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Optical balance detection method and system capable of eliminating inter-signal beat frequency interference of pdm SSB-OOFDM signals

A PDMSSB-OOFDM, beat frequency interference technology, applied in the field of optical communication, can solve the problems of complex receiving end, system complexity, high cost of polarization stabilizer, and achieve the effect of simple receiver and improved spectral efficiency

Inactive Publication Date: 2021-01-12
BEIJING UNIV OF POSTS & TELECOMM
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AI Technical Summary

Problems solved by technology

In order to ensure the elimination of the influence of SSBI, the bandwidth of GB must not be less than the bandwidth of the optical OFDM signal, which makes the spectral efficiency of the DD-OFDM system drop by more than half of that of the CO-OFDM system
Reducing GB in SSB-OOFDM can improve the SE of the system, but with the reduction of GB, the impact of SSBI on system performance will be intensified
Although some solutions to reduce the impact of SSBI on system performance have also been proposed, there are still deficiencies in system complexity and power cost
The spectral efficiency of the polarization multiplexing technology SSB-OOFDM system is improved, but the influence of SSBI still exists. At the same time, the polarization mode dispersion of the fiber link will cause the polarization directions of the two SSB-OOFDM signals that are polarization multiplexed together to randomly rotate, and then Difficulties in polarization demultiplexing of two SSB-OOFDM signals at the receiving end
Many methods to reduce the influence of SSBI on system performance have been reported in the literature, but none of them can solve the influence of polarization mode dispersion. Even if these methods eliminate SSBI, but because of the coupling between polarization modes
The traditional method to solve the polarization direction rotation caused by polarization mode dispersion is to use a polarization stabilizer (polarization stabilizer), by extracting the polarization rotation information, and then correcting the polarization direction rotation, but the cost of the polarizer is quite high, and the receiving end becomes more complex. complex
In addition, the mechanical processing of the output signal through the multi-input multi-output (Multi Input Multi Output) technology at the receiving end can also separate the two mixed signals, but it requires a rather complicated digital signal processing process, which limits the realization of the system. difficulty

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  • Optical balance detection method and system capable of eliminating inter-signal beat frequency interference of pdm SSB-OOFDM signals
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  • Optical balance detection method and system capable of eliminating inter-signal beat frequency interference of pdm SSB-OOFDM signals

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Embodiment Construction

[0025] In order to make the purpose, technical solution and advantages of the present invention more clear, the implementation of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0026] figure 1 It is a block diagram and frequency spectrum diagram of the receiving system in this embodiment.

[0027] The present invention adopts a new receiving method for PDM SSB-OOFDM signals based on optical balance detection, which eliminates the influence of SSBI on signal demodulation, improves the spectrum utilization efficiency of the system, and avoids the transmission of PDM SSB-OOFDM signals in optical fibers The effect of time polarization mode dispersion. To achieve the above effect, the following steps need to be taken:

[0028] First, the PDM SSB-OOFDM signal is generated at the transmitter, the specific process is as follows figure 2 shown. In order to improve the spectral efficiency, the spectrum of the OOFDM signal in t...

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Abstract

The invention provides an optical balance detection method and system capable of eliminating beat frequency interference between signals of PDM SSB-OOFDM signals, wherein two SSB-OOFDM signals in thePDM SSB-OOFDM signals are orthogonal in polarization, the frequency spectrums of the two paths of OOFDM signals are overlapped, and the optical carriers in the X and Y polarization directions are located on the two sides of the OOFDM signals; the receiving end quarters the optical signal by using a power divider; and then optical carriers in different polarization directions are filtered by four optical band-pass filters, the filtered optical carriers are injected into two optical balance detectors for photoelectric conversion, differential output currents of the two optical balance detectorsonly contain transmitted OFDM radio frequency signal components and direct current components, and SSBI is eliminated. By adopting the method and the system provided by the invention, SSBI-free receiving can be realized, the bandwidth does not need to be protected theoretically, and the spectrum utilization efficiency of the PDM SSB-OOFDM system is further improved. Meanwhile, a polarization beamsplitter is not used for polarization demultiplexing, so that the polarization mode dispersion problem and complex MIMO processing are avoided.

Description

technical field [0001] The invention relates to the field of optical communication, in particular to the problem of eliminating signal-to-signal beat frequency interference (SSBI) in the detection process of PDM SSB-OOFDM signals with smaller wavelength guard intervals and the problem of improving spectral efficiency in the PDM SSB-OOFDM system. Background technique [0002] At present, the Optical Orthogonal Frequency Division Multiplexing O-OFDM technology based on high-order QAM modulation has attracted widespread attention because of its high spectrum efficiency and high tolerance to fiber dispersion. Although the coherent optical OFDM (CO-OFDM) system can achieve 14bit / s / Hz spectral efficiency (Spectral Efficiency SE), the CO-OFDM system is sensitive to frequency offset and phase noise, and requires the laser linewidth of the transmitting end and receiving end Extremely narrow, which makes the design of the CO-OFDM sending and receiving system very complicated. [0003...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04L27/26
CPCH04B10/2569
Inventor 马健新胡志奇
Owner BEIJING UNIV OF POSTS & TELECOMM
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