Reprint

Optical Signal Processing Technologies for Communication, Computing, and Sensing Applications

Edited by
April 2023
164 pages
  • ISBN978-3-0365-7152-2 (Hardback)
  • ISBN978-3-0365-7153-9 (PDF)

This book is a reprint of the Special Issue Optical Signal Processing Technologies for Communication, Computing, and Sensing Applications that was published in

Chemistry & Materials Science
Engineering
Environmental & Earth Sciences
Summary

Optical technology is one of the key technologies that have been widely used for communication, computing and sensing. By utilizing different degrees of freedom for photon, optical signals can be detected and processed in different dimensions including amplitude, phase, polarization, time, frequency, and spatial mode. Multidimensional signal processing technologies have thus been broadly studied for improving the performance of communication, sensing and even computing systems. Recently, innovative optical signal processing methods and devices have been emerged to serve those needs driven by applications including but not limited to optical fiber transmission, supercontinuum generation, phase conjugation, free space optical communication, optical beamforming, photonic integration, fiber amplification, pose estimation and so on. This Special Issue aims to explore those emerging and enabling technologies of signal processing methods and devices for optical communication, optical computing, and optical sensing. The Special Issue consists of two review papers, one communication and seven articles within the areas of optical fiber transmission, specialty fiber design, 3D pose estimation, free space communication, digital signal processing, as well as photonic integration. Optical signal processing powered next generation communication, computing and sensing can be highly expected.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
point cloud; joint estimation; skeleton extraction; depth sensor; skeleton tracking; computer vision; human representation; convolutional neural network; random tree walk; random forest; geodesic features; global features; deformation model; hand pose tracking; action recognition; Raman amplification; optical fibre communication; dispersion engineering; slot waveguide; inverse design; deep neural network; optical frequency comb; robust adaptive beamforming; orthogonality; blocking matrix; interference-plus-noise covariance matrix reconstruction; Raman amplification; coherent fiber optic communications; optical phase conjugation; coherent optical communication; optical fiber communication; MIMO adaptive equalizer; matched filter; MMSE; spatial division multiplexing (SDM); polarization division multiplexing; fractional-spaced equalizer (FSE); BER; vertical link; pointing errors; FSO; OOK; energy harvesting; atmospheric turbulence; Raman amplification; optical fiber communications; optical phase conjugation; orbital angular momentum; nonlinear optics; supercontinuum; nonlinear distortion; Kramers–Kronig receiver; stimulated Brillouin scattering; n/a