Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation

A. Mue{\ss}, J. Weber, Raphael-Elias Reisch, B. Jurke, in: Proceedings of the First Conference of Machine Learning for Cyber Physical Systems, VDI-Publishers, 2015.

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Conference Paper | Published | English
Author
Mue{\ss}, André; Weber, Jens; Reisch, Raphael-Elias; Jurke, Benjamin
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Proceedings Title
Proceedings of the First Conference of Machine Learning for Cyber Physical Systems
Conference Date
2015-10-01 – 2015-10-02
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Mue{\ss} A, Weber J, Reisch Raphael-Elias, Jurke B. Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation. In: Proceedings of the First Conference of Machine Learning for Cyber Physical Systems. VDI-Publishers; 2015.
Mue{\ss}, A., Weber, J., Reisch, Raphael-Elias, & Jurke, B. (2015). Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation. Proceedings of the First Conference of Machine Learning for Cyber Physical Systems.
@inproceedings{Mue{\ss}_Weber_Reisch_Jurke_2015, title={Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation}, booktitle={Proceedings of the First Conference of Machine Learning for Cyber Physical Systems}, publisher={VDI-Publishers}, author={Mue{\ss}, André and Weber, Jens and Reisch, Raphael-Elias and Jurke, Benjamin}, year={2015} }
Mue{\ss}, André, Jens Weber, Raphael-Elias Reisch, and Benjamin Jurke. “Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation.” In Proceedings of the First Conference of Machine Learning for Cyber Physical Systems. VDI-Publishers, 2015.
A. Mue{\ss}, J. Weber, Raphael-Elias Reisch, and B. Jurke, “Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation,” 2015.
Mue{\ss}, André, et al. “Implementation and Comparison of Cluster-Based PSO Extensions in Hybrid Settings with Efficient Approximation.” Proceedings of the First Conference of Machine Learning for Cyber Physical Systems, VDI-Publishers, 2015.

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