融合事件相机与可变曝光相机,实现烟雾遮挡下高动态燃烧的微秒级三维定量测量。
Synergistic Event-SVE Imaging for Quantitative Propellant Combustion Diagnostics
- 用可变曝光相机与事件相机闭环协作,分离烟雾散射与颗粒发射。
- 在硼基推进剂测试中实现0.56%最大校准误差的3D颗粒尺寸与高度估计。
- 适合需要高动态、高速、烟雾干扰环境下燃烧诊断的研究者。
实时监测高能推进剂燃烧极具挑战:极端高动态范围(HDR)、微秒级颗粒运动与浓烟共存,导致传统成像出现饱和、运动模糊和颗粒提取不稳。本文提出一种闭环事件-SVE测量系统,将空间可变曝光(SVE)相机与双目类脑事件相机结合。SVE分支通过显式烟雾感知融合策略生成高动态范围(HDR)图,利用多线索烟雾概率图分离颗粒辐射与烟雾散射,获得可用于下游分析的校准强度图。该HDR图还为事件相机提供缺失的绝对强度参考,用于抑制烟雾引发的事件伪影并提升颗粒状态判别能力。基于去噪后的事件数据,构建立体事件驱动的3D分析流程,通过特征提取与三角化估计颗粒分离高度与等效粒径(最大校准误差0.56%)。实验在硼基推进剂上验证了多模态等效半径统计特性,并捕捉到常规传感器难以观测的快速分离瞬态。整体框架为烟雾遮蔽下的高动态、微秒级三维燃烧测量提供了可实用、校准一致的技术路径。
原文摘要 · Abstract (English)
Real-time monitoring of high-energy propellant combustion is difficult. Extreme high dynamic range (HDR), microsecond-scale particle motion, and heavy smoke often occur together. These conditions drive saturation, motion blur, and unstable particle extraction in conventional imaging. We present a closed-loop Event--SVE measurement system that couples a spatially variant exposure (SVE) camera with a stereo pair of neuromorphic event cameras. The SVE branch produces HDR maps with an explicit smoke-aware fusion strategy. A multi-cue smoke-likelihood map is used to separate particle emission from smoke scattering, yielding calibrated intensity maps for downstream analysis. The resulting HDR maps also provide the absolute-intensity reference missing in event cameras. This reference is used to suppress smoke-driven event artifacts and to improve particle-state discrimination. Based on the cleaned event observations, a stereo event-based 3D pipeline estimates separation height and equivalent particle size through feature extraction and triangulation (maximum calibration error 0.56%). Experiments on boron-based propellants show multimodal equivalent-radius statistics. The system also captures fast separation transients that are difficult to observe with conventional sensors. Overall, the proposed framework provides a practical, calibration-consistent route to microsecond-resolved 3D combustion measurement under smoke-obscured HDR conditions.
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