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Non-linear integral control of photon power transients in optical communication networks with erbium-doped fibre amplifiers

机译:掺b光纤放大器的光通信网络中光子功率瞬变的非线性积分控制

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In this study the authors present a novel technique for control of signal power transients caused by signal add/drops in optical communication networks with erbium-doped fibre amplifiers (EDFAs). The approach utilises the electronic automatic gain control that combines both feedback and feedforward control of EDFA. Feedback control is non-linear integral control and feedforward control is a steady-state gain scheduling technique. The feedback non-linear control requires information about the average inversion level that is obtained via a simple linearised first-order observer. The scheduling variable used is the nominal pump power needed to keep the average inversion level at the desired value at steady state and the input signal powers given at particular wavelengths. In the simplified gain scheduling version, the scheduling variable is the total input signal power. Simulation examples indicate that the proposed controller completely eliminates at steady state the photon power transients caused by signal add/drops with the steady state being reached within a few milliseconds.
机译:在这项研究中,作者提出了一种新技术,用于控制掺with光纤放大器(EDFA)在光通信网络中由信号加/减引起的信号功率瞬变。该方法利用了结合了EDFA的反馈和前馈控制的电子自动增益控制。反馈控制是非线性积分控制,前馈控制是稳态增益调度技术。反馈非线性控制需要有关通过简单的线性化一阶观测器获得的平均反演水平的信息。使用的调度变量是在稳态下将平均反转电平保持在所需值所需的标称泵浦功率,以及在特定波长下给定的输入信号功率。在简化的增益调度版本中,调度变量是总输入信号功率。仿真示例表明,所提出的控制器在稳态下完全消除了由信号加/减引起的光子功率瞬变,并在几毫秒内达到了稳态。

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