頻率推移系數 的英文怎麼說

中文拼音 [bīntuīshǔ]
頻率推移系數 英文
frequency pushing factor
  • : Ⅰ形容詞(次數多) frequent Ⅱ副詞(屢次) frequently; repeatedly Ⅲ名詞1 [物理學] (物體每秒鐘振動...
  • : 率名詞(比值) rate; ratio; proportion
  • : 動詞1 (向外用力使物體移動) push; shove 2 (磨或碾) turn a mill or grindstone; grind 3 (剪或削...
  • : Ⅰ動詞1. (移動) move; remove; shift 2. (改變; 變動) change; alter Ⅱ名詞(姓氏) a surname
  • : 系動詞(打結; 扣) tie; fasten; do up; button up
  • : 數副詞(屢次) frequently; repeatedly
  • 頻率 : frequency; rate
  • 推移 : 1. (時間發展) elapse; pass 2. (形勢等的變化) develop; evolve
  • 系數 : [數學] coefficient; ratio; modulus; quotient; factor
  1. To utilize the advantages of dsp chips, the system should be computing sources economical. according to digital signal processing theory, the poly - phase fir can help reduce the workloads of the ddc / duc. therefore, adding the complex carrier mixers, the channelization system ( a method of using a single wideband facility to transmit many relatively narrow - bandwidth signals. by subdividing the frequency spectrum used in the wideband channel ) can be formed utilizing the characters of fft

    為了使開發出的軟體可以適用於高速dsp器件開發,節省統資源,課題首先從字信號處理的理論進行分析,得出可以利用抽樣轉換的字濾波器的特點,即多相濾波實現字上下變計算負擔的減小,之後進一步將多相濾波器與譜搬部分結合,通過公式的導,得出可利用快速傅立葉變換的特點實現多路信號的通道化發射和接收的處理模型。
  2. Secondly, basing on the theory of on - off gain of small signal, the raman gain coefficient for frequency shift between 0. 5 and 20 thz of standard sigle mode optical fiber is measured by pump - probe method through a super luminescent diode ( sld ) as a broadband small signal probe source. thirdly, numerical simulation analysis of gain characteristic of raman fiber amplifier for c band wdm signal light is made according to the raman gain coefficient of the fiber measured before through target and four rank runge - kutta method. at the invariability of wavelength and maximum power of each of two pumps, schematic of powers of two pumps for best flatness on c band wdm optical gain was found out, at the same time, the factors of resulting in gain saturation is analyzed, too

    本文首先應用經典的電磁理論對拉曼光纖放大器的工作機制進行了分析,然後,根據小信號理論導出的開關增益求出了光纖拉曼增益的表達式,採用泵浦-探測波的方法,利用超輻射激光二極體( superluminescentdiode簡稱sld )作為探測光源,測量了所用標準單模光纖為0 . 5 - 20thz的拉曼增益,之後根據所測得的光纖的拉曼增益譜對應用該類光纖構成的放大c波段wdm光信號的拉曼光纖放大器的增益特性採用打靶法和四階龍格- - -庫塔進行了值計算,在給定了兩個泵浦光源的波長和最大功后,找出了反向泵浦情況下使c波段wdm光源增益最平坦的兩個泵浦的各自最佳功,同時也分析了導致信號光飽和的原因。
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