Design und Entwicklung
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[1] Andreas Pumpe,et al. A holistic decision framework for 3D printing investments in global supply chains , 2017 .
[2] Klaus Bengler,et al. Human Centered Assistance Applications for the working environment of the future , 2015 .
[3] Carmen Constantinescu,et al. Approach of Optimized Planning Process for Exoskeleton Centered Workplace Design , 2018 .
[4] Klaus Doppler,et al. Change Management : den Unternehmenswandel gestalten , 1995 .
[5] Stephen Fox,et al. Exoskeletons , 2019, Journal of Manufacturing Technology Management.
[6] Eduardo Rocon,et al. Human–Robot Cognitive Interaction , 2008 .
[7] Ralph Hensel,et al. Subjektive Evaluation industrieller Exoskelette im Rahmen von Feldstudien an ausgewählten Arbeitsplätzen , 2018, Zeitschrift für Arbeitswissenschaft.
[8] S. D. Parmar,et al. Performance of Optimized Generalized Weighted Estimator ICA algorithm on Biomedical Signals Contaminated by Noise , 2010 .
[9] Christopher G. Pretty,et al. Review of Upper Limb Hybrid Exoskeletons , 2017 .
[10] U. Daub,et al. Status demonstration of the interdisciplinary development regarding the upper limb exoskeleton .Stuttgart Exo-Jacket” , 2017 .
[11] U. Daub. Evaluation aspects of potential influences on human beings by wearing exoskeletal systems , 2017 .
[12] M. de Looze,et al. Assessment of an active industrial exoskeleton to aid dynamic lifting and lowering manual handling tasks. , 2018, Applied Ergonomics.
[13] Vincent Bonnet,et al. Ergonomic contribution of ABLE exoskeleton in automotive industry , 2014 .
[14] Eric B. Weston,et al. Impact of two postural assist exoskeletons on biomechanical loading of the lumbar spine. , 2019, Applied ergonomics.
[15] Maury A. Nussbaum,et al. Assessing the influence of a passive, upper extremity exoskeletal vest for tasks requiring arm elevation: Part I - "Expected" effects on discomfort, shoulder muscle activity, and work task performance. , 2018, Applied ergonomics.
[16] Carmen Constantinescu,et al. Challenges and Possible Solutions for Enhancing the Workplaces of the Future by Integrating Smart and Adaptive Exoskeletons , 2018 .
[17] Carmen Constantinescu,et al. Methodology of Employing Exoskeleton Technology in Manufacturing by Considering Time-Related and Ergonomics Influences , 2020, Applied Sciences.
[18] S. Bai,et al. Biomechanical HRI Modeling and Mechatronic Design of Exoskeletons for Assistive Applications , 2017 .
[19] Jörg Becker,et al. Grundsätze ordnungsmäßiger Modellierung , 1995, Wirtschaftsinf..
[20] Robert Bogue,et al. Exoskeletons - a review of industrial applications , 2018, Ind. Robot.
[21] Carmen Constantinescu,et al. JackEx: The New Digital Manufacturing Resource for Optimization of Exoskeleton-based Factory Environments☆ , 2016 .
[22] Terry R. Butler. Exoskeleton Technology: Making Workers Safer and More Productive , 2016 .
[23] Xueke Wang,et al. Biomechanical evaluation of exoskeleton use on loading of the lumbar spine. , 2018, Applied ergonomics.
[24] Jörg Becker,et al. Grundsätze ordnungsmässiger Modellierung , 1995 .
[25] Sonali Mathur,et al. Advancements in the V-Model , 2010 .
[26] M. de Looze,et al. The effects of a passive exoskeleton on muscle activity, discomfort and endurance time in forward bending work. , 2016, Applied ergonomics.
[27] Kevin W. Boyack,et al. An Introduction to Modeling Science: Basic Model Types, Key Definitions, and a General Framework for the Comparison of Process Models , 2012 .