共振峰頻率 的英文怎麼說

中文拼音 [gòngzhènfēngbīn]
共振峰頻率 英文
formant frequency
  • : 共動詞[書面語]1. (圍繞) surround2. (兩手合圍) span with the hand
  • : 動詞1. (搖動; 揮動) shake; flap; wield 2. (奮起) brace up; rise with force and spirit
  • : Ⅰ名詞1. (山的突出的尖頂) peak; summit 2. (形狀像山峰的事物) peak-like thing Ⅱ量詞(用於駱駝)
  • : 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
  • 頻率 : frequency; rate
  1. Formant frequency of vowel

    母音的共振峰頻率
  2. Moreover in speech enhancement, especially in reducing the pulse noise, morphological algorithm has its unique advantage. particularly morphological filter may maintain the preferable accurate of the speech signal in speech waveform, and which produces little impairment to the formant of speech. so the spectrum structure of the speech is retained well, and the quality of the speech will not be reduced

    特別是,在時域波形分析中,形態學濾波增強較小波去噪更好地保持語音信號的細節;在域分析中,形態學濾波對語音信號的基音譜斜等語音特徵的影響很小,因而能夠較好的保留語音信號的譜結構,使語音品質不致降低。
  3. Firstly, we study the construction of emotion - speech template database, and analyze the common features such as pitch, energy and formant. after choosing the useful features by using fuzzy entropy effectiveness analysis, we get better performance with the application of neural network. in addition, we propose some more efficient features such as speech rate, pitch slope, mel - frequency cepstral coefficients and its transient parameters, and design a processing model based on vector quantization for cepstral features to fusing different features

    本文首先介紹了情感語音數據庫的建立情況,然後研究了基音幅能量和等目前常用的情感特徵在語音情感識別中的作用,並且通過一種基於模糊熵的特徵有效性分析方法進行了有效特徵的篩選,應用人工神經網路建立了初步的語音情感識別模型,經過實驗發現特徵篩選后系統的識別效果有著一定程度的提高。
  4. E., the carrier frequency of a gaussian beam deviates from the resonant frequency of a fabry - perot etalon ), variations of the peak intensity, the position of the peak intensity and the dwdm systems, has received considerable attention. in this work, after taking into account the wavelength - depended reflectivity distribution profile of a fiber bragg grating, the oscillation wavelength # _ ( 1 ) of long external cavity fiber bragg grat

    情況(即高斯光束的載波與法布里一拍羅濾波器的諧一致)相比,非條件(即高斯光束的載波與法布里一拍羅濾波器的諧存在偏差)一透射光束的值強度、值強度所對應的位置、以及光斑的大小隨入射角的變化都發生了顯著的改變。
  5. At last, in according to the experiment results, the interpretation of the mechanism of the slip phenomenon of prepressing - contact spring - damping system was given in this dissertation. further more, the relationship among the limit frequency, the value of prepressing, excitation frequency, the amplitude of excitation and the materiel parameter was analyzed. base on the theory analysis the limit frequency formula was given, and the contact - slip condition for engineering application was concluded

    最後根據理論研究與試驗分析的結果,分析預緊接觸式彈簧阻尼系統產生滑移現象的機理以及值漂移現象的理論解釋,並通過定性分析接觸分離時的與預緊量、激勵、激勵力幅值以及墊層的材料參數之間的關系,提出能定量描述系統出現滑移現象的極限公式,總結了預緊接觸式結構始終保持接觸的條件。
  6. When the frequency of elastic scattering becomes large, the resonant peaks may be cancelled

    隨著彈性散射的增大,會逐漸消失。
  7. Third, the whole absorption spectrum displays, in general, three pairs of absorption peaks and three pairs of gain peaks. due to the coherences between dressed states, these peaks are not exactly at the resonant resonance frequencies between dressed states, but in the vicinity of them

    還有一個特徵就是,吸收光譜在一般情況下會出現三對吸收和三對增益,在修飾態相干的作用下,這些並不是位於修飾態躍遷處,而是位於它們鄰域附近。
  8. In experimental, static response and frequency response of coupling acoustic / vibration optic fiber sensor have been analyzed. the results indicate that the response of the sensor to static pressure has high sensitivity. because the resonant frequency of different materials and structure is different, the sensor has maximum sensitivity in specific frequency

    試驗研究中,對耦合型聲動光纖傳感器的靜態響應特性和響應特性進行了試驗分析,分析結果表明該類型傳感器對應變的響應非常靈敏,而對的響應則由於材料及結構本身的的差異有不同的值響應
  9. With the increase of the width of the slot, the e - field in the middle of the slot will decrease gradually, while the power in it increase gradually, the e - field and peak power in the cavity will also increase gradually

    隨著孔縫寬度的增加,增強點有所偏移,孔縫中心耦合的電場強度逐漸減小,而孔縫中心耦合的功值逐漸增大,腔體內耦合的電場強度和功值也逐漸增大。
分享友人