行星尺寸仪:接近系外行星的声音化

Adrián García Riber
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引用次数: 8

摘要

基于与调查对象相关的信息创建模拟、声音和图像是目前在多个领域使用的一种真正的工具,可以使非专业公众更接近科学成就和发现。在这种为教育和信息目的而开发的多模态表示和模拟的背景下,这项工作打算利用围绕Trappist-1恒星运行的七颗行星的引力定律,在虚拟乐器的开发和物理模型之间建立一座桥梁。以下是一个跨学科转换算法设计的案例研究,它将音乐软件合成与系外行星的天文数据联系起来,这些数据是从观测到的恒星光曲线的通量变化中测量出来的,并试图提出一种系统的、可重复的方法,对任何其他行星系统或基于模型的虚拟仪器设计都有用。因此,提出了虚拟交互合成器原型Planethesizer,其默认配置显示多模态Trappist-1, Kepler-444和K2-72行星系统仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Planethesizer: Approaching Exoplanet Sonification
The creation of simulations, sounds and images based on information related to an object of investigation is currently a real tool used in multiple areas to bring the non-specialized public closer to scientific achievements and discoveries. Under this context of multimodal representations and simulations developed for educational and informational purposes, this work intends to build a bridge between virtual musical instruments’ development and physical models, using the gravitation laws of the seven planets orbiting around the Trappist-1 star. The following is a case study of an interdisciplinary conversion algorithm design that relates musical software synthesis to exoplanets’ astronomical data measured from the observed flux variations in the light curves of their star-and that tries to suggest a systematic and reproducible method, useful for any other planetary system or model-based virtual instrument design. As a result, the Virtual Interactive Synthesizer prototype Planethesizer is presented, whose default configurations display a multimodal Trappist-1, Kepler-444 and K2-72 planetary systems simulation.
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