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PIIN Cancellation Using a Novel Receiving Architecture for Spectral/Spatial SAC-OCDMA System

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AbstractIncreasing the number of users presents a limitation in one-dimensional (1D) spectral amplitude coding (SAC) for Optical Code Division Multiple Access (OCDMA) system. In order to overcome this disadvantage, a new architecture of the two-dimensional wavelength/spatial SAC-OCDMA system using the multi-diagonal (MD) code has been proposed. The 2D-MD code possesses the same properties of 1D-MD code, which leads to total suppression of the multiple access interference. Unlike conventional receivers used in precedent studies, where the phase-induced intensity noise (PIIN) is a drawback, the suggested structure not only eliminates PIIN but reduces the system architecture. The results show that the user’s number reached by the proposed system is the user number’s multiplication of the 1D system and the couplers’ number. Moreover, the new 2D-MD system presents good performances at the high data rate.
Title: PIIN Cancellation Using a Novel Receiving Architecture for Spectral/Spatial SAC-OCDMA System
Description:
AbstractIncreasing the number of users presents a limitation in one-dimensional (1D) spectral amplitude coding (SAC) for Optical Code Division Multiple Access (OCDMA) system.
In order to overcome this disadvantage, a new architecture of the two-dimensional wavelength/spatial SAC-OCDMA system using the multi-diagonal (MD) code has been proposed.
The 2D-MD code possesses the same properties of 1D-MD code, which leads to total suppression of the multiple access interference.
Unlike conventional receivers used in precedent studies, where the phase-induced intensity noise (PIIN) is a drawback, the suggested structure not only eliminates PIIN but reduces the system architecture.
The results show that the user’s number reached by the proposed system is the user number’s multiplication of the 1D system and the couplers’ number.
Moreover, the new 2D-MD system presents good performances at the high data rate.

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