Department of Computer Science, University of North Carolina at Charlotte, Charlotte, NC 28223, USA.
Division of Natural Science and Mathematics, Oxford College of Emory University, Oxford, GA 30054, USA.
Sensors (Basel). 2020 Mar 3;20(5):1382. doi: 10.3390/s20051382.
Because of the limitations of the Global Positioning System (GPS) in indoor scenarios, various types of indoor positioning or localization technologies have been proposed and deployed. Wireless radio signals have been widely used for both communication and localization purposes due to their popular availability in indoor spaces. However, the accuracy of indoor localization based purely on radio signals is still not perfect. Recently, visible light communication (VLC) has made use of electromagnetic radiation from light sources for transmitting data. The potential for deploying visible light communication for indoor localization has been investigated in recent years. Visible-light-based localization enjoys low deployment cost, high throughput, and high security. In this article, the most recent advances in visible-light-based indoor localization systems have been reviewed. We strongly believe that visible-light-based localization will become a low-cost and feasible complementary solution for indoor localization and other smart building applications.
由于全球定位系统 (GPS) 在室内场景中的局限性,已经提出并部署了各种类型的室内定位或本地化技术。由于无线无线电信号在室内空间中广泛可用,因此它们已被广泛用于通信和定位目的。然而,仅基于无线电信号的室内定位的准确性仍然不够完善。最近,可见光通信 (VLC) 已经利用光源的电磁辐射来传输数据。近年来,已经研究了将可见光通信用于室内定位的可能性。基于可见光的定位具有低成本、高吞吐量和高安全性的优势。本文回顾了基于可见光的室内定位系统的最新进展。我们坚信,基于可见光的定位将成为室内定位和其他智能建筑应用的低成本且可行的补充解决方案。