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A MECHANICAL FILTER CONCEPT FOR CONTROL OF NON-LINEAR CRANE-LOAD OSCILLATIONS

✍ Scribed by B. BALACHANDRAN; Y.-Y. LI; C.-C. FANG


Publisher
Elsevier Science
Year
1999
Tongue
English
Weight
434 KB
Volume
228
Category
Article
ISSN
0022-460X

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✦ Synopsis


In this article, results obtained through analytical and numerical investigations into the control of planar, large-amplitude crane-load oscillations are presented. A novel concept called a mechanical ,lter is proposed and described. In the context of ship crane-load oscillations, this concept is implemented on the basis of the premise that by controlling the pivot point about which the load oscillates, one can e!ectively suppress crane-load oscillations. Ship-roll-induced load oscillations are considered and a &&mechanical "lter'' is introduced at the pivot to control these oscillations. The pivot is constrained to follow a circular track in the considered "lter. The governing non-linear dynamical systems for the cases with and without the "lter are presented. Transfer functions are determined for the linearized dynamical systems and the "lter performance characteristics are discussed. The non-linear dynamics of the systems with and without the "lter is studied with respect to quasi-static variation of di!erent scalar control parameters. Static feedback laws for actively controlling the pivot motions are also considered and the dynamics in the controlled cases is compared with the dynamics in the corresponding uncontrolled cases. It is shown that the presence of the "lter helps in eliminating some of the subcritical bifurcations that may arise in the crane-load response during periodic ship-roll excitations. The presence of feedback control also allows us to e!ectively suppress transient crane-load oscillations.