CN110281804B - 电池充电的方法及能源站 - Google Patents

电池充电的方法及能源站 Download PDF

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CN110281804B
CN110281804B CN201910144284.4A CN201910144284A CN110281804B CN 110281804 B CN110281804 B CN 110281804B CN 201910144284 A CN201910144284 A CN 201910144284A CN 110281804 B CN110281804 B CN 110281804B
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battery
identification code
charging
lease
energy station
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CN110281804A (zh
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涂家政
田季伟
陈建宏
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Kwang Yang Motor Co Ltd
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Kwang Yang Motor Co Ltd
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    • Y04S30/14Details associated with the interoperability, e.g. vehicle recognition, authentication, identification or billing

Abstract

一种电池充电的方法,由一能源站执行,该能源站通过网际网络与一储存多个分别对应多个电池的电池识别码的云端服务器通信连线,每一电池识别码各自对应于一第一、一第二租约识别码二者其中之一,该能源站侦测一电池的一电池识别码,并将该电池识别码传送至该云端服务器,该云端服务器根据该用户端的电池的电池识别码比对出与所储存的该多个电池识别码相符合者,并比对该电池识别码所对应的租约识别码类型,若比对结果为对应于该第一租约识别码,则该能源站允许对该电池充电。

Description

电池充电的方法及能源站
技术领域
本发明是有关于一种充电方法及能源站,特别是指一种对抽取式电池充电的充电方法及能源站。
背景技术
目前在车辆开发领域中,为应绿能发展,以电池(如,可反复抽取出以进行充电的抽取式电池)作为动力转换来源的电动车辆取代传统的内燃机车辆,而达到零排放污染是目前的主要发展目标。如此一来,如何对抽取式电池进行充电必然为相关电动车业者主要的研究重点。
现有的电动车电池若电量用尽时,补充电池能量的方式主要是依据购买电动车时车主所登记的电池租约类型区分(长期租约或短期租约)分为二种,长期租约是可让消费者在经销商处对电池进行充电,而短期租约则是让消费者在车厂设置的能源站进行电池交换。
然而,电动车的使用者有时并非车主本人,而使用者也无法得知电池租约类型,若有立即性的充电需求,还需通过经销商或能源站才能得知电池租约种类,将限制电动车使用的便利性,也会降低使用者对于使用电动车的喜好程度,因此,现有的电动车用电池的能源补充方式有改善的必要。
发明内容
【发明所欲解决的问题】
因此,本发明的一目的,即在提供一种自动判断电池租约类型而补充电池能源的电池充电的方法。
【解决问题的技术手段】
于是,本发明权利要求1的电池充电的方法,由一能源站所执行,该能源站通过网际网络与一储存多个分别对应多个电池的电池识别码的云端服务器通信连线,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,该方法包含一侦测电池识别码的步骤、一比对租约识别码的步骤,及一控制充电的步骤。
该侦测电池识别码的步骤由该能源站侦测一用户端的电池的一电池识别码,并将该电池识别码传送至该云端服务器。
该比对租约识别码的步骤由该云端服务器根据该用户端的电池的电池识别码比对出与所储存的该多个电池识别码相符合者,并比对该电池识别码所对应的租约识别码类型。
该控制充电的步骤为若该比对租约识别码的步骤的比对结果为该电池识别码对应于该第一租约识别码,则该能源站允许对该电池充电。
本发明权利要求9的能源站,包含一控制单元,及多数个充电埠。
该控制单元通过网际网络一储存多个电池的电池识别码的云端服务器通信连线,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一。
该多个充电埠其中之一侦测一用户端的电池的一电池识别码,并将该电池识别码传送至该控制单元。
该控制单元将所接收的该电池识别码传送至该云端服务器,该云端服务器根据该电池识别码比对出与所储存的该多个电池识别码相符合者,并比对该电池识别码所对应的租约识别码类型。
若比对结果为该电池识别码对应于该第一租约识别码,该能源站允许该充电埠对该电池充电。
本发明权利要求15的能源站,包含一控制单元,及多数个充电埠。
该控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线。
该多数个充电埠电连接该控制单元,并分别用以对多数个电池充电,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一。
该能源站允许对该第一租约识别码的该电池进行充电,且接收来自一用户所输入的一取回密码,该能源站经由网际网络将该取回密码传送至该云端服务器,经由该云端服务器鉴认该取回密码相符后,该能源站允许该用户取回该电池。
本发明权利要求17的能源站,包含一控制单元,及多数个充电埠。
该控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线。
该多数个充电埠电连接该控制单元,并分别用以对多数个电池充电,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一。
该能源站允许对该第一租约识别码的该电池进行充电,该能源站扫描一用户的一行动装置所显示的一用户条码,该用户条码对应一该用户的一用户识别码,该能源站经由网际网络将该用户识别码传送至该云端服务器,经由该云端服务器鉴认该用户识别码相符后,该能源站允许该用户取回该电池。
本发明权利要求20的能源站,包含一控制单元,及多数个充电埠。
该控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线。
该多数个充电埠电连接该控制单元,并分别用以对多数个电池充电,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一。
该能源站允许一用户对该第二租约识别码的电池来取得该电池,该能源站扫描该用户的一行动装置所显示的一用户条码,该用户条码对应该用户的一用户识别码,该能源站经由网际网络将该能源站识别码与该用户识别码传送至该云端服务器,经由该云端服务器鉴认该用户识别码相符后,该能源站允许该用户取得该电池。
【发明的效果】
本发明借由权利要求1的功效在于:当用户将电池置入能源站,借由能源站自动侦测电池的识别码,并传送至云端服务器,再由云端服务器判断电池识别码对应的租约类型进而控制能源站对电池能量的补充方式,以便于用户充电。
本发明借由权利要求9的功效在于:当用户将电池置入能源站的充电埠,借由充电埠自动侦测电池的识别码,并由控制单元传送至云端服务器,再由云端服务器判断电池识别码对应的租约类型进而通过控制单元控制充电埠对电池能量的补充方式,以便于用户充电。
本发明借由权利要求15的功效在于:当用户将电池置入能源站的充电埠,借由充电埠自动侦测电池的识别码,并由控制单元传送至云端服务器,再由云端服务器判断电池识别码对应的租约类型进而通过控制单元控制充电埠对电池能量的补充方式,以便于用户充电,且当用户自能源站输入关于取回电池的取回密码,用户即可由能源站取回电池。
本发明借由权利要求17的功效在于:当用户将电池置入能源站的充电埠,借由充电埠自动侦测电池的识别码,并由控制单元传送至云端服务器,再由云端服务器判断电池识别码对应的租约类型进而通过控制单元控制充电埠对电池能量的补充方式,以便于用户充电,且当能源站扫描一由用户提供,并关于电池识别码的用户识别码,用户即可由能源站取回电池。
本发明借由权利要求20的功效在于:当关于能源站扫描一关于用户的用户识别码,并将该用户识别码及一相关于自身的能源站识别码传送至云端服务器,经由云端服务器比对成功后,用户即可由能源站取得电池。
附图说明
本发明的其它的特征及功效,将于参照附图的实施方式中清楚地呈现,其中:
图1是一侧视示意图,说明由本发明能源站提供电力的一载具;
图2是一局部示意图,说明该载具的一脚踏板;
图3是一局部示意图,说明该载具的该脚踏板下方的二个抽取式电池,及一供该等抽取式电池置放的电池盒;
图4是一方块图,说明本发明能源站的一实施例;
图5是一流程图,说明该实施例执行的电池充电的方法;
图6是一流程图,辅助说明该电池充电的方法的一控制充电的步骤;及
图7是一流程图,辅助说明该电池充电的方法的一发送取回信息的步骤。
【附图标记说明】
1 载具
11 脚踏板
111 容置空间
12 电池盒
2 电池
3 控制单元
4 充电埠
5 锁定单元
6 充电接头
7 云端服务器
91 侦测电池识别码的步骤
92 比对租约识别码的步骤
93 控制充电的步骤
931 发送充电信号的子步骤
932 对电池锁定充电的子步骤
94 发送取回信息的步骤
941 通知云端服务器的子步骤
942 通知行动装置的子步骤
95 比对密码的步骤
96 解除锁定的步骤
97 侦测能源站识别码的步骤
98 交换电池的步骤
具体实施方式
参阅图1至图3,一由本实施例执行能源补充的载具1,该载具1是以电动摩托车为例,但不限于此。该载具1的一脚踏板11下方具有一供一电池盒12置放的容置空间111,该脚踏板11与该电池盒12组设在一起。该电池盒12受一马达驱动装置(图未示)所驱动而上升(或下降),以令该脚踏板11随着该电池盒12的上升(或下降)而开启(或关闭)。该电池盒12供二个电池2置放,但不限于此,该电池盒12也可仅供一个该电池2(或二个以上的该电池2)置放。当每一电池2的电力快用完时,用户可直接将每一电池2从该电池盒12中抽取出来进行充电,因而每一电池2也称为一抽取式电池。
参阅图4,本发明能源站的一实施例,该能源站包含一控制单元3、多数个充电埠4、多数个锁定单元5、及多数个充电接头6。
该控制单元3通过网际网络与一储存多个电池2的电池识别码的云端服务器7通信连线,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,而该云端服务器7则为个人电脑或云端主机。
此外,每一电池识别码还对应一取回密码及一用户识别码,而每一用户识别码对应一行动装置。
具体而言,电池识别码(即,电池序号)为车厂开发电池时,对每一电池写入的辨识码,并以二维条码方式呈现,其中,二维条码即为快速响应矩阵图码(QR code:QuickResponse Code),而写入方式可分为将二维条码列印于纸上,并粘贴于电池可供扫描处(例如:电池顶部),或是写入于电池内部相关的储存模块内,使该多个充电埠4通过近场通信模块与电池的近场通信模块连线读取。
再者,电池配置于电动车开始使用后,其储存模块还可写入关于消耗功率、电池健康状态、剩余容量、全充容量、电池电压、充放电流、充电次数、充电时间、电池软体序号,及电池硬体序号等相关资料。
当用户购车时,会通过手机搭载车厂开发的应用程序登录用户相关资料、电池租约类型(长期租赁或短期租赁),及充电时用以取回电池的密码,并由该云端服务器产生对应的以快速响应矩阵图码呈现的用户识别码,该云端服务器再将该用户识别码传送至用户的手机,经销商再通过扫描呈现于用户手机的用户识别码并连线至该云端服务器读取对应的取回密码,通过近场通信协定将取回密码写入于该电池,使电池内部储存的资料与使用者相关资料完成绑定。
需再说明的是,由于电动车用电池造价昂贵,当消费者购买电动车时,其电池是以租赁方式租借给消费者使用,该长租识别码与该短租识别码用以区分电池的租约类型;该长租识别码代表消费者是选择长期租赁方式租借电池,当消费者有充电需求时,则可将电池送至车厂设置的能源站充电,而该短租识别码则代表消费者是选择短期租赁方式租借电池,可在能源站交换充饱电的电池,并将待充电的电池放置于能源站充电。
此外,当用户完成相关资料登录时,并由云端服务器根据电池的电池识别码与对应的租约类型作绑定,进一步言之,主要有两种作法:第一种作法是将电池识别码与对应的租约识别码类型整合成一组号码,以其中某一位数做为区分租约类型,举例来说,若一电池的电池识别码是对应于长租识别码,其整合后的号码为3150AAGD7981131001,若该电池的电池识别码是对应于短租识别码,其整合后的号码为3150AAGD7881131001,则系统可根据第十个位数(由右而左起算)的数字辨别电池是长期租赁还是短期租赁(即,长期租赁所对应的辨识号码为9,短期租赁所对应的辨识号码为8);而第二种作法则是电池的电池识别码与其租约识别码各为一独立号码,再进行关联,且二种作法所产生的编号并将其写入电池。
该多数个充电埠4电连接该控制单元3,并分别用以对该多数个待充电的电池2充电。
该多数个锁定单元5的其中数个分别对应该多数个充电埠4,用以使该多数个充电埠4与所对应的该等电池2锁扣并电连接,而使该多数个充电埠4分别对该多数个待充电的电池2充电。
该多数个充电接头6电连接该控制单元3,用以对多个电动载具充电。
此外,该多个充电埠开设有可置放电池的容置空间,电池的充电方式是由用户将电池2置入容置空间,并通过对应的该锁定单元5将电池与对应的充电埠锁固而使该充电埠4对该电池2充电。
参阅图5,该能源站执行一种电池充电的方法,该电池充电的方法包含一侦测电池识别码的步骤91、一比对租约识别码的步骤92、一控制充电的步骤93、一发送取回信息的步骤94、一比对密码的步骤95、一解除锁定的步骤96、一侦测能源站识别码的步骤97,及一交换电池的步骤98。
首先是执行该侦测电池识别码的步骤91,为由该多个充电埠4其中之一侦测一由用户置入的待充电的电池2的电池识别码,并将该电池识别码传送至该控制单元3。
接着是执行该比对租约识别码的步骤92,为由该控制单元3将所接收的该电池识别码传送至该云端服务器7,该云端服务器7根据该电池识别码比对出与所储存的该多个电池识别码相符合者,并比对该电池识别码所对应的租约识别码类型。
再来是执行该控制充电的步骤93,若该比对租约识别码的步骤92的比对结果为该电池识别码对应于该第一租约识别码,代表电池可在该充电埠4充电,则当消费者将该锁定单元切换至该锁定电池状态使该充电埠4与该电池锁扣并电连接时,则该充电埠4开始对该电池2充电。须特别说明的是,该锁定单元为一物理形式的锁具(图未示),即,须由人为手动方式切换锁具而将该充电埠4与该电池2锁扣接合而电连接,且此时对应该充电埠4的一指示灯(图未示)并根据该充电埠4与该电池2电连接而亮灯,但做法不局限于此。
需再说明的是,本实施例的该比对租约识别码的步骤92,若其比对结果为该电池识别码对应于该第一租约识别码,则接着控制充电的另一种做法是在由能源站的该充电埠4对该电池2充电之前,由该云端服务器7发送相关于该电池2的该取回密码,在该能源站的该控制单元3接收到该取回密码后,即控制该充电埠4对该电池2充电,但做法并不局限于此。
此外,若该比对租约识别码的步骤的比对结果92为该电池识别码对应于该第二租约识别码,则代表用户的电池所属合约为短期方式租赁电池,但可通过能源站配置多个充饱电量的电池2以电池交换共享方式而更换电池,并将该待充电的电池2置入该充饱电量的电池2对应的充电装置(即,充电埠)充电,关于此租借态样,将于该侦测能源站识别码的步骤97,及该交换电池的步骤99中详细说明。
参阅图6,进一步地以一发送充电信号的子步骤931及一对电池锁定充电的子步骤932详细说明该控制充电的步骤93的更具体做法。
该发送充电信号的子步骤931为当该比对租约识别码的步骤92的比对结果为对应于该第一租约识别码,该云端服务器7发送一充电信号至该控制单元3与该行动装置。
该对电池锁定充电的子步骤932为用户根据该充电信号将对应于该充电埠4的该锁定单元5切换于该锁定电池状态,使该充电埠4与该电池2锁扣并对该电池充电。
再参阅图5,接着是执行该发送取回信息的步骤94,为当该充电埠4对该电池5充电完成时,该云端服务器7发送一取回信息至该控制单元3与该电池2的该电池识别码对应的该用户识别码所指示的该行动装置。
参阅图7,进一步地以一通知云端服务器的子步骤941及一通知行动装置的子步骤942详细说明该发送取回信息的步骤94的更具体做法。
该通知云端服务器的子步骤941为当该充电埠4对该电池2充电完成时,该控制单元3发送一充电完成信号至该云端服务器7。
该通知行动装置的子步骤942为该云端服务器7根据该充电完成信号发送该取回信息至该控制单元3与该电池2的该电池识别码对应的该用户识别码所指示的该行动装置。
再参阅图5,接着是执行该比对密码的步骤95,为用户装置根据该取回信息通过该控制单元3输入一取回密码,该控制单元3根据该取回密码与该电池2的该电池识别码对应的该取回密码比对是否符合。
再来是执行该解除锁定的步骤96,为若该比对密码的步骤95的比对结果为是,则用户可根据该比对结果将该锁定单元5切换于该释放电池状态,使该充电埠4与该电池2不锁扣且非电连接,而可取出电池,且此时对应于该充电埠4的该指示灯则根据该充电埠4与该电池2非电连接而不亮灯,但不局限于此做法。
接着是执行该侦测能源站识别码的步骤97,为若该比对租约识别码的步骤92的比对结果为对应于该第二租约识别码,则该电池2的该电池识别码对应的该用户识别码所指示的该行动装置侦测该能源站对应的以快速响应矩阵条码呈现的该站别识别码,即,由用户通过手机搭载车厂所开发的应用程序扫描该能源站的快速响应矩阵图码,并将该快速响应矩阵图码传送至该云端服务器7。
最后是执行该交换电池的步骤98,为该云端服务器7根据该站别识别码控制对应的该控制单元3显示可取出电池的信息,则该行动装置可根据该信息将该待充电的电池2与该能源站配置的该电池置换。
此外,通过短期租赁的方式租借电池,每次可租借的电池数量不仅为一颗,可依用户需求决定租借电池数量。
须再进一步说明的是,该锁定单元5亦可为一电子锁形式,即根据电子讯号而切换为上锁或不上锁,在该控制充电的步骤93中,若是由该云端服务器7执行取回密码的比对,则该锁定单元5可以一电子锁取代,受控地根据该云端服务器7的比对结果对应产生的电子讯号上锁或不上锁,且当电子锁处于解锁状态时,可再根据预设的时间限制而切换为上锁状态,避免使用者未取走解锁的电池而造成失窃问题,但不局限于此做法。
上述本发明能源站的该实施例中,当用户将电池置放于该充电埠中,借由该云端服务器比对由该控制单元传送的该电池的电池识别码比对电池租约类型,若比对结果为长期租赁类型,则可通过充电埠对电池充电,若比对结果为短期租赁类型,则可通过能源站配置的电池进行电池交换,再者,对应每一充电埠的锁定单元还可在电池充电时,将电池与充电埠锁固连接,待充电完成后,再受控地依据正确的取回电池密码而解锁,且当解锁后,若电池在预设的时间内未被取出,则可再度上锁。
综上所述,上述实施例优点在于借由云端服务器比对电池租约种类,而决定电池补充能源的方式,使非车主的用户或车主本人无须得知电池租约种类亦可使电池补充能量,确实能达成本发明的目的。
以上所述仅为本发明的实施例而已,不能以此限定本发明实施的范围,凡是依本发明权利要求及专利说明书内容所作的简单的等效变化与修饰,皆仍属本发明涵盖的范围内。

Claims (22)

1.一种电池充电的方法,由一能源站执行,所述能源站通过网际网络与一储存分别对应多个电池的多个电池识别码的云端服务器通信连线,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,所述方法包含:
一侦测电池识别码的步骤,由所述能源站侦测一用户端电池的一电池识别码,并将所述电池识别码传送至所述云端服务器;
一比对租约识别码的步骤,由所述云端服务器根据所述用户端电池的电池识别码比对出与所储存的多个所述电池识别码其中之一相符合者,并比对所述电池识别码所对应的租约识别码类型;及
一控制充电的步骤,若所述比对租约识别码的步骤的比对结果为所述电池识别码对应于所述第一租约识别码,则所述能源站允许对所述电池充电。
2.如权利要求1所述的电池充电的方法,其中,所述能源站还包含多数个分别对应多数个充电埠,并在一锁定电池状态及一释放电池状态间切换的锁定单元,在所述控制充电的步骤中,当比对出所述电池识别码对应于所述第一租约识别码,所述锁定单元根据一锁定信号切换为所述锁定电池状态使所述充电埠与所述电池锁扣并电连接而对所述电池充电。
3.如权利要求2所述的电池充电的方法,其特征在于,所述云端服务器还储存多个分别对应所述多个电池识别码的用户识别码,每一用户识别码用以指示一行动装置,在所述控制充电的步骤之后,还包含,
一发送取回信息的步骤,为当所述能源站的充电埠对所述电池充电完成时,所述云端服务器发送一取回信息至所述电池的所述电池识别码对应的所述用户识别码所指示的所述行动装置,所述能源站包含一通过网际网络与所述云端服务器通信连线的控制单元,所述云端服务器还将所述取回信息发送至所述控制单元。
4.如权利要求3所述的电池充电的方法,其特征在于,所述能源站还包含多数个电连接所述控制单元,并分别用以对多数个电池充电的充电埠,及分别对应所述多数个充电埠的多数个锁定单元,
在所述侦测电池识别码的步骤中,所述多数个充电埠其中之一侦测所述电池的电池识别码,并将所述电池识别码传送至所述控制单元,
在所述比对租约识别码的步骤中,所述控制单元将所接收的所述电池识别码传送至所述云端服务器,所述云端服务器根据所述电池识别码比对出与所储存的所述多个电池识别码相符合者,并比对所述电池识别码所对应的租约识别码类型,
在所述控制充电的步骤中,若所述比对租约识别码的步骤的比对结果为所述电池识别码对应于所述第一租约识别码,则所述能源站允许对所述电池充电。
5.权利要求4所述的电池充电的方法,其特征在于,所述发送取回信息的步骤包括:
一通知云端服务器的子步骤,为当所述充电埠对所述电池充电完成时,所述控制单元发送一充电完成信号至所述云端服务器,及
一通知行动装置的子步骤,为所述云端服务器根据所述充电完成信号发送所述取回信息至所述电池的所述电池识别码对应的所述用户识别码所指示的所述行动装置,且所述云端服务器还将所述取回信息发送至所述控制单元。
6.如权利要求5所述的电池充电的方法,其特征在于,所述控制充电的步骤包括,
一发送充电信号的子步骤,为当所述比对租约识别码的步骤的比对结果为对应于所述第一租约识别码,所述云端服务器发送一充电信号至所述控制单元与所述行动装置,及
一对电池锁定充电的子步骤,为对应于所述充电埠的所述锁定单元根据所述充电信号切换于所述锁定电池状态,使所述充电埠与所述电池锁扣并对所述电池充电。
7.如权利要求1所述的电池充电的方法,其特征在于,所述电池识别码与所述第一租约识别码整合成一号码,及所述电池识别码与所述第一租约识别码各为一独立号码二者之一。
8.如权利要求1所述的电池充电的方法,其特征在于,所述能源站允许对所述电池充电之前,所述云端服务器发送一取回密码至所述能源站,所述能源站接收所述取回密码后,则所述能源站允许对所述电池充电。
9.一种能源站,包含:
一控制单元,所述控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线;及
多数个充电埠,电连接所述控制单元,并分别用以对多数个电池充电,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,
所述多数个充电埠其中之一侦测一用户端电池的一电池识别码,并将所述电池识别码传送至所述控制单元,
所述控制单元令所述电池识别码传送至所述云端服务器,所述云端服务器根据所述电池识别码比对出与所储存的多个电池识别码相符合者,并比对所述电池识别码所对应的租约识别码类型,
若比对结果为所述电池识别码对应于所述第一租约识别码,所述能源站允许所述充电埠对所述电池充电,所述能源站允许对所述电池充电之前,所述云端服务器发送一取回密码至所述能源站,所述能源站接收所述取回密码后,则所述能源站允许对所述电池充电。
10.如权利要求9所述的能源站,其特征在于,当所述充电埠对所述电池充电完成时,所述控制单元发送一充电完成信号至所述云端服务器,所述云端服务器根据所述充电完成信号发送取回信息至所述电池的所述电池识别码对应的用户识别码所指示的行动装置,且所述云端服务器还将所述取回信息发送至所述控制单元。
11.如权利要求10所述的能源站,还包含分别对应所述多数个充电埠的多数个锁定单元,所述多数个锁定单元分别在一锁定电池状态及一释放电池状态间切换,当比对租约识别码的步骤的比对结果为对应于所述第一租约识别码,所述云端服务器发送充电信号至所述控制单元与所述行动装置,对应于所述充电埠的所述锁定单元根据所述充电信号切换于所述锁定电池状态,使所述充电埠锁扣所述电池并对所述电池充电。
12.如权利要求9所述的能源站,还包含多数个电连接所述控制单元的充电接头,分别用以对多数个电动载具充电。
13.如权利要求9所述的能源站,其特征在于,所述电池识别码与所述第一租约识别码整合成一号码,及所述电池识别码与所述第一租约识别码各为一独立号码二者之一。
14.一种能源站,包含一控制单元,所述控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线,及多数个电连接所述控制单元,并分别用以对多数个电池充电的充电埠,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,
所述能源站允许对所述第一租约识别码的所述电池进行充电,且接收来自一用户所输入的一取回密码,所述能源站经由网际网络将所述取回密码传送至所述云端服务器,经由所述云端服务器鉴认所述取回密码相符后,所述能源站允许所述用户取回所述电池,及经由所述能源站鉴认所述取回密码相符后,所述能源站允许所述用户取回所述电池二者其中之一。
15.如权利要求14所述的能源站,其特征在于,所述电池识别码与所述第一租约识别码整合成一号码,及所述电池识别码与所述第一租约识别码各为一独立号码二者之一。
16.一种能源站,包含一控制单元,所述控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线,及多数个电连接所述控制单元,并分别用以对多数个电池充电的充电埠,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,
所述能源站允许对所述第一租约识别码的所述电池进行充电,所述能源站扫描一用户的一行动装置所显示的一用户条码,所述用户条码对应一所述用户的一用户识别码,所述能源站经由网际网络将所述用户识别码传送至所述云端服务器,经由所述云端服务器鉴认所述用户识别码相符后,所述能源站允许所述用户取回所述电池。
17.如权利要求16所述的能源站,其特征在于,所述行动装置安装有一应用程序,当所述用户进入所述应用程序而完成登录后,所述行动装置显示所述用户条码,所述用户条码为一快速响应矩阵条码。
18.如权利要求16所述的能源站,其特征在于,所述电池识别码与所述第一租约识别码整合成一号码,及所述电池识别码与所述第一租约识别码各为一独立号码二者之一。
19.一种能源站,包含一控制单元,所述控制单元经由网际网络与一储存多个电池的电池识别码的云端服务器通信连线,及多数个电连接所述控制单元,并分别用以对多数个电池充电的充电埠,每一电池识别码各自对应于一第一租约识别码,及一第二租约识别码二者其中之一,
所述能源站允许一用户对所述第二租约识别码的电池来取得所述电池,所述能源站扫描所述用户的一行动装置所显示的一用户条码,所述用户条码对应所述用户的一用户识别码,所述能源站经由网际网络将能源站识别码与所述用户识别码传送至所述云端服务器,经由所述云端服务器鉴认所述用户识别码相符后,所述能源站允许所述用户取得所述电池。
20.如权利要求19所述的能源站,其特征在于,所述行动装置安装有一应用程序,当所述用户进入所述应用程序而完成登录后,所述行动装置显示所述用户条码,所述用户条码为一快速响应矩阵条码。
21.如权利要求19所述的能源站,其特征在于,所述电池识别码与所述第二租约识别码整合成一号码,及所述电池识别码与所述第二租约识别码各为一独立号码二者之一。
22.如权利要求19所述的能源站,其特征在于,所述云端服务器根据所述用户的电池的电池识别码比对出对应于所述第二租约识别码,则所述电池的所述电池识别码对应的所述用户识别码所指示的所述行动装置侦测所述能源站对应的一站别识别码,并将所述站别识别码传送至所述云端服务器,且所述云端服务器根据所述站别识别码控制所述能源站显示一交换信息,所述交换信息指示将所述用户端电池更换成所述能源站配置的多数个电池中的其中之一。
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