arrow
Return

Multi-rate OCDMA system BER performance evaluations for different ML-code sequences

delete2019-05-30
delete14
PRE
AI
M
M. A. Morsy *
A
Abdulaziz Alsayyari
DOI:10.1007/s11082-019-1910-0delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper analyzes Bit Error Rate (BER) of Optical Code Division Multiple Access (OCDMA) networks for different class of services which are data, voice, and video; whereas Multi-Length Weighted Modified Prime Code (ML-WMPC) sequences are utilized as a spreading code in with respect to previously used ML-Optical Orthogonal codes. Due to variations in bit rates between the mentioned services, each of them assigns a different WMPC sequence length. In addition, the shot noise, thermal noise, and the Multiple Access Interference (MAI) are included and considered as sources of noise in the BER performance analysis. Furthermore, Pulse Position Modulation, Manchester encoding and MAI cancellation (MAIC) technique are utilized to improve the network performance at a higher number of active users. For analysis, the BER performance calculations are investigated for three types of OCDMA receivers such as simple receiver, receiver with MAIC technique, and receiver with MAIC and Manchester encoding. Moreover, the BER mathematical models have been introduced for different bit rates according to the type of service in the presence of the ML-WMPC and the last of three mentioned OCDMA receivers. Finally, these models and their results are compared with the other existing models, where the results show an improvement in BER performance in the proposed approach.
Keywords:
Optical code division multiple access (OCDMA)
Weighted modified prime code (WMPC)
Multi-length WMPC (ML-WMPC)
Multiple access interference (MAI)
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Optical and Quantum Electronics cover
Optical and Quantum Electronics
IF:
4
Papers:
9.9K
Citations:
1.8W

Organization

S
Shaqra University
Scholars:
1.5K
Papers: 1.6K
Citations: 1.7K