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Volume 35 Issue 2
May  2013
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Citation:

Study on the multi-signal processing performance of optical coherent detection systems

  • Received Date: 2010-04-29
    Accepted Date: 2010-07-19
  • In order to solve multi-signal processing simultaneously in an optical coherent receiver system,a frequency measurement system that employs acousto-optic deflection technology and fiber-based coherent optical detection was designed based on acousto-optic deflection principle and characteristics of multiple signals co-existing and transmitting in the complex and dense electromagnetic environment.The acousto-optic interaction and beam deflection of different frequency signals were analyzed in theory.Through numerical simulation of multi-frequency intermodulation,the solution of reducing intermodulation of multiple signals was obtained.An experimental platform for handling multiple signals was constructed with space light injecting into fiber. Experimental result shows that real-time signal capture capability of the system is very strong and carrier frequency measurement of multi-signal can be realized in the system bandwidth.The test data displays that the frequency resolution is less than 0.1 MHz and the interception rate is up to 100%.
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    JIANG H Y,HE N,GAO X Ch.Research on the phenomenon of the third order intermodulation during multi-frequency acousto-opfic diffraction[J].Optical Communication Technology,2009,33 (5):54-56(in Chinese).
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通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

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Study on the multi-signal processing performance of optical coherent detection systems

  • 1. School of Information and Communication, Guilin University of Electronic Technology, Guilin 541004, China

Abstract: In order to solve multi-signal processing simultaneously in an optical coherent receiver system,a frequency measurement system that employs acousto-optic deflection technology and fiber-based coherent optical detection was designed based on acousto-optic deflection principle and characteristics of multiple signals co-existing and transmitting in the complex and dense electromagnetic environment.The acousto-optic interaction and beam deflection of different frequency signals were analyzed in theory.Through numerical simulation of multi-frequency intermodulation,the solution of reducing intermodulation of multiple signals was obtained.An experimental platform for handling multiple signals was constructed with space light injecting into fiber. Experimental result shows that real-time signal capture capability of the system is very strong and carrier frequency measurement of multi-signal can be realized in the system bandwidth.The test data displays that the frequency resolution is less than 0.1 MHz and the interception rate is up to 100%.

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