Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring"

Hermann T, Hildebrandt T, Langeslag P, Rinderle-Ma S (2015)
Bielefeld University.

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This Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring" is made available under the Open Database License: http://opendatacommons.org/licenses/odbl/1.0. Any rights in individual contents of the database are licensed under the Database Contents License: http://opendatacommons.org/licenses/dbcl/1.0/
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Hermann T, Hildebrandt T, Langeslag P, Rinderle-Ma S. Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring". Bielefeld University; 2015.
Hermann, T., Hildebrandt, T., Langeslag, P., & Rinderle-Ma, S. (2015). Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring". Bielefeld University.
Hermann, T., Hildebrandt, T., Langeslag, P., and Rinderle-Ma, S. (2015). Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring". Bielefeld University.
Hermann, T., et al., 2015. Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring", Bielefeld University.
T. Hermann, et al., Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring", Bielefeld University, 2015.
Hermann, T., Hildebrandt, T., Langeslag, P., Rinderle-Ma, S.: Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring". Bielefeld University (2015).
Hermann, Thomas, Hildebrandt, Tobias, Langeslag, Patrick, and Rinderle-Ma, Stefanie. Supplementary Material for "Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring". Bielefeld University, 2015.
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Description
This video demonstrates the initial sonification of our SoProMon system where 6 sounds were selected from the domain of forest noises and assigned to machine execution steps. A systematic mapping from machine specific data controls features of the sounds such as timbre or level.
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OA Open Access
Last Uploaded
2016-04-04T19:07:07Z
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Description
This sound example illustrates our alternative approach using continuous sound samples for each machine, merely controlling mixing features of these into a complete soundscape according to data of the process. After 1 min stationary process slowly a machine (represented by the thunderstorm sounds) becomes more urgent and finally critical. After 2 minutes, the output buffer of a machine slowly runs full, causing it to halt.
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OA Open Access
Last Uploaded
2016-04-04T19:07:07Z
Description
This sound example illustrates an approach using 6 musical motif components that jointly create a background pattern – which is modified in musical dimensions according to the abnormality in the machines.
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OA Open Access
Last Uploaded
2016-04-04T19:07:07Z
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Description
Similar to S1, this soundscape illustrates a mapping of machine-specific data on the mixing of continuous soundstreams, this time sound originating from the jungle. As many of these sounds exhibit already a rather stabile rhythm we consider a hybrid approach where we combine event-based and continuous components in process-monitoring sonifications.
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OA Open Access
Last Uploaded
2016-04-04T19:07:07Z

This data publication is cited in the following publications:
2752941
Optimizing Aesthetics and Precision in Sonification for Peripheral Process-Monitoring
Hermann T, Hildebrandt T, Langeslag P, Rinderle-Ma S (In Press)
In: Proceedings of the 21st International Conference on Auditory Display (ICAD-2015). Graz, Austria: International Community for Auditory Display (ICAD).
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