登录
首页 » matlab » MIMO_BoxJenkins

MIMO_BoxJenkins

于 2014-04-26 发布 文件大小:162KB
0 270
下载积分: 1 下载次数: 17

代码说明:

  多输入多输出的BJ模型,频域辨识,里边含有案例和相应的函数(BJ multi-input multi-output model, frequency domain identification)

文件列表:

MIMO_BoxJenkins
...............\auxiliary
...............\.........\Add_SelectColumns.m,7428,2011-10-13
...............\.........\BoxJenkins
...............\.........\..........\BJCost.m,1726,2004-04-22
...............\.........\..........\BJDeNormalise.m,1264,2004-04-12
...............\.........\..........\BJError.m,1665,2004-10-19
...............\.........\..........\BJJacob.m,6202,2008-04-04
...............\.........\..........\BJNewtonGaussStep.asv,6655,2008-04-03
...............\.........\..........\BJNewtonGaussStep.m,6987,2008-04-04
...............\.........\..........\BJNormalise.m,1136,2004-04-09
...............\.........\..........\BJStabilizeRoots.m,3224,2004-04-12
...............\.........\..........\BoxJenkins.asv,16915,2005-06-01
...............\.........\..........\BoxJenkins.m,16937,2008-04-04
...............\.........\..........\CalcBJOmegaMat.m,439,2005-04-26
...............\.........\..........\Cov_NoiseParam.m,2890,2005-04-26
...............\.........\..........\Cov_PlantParam.m,2966,2005-04-26
...............\.........\..........\CR_NoiseModel.m,2770,2005-04-26
...............\.........\..........\CR_PlantModel.asv,4541,2006-07-10
...............\.........\..........\CR_PlantModel.m,4215,2006-07-10
...............\.........\..........\JoJoBoxJenkins.m,2317,2004-04-01
...............\.........\..........\NumericalJacobian.m,633,2004-03-30
...............\.........\..........\PlantCost.m,1049,1999-03-17
...............\.........\..........\PlantError.m,903,1999-03-17
...............\.........\..........\PlantJacob.m,1753,1999-03-17
...............\.........\..........\PlantLeastSquares.m,2023,2004-04-02
...............\.........\..........\StartBoxJenkins.m,6328,2008-03-31
...............\.........\..........\StartNoiseModel.m,1790,2004-04-16
...............\.........\..........\varest.m,2464,2005-04-21
...............\.........\..........\varestJoJo.m,2615,2004-04-01
...............\.........\CalcAlfa.m,1135,2011-10-13
...............\.........\CalcDeriv.m,11166,2011-10-13
...............\.........\CalcDvecLambda.m,1735,2011-10-13
...............\.........\CalcMIMOBJOmegaMat.m,603,2011-10-13
...............\.........\CalcPolyTrans.m,4046,2011-10-13
...............\.........\CalcPowerSpectrum.m,1516,2011-10-13
...............\.........\CalcReference.m,1603,2011-10-13
...............\.........\CalcResidue.m,1215,2011-10-13
...............\.........\CommonVariables.m,5262,2011-10-13
...............\.........\Constrain.m,4728,2011-10-13
...............\.........\ConstrainModel.m,7091,2011-10-14
...............\.........\CRboundPhysicalParam.asv,16714,2011-10-18
...............\.........\CRboundPhysicalParam.m,17228,2011-10-18
...............\.........\CRmodelparameters.m,14970,2011-10-18
...............\.........\CRtransferfunctions.m,11796,2011-10-13
...............\.........\DataStruct.m,1433,2011-10-13
...............\.........\DefaultValues.asv,8016,2011-10-14
...............\.........\DefaultValues.m,8698,2011-10-18
...............\.........\DvecZ_2_DvecZH.m,1627,2011-10-13
...............\.........\ExtractParam.m,4974,2011-10-13
...............\.........\ImposeModelCompatibility.asv,8427,2011-10-14
...............\.........\ImposeModelCompatibility.m,8425,2011-10-14
...............\.........\LeftWeighting.m,1465,2011-10-13
...............\.........\LSJacob.m,10182,2011-10-13
...............\.........\LSNewtonGaussStep.m,5557,2011-10-13
...............\.........\MakeSymmetric.m,1430,2011-10-13
...............\.........\MIMOCost.m,2449,2011-10-14
...............\.........\MIMODeNormalise.m,5184,2011-10-17
...............\.........\MIMOJacob.m,16579,2011-10-13
...............\.........\MIMONewtonGaussStep.m,10495,2011-10-13
...............\.........\MIMONormalise.asv,5150,2011-10-17
...............\.........\MIMONormalise.m,5151,2011-10-17
...............\.........\MIMOStabilizeRoots.m,3376,2011-10-13
...............\.........\PredError.m,5457,2011-10-13
...............\.........\SelectEstimParam.m,2853,2011-10-13
...............\examples
...............\........\MIMO_ARMA.asv,7084,2011-10-14
...............\........\MIMO_ARMA.m,9428,2011-10-21
...............\........\MIMO_ARMAX.asv,13695,2011-10-20
...............\........\MIMO_ARMAX.m,13590,2011-10-21
...............\........\MIMO_BJ.asv,15893,2011-10-21
...............\........\MIMO_BJ.m,15427,2011-10-21
...............\........\MIMO_OE.asv,6152,2011-10-17
...............\........\MIMO_OE.m,8283,2011-10-21
...............\........\SISO_Feedback.asv,9521,2011-10-18
...............\........\SISO_Feedback.m,9409,2011-10-21
...............\MIMO_BoxJenkins.asv,17114,2011-10-19
...............\MIMO_BoxJenkins.m,18062,2011-10-21
...............\MIMO_CR_bound.asv,38404,2011-10-18
...............\MIMO_CR_bound.m,39358,2011-10-21
...............\ReadMeFirst.asv,3908,2011-10-21
...............\ReadMeFirst.m,4301,2011-10-21
...............\StartNoiseModel.asv,11064,2011-10-21
...............\StartNoiseModel.m,11135,2011-10-21
...............\StartPlantModel.asv,9849,2011-10-19
...............\StartPlantModel.m,9720,2011-10-21

下载说明:请别用迅雷下载,失败请重下,重下不扣分!

发表评论

0 个回复

  • MPIReferenceManual
    MPI参考手册 MPI Reference Manual 大家相互学习 (MPI MPI Reference Manual Reference Manual, we learn from each other)
    2010-09-28 23:30:57下载
    积分:1
  • zkjflyjd
    距离保护傅里叶模型算法 使用图基滤波器 控制阻抗轨迹显示范围 在阻抗平面画出阻抗圆特性、整定阻抗直线特性和短路阻抗轨迹( Distance protection algorithm using the Fourier model-based filter control chart shows the range impedance locus in the impedance circle characteristic impedance plane plot, setting characteristics and short-circuit impedance line impedance locus)
    2011-01-26 19:43:57下载
    积分:1
  • CFBG
    啁啾光纤光栅,反应其延时功能,不同波长的反射光谱图(Chirped fiber grating, the response delay function, different wavelengths of reflection spectra)
    2012-04-10 16:34:24下载
    积分:1
  • MATLAB
    简单潮流计算的小程序,相关的原始数据数据数据输入格式如下: B1是支路参数矩阵,第一列和第二列是节点编号。节点编号由小到大编写 对于含有变压器的支路,第一列为低压侧节点编号,第二列为高压侧节点 编号,将变压器的串联阻抗置于低压侧处理。 第三列为支路的串列阻抗参数。 第四列为支路的对地导纳参数。 第五烈为含变压器支路的变压器的变比 ( Simple little program flow calculation, the raw data of the data related to data entry format is as follows: B1 is the slip parameter matrix, the first column and second column is the node number. Node number from small to big with the transformer for the preparation of slip, the first as the low pressure side of the node number, the second as a high-pressure side of the node number, the series impedance of the transformer low voltage side of the deal placed. As the third branch of the serial impedance parameters. Fourth as a slip of the ground admittance parameters. Strong as with the fifth branch of the transformer transformer turns ratio )
    2010-05-23 18:40:11下载
    积分:1
  • LabelMeToolbox
    LaberMe Toolbox. Toolbox for using labelme images.
    2011-01-05 21:50:27下载
    积分:1
  • KalmanFilter__matlab
    Kalman滤波原理及源码matlab!适合初学的童鞋没,与大家一起分享(Kalman filter theory and source code matlab! Share with you)
    2011-09-14 19:57:19下载
    积分:1
  • 11
    说明:  给一个速度指令,如一个阶跃信号,可能会速度无限增长或者振荡(To a speed command, such as a step signal may speed unlimited growth or oscillation)
    2013-03-14 17:16:54下载
    积分:1
  • zibochuli
    此程序为地震勘探中常用的子波处理程序,可以适用于信号的频谱分析,地震信号的时频分析等等(This procedure is commonly used in seismic wavelet processing, can be applied to the signal spectrum analysis, time-frequency analysis of seismic signals, etc.)
    2013-10-29 20:33:37下载
    积分:1
  • 基于有限差分法的二维边值问题的数值分析
    1. 在matlab中分析基于分离变量法的解析解; 2. 利用简单迭代法求解,与解析法结论对比,分析求解结果的精确度。分析过程至少包括:在网格尺寸为0.1 m和1 m两种条件下,两次迭代差值最大为10-10时的分析结论; 3. 利用超松弛迭代法分析,选择松弛因子,分析其对收敛速度(即迭代次数)的影响,并确定最优值。分析过程至少包括:在网格尺寸为0.1和1两种条件下,两次迭代差值最大为10-10时,迭代次数随松弛因子的变化,得到对应的最优松弛因子,与经验值(课本165页式子3.7.15)进行对比。(1. Analyze the analytical solution based on the separation variable method in matlab. 2. Using a simple iterative method to solve, compared with the results of the analytical method to analyze the accuracy of the solution. The analysis process at least includes the following conclusions: when the mesh size is 0.1m and 1m, the maximum difference between two iterations is 10-10. 3. Analyze using the relaxation relaxation iteration method, select the relaxation factor, analyze its influence on the convergence speed (ie the number of iterations), and determine the optimal value. The analysis process at least includes the following: when the mesh size is 0.1 and 1 and the maximum difference between two iterations is 10-10, the number of iterations varies with the relaxation factor, and the corresponding optimal relaxation factor and empirical value are obtained ( Textbook 165 pages (3.7.15) for comparison.)
    2020-07-28 18:48:39下载
    积分:1
  • doddcx
    对偶单纯形法matlab的实现,是我的一个作业.看看好用不.(dual simplex method Matlab the realization of one of my operations. Not look at the handy.)
    2007-03-09 09:36:55下载
    积分:1
  • 696516资源总数
  • 106914会员总数
  • 0今日下载