朗日乘子 的英文怎麼說

中文拼音 [lǎngchéngzi]
朗日乘子 英文
langrange multiplier
  • : Ⅰ形容詞1. (光線充足; 明亮) light; bright 2. (聲音清晰響亮) clear and loud Ⅱ名詞(姓氏) a surname
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  1. For the geometry depicted in figure 2-2, the lagrange multiplier is positive.

    對于圖2-2中所畫的幾何圖形來說,拉格朗日乘子是正的。
  2. It is also discussed how to get the optimum polarization state of the antenna when the scr is optimum. not only the power of cylinder in air but in rain are used in calculating the scr

    對于非相干目標,文章用kennaugh矩陣得到接收功率,然後用拉各朗日乘子法求出最佳極化狀態和最優接收功率。
  3. Also, the author ’ s design strategy and creativity has been given in this paper. specifically, it includes : based on the feasibility analysis of the fit selection of control parameters in the aeration process, the aeration process of wastewater treatment of the joint - constructional complete - mixed activated sludge process has been aimed at in this paper. then, the state equations of the aeration process have been proposed in this paper, which is on the base of dissolved oxygen concentration ( do ) and discharge quantity of sludge ( qw ) as control variables, the concentration of bod and sludge as state variables. based on the present study on optimization control of wastewater treatment, the multivariable optimal control model with restriction factor has been presented in the paper with introducing modern control theory and system analysis into the field of activated sludge wastewater treatment,

    具體包括:以完全混合、表面曝氣合建式活性污泥工藝的污水處理曝氣過程為研究對象,在闡述了曝氣過程式控制制參數選取可行性的基礎上,建立了以溶解氧濃度do和活性污泥排放量qw為控制變量,以曝氣池中有機物濃度s和微生物濃度x為狀態變量的活性污泥曝氣過程的基本狀態方程;運用現代控制理論的觀點和污水處理理論,在現有關于污水處理最優控制問題研究的基礎上,建立了有約束條件多變量能耗最小數學模型,該數學模型是以有機物排放總量和狀態變量的末值條件作為約束條件,曝氣過程的能耗最小作為目標泛函;採用增廣拉格朗日乘子法對最優控制問題進行轉化,並對應用極大值原理求解能耗最小這一最優控制問題進行了詳細的解析;引入約束運算元,應用具有控制約束的共軛梯度演算法對能耗最小這一最優控制問題進行求解,並進行模擬實驗驗證。
  4. The purpose of this paper is to improve the received signal by study of the polarization character of target in snow clutter and finding the optimum polarization states of antennas

    運用拉格朗日乘子法求出了收發天線的最佳極化方式以增強信號抑制雜波干擾。
  5. A lagrange multiply method to solve multibody dynamic daes

    代數方程的拉格朗日乘子方法
  6. Method of lagrange multipliers

    拉格朗日乘子
  7. Equilibrium model and augmented lagrange multiplier solution for congested traffic network

    擁堵交通網路模型和增強拉格朗日乘子演算法
  8. For the geometry depicted in figure 2 - 2, the lagrange multiplier is positive

    對于圖2 - 2中所畫的幾何圖形來說,拉格朗日乘子是正的。
  9. The lagrange multiplier method using rate and distortion information is then applied to optimal allocates bitrate for each frame in fine granular scalability substreams

    基於拉格朗日乘子法的最優化碼率分配演算法可以利用該模型中的率失真信息分配碼率,在碼率一定的條件下提供最好的視頻效果。
  10. A method is proposed for the parameter identification of the viscoelastic internal dampers of the multirotor systems in this paper. the multi - rotor system is regarded as a composite structure. the impedance matching method in the substructure method for structural dynamic analysis is used for the dynamic calculation of the structure. the augmented lagrange method is applied to the iteration calculations of the characteristic determinant of eigenvalve equation of the system. and then the results of parameter identification can be obtained. upon the dynamic characteristics of the system, the method can reveal the influence of the gyroscopic moments of force precisely. in process of the analysis, the various properties of multi - rotor systems are made the best use of, so the measure of the modes parameters is avoided, the calculation is simplified. in addition, an efficient method is proposed to establish a dynamic model of multirotor systems with viscoelastic internal dampers. the calculating results are consistent with the experimental results satisfactorily

    提出了多轉系統的粘彈性中間彈支參數辨識的一種方法.該方法把多轉系統看作復合結構,用動態結構分析的阻抗匹配法計算動力學特性,用增廣拉格朗日乘子法迭代計算系統特徵方程的系數行列式,獲得系統物理參數的辨識結果.該方法可以準確計入陀螺力矩的影響,避免測量振型參數.在分析中,利用多轉系統的特性可簡化分析過程.文中還介紹了一種建立粘彈性彈支多轉系統動力學模型的方法.計算結果與試驗結果基本一致
  11. The second chapter reveals the mathematical essence of entropy regularization method for the finite min - max problem, through exploring the relationship between entropy regularization method and exponential penalty function method. the third chapter extends maximum entropy method to a general inequality constrained optimization problem and establishes the lagrangian regularization approach. the fourth chapter presents a unified framework for constructing penalty functions by virtue of the lagrangian regularization approach, and illustrates it by some specific penalty and barrier function examples

    第一章為緒論,簡單描述了熵正則化方法與罰函數法的研究現狀;第二章,針對有限極大極小問題,通過研究熵正則化方法與指數()罰函數方法之間的關系,揭示熵正則方法的數學本質;第三章將極大熵方法推廣到一般不等式約束優化問題上,建立了拉格正則化方法;第四章利用第三章建立的拉格正則化方法,給出一種構造罰函數的統一框架,並通過具體的罰和障礙函數例加以說明。
  12. The settling behaviors of a rectangular particle with different initial orientation angles and length - width ratios were simulated by using distributed lagrange multiplier / fictitious domain method

    摘要為了對方形粒在二維垂直通道中的沉降運動特性進行研究,應用了拉格朗日乘子虛擬區域方法對不同初始取向角、不同長寬比情況下方形粒的沉降運動進行了直接數值模擬。
  13. Abstract : this paper discusses the conditional problem of the higher order derivatives depending on more than one function, sovles conditional problem of variation of definite integral constraint by using lagrange ' s method of multipliers, and studies the conditional problem of variation of more than one definite integral constrains

    文摘:討論依賴于多個函數的高階導函數的泛函的變分問題,並且利用拉格朗日乘子法討論此類泛函的一種書有定積分約束的條件變分問題的解法.最後討論有多個定積分約束的條件變分問題
  14. This paper discusses the conditional problem of the higher order derivatives depending on more than one function, sovles conditional problem of variation of definite integral constraint by using lagranges method of multipliers, and studies the conditional problem of variation of more than one definite integral constrains

    討論依賴于多個函數的高階導函數的泛函的變分問題,並且利用拉格朗日乘子法討論此類泛函的一種書有定積分約束的條件變分問題的解法.最後討論有多個定積分約束的條件變分問題
  15. Abstract : in this paper, the proving of the generalized variational function , of elastic and plastic contact problem is simplified by use of the vector analysis method

    文摘:用拉格朗日乘子法,利用向量分析的工具及巧妙的變換,對帶摩擦約束的彈塑性接觸問題的變分不等原理進行了嚴格的證明。
  16. According to the 2 - d analysis, the 3 - d analysis on the stress, strain and load of dda was made, and the corresponding formulation was also deduced secondly, according to the imperfection of current dda model, some improvements such as modeling the elastic - plastic in dda blocks, applying the augmented lagrangian method to dda method and disposing of the continuous problem in dda method were made. corresponding to the theories of improvement, the program of dda was also developed correspondingly

    然後通過學習和研究,本文嘗試著從( 1 ) dda塊體彈塑性模擬( 2 )增廣拉格朗日乘子法在dda方法中的運用( 3 ) dda方法中連續問題的處理等幾個方面入手,對現有的模型進行一些改進,並在此基礎上,對已有的dda程序進行了補充和完善。
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