Polarization division multiplexing (PolDM) is a promising way to improve the spectral efficiency of fiber-optic communication systems. However, PolDM systems suffer greatly from polarization mode dispersion (PMD), especially in long-haul systems. PMD is time-varying and is intrinsically hard to compensate. Current PMD compensators are complicated and expensive to build, adding to the cost and complexity of practical PolDM systems. We propose a new differential polarization time coding scheme combined with controlled polarization rotation to increase the system tolerance to PMD. An encoding algorithm, a differential receiver design, and a decoding algorithm are described in detail. Controlled polarization rotation is achievable using convent...
We study the polarization-mode dispersion (PMD) compensation and mitigation performance, using a sin...
Increasing data rates in the fiber optics transmission systems leads to more new limiting factors wh...
Abstract—We present a rigorous investigation on how to opti-mize the degrees of freedom of optical p...
Polarization division multiplexing (PolDM) is a promising way to improve the spectral efficiency of ...
Polarization of light within an optical fiber constantly changes due to environmentally induced bire...
Polarization Mode Dispersion (PMD) is considered a major obstacle for ultrahigh-capacity fiber commu...
©2000 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
©2000 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
Polarization Mode Dispersion (PMD) is considered to be one of the most serious obstacles in the high...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
The objective of this project is to understand the major developments of Polarized light in Fiber Op...
[[abstract]]We demonstrate a polarization-time coding method for direct-detected OFDM, which provide...
Fiber optic communication systems (FOCSs) have attained a lot of attention by revolutionizing the te...
We review the research progress concerning some fundamental issues related to polarization-mode disp...
We study the polarization-mode dispersion (PMD) compensation and mitigation performance, using a sin...
Increasing data rates in the fiber optics transmission systems leads to more new limiting factors wh...
Abstract—We present a rigorous investigation on how to opti-mize the degrees of freedom of optical p...
Polarization division multiplexing (PolDM) is a promising way to improve the spectral efficiency of ...
Polarization of light within an optical fiber constantly changes due to environmentally induced bire...
Polarization Mode Dispersion (PMD) is considered a major obstacle for ultrahigh-capacity fiber commu...
©2000 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
©2000 IEEE. Personal use of this material is permitted. However, permission to reprint/republish thi...
Polarization Mode Dispersion (PMD) is considered to be one of the most serious obstacles in the high...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
In this paper, we investigate for the first time chromatic dispersion and nonlinearity tolerances in...
The objective of this project is to understand the major developments of Polarized light in Fiber Op...
[[abstract]]We demonstrate a polarization-time coding method for direct-detected OFDM, which provide...
Fiber optic communication systems (FOCSs) have attained a lot of attention by revolutionizing the te...
We review the research progress concerning some fundamental issues related to polarization-mode disp...
We study the polarization-mode dispersion (PMD) compensation and mitigation performance, using a sin...
Increasing data rates in the fiber optics transmission systems leads to more new limiting factors wh...
Abstract—We present a rigorous investigation on how to opti-mize the degrees of freedom of optical p...