source: sasview/sansmodels/src/release_notes.txt @ bbc8013

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1Release Notes
2=============
3
4SANS Models version 0.4.1
5
6Package name: sans.models
7
81- What's New in Version 0.?
9    - Release date: ?
10    - C extension models now use new C++ classes that incorporate dispersity and averaging
11      functionality. See utest_dispersity.py for examples of how to use the new dispersion
12      classes.
13     
14      # Create a model
15      model= CylinderModel()
16     
17      # Create a dispersion model
18      disp = GaussianDispersion()
19     
20          # Set the dispersion for a chosen parameter
21          model.set_dispersion('radius', disp)
22         
23          # Set the parameters of the dispersion model
24      model.dispersion['radius']['width'] = 5.0
25      model.dispersion['radius']['npts'] = 100
26
27   
28    Version 0.4.1
29    - Release date: 6/9/2008
30    - Modified non-shape models so that the 2D output is the 1D output for the length of Q
31
32    Version 0.4.0
33        - Release date: 4/15/2008
34        - Added shape-independent models.
35       
36        Version 0.3.2:
37        - Release date: 2/14/2008
38        - Added models to be used in magnetic analysis.
39
40
412- Downloading and Installing
42
43        2.1- System Requirements:
44                - Python version >= 2.4 should be running on the system
45
46        2.2- Installing:
47                - Get the code from svn://danse.us/sans/releases/sansmodels-0.4.0
48                - Execute the following:
49                        python setup.py install
50
513- Known Issues
52
53        3.1- All systems:
54                - Q range validity of I(q) calculations.
55                        Our 1D models of I(q) use the function of the NCNR library
56                        for their IGOR package (Klein, 2006). That library uses a
57                        fsat integration technique in some of its models (cylinders
58                        and ellipsoids). Integration is done using 76 points in the
59                        angle between the axis of the object and the q-vector, which
60                        translates in a larger inaccuracy at high q. Integratiing
61                        the 2D model I(q,phi) over all orientations of the object
62                        will not yield the exact same result as the NCNR calculation
63                        for q > 0.3 A-1.
64                - Refactoring needs to be done to update the model base class.
65                  We should get rid of the useless arithmetics and store the parameters
66                  as class objects rather than values. This would eliminate the multitude
67                  of dictionaries needed to store all the various aspects of a parameter
68                  (limits, units, dispersity information). The C++ design it relies
69                  on is much cleaner in that respect, but it still depends on the old
70                  C computation. Those should be incorporated in the C++ classes.
71
72        3.2- Windows:
73                - None
74
75        3.3- Linux:
76                - None
77
784- Troubleshooting
79
80        - None
81
825- Frequently Asked Questions
83
84        - None
85
866- Other Resources
87
88        - See: http://danse.us/trac/sans/wiki/8_2_2_1DModelFitting
89        - See: http://danse.us/trac/sans/wiki/8_2_3_2DModeling
90        - See: http://danse.us/trac/sans/wiki/8_2_6_model_extensions
91        - See: http://danse.us/trac/sans/wiki/8_2_1Nonshape_models
92
93       
94
95       
96
97
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