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transformation factor的中文,翻译,解释,例句

transformation factor

transformation factor的基本解释
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转化系数

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Farther apply FactorAnalysis, principle of pick-up is latent root>1, using Varemax and Equamax to rotatefactor. We get 10 factors, combined with medical knowledge, based above result,clinical manifestation of sub-health status can split into 7 types, such as typesociety(Factor 6), type psychology(Factor 1), type fatigue(Factor 3,Factor 4,Factor 9),type discomfort of eye and mouth(Factor 7), type abnormity of stool and urine(Factor2), type menoxenia(Factor 5) and type consticution(Factor 8 and Fator 10). Thisprovide basis for classification, prevention and cure of sub-health status.

进一步应用因子分析,以特征根大于1为公因子提取原则,应用最大方差正交旋转法进行因子旋转,共得到十个共因子,结合医学知识,根据上述结果亚健康状态的临床表现可分为社会型(公因子6)、心理型(公因子1)、疲劳型公因子3、公因子4(来源:23ABC论文网www.abclunwen.com和公因子9、眼口不适型(公因子7)、二便异常型(公因子2)、月经不调型(公因子5)以及体质型(公因子8和公因子10)等七个亚型。

Only with such characteristics, the movement equations can be expressed as matrices, and the idea of transforming the movement equations to the simplest form through a nonlinear transformation can be realized;(2) The form of Zi =Yi + YTH2i Y + Y7H3i Y(2)+ Y(2)T H4i Y(2)+ YTH5i Y(3) is adhibited in the nonlinear transformation, so that the multivalued problem caused by the nonlinear transformation is avoided, and the higher order transformation can be taken next;(3) The fourth order nonlinear transformation matrices H21,H31,H41 and H51 are derived, by which the original movement equations of electric power system is transformed to Jodan form in Z space;(4) By use of the fourth order nonlinear transformation, the approximate expression of the stability boundary is obtained, in Z space it is Z1= 0,in Y space it is Y1 + YTH21 Y + YTH31 Y(2)-i- Y(2) TH41 Y(2)+YTH51 Y(3)= 0;(5) The criterion used in this paper to judge whether the system critical unstable is simple and quick;(6) The method used in this paper is a direct method, and no need to construct an energy function.

正是由 于电力系统的运动方程具有这样的特性,才能写成矩阵的形式,通过非线性变换将电力系统的运动方程变换为最简单的线性形式的思想才能得以实现;(2)将通常运用于电力系统暂态稳定性分析的Normal Form变换的形式由 Yi= Zi+ ZTh2riZ变形为 Zi= Yi+YTH2iY+YTH3iY(2)+Y(2)TH4iY(2)+YTH5iY(3),从而使得在对持续故障轨线实施同样的非线性变换以确定临界切除时间时,避免了非线性变换带来的多值性的问题,而只有在没有多值性问题的困扰下,才能采用较高阶的变换:(3)推导出了将原始电力系统系统的运动方程变换到Z空间的约当形式的非线性变换矩阵H21、H31、H41、HS1:(4)在运用四阶了「线性变换的情况下,给出了受扰动后系统的稳定边界的近似的解析表达,在Z空间为Z1=0,在y空间为: Y1+YTH21Y+YTH31Y(2)+Y(2)TH41Y(2)+YTH51Y(3)=0 (5)确定临界失稳的判据简单、快捷:对于一个复杂的电力系统,其稳定边界是相当复杂的一个高维曲面,即便是已知系统稳定边界的解析表达,要求出系统持续故障轨线何时与这一高维曲面相交,在数学上几乎是不可能实现的。

The paper to analyzes because experiments "factor contribution rate".to conduct the research;Discovered "the pure factor from difference square" for the negative value is the statistic stochastic value result;When the factor function is not extremely remarkable,the factor contribution rate also is a negative value;By now should merge not the remarkable factor square the random error square,recomputation ANOVA as well as factor technical progress factor.

论文对析因试验中用于分析因子作用的"因子贡献率"进行研究;发现"纯因子离差平方和"为负值其实是统计量随机取值的必然结果;尤其当因子作用极不显著时,计算的因子贡献率常常也是负值;这时应该将不显著的因子平方和并入随机误差平方和,重新进行ANOVA以及计算因子贡献率。

更多网络解释 与transformation factor相关的网络解释 [注:此内容来源于网络,仅供参考]

transformation factor:变换因子

transformation equation 变换方程 | transformation factor 变换因子 | transformation formulas of the coordinates 坐标的变换公式

transformation factor:转化系数

transformation equation 变换方程,转换方程 | transformation factor 转化系数 | transformation family 变换族

lymphocyte transformation factor:淋巴细胞转化因子

淋巴细胞母细胞化 lymphocyte blastogenesis | 淋巴细胞转化因子 lymphocyte transformation factor | 淋巴细胞检测抗原 lymphocyte defined antigen

F Griffith:transformation Factor:基因讯息可被转移

1924, R Feulgen & H Rossenbeck:DNA在核里的染色体上. | 1928, F Griffith:transformation Factor 基因讯息可被转移. | 1941, G Beadle & E Tatum:One Gene, One Enzyme 一基因,一酵素.

Transformation factor linearity error:(传输函数线性误差)

Temperature drift(温度漂移) <0.2 nT/°C | Transformation factor linearity error(传输函数线性误差) < 0.01% | Components orthogonality error(三分量方位正交误差) < 30 min of arc

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