Figures of Merit for Indirect Time-of-Flight 3D Cameras: Definition and Experimental Evaluation
Abstract
:1. Introduction
2. Model of an I-TOF Camera
2.1. I-TOF Measurement and Power Budget
2.2. Noise of Distance Measurement
3. Figures of Merit
3.1. Correlated and Uncorrelated Power Responsivity
3.2. Noise-Equivalent Distance
3.3. Background Light Rejection Ratio
4. Experimental Evaluation
4.1. Evaluation of 3D Sensor Based on Pulsed Technique
Parameter | Value |
---|---|
QE | 0.2 |
hc/λ | 2.21 × 10−19 J |
q | 1.60 × 10−19 C |
Ceq | 19 fF |
Apix | 846.8 μm2 |
FF | 0.34 |
Nacc | 32…128 |
Tframe | 18.3…35.9 ms |
fmod-eq | 1.59 MHz |
SNRmax | 170…85 |
4.2. Evaluation of 3D Sensor Based on Modulated Technique
Parameter | Value |
---|---|
QE | 0.2 |
hc/λ | 3.32 × 10−19 J |
q | 1.60 × 10−19 C |
Ceq | 5 fF |
Apix | 100 μm2 |
FF | 0.24 |
Tint | 1…2 ms |
Tframe | 92…96 ms |
fmod-eq | 20 MHz |
SNRmax | 21…24 |
4.3. Comparison of Sensors
5. Conclusions
References and Notes
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Perenzoni, M.; Stoppa, D. Figures of Merit for Indirect Time-of-Flight 3D Cameras: Definition and Experimental Evaluation. Remote Sens. 2011, 3, 2461-2472. https://doi.org/10.3390/rs3112461
Perenzoni M, Stoppa D. Figures of Merit for Indirect Time-of-Flight 3D Cameras: Definition and Experimental Evaluation. Remote Sensing. 2011; 3(11):2461-2472. https://doi.org/10.3390/rs3112461
Chicago/Turabian StylePerenzoni, Matteo, and David Stoppa. 2011. "Figures of Merit for Indirect Time-of-Flight 3D Cameras: Definition and Experimental Evaluation" Remote Sensing 3, no. 11: 2461-2472. https://doi.org/10.3390/rs3112461
APA StylePerenzoni, M., & Stoppa, D. (2011). Figures of Merit for Indirect Time-of-Flight 3D Cameras: Definition and Experimental Evaluation. Remote Sensing, 3(11), 2461-2472. https://doi.org/10.3390/rs3112461