Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification"

Grond F, Hermann T (2012)
Bielefeld University.

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Abstract / Bemerkung
We present in this paper SingingFunction, a vowel-based sonification strategy for mathematical functions. Within the research field of auditory graphs as representation of scalar functions, we focus in SingingFunction on important aspects of sound design, which allow to better distinguish function shapes as auditory gestalts. SingingFunction features the first vowel-based synthesis for function sonification, and allows for a seamless integration of higher derivatives of the function into a single sound stream. We present further the results of a psycho physical experiment, where we compare the effectiveness of function sonifications based on either mapping only f'(x), or including hirarchically further information about the first derivatives f'(x), or the second derivative f''(x). Further we look at interactivity as an important factor and report interesting effects across all 3 sonification methods by comparing interactive explorations versus simple playback of sonified functions. Finally, we discuss SingingFunction within the context of existing function sonifications, and possible evaluation methods. This website contains supplementary material.
Erscheinungsjahr
2012
Page URI
https://pub.uni-bielefeld.de/record/2695588

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Grond F, Hermann T. Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification". Bielefeld University; 2012.
Grond, F., & Hermann, T. (2012). Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification". Bielefeld University. doi:10.4119/unibi/2695588
Grond, F., and Hermann, T. (2012). Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification". Bielefeld University.
Grond, F., & Hermann, T., 2012. Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification", Bielefeld University.
F. Grond and T. Hermann, Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification", Bielefeld University, 2012.
Grond, F., Hermann, T.: Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification". Bielefeld University (2012).
Grond, Florian, and Hermann, Thomas. Supplementary Material for "Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification". Bielefeld University, 2012.
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Prototype illustrating the multi parameter mapping paradigm including f(x), f'(x) and f''(x) in one sound stream.
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Sound Example 1 (wav)
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The function pairs from the evaluation with the biggest contrast (parameter a = {0.1, 2.0}. )
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2019-09-12T09:59:39Z
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Sound Example 1 (mp3)
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The function pairs from the evaluation with the biggest contrast (parameter a = {0.1, 2.0}. )
mp3 version
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2019-09-12T09:59:39Z
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Sound Example 2 (wav)
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All sonified functions from the evaluation (parameter a = {0.1, 1.0, 1.5, 2.0}. )
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2019-09-12T09:59:39Z
MD5 Prüfsumme
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Sound Example 2 (mp3)
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All sonified functions from the evaluation (parameter a = {0.1, 1.0, 1.5, 2.0}. )
mp3 version
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OA Open Access
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2019-09-12T09:59:39Z
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2019-09-12T09:59:39Z
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Singing Function: Exploring Auditory Graphs with a Vowel Based Sonification
Grond F, Hermann T (2012)
Journal on Multimodal User Interfaces 5(3-4): 87-95.

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