通过轮廓线形状区分小提琴是否被缩小改造
Identification of Violin Reduction via Contour Lines Classification
- 用数学曲线拟合小提琴轮廓线,提取开度与拉伸参数
- 基于25把小提琴的3D数据,识别出缩小型号的几何特征
- 开口参数β最具预测力,适合乐器考古与修复研究
16世纪末意大利出现第一把小提琴,随后两百年间在欧洲各地发展出多样形制。约1750年为统一乐团与音乐学院标准,制作开始规范化,部分介于标准之间的乐器被缩小改造。这种改造影响了小提琴轮廓线——非缩小者呈U形,缩小者呈V形。尽管专家可观察到此差异,但尚无量化研究。本文分析25把小提琴的三维扫描数据,每把提取10–20条间隔1毫米的等高轮廓线,用形如y = alpha*abs(x)**beta的幂函数曲线拟合,通过α(垂直拉伸)和β(开度)两个参数描述轮廓形态。进一步计算回归特征并处理异常值与层级不一致问题,构建每把琴的数值特征谱。使用分类方法评估几何特征能否判别缩小与否,结果显示几何特征具备一定判别能力,尤其β参数最具预测性;但仍存在不同程度改造的连续谱,难以精确量化。
原文摘要 · Abstract (English)
The first violins appeared in late 16th-century Italy. Over the next 200 years, they spread across Europe and luthiers of various royal courts, eager to experiment with new techniques, created a highly diverse family of instruments. Around 1750, size standards were introduced to unify violin making for orchestras and conservatories. Instruments that fell between two standards were then reduced to a smaller size by luthiers. These reductions have an impact on several characteristics of violins, in particular on the contour lines, i.e. lines of constant altitude, which look more like a U for non reduced instruments and a V for reduced ones. While such differences are observed by experts, they have not been studied quantitatively. This paper presents a method for classifying violins as reduced or non-reduced based on their contour lines. We study a corpus of 25 instruments whose 3D geometric meshes were acquired via photogrammetry. For each instrument, we extract 10-20 contour lines regularly spaced every millimetre. Each line is fitted with a parabola-like curve (with an equation of the type y = alpha*abs(x)**beta) depending on two parameters, describing how open (beta) and how vertically stretched (alpha) the curve is. We compute additional features from those parameters, using regressions and counting how many values fall under some threshold. We also deal with outliers and non equal numbers of levels, and eventually obtain a numerical profile for each instrument. We then apply classification methods to assess whether geometry alone can predict size reduction. We find that distinguishing between reduced and non reduced instruments is feasible to some degree, taking into account that a whole spectrum of more or less transformed violins exists, for which it is more difficult to quantify the reduction. We also find the opening parameter beta to be the most predictive.
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