Exploiting Digital Micro-Mirror Devices for Ambient Light Communication
Talia Xu, Miguel A. Chávez Tapia, Marco Zúñiga
摘要
There is a growing interest in exploiting ambient light for wireless communication. This new research area has two key advantages: it utilizes a free portion of the spectrum and does not require modifications of the lighting infrastructure. Most existing designs, however, rely on a single type of optical surface at the transmitter: liquid crystal shutters (LCs). LCs have two inherent limitations, they cut the optical power in half, which affects the range; and they have slow time responses, which affects the data rate. We take a step back to provide a new perspective for ambient light communication with two novel contributions. First, we propose an optical model to understand the fundamental limits and opportunities of ambient light communication. Second, based on the insights of our analystical model, we build a novel platform, dubbed PhotoLink, that exploits a different type of optical surface: digital micro-mirror devices (DMDs). Considering the same scenario in terms of surface area and ambient light conditions, we benchmark the performance of PhotoLink using two types of receivers, one optimized for LCs and the other for DMDs. In both cases, PhotoLink outperforms the data rate of equivalent LC-transmitters by factors of 30 and 80: 30 kbps & 80 kbps vs. 1 kbps, while consuming less than 50 mW. Even when compared to a more sophisticated multicell LC platform, which has a surface area that is 500 times bigger than ours, PhotoLink's data rate is 10-fold: 80 kbps vs. 8 kbps. To the best of our knowledge this is the first work providing an optical model for ambient light communication and breaking the 10 kbps barrier for these types of links.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
它引用的顶会 Paper3
- Turboboosting Visible Light Backscatter CommunicationYue Wu, Purui Wang, Kenuo Xu, Lilei Feng 等SIGCOMM 2020 · 被引用 57 次
- Renovating road signs for infrastructure-to-vehicle networking: a visible light backscatter communication and networking approachPurui Wang, Lilei Feng, Guojun Chen, Chenren Xu 等MobiCom 2020 · 被引用 48 次
- A principled design for passive light communicationSeyed Keyarash Ghiasi, Marco Antonio Zúñiga Zamalloa, Koen LangendoenMobiCom 2021 · 被引用 27 次
相关 Paper
- SunBox: Screen-to-Camera Communication with Ambient LightMiguel A. Chávez Tapia, Talia Xu, Zehang Wu, Marco Zúñiga ZamalloaUbiComp 2022 · 被引用 10 次
- Edge-Light: Exploiting Luminescent Solar Concentrators for Ambient Light CommunicationMiguel A. Chávez Tapia, Diego Palma Rodríguez, Marco Antonio Zúñiga ZamalloaUbiComp 2024 · 被引用 2 次
- Mosaic: Breaking the Optics versus Copper Trade-off with a Wide-and-Slow Architecture and MicroLEDsKaoutar Benyahya, Ariel Gomez Diaz, Junyi Liu, Vassily Lyutsarev 等SIGCOMM 2025 · 被引用 16 次
- LightThief: Your Optical Communication Information is Stolen behind the WallXin Liu, Wei Wang, Guanqun Song, Ting ZhuUSENIX Security 2023
- LuminaLink: Enabling Low Cost Secure Visible Light Communication with BirefringenceRuxin Lin, Bingyan Liu, Yelin Cui, Duo Liu 等INFOCOM 2025
