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Singularities of robot mechanismsnum...
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Bohigas, Oriol.
Singularities of robot mechanismsnumerical computation and avoidance path planning /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Singularities of robot mechanismsby Oriol Bohigas, Montserrat Manubens, Lluis Ros.
其他題名:
numerical computation and avoidance path planning /
作者:
Bohigas, Oriol.
其他作者:
Manubens, Montserrat.
出版者:
Cham :Springer International Publishing :2017.
面頁冊數:
xxi, 184 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Robotics.
電子資源:
http://dx.doi.org/10.1007/978-3-319-32922-2
ISBN:
9783319329222$q(electronic bk.)
Singularities of robot mechanismsnumerical computation and avoidance path planning /
Bohigas, Oriol.
Singularities of robot mechanisms
numerical computation and avoidance path planning /[electronic resource] :by Oriol Bohigas, Montserrat Manubens, Lluis Ros. - Cham :Springer International Publishing :2017. - xxi, 184 p. :ill., digital ;24 cm. - Mechanisms and machine science,v.412211-0984 ;. - Mechanisms and machine science ;v.2..
Preface -- Notation -- List of Figures -- 1 Introduction -- 1.1 Historical Context -- 1.2 Assumptions and Scope -- 1.3 Reader's Guide -- 2 Singularity Types -- 2.1 Forward and Inverse Singularities -- 2.2 A Geometric Interpretation of Singularities -- 2.3 Lower-level Singularity Types -- 2.4 A Simple Mechanism with All Singularities -- 3 Numerical Computation of Singularity Sets -- 3.1 A Suitable Approach -- 3.2 Formulating the Equations of the Singularity Set -- 3.3 Isolating the Singularity Set -- 3.4 Visualising the Singularity Sets -- 3.5 Case Studies -- 4 Workspace Determination -- 4.1 The Need of a General Method -- 4.2 The Workspace and its Boundaries -- 4.3 Issues of Continuation Methods -- 4.4 Exploiting the Branch-and-Prune Machinery -- 4.5 Case Studies -- 5 Singularity-free Path Planning -- 5.1 Related Work -- 5.2 Formulating the Singularity-free C-space -- 5.3 Exploring the Singularity-free C-space -- 5.4 Case Studies -- 6 Planning with Further Constraints -- 6.1 Wrench-Feasibility Constraints -- 6.2 The Planning Problem -- 6.3 Proofs of the Properties -- 6.4 Case Studies -- 6.5 Details about the Wrench Ellipsoid -- 6.6 Extensions -- 7 Conclusions -- 7.1 Summary of Results -- 7.2 Future Research Directions -- References -- Index -- Author Index.
This book presents the singular configurations associated with a robot mechanism, together with robust methods for their computation, interpretation, and avoidance path planning. Having such methods is essential as singularities generally pose problems to the normal operation of a robot, but also determine the workspaces and motion impediments of its underlying mechanical structure. A distinctive feature of this volume is that the methods are applicable to nonredundant mechanisms of general architecture, defined by planar or spatial kinematic chains interconnected in an arbitrary way. Moreover, singularities are interpreted as silhouettes of the configuration space when seen from the input or output spaces. This leads to a powerful image that explains the consequences of traversing singular configurations, and all the rich information that can be extracted from them. The problems are solved by means of effective branch-and-prune and numerical continuation methods that are of independent interest in themselves. The theory can be put into practice as well: a companion web page gives open access to implementations of the algorithms and the corresponding input files. Using them, the reader can gain hands-on experience on the topic, or analyse new mechanisms beyond those examined in the text. Overall, the book contributes new tools for robot design, and constitutes a single reference source of knowledge that is otherwise dispersed in the literature.
ISBN: 9783319329222$q(electronic bk.)
Standard No.: 10.1007/978-3-319-32922-2doiSubjects--Topical Terms:
181952
Robotics.
LC Class. No.: TJ211.412
Dewey Class. No.: 629.892
Singularities of robot mechanismsnumerical computation and avoidance path planning /
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Preface -- Notation -- List of Figures -- 1 Introduction -- 1.1 Historical Context -- 1.2 Assumptions and Scope -- 1.3 Reader's Guide -- 2 Singularity Types -- 2.1 Forward and Inverse Singularities -- 2.2 A Geometric Interpretation of Singularities -- 2.3 Lower-level Singularity Types -- 2.4 A Simple Mechanism with All Singularities -- 3 Numerical Computation of Singularity Sets -- 3.1 A Suitable Approach -- 3.2 Formulating the Equations of the Singularity Set -- 3.3 Isolating the Singularity Set -- 3.4 Visualising the Singularity Sets -- 3.5 Case Studies -- 4 Workspace Determination -- 4.1 The Need of a General Method -- 4.2 The Workspace and its Boundaries -- 4.3 Issues of Continuation Methods -- 4.4 Exploiting the Branch-and-Prune Machinery -- 4.5 Case Studies -- 5 Singularity-free Path Planning -- 5.1 Related Work -- 5.2 Formulating the Singularity-free C-space -- 5.3 Exploring the Singularity-free C-space -- 5.4 Case Studies -- 6 Planning with Further Constraints -- 6.1 Wrench-Feasibility Constraints -- 6.2 The Planning Problem -- 6.3 Proofs of the Properties -- 6.4 Case Studies -- 6.5 Details about the Wrench Ellipsoid -- 6.6 Extensions -- 7 Conclusions -- 7.1 Summary of Results -- 7.2 Future Research Directions -- References -- Index -- Author Index.
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This book presents the singular configurations associated with a robot mechanism, together with robust methods for their computation, interpretation, and avoidance path planning. Having such methods is essential as singularities generally pose problems to the normal operation of a robot, but also determine the workspaces and motion impediments of its underlying mechanical structure. A distinctive feature of this volume is that the methods are applicable to nonredundant mechanisms of general architecture, defined by planar or spatial kinematic chains interconnected in an arbitrary way. Moreover, singularities are interpreted as silhouettes of the configuration space when seen from the input or output spaces. This leads to a powerful image that explains the consequences of traversing singular configurations, and all the rich information that can be extracted from them. The problems are solved by means of effective branch-and-prune and numerical continuation methods that are of independent interest in themselves. The theory can be put into practice as well: a companion web page gives open access to implementations of the algorithms and the corresponding input files. Using them, the reader can gain hands-on experience on the topic, or analyse new mechanisms beyond those examined in the text. Overall, the book contributes new tools for robot design, and constitutes a single reference source of knowledge that is otherwise dispersed in the literature.
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