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Design and Implementation of a Novel Compatible Encoding Scheme in the Time Domain for Image Sensor Communication

机译:一种新型时域兼容编码方案的图像传感器通信设计与实现

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摘要

This paper presents a modulation scheme in the time domain based on On-Off-Keying and proposes various compatible supports for different types of image sensors. The content of this article is a sub-proposal to the IEEE 802.15.7r1 Task Group (TG7r1) aimed at Optical Wireless Communication (OWC) using an image sensor as the receiver. The compatibility support is indispensable for Image Sensor Communications (ISC) because the rolling shutter image sensors currently available have different frame rates, shutter speeds, sampling rates, and resolutions. However, focusing on unidirectional communications (i.e., data broadcasting, beacons), an asynchronous communication prototype is also discussed in the paper. Due to the physical limitations associated with typical image sensors (including low and varying frame rates, long exposures, and low shutter speeds), the link speed performance is critically considered. Based on the practical measurement of camera response to modulated light, an operating frequency range is suggested along with the similar system architecture, decoding procedure, and algorithms. A significant feature of our novel data frame structure is that it can support both typical frame rate cameras (in the oversampling mode) as well as very low frame rate cameras (in the error detection mode for a camera whose frame rate is lower than the transmission packet rate). A high frame rate camera, i.e., no less than 20 fps, is supported in an oversampling mode in which a majority voting scheme for decoding data is applied. A low frame rate camera, i.e., when the frame rate drops to less than 20 fps at some certain time, is supported by an error detection mode in which any missing data sub-packet is detected in decoding and later corrected by external code. Numerical results and valuable analysis are also included to indicate the capability of the proposed schemes.
机译:本文提出了一种基于开关键控的时域调制方案,并针对不同类型的图像传感器提出了各种兼容的支持。本文的内容是针对IEEE 802.15.7r1任务组(TG7r1)的子建议,该任务组旨在使用图像传感器作为接收器的光学无线通信(OWC)。兼容性支持对于图像传感器通信(ISC)是必不可少的,因为当前可用的卷帘式图像传感器具有不同的帧速率,快门速度,采样率和分辨率。但是,针对单向通信(即数据广播,信标),本文还讨论了异步通信原型。由于与典型图像传感器相关的物理限制(包括低和变化的帧速率,长时间曝光和低快门速度),因此必须严格考虑链接速度性能。根据相机对调制光响应的实际测量,建议了一个工作频率范围,以及相似的系统架构,解码过程和算法。我们新颖的数据帧结构的一个显着特点是,它既可以支持典型的帧速率摄像机(在过采样模式下),也可以支持非常低的帧速率摄像机(在帧速率低于传输速率的摄像机的错误检测模式下)数据包速率)。在采用了用于对数据进行解码的多数表决方案的过采样模式下,支持高帧率相机(即不少于20 fps)。低帧率摄像机,即当帧率在某个特定时间下降到小于20 fps时,受错误检测模式的支持,在该模式下,在解码中检测到任何丢失的数据子包,然后通过外部代码进行校正。数值结果和有价值的分析也包括在内,以表明所提出的方案的能力。

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