首页> 外文期刊>Applied optics >Dedicated optoelectronic stochastic parallel processor for real-time image processing: motion-detection demonstration and design of a hybrid complementary-metal-oxide semiconductor-self-electro-optic-device-based prototype
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Dedicated optoelectronic stochastic parallel processor for real-time image processing: motion-detection demonstration and design of a hybrid complementary-metal-oxide semiconductor-self-electro-optic-device-based prototype

机译:用于实时图像处理的专用光电随机并行处理器:基于混合互补金属氧化物半导体-自电光器件的原型的运动检测演示和设计

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摘要

We report experimental results and performance analysis of a dedicated optoelectronic processor that implements stochastic optimization-based image-processing tasks in real time. We first show experimental results using a proof-of-principle-prototype demonstrator based on standard silicon-complementary-metal-oxide-semiconductor (CMOS) technology and liquid-crystal spatial light modulators. We then elaborate on the advantages of using a hybrid CMOS-self-electro-optic-device-based smart-pixel array to monolithically integrate photodetectors and modulators on the same chip, providing compact, high-bandwidth intrachip optoelectronic interconnects. We have modeled the operation of the monolithic processor, clearly showing system-performance improvement.
机译:我们报告专用的光电处理器的实验结果和性能分析,该处理器实时实现基于随机优化的图像处理任务。我们首先显示使用基于标准硅互补金属氧化物半导体(CMOS)技术和液晶空间光调制器的原理原型演示器进行的实验结果。然后,我们详细介绍了使用基于混合CMOS自电光器件的智能像素阵列将光电探测器和调制器单片集成到同一芯片上的优势,从而提供了紧凑的高带宽芯片内光电互连。我们对单片处理器的操作进行了建模,清楚地表明了系统性能的提高。

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