Optical communication system, optical communication method and non-transitory computer readable medium
An optical communication system capable of solving frequent pilot pattern/training symbol requirement which leads to a reduced information throughput is provided. An optical communication system includes a pilot insertion means that inserts pilot signal according to an adaptive pilot overhead ratio, a system estimate means that estimates the characteristics of the equalized signal to access channel conditions, and a trigger pilot means that selects the appropriate pilot overhead ratio for the accessed channel conditions by various system mean.
1 . An optical communication system for transmitting an optical signal from a transmitter via an optical channel to a receiver; the system comprising:
at least one memory storing instructions, and
at least one processor configured to execute the instructions to;
insert training or pilot signals at a desired pilot overhead ratio in an online operation state;
estimate and characterize the signal recovered from the optical channel utilizing adaptive filter parameters and estimated noise characteristics in the signal;
utilize information obtained from the estimated signal to determine channel conditions and fix the required pilot overhead ratio; and
estimate a channel noise and rate of dynamic change by utilizing the received signal and its adaptive equalization parameters learnt from equalizing the received signal.
2 . The optical communication system according to claim 1 , wherein:
the optical communication system is a multi-mode optical communication system configured to implement adaptive pilot overhead ratio functionality.
3 . The optical communication system according to claim 2 wherein:
the system estimation and the adaptive pilot overhead ratio functionality of the at least one processor is implemented in the form of a of lookup table and the values of the lookup table is updated as the optical communication system is online based on the received signal characteristics.
4 . The optical communication system according to claim 1 , further including
sub unit configured to either store or generate training or pilot signal which can be reproduced accurately at the receiver, and
the at least one processor is configured to produce a version of the transmitted pilot for the system operating pilot overhead ratio.
5 . The optical communication system according to claim 1 , wherein: the at least one processor is configured to utilize an unsupervised or supervised learning algorithm to estimate the channel condition in optimizing the pilot overhead ratio.
6 . The optical communication system according to claim 1 wherein:
an adaptive pilot overhead optimization is implemented for a multi channel optical fiber with multiple pilot signals and variable pilot overhead ratio possible for each channel.
7 . The optical communication system according to claim 1 wherein:
multiple pilot signals are utilized for transmission and the at least one processor is configured to maintain properties such zero correlation for all possible pilot overhead ratios.
8 . The optical communication system according to claim 1 , wherein:
the at least one processor is configured to aid the filter coefficient learning algorithm implemented in the adaptive equalization especially in the operating condition with no pilot signal.
9 . The optical communication system according to claim 1 , wherein:
the at least one processor implemented at the receiver side of the optical communication system is configured to communicate reliably with the at least one processor implemented at the transmitter side of the optical communication system.
10 . An optical communication method for transmitting an optical signal from a transmitter via an optical channel to a receiver; the method comprising:
inserting training or pilot signals at a desired pilot overhead ratio in an online operation state;
estimating and characterizing the signal recovered from the optical channel utilizing adaptive filter parameters and estimated noise characteristics in the signal;
utilizing information obtained from the estimated signal to determine channel conditions and fix the required pilot overhead ratio; and
estimate a channel noise and rate of dynamic change by utilizing the received signal and its adaptive equalization parameters learnt from equalizing the received signal.
11 . A non-transitory computer readable medium storing a program that causes a computer to execute an optical communication method for transmitting an optical signal from a transmitter via an optical channel to a receiver; the method comprising:
inserting training or pilot signals at a desired pilot overhead ratio in an online operation state;
estimating and characterizing the signal recovered from the optical channel utilizing adaptive filter parameters and estimated noise characteristics in the signal;
utilizing information obtained from the estimated signal to determine channel conditions and fix the required pilot overhead ratio; and
estimate a channel noise and rate of dynamic change by utilizing the received signal and its adaptive equalization parameters learnt from equalizing the received signal.