
波長轉換
How to utilize wavelength conversion is the key factor in improving the blocking performance in wavelength routed all optical networks.
在全光網絡中,如何合理利用波長轉換來降低光網絡的阻塞率是一個非常關鍵的問題。
For special structure parameters of SOA, there exist optimal probe power, average pump power and wavelength conversion span for wavelength conversion.
結果表明,對于一定的放大器結構參數,存在最佳的泵浦功率、探測功率和波長轉換帶寬。
The result of numerical calculation indicates that semiconductor optic amplifier has a good responding characteristic and higher conversion rate in all-optical wavelength conversion.
數值計算的結果表明,半導體光放大器在全光波長轉換中具有很好的線性響應特性和較高的轉換速率。
The wavelength conversion mechanism and the thresholding conversion characteristics of all-optical wavelength converter based on a laser diode are described by the gain saturation effect.
使用半導體激活介質的增益飽和效應,描述了激光器型全光波長轉換器波長轉換機制及其阈值轉換特性。
There is an optimal value for pump signal power which can achieve the maximum Q value of wavelength conversion.
對于輸入信號光和直流光功率,存在一個最佳功率值,使得波長轉換的Q值最高。
Its objective is trying to offer the best balance among delay, load and the cost of wavelength conversion in addition to improving the effective wavelength utilization and failure restoring rate.
該機制以網絡延遲、負載、波長轉換代價達到平衡的最佳值為目标,兼顧波長資源的高效利用和故障恢複率的提高。
The computer simulation verifies that the algorithm improves the wavelength utilities by virtue of wavelength conversion.
通過計算機模拟證明,算法借助波長轉換技術提高了波長資源的利用率。
A novel scheme for polarization insensitive optical wavelength conversion based on four wave mixing (FWM) in semiconductor optical amplifier (SOA) is proposed and demonstrated.
提出和論述了一種新穎的偏振不敏感的基于半導體光放大器的四波混頻光波長轉換方法。
A scheme of all-optical wavelength conversion based on fiber ring semiconductor lasers is raised.
提出了一種基于光纖環形腔半導體激光器的全光波長轉換方案。
Wavelength conversion is a key technology of all optical network.
波長變換技術是波分複用全光網關鍵技術之一。
The numerical simulation results show that the wavelength conversion efficiency is influenced by the input pump power and saturation power of SOA.
通過數學模拟表明,波長轉換效率受到泵浦光功率和飽和功率等參數的影響。
In this paper, two new data channel scheduling algorithms in OBS networks, Minimum Wavelength Conversion Times (MWCT) algorithm and Service Differentiation (SD) algorithm, are proposed.
該文提出了兩種新型的OBS網絡數據信道調度算法:最少波長轉換(MWCT)調度算法和區分服務(SD)調度算法。
The chirp performance of converted signal in wavelength conversion based on cross gain modulation (XGM) in semiconductor optical amplifier (SOA) was analyzed.
對基于半導體光放大器中交叉增益調制效應的波長轉換後信號的啁啾特性進行了分析。
Wavelength conversion technologies are very important in future optical transmission networks.
波長變換技術是未來實現光傳送網的必要條件。
In the node, we used wavelength conversion technique for label swapping.
在網絡的節點處使用波長變換技術進行标記交換。
As the key apparatus in ASON(automatic switched optical networks), the tunable all optical wavelength conversion device plays a very important role.
作為自動交換光網絡(ASON)中的核心器件,全光波長轉換器在網絡中發揮着重要作用。
The wavelength conversion based on cross gain modulation in a semiconductor optical amplifier (SOA) has been experimentally stu***d.
對基于半導體光放大器交叉增益調制的波長轉換進行了實驗研究。
A theoretical model of wavelength conversion based on cross gain saturation in a semiconductor optical amplifier (SOA) has been established.
建立了基于半導體光放大器交叉增益飽和的波長轉換的理論模型。
The characteristics of wavelength conversion were analyzed in different optical parameters including the injection current, signal power and transmission rate.
利用該模型分析了半導體激光器工作電流、注入信號光功率以及碼率各參數對波長轉換特性的影響。
Couple-cavity vertical-cavity surface emitting laser(CC-VCSEL) can achieve dual-wavelength output and wavelength conversion.
其中,耦合垂直腔面發射激光器可以實現雙波長輸出、波長轉換等功能。
The wavelength conversion characteristics under the small signal modulation and the converted waveform distortion under the large signal modulation are discussed respectively.
分别讨論了小信號下波長轉換特性和大信號下轉換波形的畸變情況。
In WDM network, the technology of wavelength conversion is a key technology, but it is always the focus of the contention.
WDM光網絡中,波長變換技術是一項關鍵技術,然而其使用卻一直備受争議。
All-optical wavelength conversion based on a nonlinear optical loop mirror (NOLM) is a promising method.
非線性光纖環鏡是一種很有前途的全光波長變換裝置。
This dissertation is devoted to effects of relaxation times on wavelength conversion efficiency based on four-wave mixing(FWM) in semiconductor optical amplifier(SOA).
通過數值求解耦合波方程,研究了半導體光放大器弛豫時間對四波混頻波長變換效率的影響。
“Wavelength conversion”(波長轉換)是光通信和光學領域的重要技術,其含義及相關信息如下:
波長轉換指将光信號的波長從原始值調整到另一個特定值的過程。這種技術主要用于優化光信號的傳輸效率或兼容不同設備的需求。
如需進一步了解具體技術原理或案例,可參考光通信領域的專業文獻或技術文檔。
解釋: Wavelength指的是波長,是指電磁波傳播中一次波形重複的距離,通常用單位長度來表示。在光學中,波長通常用納米(nm)作為單位。
例句:
用法: Wavelength在物理學、光學、電子學和通信領域中經常被使用。
近義詞: frequency(頻率)
反義詞: amplitude(振幅)
解釋: Conversion指的是轉換或轉化,是指将一種形式或狀态轉變為另一種形式或狀态的過程。
例句:
用法: Conversion在計算機、工程學、化學和能源領域中常被使用。
近義詞: transformation(轉化)、transmutation(變質)
反義詞: preservation(保護)、retention(保留)
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