COSMOS用真实数据生成逼真气味时间序列,高效模拟大尺度环境中的气味扩散。
COSMOS: A Data-Driven Probabilistic Time Series simulator for Chemical Plumes across Spatial Scales
- 基于真实数据构建概率模型,从空间时间特征生成气味序列
- 还原真实气味的间歇频率、持续时间和浓度分布等关键统计特征
- 适合开发和测试智能体在自然气味环境下的导航策略
自动化环境监测中,实现鲁棒的气味导航策略需要对跨大空间尺度的气味时间序列进行真实模拟。传统基于计算流体动力学(CFD)的方法虽能捕捉气味羽流的时空动态,但因计算成本过高,难以用于大规模仿真。而基于烟团的模拟虽然计算可行且能体现羽流的随机性,却无法再现自然气味的统计特性。本文提出COSMOS(Configurable Odor Simulation Model over Scalable Spaces),一个数据驱动的概率框架,可从真实数据的空间与时间特征中合成逼真的气味时间序列。该模型生成的气味在间歇频率、持续时间及浓度分布等关键统计特征上与真实数据高度一致,同时显著降低计算开销。通过在多种流场条件与尺度下复现关键统计特性,COSMOS使基于智能体的导航策略能够在自然化的气味体验中进行开发与评估。为验证其有效性,我们对比了暴露于CFD生成羽流与COSMOS模拟的追踪智能体,发现两者在气味感知和行为表现上均极为相似。
原文摘要 · Abstract (English)
The development of robust odor navigation strategies for automated environmental monitoring applications requires realistic simulations of odor time series for agents moving across large spatial scales. Traditional approaches that rely on computational fluid dynamics (CFD) methods can capture the spatiotemporal dynamics of odor plumes, but are impractical for large-scale simulations due to their computational expense. On the other hand, puff-based simulations, although computationally tractable for large scales and capable of capturing the stochastic nature of plumes, fail to reproduce naturalistic odor statistics. Here, we present COSMOS (Configurable Odor Simulation Model over Scalable Spaces), a data-driven probabilistic framework that synthesizes realistic odor time series from spatial and temporal features of real datasets. COSMOS generates similar distributions of key statistical features such as whiff frequency, duration, and concentration as observed in real data, while dramatically reducing computational overhead. By reproducing critical statistical properties across a variety of flow regimes and scales, COSMOS enables the development and evaluation of agent-based navigation strategies with naturalistic odor experiences. To demonstrate its utility, we compare odor-tracking agents exposed to CFD-generated plumes versus COSMOS simulations, showing that both their odor experiences and resulting behaviors are quite similar.
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