修正因子 的英文怎麼說

中文拼音 [xiūzhēngyīnzi]
修正因子 英文
correction factor
  • : Ⅰ動詞1 (修飾) embellish; decorate 2 (修理; 整治) repair; mend; overhaul 3 (寫; 編寫) write;...
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  1. Based on the kano model analysis, a formula to calculate the importance rating of achieving the improvement increment of competitive seating arrangement was presented, and then the correct factors of the fundamental importance ratings were determined

    基於卡諾模型的分析,提出了實現顧客需求競爭位次改進增量的重要性計算公式,進而確定了基本重要度的修正因子
  2. A fuzzy controller with modifiable factors

    一種帶修正因子的模糊控制器
  3. Conventional power system stabilizer ( cpss ) has such shortcoming as complex design, fussy parameter testing, poor adaptability and so on. in this article formula fuzzy control algorithm is put into the design of pss. quantified factors and modifying factors, which have large effect on the performance of formula fpss, are optimized

    本文針對傳統電力系統穩定器( cpss )設計復雜、參數調試繁瑣、適應性差等缺點,將一種公式型模糊控制演算法應用於pss設計,並對公式型模糊電力系統穩定器的性能影響較大的量化修正因子進行優化,從而設計出一種自尋優模糊電力系統穩定器( sofpss ) 。
  4. The fuzzy algorithm can be summered with such formula : the fuzzy controller with revising factor is a adapting fuzzy controller. it realize self - adjusting of controlling rules on line

    模糊控制演算法可用下式表示:採用了修正因子的模糊控制器接近一個自適應的模糊控制器,實現了控制規則的在線自調整。
  5. In view of the non - linear, uncertain and complicated characteristics of the combustion system in hot - blast stove, referring to the operating experiences at home and abroad, a fuzzy self - adaptive controller was used for controlling the temperature of the waste gas

    摘要針對熱風爐燃燒系統的復雜性、參數的不確定性和非線性,結合國內外的操作經驗,為該系統研製了帶修正因子的自適應模糊控制器。
  6. A new lms adaptive fuzzy control strategy of active suspension is brought up. according to actual condition of system, the rectification factor can be continuously adjusted so as to follow the control process in real time

    根據實際系統的變化情況,通過lms自適應模塊調整帶修正因子的模糊控制器,以跟蹤實時控制過程,是一種具有自適應、自調整的模糊控制方法。
  7. For the fuzzy controller with a fitted modifying factor, a third - order polynomial was used to approximate the former four modifying factors, without the quantization of input and output variables

    在擬合修正因子模糊控制器中,採用一個3階多項式對優化得到的4個修正因子運用最小二乘法進行逼近,且不再對輸入和輸出進行量化處理。
  8. Via starting and stopping air compressor, it can make the ice of evaporator melt. this controlling system can display the temperature of railway carriage, control temperature with multi - grade setting and modify controlling parameters on line. the algorithm of fuzzy controller is revising factor ( a ) consulted on line fuzzy control with integral link

    模糊控制演算法採用帶有積分環節的修正因子在線插值的模糊控制,控制系統的輸入為車廂溫度與設定值的偏差和偏差的變化率,輸出為與溫度門開口角度相關的占空比可調的脈沖的占空比參數,均採用態模糊數模型。
  9. Both the effect of substrate deformation and the state of large deflection of the microbridge are involved in the theoretical expression. furthermore, the distribution of axial stress in the micro bridge is discussed in detail by taking different shapes of cross section into consideration. and a shape factor is introduced into the expression, which simplifies the theoretical expression

    理論上對薄膜微橋法的公式進行了進一步的化簡,在考慮襯底變形貢獻和大撓度的基礎上,進一步探討了微機械加工過程中不同橫截面形狀的情形;並對矩形和梯形截面微橋的軸向應力分佈作了分析,補充和發展了薄膜微橋法的理論;引入了橫截面形狀修正因子,簡化了公式的表達和計算。
  10. Factor two level self - optimizing fuzzy controller with time - varying modifying

    時變修正因子二級自尋優模糊控制器
  11. A fuzzy control scheme with a fitted modifying factor was proposed according to in herent characteristics and performance requirement of active magnetic bearings ( amb )

    摘要結合主動磁力軸承( amb )自身特性和性能需要,提出了一種擬合修正因子模糊控制器設計方法。
  12. The design of fuzzy - pid controller of adjusting the factor of revising by oneself is introduced, which can solve the problem existing in the parameter adjustment in the courses of the traditional pid control

    本文將模糊控制技術應用於供水系統,設計出自調整修正因子fuzzy pid控制器,克服了傳統pid控制設計中的參數調整困難的問題。
  13. Because the algorithm can adjust the rectification factor of fuzzy controller with the least means squares ( lms ) method, it not only can reflect the advantage of ruzzy logic in nonlinear system but also can improve the disadvantage of common fuzzy control method which is strongly dependent on human experiences

    不僅體現了模糊控制演算法對非線性系統具有的明顯優勢,而且利用lms自適應模塊調整模糊控制器的修正因子,改善單一模糊控制演算法對專家先期經驗的依賴缺陷。
  14. This one is complicated than the former. by using sparsity matrix technique and recursion, it can also be used in the larger system. the simulation system is constituted with matlab and the programs are formed with c language

    前者演算法結構簡單,便於編程實現,且計算速度快,主要適用於規模較小的系統;後者演算法結構較前者復雜,程序實現困難,但由於採用了稀疏矩陣技術,並用遞推法修正因子表,所以可以應用於規模較大的系統。
  15. In this instance the structures of speed - loop and position - loop linear controller are identical with those of the linear double - loop system, and the position - loop fuzzy controller is non - quantificational and its factor is self - tuning. in addition the transition of the two controllers of the position - loop is smoothed by using the output intensity coefficients

    模糊?線性雙模控制的速度環以及位置環的線性控制器結構都與線性雙閉環控制的相同,位置環的模糊控制器為修正因子自調整無量化模糊控制器,利用輸出強度系數實現兩種控制的平滑過渡。
  16. Simulation results show that, using the proposed fuzzy controller with a fitted modifying factor, the dynamics and steady - state performances are improved efficiently

    模擬結果表明擬合修正因子模糊控制器能得到很好的控制效果,有效地改善磁力軸承的動態性能和穩態性能。
  17. In order to minimize the value of the improved integral time multiplied absolute error ( itae ) performance index, the simplex method was used to optimize the fuzzy controller with 4 modifying factors

    採用單純形法對4修正因子模糊控制器的4個修正因子進行優化,以使改進的itae性能指標最小。
  18. 2, in the definition of the " characteristic dimension " stress and the correct factor fi, a fatigue model is presented for the fatigue of notched laminates

    2 、在無孔層合板疲勞累積損傷模型的基礎上,運用「點應力準則」概念,提出帶孔缺口復合材料疲勞累積損傷模型,定義了應力修正因子
  19. Second, some kinds of hall plates are taken into account. by applying schwarz - christoffel transformations, the geometrical correct factor and the aspect ratio of hall plates with four equal edge contacts of none - zero length, witch are in variant for a rotation through 90 ? are computed

    論文採用保角變換的方法對霍爾集成電路中常用霍爾元件的幾何修正因子和有效寬長比進行分析計算,分別給出靈敏度最高或功耗最低時,霍爾元件的最佳結構尺寸。
  20. Based on a combination of the fundamental importance ratings of the customer requirements and their correct factors, the final importance ratings of the customer requirements were determined

    基於顧客需求的基本重要度與其修正因子的合成,確定了顧客需求的最終重要度。
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