OPTICAL TRANSMISSION DEVICE AND OPTICAL TRANSMISSION METHOD
The signal quality of ultra high-speed signals such as 40 Gbit/s and 100 Gbit/s are significantly degraded due to wavelength dispersion and nonlinear effects in an optical fiber. Thus, there is provided a transponder unit in which a light source is polarization multiplexed in a direction mutually orthogonal to a signal direction, in order to reduce the nonlinear effects in the optical fiber and improve the signal quality. At the same time, it is possible to monitor an amount of the wavelength dispersion in the optical fiber, allowing for more precise dispersion compensation design.
1 . An optical transmission device for transmitting an optical signal, comprising:
an optical transmitter for emitting the optical signal;
a light source for emitting a light; and
a polarization combiner for multiplexing the optical signal and the light in a mutually orthogonal polarization direction.
2 . The optical transmission device according to claim 1 , further comprising a polarization separator, and an optical receiver for receiving the optical signal.
3 . The optical transmission device according to claim 1 ,
wherein the optical signal and the light have the same wavelength band.
4 . The optical transmission device according to claim 2 ,
wherein the optical signal and the light have the same wavelength band.
5 . The optical transmission device according to claim 1 ,
wherein the light source superimposes a signal for monitoring wavelength dispersion due to a transmission fiber, on the light.
6 . The optical transmission device according to claim 2 ,
wherein the light source superimposes a signal for monitoring wavelength dispersion due to a transmission fiber, on the light.
7 . The optical transmission device according to claim 3 ,
wherein the light source superimposes a signal for monitoring wavelength dispersion due to a transmission fiber, on the light.
8 . The optical transmission device according to claim 4 ,
wherein the light source superimposes a signal for monitoring wavelength dispersion due to a transmission fiber, on the light.
9 . The optical transmission device according to claim 5 ,
wherein the optical receiver further includes a variable dispersion compensator, and an analyzer for receiving the signal for monitoring wavelength dispersion.
10 . The optical transmission device according to claim 6 ,
wherein the optical receiver further includes a variable dispersion compensator, and an analyzer for receiving the signal for monitoring wavelength dispersion.
11 . The optical transmission device according to claim 7 ,
wherein the optical receiver further includes a variable dispersion compensator, and an analyzer for receiving the signal for monitoring wavelength dispersion.
12 . The optical transmission device according to claim 8 ,
wherein the optical receiver further includes a variable dispersion compensator, and an analyzer for receiving the signal for monitoring wavelength dispersion.
13 . The optical transmission device according to claim 9 ,
wherein the optical receiver controls a dispersion compensation amount of the variable dispersion compensator, based on control of the analyzer with respect to the polarization multiplexed optical signal.
14 . The optical transmission device according to claim 10 ,
wherein the optical receiver controls a dispersion compensation amount of the variable dispersion compensator, based on control of the analyzer with respect to the polarization multiplexed optical signal.
15 . The optical transmission device according to claim 11 ,
wherein the optical receiver controls a dispersion compensation amount of the variable dispersion compensator, based on control of the analyzer with respect to the polarization multiplexed optical signal.
16 . The optical transmission device according to claim 12 ,
wherein the optical receiver controls a dispersion compensation amount of the variable dispersion compensator, based on control of the analyzer with respect to the polarization multiplexed optical signal.
17 . An optical transmission method comprising the steps of:
transmitting an optical signal;
emitting a light; and
multiplexing the optical signal and the light in a mutually orthogonal polarization direction.