Pseudo-Passive Indoor ToF Sensing exploiting Visible Light Communication Sources

Faisal Ahmed, Miguel Heredia Conde, O. Loffeld
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引用次数: 5

Abstract

The need for active illumination is one of the fundamental downsides of state-of-the-art Time-of-Flight (ToF) cameras and translates into large power consumption as compared to passive imaging modalities. Recently, developments in visible light communications (VLC) have allowed the lighting infrastructure to provide both illumination and communication services in indoor environments. In this paper, we propose exploiting visible light sources as opportunity illuminators for indoor ToF sensing. This allows for drastically reducing the power consumption of the ToF camera, as the need for illumination modules is eliminated. We study the feasibility of this idea using an off-the-shelf VLC module, model the emitted light signal, and study its autocorrelation properties. We show that the prominence of two dominant frequencies, arising from the underlying clock signal and coding scheme, enables CW-ToF operation. Simulations carried out using real signals from the VLC module showed successful depth estimation, up to an offset, using standard methods for CW-ToF depth estimation such as the four-phases algorithm.
利用可见光通信源的伪被动室内ToF传感
对主动照明的需求是最先进的飞行时间(ToF)相机的基本缺点之一,与被动成像模式相比,这意味着大的功耗。最近,可见光通信(VLC)的发展使得照明基础设施能够在室内环境中同时提供照明和通信服务。在本文中,我们提出利用可见光光源作为室内ToF传感的机会光源。这可以大大降低ToF相机的功耗,因为对照明模块的需求被消除了。我们利用一个现成的VLC模块来研究这个想法的可行性,对发射的光信号进行建模,并研究其自相关特性。我们证明了两个主要频率的突出,由底层时钟信号和编码方案引起,使CW-ToF操作成为可能。使用来自VLC模块的真实信号进行的仿真显示,使用CW-ToF深度估计的标准方法(如四相算法)成功地估计了深度,直至偏移量。
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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