非靜態誤差 的英文怎麼說

中文拼音 [fēijìngtàichā]
非靜態誤差 英文
astatic error
  • : Ⅰ名詞1 (錯誤) mistake; wrong; errors 2 (指非洲) short for africa 3 (姓氏) a surname Ⅱ動詞1 ...
  • : Ⅰ形容詞1. (安定不動; 平靜) still; calm; motionless 2. (沒有聲響; 清靜) silent; quiet Ⅱ名詞(姓氏) a surname
  • : 名詞1. (形狀; 狀態) form; condition; appearance 2. [物理學] (物質結構的狀態或階段) state 3. [語言學] (一種語法范疇) voice
  • : Ⅰ名詞(錯誤) mistake; error Ⅱ動詞1 (弄錯) mistake; misunderstand 2 (耽誤) miss 3 (使受損害...
  • : 差Ⅰ名詞1 (不相同; 不相合) difference; dissimilarity 2 (差錯) mistake 3 [數學] (差數) differ...
  • 靜態 : [物理學] static state; quiescent condition; steady state; statics; dead level; akinesis; akynesis...
  • 誤差 : error
  1. The paper consists of several parts as following : firstly, we probe an estimating method with the time - change parameters to overcome the problem with greater errors that us think a dynamical process with the time - change parameters as a static process with the no time - change parameters and forecast the time - change parameters system by the model with the no time - change parameters

    本文主要進行了以下幾方面的工作: 1探討了一種動系統的時變參數的估計方法,克服了以往把一個時變參數的動過程當作了時變參數的過程,而用時變參數模型預報時變參數系統的狀時帶來的較大問題。
  2. In chapter 3, the selection of the nni model, input signal and error rule are discussed. then the nni of the nonlinear system is studied. the static and the dynamic problem are clarified separately, and two examples are presented correspondingly

    第三章首先對神經網路的辨識模型的選擇、輸入信號的選擇以及準則的選擇進行討論,然後對線性系統的神經網路辨識模擬進行研究,將其中的問題和動問題分開進行論述,最後針對問題和動問題給出相應的實例模擬。
  3. Because of high stability, the voltage loop gain is set high, so the static error is very small and dynamic performance is enhanced

    由於內環的高度穩定性,所以電壓環的增益可做得很高,使系統的常小且動性能得到了提高。
  4. This paper focuses on the research of fuzzy control, especially rule self - adjusting fuzzy control method. by theoretic analysis and simulations, the influences of parameters and system performance characteristic of some kinds of rule on - line self - regulating fuzzy control methods are discussed, and a novel real - time self - adjusting fuzzy control method ( vsrsafc ) is proposed from the diagrammatic point of view. in vsrsafc, the slope of the rectifying curve of rule scaling factor a is altered by the fine - tuning and coarse tuning combined mechanism to adjust the fuzzy control rules according to error e and error change ec, which more coincides with characteristic of system response than the conventional self - adjusting method that adjusts rule scaling factor only according to the error e, and has better static and dynamic performances than the latter

    其中變斜率規則自調整模糊控制的效果較為明顯,它是基於插值的線性規則自調整模糊控制的引申以及常規全論域規則自調整模糊控制的改進,該方法採用粗、細調結合機制,通過改變規則調整因子的修正曲線斜率,使系統同時根據e以及變化ec在線調整模糊控制規則,比傳統的僅基於系統e的自調整方法更符合系統響應特性,可獲得更好的動控制性能,特別是對于系統參數發生改變、控制參數選取不當等不良狀況,控制器仍能較快自調整,具有較強的在線自適應能力。
  5. The paper proves that in the 2d non - linear case, the coulomb gauge is been meet naturally. in the paper, the second - order isoparametric fem is adopted in the non - linear transient magnetic field simulating excited by current source and the results of transient field and static field solved by the second - order isoparametric and linear fem are compared and analyzed, besides, the effect of the eddy currents in the magnetic materials of the different conductivity is analyzed, it is obtained that the magnetic material of high magnetic conductivity and low loss should be chosen in designing of pma

    文中採用二次等參元有限元法推導出在電流源激磁下的線性瞬磁場的計算方法和編制了相應的計算程序,並採用二次等參元有限元法和雙線性有限元法分別對瞬場和場進行了計算,並對計算結果進行了分析,此外,還對不同電導率的導磁材料中渦流產生的影響進行了分析,得到結論設計永磁操動機構時,應選擇導磁性能好,損耗低的導磁材料。
  6. Aiming at the pressure sensor in fcs, the static nonlinear compensation vi with neural networks ( nn ) is designed using labview. secondly, the dynamic characteristic of the sensor is analyzed

    首先,本文分析傳感器的特性和線性,利用labview針對飛控系統中的壓力傳感器,運用神經網路方法設計線性溫度補償儀。
分享友人