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High-resolution, High-speed, Three-dimensional Video Imaging with Digital Fringe Projection Techniques
Published on: December 3, 2013
Temporal-Spatial Fusion Vision Hardware Enables Streamlined In-Sensor Computing for Dynamic Scenes
Yi Wu1,2,3, Wenjie Deng4, Ruihao Liu2
1State Key Laboratory of Materials Low-Carbon Recycling, College of Materials Science and Engineering, Beijing University of Technology, Beijing, 100124, China.
Abstract:
Time and space constitute fundamental dimensions of physical reality, making their integrated processing crucial for advanced vision perception systems. Current visual information processing faces dual limitations: von Neumann architecture-induced data-transfer bottlenecks and spatial-feature processing often disregard temporal dynamics, while temporal analyzers oversimplify spatial complexity. Here we propose an artificial vision hardware enabling intrinsic temporal-spatial fusion through voltage-tunable temporal differentiation with microsecond-scale resolution and photoresponse-weighted spatial compression via pixel binning. The architecture achieves millisecond-level latency from sensing to decision in autonomous driving scenarios through in-sensor spatiotemporal fusion, eliminating external computing dependencies. Experimental validation demonstrates 95 % recognition accuracy in human actions database while the operation counts required is only 1/10 of conventional convolutional processing. This work facilitates physical-level spatiotemporal fusion through the co-optimization of photodetector arrays and weighted control circuits, which could fundamentally reshape machine vision architectures with potential extensions to real-time decision systems.
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