Energy supply system and control method for improving durability of unmanned vehicle
A technology for unmanned vehicles and capabilities, applied in vehicle energy storage, battery/fuel cell control devices, electric vehicles, etc., can solve problems such as limited battery life, long parking and charging time, unmanned vehicles cannot meet all-weather operations, etc., to achieve Improve battery life and save waiting time
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Embodiment 1
[0021] Embodiment 1 of the present invention: as figure 1 , figure 2 and image 3 As shown, this energy supply system includes a control system 1 on the vehicle body, a chassis 15 and a storage battery 4 , as well as a power detection device 2 and a wireless charging system 3 . The wireless charging system 3 provides electric energy to the storage battery 4 . The power detection device 2 is arranged on the storage battery 4 , the power detection device 2 is electrically connected to the control system 1 and the storage battery 4 , and the wireless charging system 3 is also electrically connected to the control system 1 and the storage battery 4 . The power detection device 2 is used to detect the remaining power of the storage battery 4 in real time. When the remaining power is less than the preset power threshold, a signal is sent to the control system 1, and the control system 1 sends a start signal to the wireless charging system 3; when the battery 4 is fully charged U...
Embodiment 2
[0023] Embodiment 2: as figure 1 , figure 2 and image 3 As shown, the energy supply system for improving the battery life of the unmanned vehicle includes the control system 1 on the vehicle body, the chassis 15 and the battery 4 . The system is also provided with a power detection device 2 and a wireless charging system 3 , and the wireless charging system 3 provides electric energy to the storage battery 4 . The power detection device 2 is arranged on the storage battery 4 , the power detection device 2 is electrically connected to the control system 1 and the storage battery 4 , and the wireless charging system 3 is also electrically connected to the control system 1 and the storage battery 4 . The power detection device 2 is used to detect the remaining power of the storage battery 4 in real time. When the remaining power is less than the preset power threshold, a signal is sent to the control system 1, and the control system 1 sends a start signal to the wireless char...
Embodiment 3
[0024] Embodiment 3: as figure 1 , figure 2 and image 3 As shown, a control method for improving the battery life of an unmanned vehicle, using the above-mentioned energy supply system, includes the following steps:
[0025] F001, the power detection device 2 detects the remaining power of the storage battery 4 in real time, and sends a signal to the control system 1 when the remaining power is less than the preset power threshold;
[0026] F002, the control system 1 sends a start signal to the wireless charging system 3, and the wireless charging system 3 turns on the transmitting module 5 and the receiving module 6;
[0027] F003, the transmitting module 5 and the receiving module 6 adopt electromagnetic resonance, when the frequency of the oscillating magnetic field generated by the transmitting coil 7 is the same as or close to the natural frequency of the vehicle receiving coil 12, the receiving coil 12 will resonate and induce Electric current to realize the wireles...
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