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Journal ArticleDOI

Photonic signal processing of microwave signals

TLDR
In this paper, several photonic signal processors, including high-resolution microwave filters, widely tunable filters, arbitrary waveform generators, and fast signal correlators, are discussed, and a new concept for realizing multiple-tap coherence-free processor filters, based on a new frequencyshifting technique, is presented.
Abstract
Photonic signal processing offers the prospect of realizing extremely high multigigahertz sampling frequencies, overcoming inherent electronic limitations. This stems from the intrinsic excellent delay properties of optical delay lines. These processors provide new capabilities for realizing high time-bandwidth operation and high-resolution performance. In-fiber signal processors are inherently compatible with fiber-optic microwave systems and can provide connectivity with built-in signal conditioning. Fundamental principles of photonic signal processing, including sampling, tuning, and noise, are discussed. Structures that can extend the performance of photonic signal processors are presented, including methods for improving the filter shape characteristics of interference mitigation filters, techniques to increase the stopband attenuation of bandpass filters, and methods to achieve large free spectral range. Several photonic signal processors, including high-resolution microwave filters, widely tunable filters, arbitrary waveform generators, and fast signal correlators, are discussed. Techniques to solve the fundamental noise problem in photonic signal processors are described, and coherence-free structures for few-tap notch filters are discussed. Finally, a new concept for realizing multiple-tap coherence-free processor filters, based on a new frequency-shifting technique, is presented. The structure not only eliminates the phase-induced intensity noise limitation, but can also generate a large number of taps to enable the achievement of processors with high performance and high resolution.

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Citations
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Journal ArticleDOI

Microwave photonics combines two worlds

TL;DR: Microwave photonics has attracted great interest from both the research community and the commercial sector over the past 30 years and is set to have a bright future as mentioned in this paper, which makes it possible to have functions in microwave systems that are complex or even not directly possible in the radiofrequency domain and also creates new opportunities for telecommunication networks.
Journal Article

Microwave Photonics

TL;DR: In this paper, techniques developed in the last few years in microwave photonics are reviewed with an emphasis on the systems architectures for photonic generation and processing of microwave signals, photonic true-time delay beamforming, radio-over-fiber systems, and photonic analog-to-digital conversion.
Journal ArticleDOI

A tutorial on microwave photonic filters

TL;DR: This paper provides a tutorial introduction of this subject to the reader not working directly in the field but interested in getting an overall introduction of the subject and also to the researcher wishing to get a comprehensive background before working on the subject.
Proceedings Article

Microwave photonics

TL;DR: In this paper, microwave photonics techniques developed in the past few years will be reviewed, with an emphasis on system architectures for microwave applications.
Journal ArticleDOI

Integrated microwave photonics

TL;DR: This article reviews the recent advances in this emerging field which is dubbed as integrated microwave photonics and key integrated MWP technologies are reviewed and the prospective of the field is discussed.
References
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Random variables and stochastic processes

TL;DR: An electromagnetic pulse counter having successively operable, contact-operating armatures that are movable to a rest position, an intermediate position and an active position between the main pole and the secondary pole of a magnetic circuit.
Journal ArticleDOI

Discrete-time optical Processing of microwave signals

TL;DR: In this paper, the fundamental principles and recent advances in the field of photonic filtering of microwave signals using discrete-time incoherent processing are presented and a comprehensive review of the fundamentals, applications, and current state of the art is provided.
Journal ArticleDOI

On the synthesis of fiber Bragg gratings by layer peeling

TL;DR: It is found that the discrete layer-peeling algorithm is significantly faster and can be more stable than its continuous counterpart, whereas the continuous algorithm offers some advantages in flexibility.
Journal ArticleDOI

Adaptive RF-photonic arbitrary waveform generator

TL;DR: In this article, the authors used spectral shaping of a supercontinuum source followed by wavelength-to-time mapping to generate ultra wideband RF waveforms with arbitrary modulation and employed adaptive computer control to mitigate the non-ideal features inherent in the optical source and in the spectrum modulation process.
Journal ArticleDOI

Photonic time-stretched analog-to-digital converter: fundamental concepts and practical considerations

TL;DR: A comprehensive analysis of the recently proposed time-stretched A/D converter offers revolutionary enhancements in the performance of electronic converters by reducing the signal bandwidth prior to digitization.
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