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analysis:solve

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analysis:solve [2014/08/12 03:37]
Jamie McCallum [Start calc/solve & get a viable solution]
analysis:solve [2014/08/12 03:38]
Jamie McCallum [Start calc/solve & get a viable solution]
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     * Return to the main menu with ''​O''​ and then go to the Weighting menu with ''​H''​. Press ''​C''​ to add a noise floor to the weights, then save areturn to the main menu with ''​O''​     * Return to the main menu with ''​O''​ and then go to the Weighting menu with ''​H''​. Press ''​C''​ to add a noise floor to the weights, then save areturn to the main menu with ''​O''​
     * Generate a solution with ''​Q''​. If the weighted RMS is < 150 ps, things are likely ok. You should be able to produxe a version 4 database and NGS file at this stage if you want to work on the data in VieVS/​OCCAM/​etc. This avoids calc/solve flagging ''​outliers''​ automatically. To proceed on to obtain a final solution, read on.     * Generate a solution with ''​Q''​. If the weighted RMS is < 150 ps, things are likely ok. You should be able to produxe a version 4 database and NGS file at this stage if you want to work on the data in VieVS/​OCCAM/​etc. This avoids calc/solve flagging ''​outliers''​ automatically. To proceed on to obtain a final solution, read on.
-  * Eliminate outliers with ''​\''​. Set recommended parameters with the following commands: ''​X'',​ '​1000''​ (press enter), ''​U'',​ ''​400''​ (press enter), ''​C''​ (press enter). When ready, the screen should look like this:+  * Eliminate outliers with ''​\''​. Set recommended parameters with the following commands: ''​X'', ​''​1000''​ (press enter), ''​U'',​ ''​400''​ (press enter), ''​C''​ (press enter). When ready, the screen should look like this:
  
 <​code>​ <​code>​
/home/www/auscope/opswiki/data/pages/analysis/solve.txt · Last modified: 2014/08/12 04:09 by Jamie McCallum