用非线性动力学模型精准描述发音时双唇闭合的运动轨迹。
Nonlinear second-order dynamics describe labial constriction trajectories across languages and contexts
- 基于双唇运动数据构建二阶非线性方程,仅含目标与速度两个参数。
- 模型拟合效果极佳,能复现持续时间、峰值速度等关键运动特征。
- 适用于研究语调、多音节协调等复杂语音动态问题。
我们研究了英语和普通话中 /b/ 与 /m/ 音发音时双唇闭合的运动轨迹。发现跨语言、跨语境下,运动起始到结束过程中,瞬时位移与瞬时速度的比值总体呈指数衰减趋势。将此现象形式化为微分方程,并结合点吸引子假设,推导出描述双唇闭合轨迹的非线性二阶动力系统。该方程仅含两个参数:T(对应目标状态)和 r(对应运动速率),二者均具语音学意义。非线性回归显示模型对个体运动轨迹拟合极佳。由模型生成的仿真轨迹在定性上与真实轨迹一致,且准确捕捉了持续时间、峰值速度及达到峰值的时间等关键运动变量。该模型提出了一种个体发音运动的动力学框架,为理解语调、多动作协调及随机噪声等影响因素提供了新基础。
原文摘要 · Abstract (English)
We investigate the dynamics of labial constriction trajectories during the production of /b/ and /m/ in English and Mandarin. We find that, across languages and contexts, the ratio of instantaneous displacement to instantaneous velocity generally follows an exponential decay curve from movement onset to movement offset. We formalize this empirical discovery in a differential equation and, in combination with an assumption of point attractor dynamics, derive a nonlinear second-order dynamical system describing labial constriction trajectories. The equation has only two parameters, T and r. T corresponds to the target state and r corresponds to movement rapidity. Thus, each of the parameters corresponds to a phonetically relevant dimension of control. Nonlinear regression demonstrates that the model provides excellent fits to individual movement trajectories. Moreover, trajectories simulated from the model qualitatively match empirical trajectories, and capture key kinematic variables like duration, peak velocity, and time to achieve peak velocity. The model constitutes a proposal for the dynamics of individual articulatory movements, and thus offers a novel foundation from which to understand additional influences on articulatory kinematics like prosody, inter-movement coordination, and stochastic noise.
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