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Asynchronous detection of optical code division multiple access signals using a bandwidth-efficient and wavelength-aware receiver

机译:使用带宽有效且波长敏感的接收器异步检测光码分多址信号

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摘要

We experimentally demonstrate what we believe to be a novel detection scheme for interfacing asynchronous optical code division multiple access (CDMA) signals with an electronic clock and data recovery system that operates only at the baseband bandwidth. This allows using a large optical bandwidth expansion factor in which the optical chip rate is much larger than the bandwidth of the optoelectronic receiver. The received optical CDMA signal is launched into a four-wave-mixing-based wavelength-aware all-optical front end that rejects multiaccess interference, followed by an amplitude-noise suppression stage comprised of a semiconductor optical amplifier. The clean signal is then converted into a non-return-to-zero-like signal by a baseband receiver. Using the proposed detection scheme, asynchronous transmission and detection of optical CDMA signals is implemented. With the novel detection scheme, the classic CDMA near–far problem is mitigated, and error-free detection is easily obtained.
机译:我们通过实验证明了我们认为是一种新颖的检测方案,用于将异步光码分多址(CDMA)信号与仅在基带带宽上运行的电子时钟和数据恢复系统接口。这允许使用较大的光学带宽扩展因子,其中光学芯片速率远大于光电接收器的带宽。接收到的光CDMA信号被发射到一个基于四波混频的可感知波长的全光前端,该前端拒绝多路访问干扰,随后是一个由半导体光放大器组成的幅度噪声抑制级。然后,干净的信号由基带接收器转换为非归零信号。使用提出的检测方案,实现了光CDMA信号的异步传输和检测。利用新颖的检测方案,可以缓解经典的CDMA远近问题,并轻松获得无差错检测。

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  • 来源
    《Optics Letters》 |2010年第7期|p.1097-1099|共3页
  • 作者单位

    1Lightwave Communications Laboratory, Department of Electrical Engineering, Princeton University, Princeton, New Jersey 08544, USA;

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  • 正文语种 eng
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