CN115037051A - 一种电动自行车安全管理*** - Google Patents
一种电动自行车安全管理*** Download PDFInfo
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Abstract
本发明公开了一种电动自行车安全管理***,具体涉及电动自行车安全技术领域,包括控制平台,所述控制中心的的连接端连接有三堵子***和两疏子***,用以接收三堵子***和两疏子***输送来的数据,并进行相应处理。本发明提高防止用户入户充电的便捷性,有效从入户、入梯、充电方面,完全避免了用户将电动自行车或电动车电池带入室内进行充电从而导致火灾的事故发生,有利于用户养成集中充电的***台中,管理用户可在其内实时接收三堵子***和两疏子***中设备运行状态及实时报警信息,同时将实时报警信息通过移动端发布至网格员手机中,并进行第一时间处理。
Description
技术领域
本发明涉及电动自行车安全技术领域,更具体地说,本发明涉及一种电动自行车安全管理***。
背景技术
随着科技的迅速发展和人们生活水平的提高,越来越多的人采用电动自行车作为自己的代步工具。电动自行车是以电池作为动力来源,在电池电量低时,需要对电池进行充电,以确保出行顺畅。
然而,有些用户会将电动自行车或电动车电池带入室内进行充电,从而导致火灾等安全隐患频频发生,危害了人身和财产安全。因此,为确保人身和财产安全,需要防止电动自行车的入户充电。
目前,人们的消防安全意识不断增长,但是仍存在部分用户没有该方面的消防意识。或者,部分用户即使知道电池入户充电有安全隐患,仍存在侥幸心理。虽然可以在入户通道处安排人员进行检查,以防范电池入户,但是需耗费大量的人力,并无法每时每刻进行检查,此外,人员检查可能存在疏漏。因此,当前仍未寻找到有效防范电池入户充电的方法。
综上所述,如何有效防范电池入户充电,是目前亟需解决的问题。
发明新型内容
为了克服现有技术的上述缺陷,本发明的实施例提供一种电动自行车安全管理***,以解决上述背景技术中提出的需要防止电动自行车的入户充电问题。
为实现上述目的,本发明提供如下技术方案:一种电动自行车安全管理***,包括控制中心,所述控制中心的的连接端连接有三堵子***和两疏子***,用以接收三堵子***和两疏子***输送来的数据,并进行相应处理,
三堵子***有效从入户、入梯、充电方面,完全避免了用户将电动自行车或电动车电池带入室内进行充电从而导致火灾的事故发生。
两疏子***为用户提供安全可靠的充电场所,有利于用户养成集中充电的习惯,为三堵子***提供保障。
在一个优选地实施方式中,所述三堵子***包括入户分隔单元、入梯分隔单元、充电分隔单元,
所述入户分隔单元包括电子标签RFID读写器和RFID标签,所述RFID读写器部署于所述入户通道内,所述RFID标签设置于电动车的电池上;
所述入梯分隔单元包括图像识别管控***和数据库,图像识别管控***部署在电梯内,对电梯内的物体进行采集,通过图像分析和数据库对比分析,得出是否有电动车进入到电梯内,然后对其内人员进行语音提醒,并且控制电梯门不关闭;
所述充电分隔单元包括电气识别监测设备,电气识别监测设备安装在住宅电表后端,对房屋内用电设备进行智能识别,通过电动车充电功率及频段等进行综合判断,识别此房屋正在进行电动车充电动作并报警。
在一个优选地实施方式中,所述两疏子***包括在室外设置的集中充电点,集中充电点包括充电单元、自动灭火单元和反馈单元,
充电单元包括电动自行车充电桩及电动自行车充电柜,用户可通过充电场所的集中充电设施进行充电;
自动灭火单元部署在充电单元位置处,包括自动喷淋灭火***、低压细水雾灭火***、高压细水雾灭火***等;
反馈单元,反馈单元部署在充电单元,可根据用户电池充电容量判断电池剩余寿命,并将电池寿命推送给相应电动车车主,提醒车主进行电动车电池更换。
本发明的技术效果和优点:
通过本发明设置的电动自行车安全管理***,与现有技术相比,利用三堵子***有效防范电动自行车及电池入户充电,并提高防止用户入户充电的便捷性,有效从入户、入梯、充电方面,完全避免了用户将电动自行车或电动车电池带入室内进行充电从而导致火灾的事故发生,同时利用两疏子***为用户提供安全可靠的充电场所,有利于用户养成集中充电的***台中,管理用户可在其内实时接收三堵子***和两疏子***中设备运行状态及实时报警信息,同时将实时报警信息通过移动端发布至网格员手机中,并进行第一时间处理。
附图说明
图1为本发明提出的一种电动自行车安全管理***示意图。
附图标记为:1、控制中心;2、三堵子***;201、入户分隔单元;202、入梯分隔单元;203、充电分隔单元;3、两疏子***;301、充电单元;302、自动灭火单元;303、反馈单元。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例1
如附图1所示,一种电动自行车安全管理***,包括控制中心1,控制中心1的的连接端连接有三堵子***2和两疏子***3,用以接收三堵子***2和两疏子***3输送来的数据,并进行相应处理,有效从入户、入梯、充电方面,完全避免了用户将电动自行车或电动车电池带入室内进行充电从而导致火灾的事故发生,两疏子***3为用户提供安全可靠的充电场所,有利于用户养成集中充电的***台中,管理用户可在其内实时接收第一第二方案中设备运行状态及实时报警信息,同时将实时报警信息通过移动端发布至网格员手机中,并进行第一时间处理。
在一个优选地实施方式中,三堵子***2包括入户分隔单元201、入梯分隔单元202、充电分隔单元203,
入户分隔单元201包括电子标签RFID读写器和RFID标签,RFID读写器部署于入户通道内,RFID标签设置于电动车的电池上,使用电子标签RFID读写器检测入户通道内是否存在RFID标签,当安装有RFID标签的电动车进入入户通道内时,读写器可发出声光及远程报警数据,提示用户禁止进入;
入梯分隔单元202包括图像识别管控***和数据库,图像识别管控***部署在电梯内,对电梯内的物体进行采集,通过图像分析和数据库对比分析,得出是否有电动车进入到电梯内,然后对其内人员进行语音提醒,并且控制电梯门不关闭,使用电梯内电动车图像识别管控***,对电梯内的物体进行采集,通过图像分析和数据库对比分析,得出是否有电动车进入到电梯内,然后对其内人员进行语音提醒,并且控制电梯门不关闭,电梯不运行,并进行远程报警提示工作人员进行人为干涉;
充电分隔单元203包括电气识别监测设备,电气识别监测设备安装在住宅电表后端,对房屋内用电设备进行智能识别,通过电动车充电功率及频段等进行综合判断,识别此房屋正在进行电动车充电动作并报警,在住宅电表后端安装电气识别监测设备,对房屋内用电设备进行智能识别,通过电动车充电功率及频段等进行综合判断,识别此房屋正在进行电动车充电动作,并发出远程报警提示工作人员进行人为干涉劝阻,同时可联动控制切断该处用户设备,终止其充电动作。
不得不说的,两疏子***3包括在室外设置的集中充电点,集中充电点包括充电单元301、自动灭火单元302和反馈单元303,
充电单元301包括电动自行车充电桩及电动自行车充电柜,用户可通过充电场所的集中充电设施进行充电,第二通过在室外设置集中充电点进行电动车充电疏导,包括电动自行车充电桩及充电柜,用户可通过充电场所的集中充电设施进行充电;
自动灭火单元302部署在充电单元301位置处,包括自动喷淋灭火***、低压细水雾灭火***、高压细水雾灭火***等,为避免其充电过程中电动车电池发生火灾导致殃及池鱼的现象,故在集中充电点处设置自动灭火设施;
反馈单元303,反馈单元303部署在充电单元301,可根据用户电池充电容量判断电池剩余寿命,并将电池寿命推送给相应电动车车主,提醒车主进行电动车电池更换。
其次:本发明公开实施例附图中,只涉及到与本公开实施例涉及到的结构,其他结构可参考通常设计,在不冲突情况下,本发明同一实施例及不同实施例可以相互组合;
最后:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (3)
1.一种电动自行车安全管理***,包括控制中心(1),其特征在于:所述控制中心(1)的的连接端连接有三堵子***(2)和两疏子***(3),用以接收三堵子***(2)和两疏子***(3)输送来的数据,并进行相应处理,
三堵子***(2)有效从入户、入梯、充电方面,完全避免了用户将电动自行车或电动车电池带入室内进行充电从而导致火灾的事故发生。
两疏子***(3)为用户提供安全可靠的充电场所,有利于用户养成集中充电的习惯,为三堵子***(2)提供保障。
2.根据权利要求1所述的一种电动自行车安全管理***,其特征在于:所述三堵子***(2)包括入户分隔单元(201)、入梯分隔单元(202)、充电分隔单元(203),
所述入户分隔单元(201)包括电子标签RFID读写器和RFID标签,所述RFID读写器部署于所述入户通道内,所述RFID标签设置于电动车的电池上;
所述入梯分隔单元(202)包括图像识别管控***和数据库,图像识别管控***部署在电梯内,对电梯内的物体进行采集,通过图像分析和数据库对比分析,得出是否有电动车进入到电梯内,然后对其内人员进行语音提醒,并且控制电梯门不关闭;
所述充电分隔单元(203)包括电气识别监测设备,电气识别监测设备安装在住宅电表后端,对房屋内用电设备进行智能识别,通过电动车充电功率及频段等进行综合判断,识别此房屋正在进行电动车充电动作并报警。
3.根据权利要求1所述的一种电动自行车安全管理***,其特征在于:所述两疏子***(3)包括在室外设置的集中充电点,集中充电点包括充电单元(301)、自动灭火单元(302)和反馈单元(303),
充电单元(301)包括电动自行车充电桩及电动自行车充电柜,用户可通过充电场所的集中充电设施进行充电;
自动灭火单元(302)部署在充电单元(301)位置处,包括自动喷淋灭火***、低压细水雾灭火***、高压细水雾灭火***等;
反馈单元(303),反馈单元(303)部署在充电单元(301),可根据用户电池充电容量判断电池剩余寿命,并将电池寿命推送给相应电动车车主,提醒车主进行电动车电池更换。
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