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	<title>Real-Time Physics Simulation Forum</title>
	
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	<updated>2011-09-28T21:31:49+00:00</updated>

	<author><name><![CDATA[Real-Time Physics Simulation Forum]]></name></author>
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		<entry>
		<author><name><![CDATA[mozi]]></name></author>
		<updated>2011-09-28T21:31:49+00:00</updated>

		<published>2011-09-28T21:31:49+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=25581#p25581</id>
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		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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just curios what's the ending of the story a year later<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=6029">mozi</a> — Wed Sep 28, 2011 9:31 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[Dani3L]]></name></author>
		<updated>2010-03-04T22:57:34+00:00</updated>

		<published>2010-03-04T22:57:34+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17771#p17771</id>
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		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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<blockquote class="uncited"><div><blockquote class="uncited"><div>But I don't really believe that it's true !</div></blockquote>Could you be more specific and explain why you don't believe it's true?</div></blockquote>For instance in the thesis, the vector b_aux seems to be a vector but according to what I have written above, b_aux would be a matrix because E is a matrix of dimension (etha x K) x K.<br><blockquote class="uncited"><div>Have you tried asking Kenny Erleben himself at the Open Tissue forums? <a href="http://www.opentissue.org/opentissuebb/" class="postlink">http://www.opentissue.org/opentissuebb/</a></div></blockquote>I'm gonna try !<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=5337">Dani3L</a> — Thu Mar 04, 2010 10:57 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[Erwin Coumans]]></name></author>
		<updated>2010-03-04T21:49:53+00:00</updated>

		<published>2010-03-04T21:49:53+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17770#p17770</id>
		<link href="https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17770#p17770"/>
		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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<blockquote class="uncited"><div>But I don't really believe that it's true !</div></blockquote>Could you be more specific and explain why you don't believe it's true?<br><br>Have you tried asking Kenny Erleben himself at the Open Tissue forums? <a href="http://www.opentissue.org/opentissuebb/" class="postlink">http://www.opentissue.org/opentissuebb/</a><br>Thanks,<br>Erwin<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=2">Erwin Coumans</a> — Thu Mar 04, 2010 9:49 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[Dani3L]]></name></author>
		<updated>2010-03-04T20:04:52+00:00</updated>

		<published>2010-03-04T20:04:52+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17769#p17769</id>
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		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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Really, no one can help me with my problem ? No one can give me some clue about the meaning of this sentence ? It will help me a lot !<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=5337">Dani3L</a> — Thu Mar 04, 2010 8:04 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[Dani3L]]></name></author>
		<updated>2010-02-28T20:11:19+00:00</updated>

		<published>2010-02-28T20:11:19+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17691#p17691</id>
		<link href="https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17691#p17691"/>
		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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Thanks for your answer but I still don't understand. Actually, I have a problem to understand the sentence :<br><br>"<strong class="text-strong">A_aux</strong> and <strong class="text-strong">b_aux</strong> correspond to a permutation of the third row and column in 4.61."<br><br>For me, the third row in 4.61 is the matrix:<br><br> (-E^t  mu  0)<br><br>and the third column in 4.61 is the matrix:<br><br>(E<br>0<br>0)<br><br>therefore, for me we have:<br><br><strong class="text-strong">A_aux</strong> = (-E^t mu 0)<br><br>and<br><br> <strong class="text-strong">b_aux</strong> = <br>(E<br>0<br>0)<br><br>But I don't really believe that it's true !<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=5337">Dani3L</a> — Sun Feb 28, 2010 8:11 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[dneckels]]></name></author>
		<updated>2010-02-26T16:25:42+00:00</updated>

		<published>2010-02-26T16:25:42+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17651#p17651</id>
		<link href="https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17651#p17651"/>
		<title type="html"><![CDATA[Re: Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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Since no-one who knows what they're talking about is helping, I'll try  <img class="smilies" src="https://pybullet.org/Bullet/phpBB3/images/smilies/icon_biggrin.gif" width="15" height="15" alt=":D" title="Very Happy"> <br><br>Looks like Aaux,baux are the friction coupling terms  (E = all ones, mu = friction scaling).  I don't totally understand what he has done with the friction direction vectors....<br><br>I find erleben great for coming up with the constraint jacobians, but hard to use for the full shebam.  I combined his stuff with:<br><a href="http://www.cs.ubc.ca/grads/resources/thesis/Nov02/Michael_Cline.pdf" class="postlink">http://www.cs.ubc.ca/grads/resources/th ... _Cline.pdf</a><br><a href="http://www.gphysics.com/files/IterativeDynamics.pdf" class="postlink">http://www.gphysics.com/files/IterativeDynamics.pdf</a><br><br>In particular, I believe Erleben is using the nonsymmetric friction formulation which is also a bit harder to solve than that in the iterative dynamics paper....<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=5718">dneckels</a> — Fri Feb 26, 2010 4:25 pm</p><hr />
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	</entry>
		<entry>
		<author><name><![CDATA[Dani3L]]></name></author>
		<updated>2010-02-22T20:35:22+00:00</updated>

		<published>2010-02-22T20:35:22+00:00</published>
		<id>https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17584#p17584</id>
		<link href="https://pybullet.org/Bullet/phpBB3/viewtopic.php?p=17584#p17584"/>
		<title type="html"><![CDATA[Question about the PHD Thesis of Kenny Erleben [EDITED]]]></title>

		
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Hi, I'm reading the PHD Thesis "<a href="ftp://ftp.diku.dk/diku/image/publications/erleben.050401.pdf" class="postlink">Stable, Robust, and Versatile Multibody Dynamics Animation</a>" of Kenny Erleben in order to implement a rigid body framework.<br><br>There is something I don't understand. At the page 99 there is the complete LCP problem formulation (see expression 4.216). Inside this expression, there is some matrices called <strong class="text-strong">A_aux</strong> and a vector called <strong class="text-strong">b_aux</strong>. <br><br>At the page 100, it's written that <strong class="text-strong">A_aux</strong> and <strong class="text-strong">b_aux</strong> correspond to a permutation of the third row and column in 4.61. What does this mean ? I don't understand what are the exact expressions for the <strong class="text-strong">A_aux</strong> matrix and the <strong class="text-strong">b_aux</strong> vector.<br><br>Could anyone help me to understand what should be put in the matrix A_aux and in the vector b_aux ?<br>Thanks in advance.<br><br>Daniel<p>Statistics: Posted by <a href="https://pybullet.org/Bullet/phpBB3/memberlist.php?mode=viewprofile&amp;u=5337">Dani3L</a> — Mon Feb 22, 2010 8:35 pm</p><hr />
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