An improved smart readout technique based on temporal redundancies suppression designed for logarithmic CMOS image sensor

Hawraa Amhaz, Hassan Abbass, H. Zimouche, G. Sicard
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引用次数: 11

Abstract

In this paper we present an improved version of the readout technique proposed in [7]. It concerns a continuous operating logarithmic image sensor with 120dB of Dynamic Range (DR). The pixel element presents also improved characteristics, compared to the standard logarithmic pixel, especially in terms of Fixed Pattern Noise compensation and extended output voltage swing. The first goal of this readout technique is to reduce the data temporal redundancies in order to reduce the dataflow outgoing from the sensor. The main idea lies in the distribution of the sensor into macro-pixels composed of nxn pixel elements. Each macro-pixel generates the mean value of all its pixels luminosities, and then an event detector is used to detect any variation in this mean value. A positive reaction of this event detector triggers the readout of the block pixel elements. The Matlab emulation results show the intended dataflow reduction rate. The pixel schematic and layout designed in the CMOS 0.35μm AMS technology, the event detector architecture and the bloc diagram of the system are detailed later through the different sections of this paper.
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一种基于时间冗余抑制的对数型CMOS图像传感器智能读出技术
在本文中,我们提出了[7]中提出的读出技术的改进版本。它涉及一种动态范围(DR)为120dB的连续工作对数图像传感器。与标准对数像素相比,像素元件还具有改进的特性,特别是在固定模式噪声补偿和扩展输出电压摆幅方面。该读出技术的第一个目标是减少数据时间冗余,以减少从传感器输出的数据流。其主要思想在于将传感器分布为由nxn个像素元素组成的宏像素。每个宏像素生成其所有像素亮度的平均值,然后使用事件检测器检测该平均值的任何变化。该事件检测器的正反应触发块像素元素的读出。Matlab仿真结果显示了预期的数据流减少率。采用CMOS 0.35μm AMS技术设计的像素原理图和布局图、事件探测器架构和系统框图分别在本文的不同章节中详细介绍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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