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oeo

  • 网络光电振荡器
oeooeo
  1. OEO has many attractive proper-ties of ultra low phase noise , high spectral purity , high frequency , high stability . It can be widely used in microwave systems and fiber communication systems .

    光电振荡器具有超低相噪、频谱纯、工作频率高和稳定度高的特点,可广泛应用于微波系统和光纤通信系统。

  2. At first , the operation principle of OEO is analyzed and several modifications of the classical theoretical model are proposed .

    首先研究了OEO的工作原理,提出了OEO经典理论模型的一些修正。

  3. The proposed approach combines the function of low phase noise microwave generation and vector signal modulation , develops the application of OEO .

    该方案结合了低噪声信号的产生和矢量信号的调制,拓展了OEO的应用。

  4. In the experiment , we found the locking range of OEO was greatly affected by the bias voltage of modulator in the loop .

    实验中发现OEO中凋制器的偏置电压对OEO的注入锁定范围有很大影响。

  5. Therefore , another wideband frequency-tunable OEO based on a narrowband phase-shifted FBG and wavelength tuning of laser is proposed .

    在此基础上,提出另一种基于窄带相移光纤光栅滤波和调节激光波长的方案。

  6. Based on a dispersion-induced microwave photonic filter ( MPF ), a GHz tunable range and voltage-controlled OEO is achieved .

    通过构建一个色散引起的复合腔微波光子滤波器,基于它来实现一种电压控制的、调谐范围达到数GHz的OEO。

  7. A 4 × 10Gb / s OTDM communication experiment system using the optronic oscillator ( OEO ) as the frame clock extractor is reported .

    本文报道了一个以光电振荡器(OEO)为帧时钟提取装置的4×10Gb/s光时分复用通信实验系统。

  8. In this part the design of high speed card for OEO ( Optical-Electronic-Optical ) interface is completed , and particular project of it is show by schematic and layout pictures .

    通过附录中的原理图、器件布局等给出了高速光电接口板的详细设计方案,完成高速光电接口电路板设计制作。

  9. According to the error compensation solution designed measurement compensation experiment , compensation measurement error is about μ m level , the results are reasonable , verify the accuracy and feasibility of the OEO measurement methods . 5 .

    根据方案设计了测量误差补偿实验,补偿测量误差在微米级,取得了理想的补偿效果,验证了该试验方法的准确性和可行性。

  10. Based on the study on frequency-tunable mechanism of OEO , several novel wideband frequency-tunable OEOs are proposed and the flexible tuning mechanisms of the OEO are improved .

    在研究OEO频率调谐机理的基础上,提出了多种OEO宽带调谐的系统结构方案,丰富和完善了OEO灵活调谐的物理机制。

  11. A 4 × 10Gbit / s OTDM communication experimental system using the stabilized actively mode-locked fiber laser as the emission source , the OEO as the frame clock extractor and EA modulator as the demultiplexer is reported .

    本文报导一个以稳定的光纤主动锁模激光器为发射源,以光电振荡器为帧时钟提取装置,以EA调制器为解复用器的4×10Gbit/s光时分复用通信实验系统。

  12. Opto-electronic oscillator ( OEO ) is a hybrid optical electrical device featured with a loop structure and high speed performance . As a kind of oscillator , the oscillation of OEO can be injection locked by an external reference frequency .

    本文所研究的光电振荡器(OEO)是一种高速光电混合环路,其振荡频率可以被锁定于外界信号的数据率。