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  1. 编程语言:Fortran
  2. 代码类别:matlab
  3. 发布时间:一周内
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1. re1

  The model used for creating the reference voltage is shown in Fig. 4. First, photovoltaic output current (Ipv) and output voltage (Vpv) are passed through a first order low pass filter with a magnitude of G = 1 and a time constant of T = 0.01 seconds in order to filter out the high frequency components or harmonics from these signals as shown in Fig. 5 and Fig. 6. The filtered current and voltage signals (Ipv_F and Vpv_F) are then fed into the MPPT control block that uses the Incremental Conductance Tracking Algorithm. An algorithm that is based on the fact the slope of the PV array power curve shown in Fig. 7 is zero at the Maximum Power Point (MPP), positive on the left of the MPP, and negative on the right. The MPP can thus be tracked by comparing the instantaneous conductance (I/V) to the incremental conductance (∆ I/∆ V) [11] as in (1):

9
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108
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2013-07-23发布

2. TT

说明:  The model used for creating the reference voltage is shown in Fig. 4. First, photovoltaic output current (Ipv) and output voltage (Vpv) are passed through a first order low pass filter with a magnitude of G = 1 and a time constant of T = 0.01 seconds in order to filter out the high frequency components or harmonics from these signals as shown in Fig. 5 and Fig. 6. The filtered current and voltage signals (Ipv_F and Vpv_F) are then fed into the MPPT control block that uses the Incremental Conductance Tracking Algorithm. An algorithm that is based on the fact the slope of the PV array power curve shown in Fig. 7 is zero at the Maximum Power Point (MPP), positive on the left of the MPP, and negative on the right. The MPP can thus be tracked by comparing the instantaneous conductance (I/V) to the incremental conductance (∆ I/∆ V) [11] as in (1):

0
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112
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2013-07-23发布

3. TT

  The model used for creating the reference voltage is shown in Fig. 4. First, photovoltaic output current (Ipv) and output voltage (Vpv) are passed through a first order low pass filter with a magnitude of G = 1 and a time constant of T = 0.01 seconds in order to filter out the high frequency components or harmonics from these signals as shown in Fig. 5 and Fig. 6. The filtered current and voltage signals (Ipv_F and Vpv_F) are then fed into the MPPT control block that uses the Incremental Conductance Tracking Algorithm. An algorithm that is based on the fact the slope of the PV array power curve shown in Fig. 7 is zero at the Maximum Power Point (MPP), positive on the left of the MPP, and negative on the right. The MPP can thus be tracked by comparing the instantaneous conductance (I/V) to the incremental conductance (∆ I/∆ V) [11] as in (1):

9
下载
107
浏览
2013-07-23发布

4. trns

  The model used for creating the reference voltage is shown in Fig. 4. First, photovoltaic output current (Ipv) and output voltage (Vpv) are passed through a first order low pass filter with a magnitude of G = 1 and a time constant of T = 0.01 seconds in order to filter out the high frequency components or harmonics from these signals as shown in Fig. 5 and Fig. 6. The filtered current and voltage signals (Ipv_F and Vpv_F) are then fed into the MPPT control block that uses the Incremental Conductance Tracking Algorithm. An algorithm that is based on the fact the slope of the PV array power curve shown in Fig. 7 is zero at the Maximum Power Point (MPP), positive on the left of the MPP, and negative on the right. The MPP can thus be tracked by comparing the instantaneous conductance (I/V) to the incremental conductance (∆ I/∆ V) [11] as in (1):

22
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78
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2013-07-23发布

5. trns

  The model used for creating the reference voltage is shown in Fig. 4. First, photovoltaic output current (Ipv) and output voltage (Vpv) are passed through a first order low pass filter with a magnitude of G = 1 and a time constant of T = 0.01 seconds in order to filter out the high frequency components or harmonics from these signals as shown in Fig. 5 and Fig. 6. The filtered current and voltage signals (Ipv_F and Vpv_F) are then fed into the MPPT control block that uses the Incremental Conductance Tracking Algorithm. An algorithm that is based on the fact the slope of the PV array power curve shown in Fig. 7 is zero at the Maximum Power Point (MPP), positive on the left of the MPP, and negative on the right. The MPP can thus be tracked by comparing the instantaneous conductance (I/V) to the incremental conductance (∆ I/∆ V) [11] as in (1):

22
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84
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2013-07-23发布

6. good_forced

  计算系统的lyapunov指数,利用wolf方法。(Lyapunov exponent calculated using the wolf approach.)

6
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125
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2013-07-17发布

7. good_forced

  计算系统的lyapunov指数,利用wolf方法。(Lyapunov exponent calculated using the wolf approach.)

6
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121
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2013-07-17发布

8. simplex-nelder

  Nelder and Mead Optimization Search Method

4
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91
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2013-05-13发布

9. Source

  AeroDyn风力机叶片空气动力学计算程序的内核,来自美国可再生能源实验室(AeroDyn is a set of aerodynamic loads code for wind turbine blades, which is developed by NREL)

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221
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2013-04-22发布

10. MATLAB-GUI-source-code

  MATLAB GUI 的一些源代码!非常适合初学者!(MATLAB GUI source code! Very suitable for beginners!)

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69
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2013-04-11发布

11. Umat_ViscoElasticPlastic_Material

  ABAQUS UMAT code 适用于平面应变,轴对称的黏弹塑性线性应变硬化材料,适用于大变形。(The ABAQUS UMAT code applies to plane strain, axisymmetric viscoelastic plasticity linear strain hardening material, suitable for large deformation.)

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173
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2013-03-30发布

12. li5

  怎么样在matlab中使用fft函数,以及Fourier 变换的数值计算(how to use fft in matlab)

2
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110
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2013-03-20发布

13. Pi_Sigma

  matlab coding here attached fo rpi sigma neural networks

2
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82
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2013-03-17发布

14. zjtl

  证据推理的一个算法,可以改成matlab的语言代码(Evidential reasoning)

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95
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2013-03-16发布

15. utitled-(2)

  this is a blasius solution by matlab code

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117
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2012-12-31发布

16. weixiuli2014

  Matlab简单TasksFrom LaralWikiLoading数据从一个文件中(Matlab Simple TasksFrom LaralWikiLoading data from a file)

2
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114
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2012-10-27发布

17. Fortran-95-Interface-to-MATLAB-API-

  Fotran95接口用于MATLAB API 的设计中,比较好用。(Fortran 95 Interface to MATLAB API )

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2012-10-12发布

18. 000558

  可用来计算直杆上一维热扩散问题,可以更改初值(Implicit scheme)

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88
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2012-08-27发布

19. montecarlo

  Matlab上编写的一个Monte-Carlo算法的示例程序和PPT资料(The sample program prepared by a Monte-Carlo algorithm on Matlab)

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116
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2012-08-19发布

20. l2dwave

  * A. Salih, Dept. of Mechanical Engg., NIT - Trichy, India. * ************************************************************************* * THIS PROGRAM SOLVES TWO-DIMENSIONAL LINEAR WAVE EQUATION IN A * * DOUBLY PERIODIC DOMAIN USING FINITE DIFFERENCE METHOD * * -Schemes: 1. Upwind Scheme * * 2. MacCormack Method * * 3. ENO-2 Scheme * ************************************************************************* *

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2012-07-18发布