Research on Metal Foreign Object Detection of Electric Vehicle Wireless Charging System Based on Detection Coil
Abstract
:1. Introduction
2. Influence Analysis of Metal Foreign Objects
2.1. Influence Characteristics of Non-Ferromagnetic Metals
2.2. Influence Characteristics of Ferromagnetic Metals
3. MOD System Design
3.1. Detection Circuit Design
3.2. Detection Coil Design
4. Simulation and Experiment
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Method | Advantages | Disadvantages | Suitable Scene |
---|---|---|---|
Parameter detection | No additional equipment required | Low sensitivity | Low power level, low accuracy |
Sensor detection | Wide recognition range | High cost, vulnerable to external interference | Regardless of the cost |
Coil detection | Low cost, high sensitivity, multifunctional | Occupied space, subject to coil interference | High power level, high accuracy |
Number | Self-Inductance (Non-Foreign Object)/μH | Self-Inductance (Foreign Object)/μH | Change in Self-Induction/μH | Rate of Change |
---|---|---|---|---|
4 | 124 | 122.14 | 1.86 | 1.50% |
9 | 58.135 | 54.14 | 3.995 | 6.87% |
16 | 28.80 | 23.57 | 5.23 | 18.16% |
25 | 15 | 10.797 | 4.203 | 28.02% |
Material | Size | Parameter | Value |
---|---|---|---|
Copper | 50 mm × 75 mm × 5 mm | Relative permeability | 0.999991 |
Conductivity | 58,000,000 S/m | ||
Steel | 50 mm × 75 mm × 5 mm | Relative permeability | 300 |
Conductivity | 2,000,000 S/m |
Object | Parameter | Value | Object | Parameter | Value |
---|---|---|---|---|---|
Coil | Inner diameter | 100 mm | Ferrit | Length | 400 mm |
Outer diameter | 200 mm | Width | 400 mm | ||
Turns | 10 | Thickness | 5 mm | ||
Wire diameter | 2.5 mm | Distance from coil | 1 mm | ||
Transmission distance | 190 mm |
Parameter | Coil 1 | Coil 2 | Coil 3 | Coil 4 |
---|---|---|---|---|
Self-induction/μH | 20.15 | 19.8 | 20.7 | 20 |
Resistance/mΩ | 94 | 90 | 95.5 | 97 |
Resonant capacitance/μF | 0.72 | 0.74 | 0.70 | 0.73 |
Size | 10.5 cm × 10.5 cm | |||
Turns | 12 | |||
Wire diameter | 2 mm |
Material | Magnetic Permeability | Size |
---|---|---|
Copper | 1 | 50 mm × 50 mm × 4 mm |
Steel | 400 | 69 mm × 14 mm × 4 mm |
Copper Sheet | Steel Sheet | |||
---|---|---|---|---|
Self-Induction/μH | Resonant Frequency/kHz | Self-Induction/μH | Resonant Frequency/kHz | |
Coil 1 | 17.8–18.9 | 42.7–44.4 | 22.5–26.4 | 36.1–39.5 |
Coil 2 | 16.9–18.5 | 43.1–45.5 | 22.2–25.9 | 36.5–39.7 |
Coil 3 | 18.3–19.0 | 42.6–43.8 | 22.7–27.3 | 35.5–39.3 |
Coil 4 | 17.8–18.5 | 43.1–44.4 | 22.5–26.6 | 36.0–39.5 |
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Meng, T.; Tan, L.; Zhong, R.; Xie, H.; Huang, X. Research on Metal Foreign Object Detection of Electric Vehicle Wireless Charging System Based on Detection Coil. World Electr. Veh. J. 2021, 12, 203. https://doi.org/10.3390/wevj12040203
Meng T, Tan L, Zhong R, Xie H, Huang X. Research on Metal Foreign Object Detection of Electric Vehicle Wireless Charging System Based on Detection Coil. World Electric Vehicle Journal. 2021; 12(4):203. https://doi.org/10.3390/wevj12040203
Chicago/Turabian StyleMeng, Tao, Linlin Tan, Ruying Zhong, Huiru Xie, and Xueliang Huang. 2021. "Research on Metal Foreign Object Detection of Electric Vehicle Wireless Charging System Based on Detection Coil" World Electric Vehicle Journal 12, no. 4: 203. https://doi.org/10.3390/wevj12040203
APA StyleMeng, T., Tan, L., Zhong, R., Xie, H., & Huang, X. (2021). Research on Metal Foreign Object Detection of Electric Vehicle Wireless Charging System Based on Detection Coil. World Electric Vehicle Journal, 12(4), 203. https://doi.org/10.3390/wevj12040203