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REGELSYSTEM UND VERFAHREN ZUM STEUERN DER ORIENTIERUNG EINES SEGMENTS EINES MANIPULATORS
A regulation system for controlling the orientation of a segment (5.3) of a manipulator, in particular of a large manipulator for truck-mounted concrete pumps, wherein the segment (5.3) is connected to a base (5.4) or a preceding segment (5.3) of the manipulator via a joint (5.5) and can be pivoted at the joint (5.5) relative to the base (5.4) or the preceding segment (5.3) about at least one axis of rotation by means of at least one actuating member (5.6), preferably a hydraulic actuating element, characterised in that the regulation system at least comprises: a first sensor (4.1), which is arranged on a segment (5.3) attached to the joint (5.5) and delivers a first measurement signal—referred to as a “deformation signal”—corresponding to a deformation of the segment (5.3), a second sensor (4.2, 4.3), which delivers a second measurement signal—referred to as an “orientation signal”—corresponding to the spatial orientation of the segment (5.3) attached to the joint (5.5), and at least one actuating element (5.6) associated with the joint (5.5); and is designed to process the deformation signal and the orientation signal as input variables and to determine from these, under consideration of a target orientation of the segment (5.3) associated with the joint (5.5), an actuating signal, which is fed to the associated actuating element (5.6).
REGELSYSTEM UND VERFAHREN ZUM STEUERN DER ORIENTIERUNG EINES SEGMENTS EINES MANIPULATORS
A regulation system for controlling the orientation of a segment (5.3) of a manipulator, in particular of a large manipulator for truck-mounted concrete pumps, wherein the segment (5.3) is connected to a base (5.4) or a preceding segment (5.3) of the manipulator via a joint (5.5) and can be pivoted at the joint (5.5) relative to the base (5.4) or the preceding segment (5.3) about at least one axis of rotation by means of at least one actuating member (5.6), preferably a hydraulic actuating element, characterised in that the regulation system at least comprises: a first sensor (4.1), which is arranged on a segment (5.3) attached to the joint (5.5) and delivers a first measurement signal—referred to as a “deformation signal”—corresponding to a deformation of the segment (5.3), a second sensor (4.2, 4.3), which delivers a second measurement signal—referred to as an “orientation signal”—corresponding to the spatial orientation of the segment (5.3) attached to the joint (5.5), and at least one actuating element (5.6) associated with the joint (5.5); and is designed to process the deformation signal and the orientation signal as input variables and to determine from these, under consideration of a target orientation of the segment (5.3) associated with the joint (5.5), an actuating signal, which is fed to the associated actuating element (5.6).
REGELSYSTEM UND VERFAHREN ZUM STEUERN DER ORIENTIERUNG EINES SEGMENTS EINES MANIPULATORS
CONTROL SYSTEM AND METHOD FOR CONTROLLING THE ORIENTATION OF A SEGMENT OF A MANIPULATOR
SYSTÈME DE RÉGULATION ET PROCÉDÉ DE COMMANDE DE L'ORIENTATION D'UN SEGMENT D'UN MANIPULATEUR
TEBEEK WOLFGANG (Autor:in) / KEMMETMÜLLER WOLFGANG (Autor:in) / HENIKL JOHANNES (Autor:in) / KUGI ANDREAS (Autor:in)
17.02.2016
Patent
Elektronische Ressource
Deutsch
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