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Synthesis of Mechanism for single- and hybrid-tasks using Differential Evolution

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arxiv 1102.2017 v2 pith:U64ABYDO submitted 2011-02-10 cs.CE

classification cs.CE
keywords generationsynthesismechanismdifferentialevolutionhybrid-tasksorderpath
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The optimal dimensional synthesis for planar mechanisms using differential evolution (DE) is demonstrated. Four examples are included: in the first case, the synthesis of a mechanism for hybrid-tasks, considering path generation, function generation, and motion generation, is carried out. The second and third cases pertain to path generation, with and without prescribed timing. Finally, the synthesis of an Ackerman mechanism is reported. Order defect problem is solved by manipulating individuals instead of penalizing or discretizing the search space for the parameters. A technique that consists in applying a transformation in order to satisfy the Grashof and crank conditions to generate an initial elitist population is introduced. As a result, the evolutionary algorithm increases its efficiency.

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  1. Thermally Robust Cooperative Function in Mechanical Networks

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    Symmetric training of mechanical networks produces cooperative binding, and a modified training that raises the frequency of the functional mode increases the temperature at which thermal fluctuations destroy that coo...

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