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Charging method of passive lock, storage medium and passive lock
The invention provides a passive lock charging method, a storage medium and a passive lock, the passive lock comprises an energy collection module and an energy storage capacitor, the energy collection module is used for collecting energy to charge the energy storage capacitor, and the charging method comprises the following steps: obtaining current voltage values at two ends of the energy storage capacitor; switching the charging rate of the energy storage capacitor by the energy collection module according to the comparison relationship between the current voltage value and the voltage parameter of the current switching point; if normal charging is carried out after rate switching, the voltage parameter of the current switching point is reduced to obtain the voltage parameter of a first undetermined switching point; in the next charging process, the charging rate of the energy storage capacitor is switched based on the first undetermined switching point voltage parameter, if charging is abnormal after rate switching, the current switching point voltage parameter is determined as the target switching point voltage parameter, and the target switching point voltage parameter is determined as the target switching point voltage parameter; and the charging rate of the energy storage capacitor is switched based on the voltage parameter of the target switching point in the subsequent charging process, so that the unlocking efficiency and success rate of each user based on the use habit and the equipment are higher.
本申请提供一种无源锁的充电方法、存储介质及无源锁,无源锁包括能量收集模块及储能电容,收量收集模块用于收集能量以对储能电容充电,充电方法包括:获取储能电容两端的当前电压值;根据当前电压值与当前切换点电压参数之间的对比关系切换能量收集模块对储能电容充电的速率;若速率切换后正常充电,则减小当前切换点电压参数,以得到第一待定切换点电压参数;在下一次充电过程中,基于第一待定切换点电压参数切换对储能电容充电的速率,若速率切换后充电异常,则将当前切换点电压参数确定为目标切换点电压参数,以在后续的充电过程中基于目标切换点电压参数切换对储能电容充电的速率,使每个用户在基于其使用习惯及设备时开锁效率及成功率更高。
Charging method of passive lock, storage medium and passive lock
The invention provides a passive lock charging method, a storage medium and a passive lock, the passive lock comprises an energy collection module and an energy storage capacitor, the energy collection module is used for collecting energy to charge the energy storage capacitor, and the charging method comprises the following steps: obtaining current voltage values at two ends of the energy storage capacitor; switching the charging rate of the energy storage capacitor by the energy collection module according to the comparison relationship between the current voltage value and the voltage parameter of the current switching point; if normal charging is carried out after rate switching, the voltage parameter of the current switching point is reduced to obtain the voltage parameter of a first undetermined switching point; in the next charging process, the charging rate of the energy storage capacitor is switched based on the first undetermined switching point voltage parameter, if charging is abnormal after rate switching, the current switching point voltage parameter is determined as the target switching point voltage parameter, and the target switching point voltage parameter is determined as the target switching point voltage parameter; and the charging rate of the energy storage capacitor is switched based on the voltage parameter of the target switching point in the subsequent charging process, so that the unlocking efficiency and success rate of each user based on the use habit and the equipment are higher.
本申请提供一种无源锁的充电方法、存储介质及无源锁,无源锁包括能量收集模块及储能电容,收量收集模块用于收集能量以对储能电容充电,充电方法包括:获取储能电容两端的当前电压值;根据当前电压值与当前切换点电压参数之间的对比关系切换能量收集模块对储能电容充电的速率;若速率切换后正常充电,则减小当前切换点电压参数,以得到第一待定切换点电压参数;在下一次充电过程中,基于第一待定切换点电压参数切换对储能电容充电的速率,若速率切换后充电异常,则将当前切换点电压参数确定为目标切换点电压参数,以在后续的充电过程中基于目标切换点电压参数切换对储能电容充电的速率,使每个用户在基于其使用习惯及设备时开锁效率及成功率更高。
Charging method of passive lock, storage medium and passive lock
无源锁的充电方法、存储介质及无源锁
LIU ZHIYONG (author) / LI ZHAO (author) / LI ZHUOSHENG (author)
2024-04-09
Patent
Electronic Resource
Chinese
IPC:
E05B
LOCKS
,
Schlösser
Passive electronic lock, control method of passive electronic lock and storage medium
European Patent Office | 2021
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