality and reduced size is growing in every field, Radar is no exception. Radar systems capabilities in terms of functionality, precision, response time have significantly improved in past decades. MWP technologies are one of the key factors in that. With Modern photonics technologies Radar performance in terms of Speed, resolution, coverage, precise target identification has improved drastically. To understand the photonics technologies in detail, this paper is designed, which highlights the important features of Microwave photonics techniques applied in Radar and its subsystems

Publisher

Blue Eyes Intelligence Engineering and Sciences Engineering and Sciences Publication - BEIESP

Subject

Management of Technology and Innovation,General Engineering

Reference23 articles.

1. Lam Anh Bui. "A Review of Photonic Generation of Arbitrary Microwave Waveforms". Progress In Electromagnetics Research B, Vol. 75, 1-12, 2017.

2. Y.Li, A.M. Weiner. "Recent Advances in Programmable Photonic-Assisted Ultrabroadband Radio-Frequency Arbitrary Waveform Generation". Unpublished.

3. Jianping Yao. "Arbitrary waveform generation". Nature Photonics, Vol.4, Feb 2010.

4. Mengxi Tan, Xingyuan Xu, Andreas Boes, Bill Corcoran, Jiayang Wu, Thach G. Nguyen, Sai T. Chu, Brent E. Little, Roberto Morandotti, Arnan Mitchell, David J. Moss. "Radio frequency and microwave arbitrary waveform generator based on photonics with a 49 GHz micro-comb source". Unpublished.

5. Patrick T. Callahan, Michael L. Dennis, Thomas R. Clark Jr. "Photonic Analog-to-Digital Conversion". Johns Hopkins APL Technical Digest, Vol. 30, 2012.

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