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4.1 A 640×480 dynamic vision sensor with a 9µm pixel and 300Meps address-event representation

机译:4.1具有9µm像素和300Meps地址事件表示的640×480动态视觉传感器

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We report a VGA dynamic vision sensor (DVS) with a 9µm pixel, developed through a digital as well as an analog implementation. DVS systems in the literature try to increase spatial resolution up to QVGA [1–2] and data rates up to 50 million events per second (Meps) (self-acknowledged) [3], but they are still inadequate for high-performance applications such as gesture recognition, drones, automotive, etc. Moreover, the smallest reported pixel of 18.5µm is too large for economical mass production [3]. This paper reports a 640×480 VGA-resolution DVS system with a 9µm pixel pitch supporting a data rate of 300Meps for sufficient event transfer in spite of higher resolution. Maintaining acceptable pixel performance, the pixel circuitry is carefully designed and optimized using a BSI CIS process. To acquire data (i.e., pixel events) at high speed even with high resolution (e.g., VGA), a fully synthesized word-serial group address-event representation (G-AER) is implemented, which handles massive events in parallel by binding neighboring 8 pixels into a group. In addition, a 10b programmable bias generator dedicated to a DVS system provides easy controllability of pixel biases and event thresholds.
机译:我们报告了通过数字和模拟实现开发的具有9µm像素的VGA动态视觉传感器(DVS)。文献中的DVS系统试图将空间分辨率提高到QVGA [1-2],将数据速率提高到每秒5000万个事件(Meps)(自我确认)[3],但是它们仍然不足以实现高性能应用例如手势识别,无人机,汽车等。此外,报告的最小像素18.5µm对于经济型批量生产而言太大了[3]。本文报道了一个640×480 VGA分辨率DVS系统,其像素间距为9µm,尽管分辨率更高,但仍支持300Meps的数据传输率,以实现足够的事件传输。为保持可接受的像素性能,像素电路使用BSI CIS工艺进行了精心设计和优化。为了即使在高分辨率(例如VGA)下也能高速获取数据(即像素事件),实现了完全合成的字-串行组地址-事件表示(G-AER),它通过绑定相邻像素来并行处理大量事件8个像素成组。此外,专用于DVS系统的10b可编程偏置发生器可轻松控制像素偏置和事件阈值。

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