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Investigating perceived emotional correlates of rhythmic density in algorithmic music composition

机译:调查算法音乐作品中节奏密度的感知情感相关性

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摘要

© 2015 ACM 1544-3558/2015/06-ART8$15.00. Affective algorithmic composition is a growing field that combines perceptually motivated affective computing strategies with novel music generation. This article presents work toward the development of one application. The long-term goal is to develop a responsive and adaptive system for inducing affect that is both controlled and validated by biophysical measures. Literature documenting perceptual responses to music identifies a variety of musical features and possible affective correlations, but perceptual evaluations of these musical features for the purposes of inclusion in a music generation system are not readily available. A discrete feature, rhythmic density (a function of note duration in each musical bar, regardless of tempo), was selected because it was shown to be well-correlated with affective responses in existing literature. A prototype system was then designed to produce controlled degrees of variation in rhythmic density via a transformative algorithm. A two-stage perceptual evaluation of a stimulus set created by this prototype was then undertaken. First, listener responses from a pairwise scaling experiment were analyzed via Multidimensional Scaling Analysis (MDS). The statistical best-fit solution was rotated such that stimuli with the largest range of variation were placed across the horizontal plane in two dimensions. In this orientation, stimuli with deliberate variation in rhythmic density appeared farther from the source material used to generate them than from stimuli generated by random permutation. Second, the same stimulus set was then evaluated according to the order suggested in the rotated two-dimensional solution in a verbal elicitation experiment. A Verbal Protocol Analysis (VPA) found that listener perception of the stimulus set varied in at least two commonly understood emotional descriptors, which might be considered affective correlates of rhythmic density. Thus, these results further corroborate previous studies wherein musical parameters are monitored for changes in emotional expression and that some similarly parameterized control of perceived emotional content in an affective algorithmic composition system can be achieved and provide a methodology for evaluating and including further possible musical features in such a system. Some suggestions regarding the test procedure and analysis techniques are also documented here.
机译:©2015 ACM 1544-3558 / 2015 / 06-ART8 $ 15.00。情感算法组合是一个不断发展的领域,它将感知动机的情感计算策略与新颖的音乐生成结合在一起。本文介绍了开发一个应用程序的工作。长期目标是开发一种可感应的自适应系统,以诱导可通过生物物理措施控制和验证的影响。记录对音乐的感性响应的文献识别了各种音乐特征和可能的情感相关性,但是出于包括在音乐产生系统中的目的,这些音乐特征的感性评估尚不容易。选择了一种离散的功能,即节奏密度(每个音乐小节中音符持续时间的函数,而与节奏无关),因为它在现有文献中显示出与情感反应紧密相关。然后设计原型系统,以通过变换算法产生节奏密度的受控变化程度。然后对该原型创建的刺激集进行了两个阶段的感知评估。首先,通过多维缩放分析(MDS)分析成对缩放实验的听众响应。旋转统计最佳拟合解,以使具有最大变化范围的刺激以二维方式横穿水平面放置。在这种方向上,节奏密度有故意变化的刺激比随机产生的刺激看起来更远离用于生成它们的源材料。第二,然后根据口头启发实验中旋转二维解决方案中建议的顺序评估相同的刺激集。口头协议分析(VPA)发现,听众对刺激集的感知在至少两个通常理解的情绪描述符中有所不同,这可能被认为是节奏密度的情感关联。因此,这些结果进一步证实了先前的研究,其中监测了音乐参数的情感表达变化,并且可以实现情感算法组成系统中感知情感内容的一些类似参数化控制,并提供了一种评估和包括其他可能的音乐特征的方法。这样的系统。关于测试程序和分析技术的一些建议也记录在这里。

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