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基于几何矩质心定位的变转速旋转目标单像素成像
Single-pixel imaging of variable-speed rotating objects via geometric moment centroid localization
| 作者 | Xin Chen · Yaoyao Shi · Wei Sheng · Dejin Zhang · Youwen Liu |
| 期刊 | Applied Physics Letters |
| 出版日期 | 2026年2月 |
| 卷/期 | 第 128 卷 第 8 期 |
| 技术分类 | 控制与算法 |
| 技术标签 | 模型预测控制MPC 机器学习 故障诊断 智能化与AI应用 |
| 相关度评分 | ★★ 2.0 / 5.0 |
| 关键词 |
语言:
中文摘要
针对单像素成像中旋转目标角度不确定性导致的图案-物体失配问题,提出基于几何矩质心定位的瞬时角度估计方法,无需外部传感器;通过循环投影方案选择同角度哈达玛测量,实现6000 rpm下稳定成像,30%采样率即获SSIM 0.8402。
English Abstract
In single-pixel imaging of rotating targets, uncertainty in the target's angular position frequently causes misalignment between the projected illumination patterns and the object's spatial distribution, thereby degrading image quality, or even making imaging impossible. We propose a single-pixel imaging method for variable-speed rotating objects based on geometric moment centroid localization. The instantaneous rotation angle is estimated directly from the intensity sequence, eliminating the need for external sensors or synchronization hardware. A cyclic projection scheme—comprising three localization patterns followed by one Hadamard pattern—enables angle estimation through first-order geometric moments, allowing consistent-angle Hadamard measurements to be selectively retained for reconstruction. Experimental results demonstrate stable, high-quality imaging across rotation speeds as high as 6000 rpm, even under significant speed variations. At a 2 kHz projection rate, the method achieves an SSIM of 0.8402 with only 30% sampling, underscoring its robustness to undersampling and its practical viability in dynamic imaging applications.
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SunView 深度解读
该文提出的动态目标实时姿态估计与自适应采样算法,在原理上可迁移至阳光电源智能运维场景:例如iSolarCloud平台对组串式逆变器散热风扇、ST系列PCS内部旋转部件(如液冷泵)或PowerTitan储能系统BMS风扇的异常振动/转速监测;但当前技术属光学成像范畴,未涉及电力电子控制或能量转换,需结合电流/振动信号建模二次开发方可嵌入现有产品线,建议在状态感知算法预研中关注其鲁棒欠采样重建思路。