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Correlation Reconstruction Based High-Accuracy LED and Micro-LED Positioning
DOI:10.1109/JLT.2023.3272002.png)
摘要
En 中文
The structured illumination-based visible light positioning (VLP) method provides an independent fingerprint optical signal for each spatial region and enables the position identification of the device in the illumination region. In this work, we applied the correlation reconstruction algorithm based on temporal ghost imaging to VLP based on structured illumination. The overlapping of illumination introduced by our algorithm can increase the number of identifiable areas and potentially improve the positioning accuracy. We demonstrated a real-time VLP system based on the algorithm by utilizing a commercial broad-area white LED array, which can acquire position information within 1.3 ms. In addition, we used a GaN micro-LED array to generate a 4 x 4 mm(2) illumination area at a distance of 17 cm by a projection system, and the positioning accuracy is less than 1 mm. The experimental results show that our proposed algorithm has the potential to be applied to LED array-based high-accuracy VLP.
Keyword:
Lighting
Light emitting diodes
Correlation
Image reconstruction
Detectors
Real-time systems
Modulation
Correlation reconstruction
GaN micro-LED array
visible light positioning
期刊
IF:
4.8
论文数:
1.7W
被引数:
3.8W
机构
引用论文
An Accurate Visible Light Positioning System Using Regenerated Fingerprint Database Based on Calibrated Propagation Model基于校准传播模型的再生指纹库可见光精确定位系统
Beyond 25 Gbps optical wireless communication using wavelength division multiplexed LEDs and micro-LEDs
OPTICS LETTERS
IF3.3

