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  • This category contains all control problems in which state-dependent switches occur. This switching is to be seen as different from the switching that is
    3 members (1 subcategory, 0 files) - 15:11, 18 November 2008

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  • ...istage process]] - [[:Category: State dependent switches | State dependent switches]]
    4 KB (575 words) - 15:21, 19 October 2023
  • ...llation column. The focus in the benchmark library is on the first kind of switches, whereas the second one is of course important for a classification of the ...nique. Sometimes, as in the case of MPEC reformulations of state-dependent switches <bib id="Baumrucker2009" />, disjunctive programming <bib id="Grossmann2002
    6 members (6 subcategories, 0 files) - 12:11, 23 January 2016
  • ...ons might depend on [[:Category:State dependent switches | state-dependent switches]].
    51 members (1 subcategory, 0 files) - 13:02, 20 November 2010
  • [[Category:State dependent switches]]
    0 members (0 subcategories, 0 files) - 17:46, 29 November 2008
  • ...ons might depend on [[:Category:State dependent switches | state-dependent switches]].
    3 members (1 subcategory, 0 files) - 13:04, 20 November 2010
  • This category contains all control problems in which state-dependent switches occur. This switching is to be seen as different from the switching that is
    3 members (1 subcategory, 0 files) - 15:11, 18 November 2008
  • ...h>F_i[x,u,v]</math> is active at time <math>t</math>, both state-dependent switches and outer convexification formulations may be written as ''disjunctive prog
    0 members (0 subcategories, 0 files) - 12:10, 23 January 2016
  • ...outer optimization problem, or from a special treatment of state-dependent switches, <bib id="Baumrucker2009" />. Note that all MPCCs can be reformulated as [[
    0 members (0 subcategories, 0 files) - 12:11, 23 January 2016
  • ...e time interval <math>[0, t_f]</math>. In other words, the right hand side switches infinetely often in a finite time horizon.
    0 members (0 subcategories, 0 files) - 12:10, 23 January 2016
  • Acceleration and energy comsumption are velocity-dependent. Hence, we will need switching functions <math>\sigma_i( x_1 ) = v_i - x_1< ...math>0 < S_4 < S</math> and velocity <math>v_4 > v_3</math>. Note that the state <math>x_0(\cdot)</math> is strictly monotonically increasing with time, as
    11 KB (1,459 words) - 18:21, 22 February 2016
  • ...ons might depend on [[:Category:State dependent switches | state-dependent switches]].
    2 members (0 subcategories, 0 files) - 09:17, 31 August 2012
  • ...ons might depend on [[:Category:State dependent switches | state-dependent switches]].
    3 KB (370 words) - 00:12, 28 June 2016
  • Image:State_sequence_Tank.jpg| State trajectory over time. [[Category: State dependent switches]]
    4 KB (637 words) - 09:34, 14 March 2020
  • ...the network at the energy producer nodes and by discrete but time-varying switches at the coupling nodes inside the network. ...th>x \in [0, l_r]</math>, temporal variable <math>t \in [0, T]</math>, and state variable <math>\xi_r(x,t) = (\xi^+_r(x, t), \xi^-_r(x, t))</math> containin
    6 KB (858 words) - 09:07, 16 July 2021
  • ...ons might depend on [[:Category:State dependent switches | state-dependent switches]].
    1 member (0 subcategories, 0 files) - 14:53, 19 October 2023