Design process in visual programming: methods for visual and temporal analysis
File(s)2023_smc_armitage_et_al_design_process.pdf (2.35 MB)
Published version
Author(s)
Armitage, Jack
Magnusson, Thor
McPherson, Andrew
Type
Conference Paper
Abstract
Visual programming languages, such as Pure Data (Pd)
and Max/MSP, have been prevalent in computer music for
nearly three decades. However, few shared and consistent research methods have emerged for studying the reproducible use of digital musical instrument (DMI) designers employing these languages. In this paper, we introduce straightforward methods for extracting design process data from Pd usage through automated version control and protocol-based annotation. This data enables visual and temporal analysis, which can reveal patterns of DMI design cognition and collaboration processes. Although our focus is on design, we believe that this approach could also benefit creativity studies and musicological analysis of the compositional process. We present the outcomes of
a study involving four groups of DMI designers in a one-
hour closed activity and demonstrate how these analysis
methods can be used to gain additional insight by comparing them against participant survey data. In discussing how these methods could be enhanced and further developed, we address validity, scalability, replicability, and generalisability. Lastly, we examine motivations and challenges for DMI design cognition research.
and Max/MSP, have been prevalent in computer music for
nearly three decades. However, few shared and consistent research methods have emerged for studying the reproducible use of digital musical instrument (DMI) designers employing these languages. In this paper, we introduce straightforward methods for extracting design process data from Pd usage through automated version control and protocol-based annotation. This data enables visual and temporal analysis, which can reveal patterns of DMI design cognition and collaboration processes. Although our focus is on design, we believe that this approach could also benefit creativity studies and musicological analysis of the compositional process. We present the outcomes of
a study involving four groups of DMI designers in a one-
hour closed activity and demonstrate how these analysis
methods can be used to gain additional insight by comparing them against participant survey data. In discussing how these methods could be enhanced and further developed, we address validity, scalability, replicability, and generalisability. Lastly, we examine motivations and challenges for DMI design cognition research.
Date Issued
2023-06-15
Date Acceptance
2023-03-24
Citation
Proceedings of the Sound and Music Computing Conference 2023, 2023, pp.6-13
ISBN
978-91-527-7372-7
Start Page
6
End Page
13
Journal / Book Title
Proceedings of the Sound and Music Computing Conference 2023
Copyright Statement
© 2023 Jack Armitage et al. This is an open-access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License, which
permits unrestricted use, distribution, and reproduction in any medium, provided
the original author and source are credited.
permits unrestricted use, distribution, and reproduction in any medium, provided
the original author and source are credited.
License URL
Source
Sound and Music Computing Conference
Publication Status
Published
Start Date
2023-06-15
Finish Date
2023-06-17
Coverage Spatial
Stockholm, Sweden