A high-frequency intelligent fast charging method for mine-used lead-acid batteries
A technology for lead-acid batteries and battery packs, which is applied in secondary battery charging/discharging, battery circuit devices, secondary battery repair/maintenance, etc. It can solve problems such as heavy flameproof enclosures, damage to batteries, and overheating of batteries. Improve the explosion-proof performance and use safety performance, prolong the service life and use efficiency, and avoid the effect of energy waste
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Embodiment example 1
[0032] Implementation case 1. In the charging state, the PWM rectifier outputs a stable DC voltage, and the bidirectional DC / DC converter and the bidirectional H-bridge inverter Ⅰ operate in coordination. By controlling the duty cycle of the bidirectional DC / DC converter and the bidirectional H bridge The phase shift angle of the bridge inverter Ⅰ, through the isolation of the high-frequency transformer and the fast rectification of the bidirectional H-bridge inverter Ⅱ, realizes the continuously adjustable output voltage of DC0-550V, and realizes the charging of all specifications of mining lead-acid batteries .
Embodiment example 2
[0033]Implementation case 2: In the discharge state, the energy of the battery passes through the bidirectional H-bridge inverter II, high-frequency transformer, bidirectional H-bridge inverter I, bidirectional DC / DC converter, and PWM rectifier to quickly feed back to the power grid. By controlling the bidirectional DC / The coordinated control of the DC converter and the bidirectional H-bridge inverter II enables the bidirectional DC / DC converter to output a stable DC voltage, which is fed back to the power grid through the PWM rectifier to realize rapid discharge. The power grid voltage is AC380V or AC660V.
Embodiment example 3
[0034] Implementation Case 3, further, it also includes a general control system, a first control system, a second control system and a third control system, and the general control system is respectively connected with the first control system, the second control system and the third control system through a field bus The control systems are connected to each other, the first control system is connected to the PWM rectifier, the second control system is connected to the bidirectional DC / DC converter, and the third control system is connected to the bidirectional H bridge inverter I and the bidirectional H bridge inverter I and the bidirectional H bridge inverter I respectively. The bridge inverter II is connected, and the bidirectional H-bridge inverter I is connected to the bidirectional H-bridge inverter II through a high-frequency transformer.
[0035] Each control system controls charging and discharging reasonably through data exchange, which can effectively realize diffe...
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