CN103887843A - 充电设备及其控制方法 - Google Patents

充电设备及其控制方法 Download PDF

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CN103887843A
CN103887843A CN201310712495.6A CN201310712495A CN103887843A CN 103887843 A CN103887843 A CN 103887843A CN 201310712495 A CN201310712495 A CN 201310712495A CN 103887843 A CN103887843 A CN 103887843A
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payment
battery charger
charging device
payment information
charger cradle
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金范烈
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LS Electric Co Ltd
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LS Industrial Systems Co Ltd
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    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
    • B60L50/00Electric propulsion with power supplied within the vehicle
    • B60L50/50Electric propulsion with power supplied within the vehicle using propulsion power supplied by batteries or fuel cells
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
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    • BPERFORMING OPERATIONS; TRANSPORTING
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    • G06Q20/30Payment architectures, schemes or protocols characterised by the use of specific devices or networks
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    • G06Q20/00Payment architectures, schemes or protocols
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    • G07F15/003Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity for electricity
    • G07F15/005Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity for electricity dispensed for the electrical charging of vehicles
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
    • B60L2240/00Control parameters of input or output; Target parameters
    • B60L2240/70Interactions with external data bases, e.g. traffic centres
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Abstract

本发明提供了一种充电设备及其控制方法。根据操作连接到至少一个从充电设备(200)的主充电设备(100)的方法,所述主充电设备接收来自从充电设备的支付信息;传送包括所述支付信息的支付许可请求消息到支付服务器(400);从所述支付服务器(400)接收与所述支付许可请求消息对应的支付许可消息;并且根据所述支付许可消息,传送电动车辆充电指示至所述从充电设备(200)中的与所述支付信息对应的所述从充电设备。

Description

充电设备及其控制方法
技术领域
本发明涉及一种充电设备及其控制方法,尤其涉及用于车辆的充电设备。
背景技术
随着全球环境污染恶化,无污染能源的使用变得越来越重要。特别地,在大城市区域的空气污染问题正在恶化,并且废气是这样的污染的主要原因之一。在这种情况下,近来正积极地进行关于使用无污染能源的电作为电源的所谓电动车辆的商业化的研究。电动车辆接收来自外部的电能,并使用该电能给电池充电,然后使用电池中所充的电压来通过与车轮结合的电动机而得到为机械能的动力。即,由于电动机被电池中所充的电压所驱动,所以电动车辆使用大容量可再充电电池。另外,为了给大容量可再充电电池充电,单独的充电设备是必需的。
充电设备分为快速充电器和慢速充电器。快速充电器安装在诸如加油站的用于在行驶期间对电池进行快速充电的地方。其充电时间大约占用20分钟。相反地,慢速充电器安装在诸如停车场或购物商场的期望较长停车时间的地方。其充电时间大约占用5个小时。
然而,典型地,对于仅制造或操作包括所有部件的充电设备在费用上有许多限制。
另外,为了为电动车辆充电,仅在安装了充电设备的地方执行诸如充电请求的控制输入。因此,对于使用者来说,将车辆移动到安装有充电设备的地方并且对电动车辆执行控制输入是不方便的。
发明内容
实施例提供通过使用主充电设备和从充电设备对电动车辆进行充电的方法。
在一个实施例中,一种操作主充电设备的方法,包括:接收来自从充电设备的支付信息;传送包括所述支付信息的支付许可请求消息到支付服务器;从所述支付服务器接收与所述支付许可请求消息对应的支付许可消息;并且根据所述支付许可消息,传送电动车辆充电指示至所述从充电设备中的与所述支付信息对应的所述从充电设备。
在另一个实施例中,一种操作从充电设备的方法,包括:确认与充电目标装置的连接或非连接;从主充电设备接收用于对目标装置充电的充电指示;并且根据从所述主充电设备接收的支付信息而对所述充电目标装置供电。
在下面的附图和说明中阐明一个以上实施例的细节。通过说明书和附图以及通过权利要求书,其他特征将是明显的。
附图说明
图1为图示出根据一实施例的网络拓扑。
图2为图示出根据一实施例的充电设备的框图。
图3为图示出根据一实施例的充电方法的时序控制图。
图4图示出根据另一个实施例的充电方法的时序控制图。
具体实施方式
现在将对本公开的实施例进行详细说明,在附图中图示了其示例。
将参考附图详细描述根据一实施例的充电设备及其控制方法。然而,本发明可以多种不同的方式实现,并且不应被理解为限于此处阐明的实施例;相反,通过增加、更换和改变能够容易地得出包含在之前发明或落在本发明精神和范围内的替代实施例,并且该替代实施例将完全传递本发明的构思给本领域技术人员。
还将进一步理解的是,术语“包括(comprises)”和/或“包括有(comprising)”当在本说明书中使用时,指定了所述特征、整体、步骤、操作、元件和/或部件的存在,但是也不排除一个以上其他特征、整体、步骤、操作、元件、部件和/或其组合的存在或附加。
应当知道,当一部分被认为是“连接到”或“联接到”另一部分时,其可以不仅是直接连接或联接到另一个部分,而且还可以是利用它们之间的中间元件来电连接或联接到另一个部分。
在下文中,给出的用来表示元件的诸如“模块”、“部”或“单元”的后缀的使用仅仅是为了便于对本发明进行解释,而其自身不具有任何重要的含义。应当注意的是,“模块”、“部”和“单元”可以代替、选择或混合使用。
图1图示出根据一实施例的网络拓扑。
如图1所示,根据实施例的网络拓扑包括内部通信网10、外部通信网20、主充电台100、从充电台200、终端300、支付服务器400和电动车辆500。
内部通信网10提供了可以以有线方式或无线方式在主充电台100和从充电台200之间交换信息的环境。
图2为图示出根据一实施例的充电设备的框图。
参考图2描述根据该实施例的充电设备。
主充电台100可以包括显示单元110、支付模块120、内部通信模块130、外部通信模块135、控制器140和供电装置150。在图2中所示的元件并不是必不可少的,因此还可以允许包括更多元件或更少元件的主充电台100。
显示单元110显示(输出)在主充电台100中处理的信息。显示单元110可以显示终端300与从充电台200之间或电动车辆与从充电台200之间的连接状态。显示单元110可以显示与支付信息或充电有关的信息。显示单元110可以包括液晶显示器(LCD)、薄膜晶体管-液晶显示器(TFT-LCD)、有机发光二极管(OLED)、柔性显示器和三维显示器中的至少一个。
当显示单元110和感应触摸操作的传感器(下文中被称为“触摸传感器”)形成了互动层结构时,显示单元110可以用作输入装置,也可以用作输出装置。例如,触摸传感器的类型可以为触摸薄膜、触摸薄片或触摸板。显示单元110在这里被描述为输入装置,但是并不限于此。主充电台100可以包括单独的输入装置。
触摸传感器可以被配置为将施加在显示单元110的特定部分上的压力的变化或在显示单元110的特定部分处产生的静电电容转换为电输入信号。触摸传感器可以被配置为不仅检测触摸位置和区域,而且还检测触摸时的压力。
当存在至触摸传感器的触摸输入时,与触摸输入对应的信号被发送到触摸控制器。触摸控制器处理这些信号,并传送相应的数据到控制器140。因此,控制器140可以判断出显示单元110的哪个区域被触摸。
支付模块120可以包括RFID读取器、信用卡终端、高速缓存终端和另一个支付器件中的任何一个。
内部通信模块130执行短距离通信、无线或有线通信。内部通信模块130通过内部通信网10与从充电台200共享信息。
外部通信模块135可以通过内部通信网10与从充电台200的内部通信模块210共享信息。
外部通信模块135可以通过使用外部通信网20而与支付服务器400共享信息。详细地,主充电台100通过使用外部通信网20而请求来自支付服务器400的支付许可。支付服务器400通过使用外部通信网20而传送支付许可的消息到主充电台100。
控制器140控制主充电台100的全部操作。例如,控制器140对从充电台200和支付服务器400之间的通信执行控制。
供电装置150可以给需要充电的装置供电。根据该实施例,供电装置150可以给电动车辆500供电。
从充电台200可以包括内部通信模块210、终端通信模块215、控制器220和供电装置150。在图2中显示的元件不是必不可少的,从充电台200可以实施为包括更多的元件或者更少的元件。另外,根据实施例,从充电台200可以被同时操作多个。根据该实施例,主充电台100和从充电台200可以具有一对多的关系。与主充电台100相比,从充电台200可以不包括显示单元110、支付模块120和外部通信模块135。从充电台200可以比主充电台100更便宜。因此,通过采用从充电台200而不是包括所有元件的主充电台100,可以减少成本。
内部通信模块210执行短距离通信、无线或有线通信。内部通信模块210通过内部通信网10与主充电台100共享信息。详细地,内部通信模块210可以通过内部通信网10与主充电台100的内部通信模块130共享信息。
从充电台200可以通过使用终端通信模块215而与终端300共享信息。此时,可以使用单独的通信网络或短距离通信技术。短距离通信网络可以遵守诸如蓝牙、射频识别(RFID)、红外数据协会(IrDA)、超宽带(UWB)、Zigbee或数字生活网络联盟(DLNA)的通信规范。为了接入无线网,可以使用诸如无线LAN(Wi-Fi)、无线宽带(Wibro)、全球微波接入互操作性(WiMax)或高速下行链路分组接入(HSDPA)的通信规范。当从充电台200通过使用短距离通信而与终端300进行通信时,终端通信模块215可以为短距离通信模块。
控制器220控制从充电台200的所有操作。例如,控制器220对主充电台100和终端300之间的通信执行控制。
终端300可以连接到从充电台200,并且控制从充电台200。
图3是根据实施例的用于充电方法的时序控制图。
将按照图3来描述根据实施例的充电方法。
从充电台200的控制器220确认电动车辆500和从充电台200的供电装置150相连接(操作S101)。这里的电动车辆500是示例性的,但是示例不限于此,还可以使用需要充电的装置来代替。
主充电台100的控制器140通过显示单元110来显示从充电台选择窗口(操作S102)。
主充电台100的控制器140接收从充电台选择输入(操作S103)。根据实施例,由于主充电台100和从充电台200可以具有一对多关系,所以用户可以通过从充电台选择输入来选择与他/她自己的电动车辆500连接的从充电台200。
主充电台100显示能够接收支付信息的窗口(操作S104)。根据实施例,支付信息可以包括支付方式、支付者的个人信息、支付数额、电动车辆中待充电的电容量。
主充电台100的控制器140接收用户的输入(操作S105)。
主充电台100的控制器140通过外部通信模块135请求来自支付服务器400的支付许可(操作S107)。支付许可请求可以包括支付信息。
支付服务器400响应于支付许可请求而传送支付许可消息到主充电台100(操作S109)。支付许可消息可以包括支付信息。
当主充电台100从支付服务器400接收到支付许可消息时,主充电台100通过内部通信模块130指示从充电台200对电动车辆500进行充电(操作S111)。此时,充电可以基于支付信息而进行。
从充电台200的控制器220通过供电装置150对连接到从充电台200的电动车辆500充电(操作S113)。此时,由从充电台200所充的电量取决于由主充电台100接收的支付信息。
当完成充电时,从充电台200传送充电完成消息到终端300(操作S115)。此时,从充电台200可以通过使用终端通信模块215来传送充电完成消息。
图4为图示出根据另一实施例的充电方法的时序控制图。
将按照图4来描述根据另外实施例的充电方法。
从充电台200的控制器220确认电动车辆500与从充电台200的供电装置150相连接(操作S201)。这里电动车辆500是示例性的,并且该示例不限于此,还可以由需要充电的装置来代替。
从充电台200的控制器220确认与终端300的连接(操作S203)。根据实施例,从充电台200和终端300的连接可以通过使用应用程序或其他程序来执行。
当主充电台100接收到从充电台200与终端300的连接的通知时,主充电台100进入接收支付许可请求的备用状态(操作S207)。
尽管未在图中显示,但是终端300可以包括显示单元。终端300可以通过显示单元接收触摸输入,或者包括单独的输入装置。终端300可以通过显示单元显示关于终端300的信息。
终端显示能够接收支付信息的窗口(操作S209)。根据实施例,支付信息可以包括支付方式、支付者的个人信息、支付数额、电动车辆中待充电的电容量。
终端300接收对于支付信息的用户的输入(操作S211)。
终端300请求来自从充电台200的支付许可(操作S213)。此时,支付许可请求可以包括支付信息。
当接收到来自终端300的支付许可请求时,从充电台200的控制器220通过外部通信模块135请求来自支付服务器400的支付许可(操作S215)。此时,支付许可请求可以包括支付信息。
当接收到来自从充电台200的支付许可请求时,主充电台100的控制器140通过外部通信模块135请求来自支付服务器400的支付许可(操作S217)。此时,支付许可请求可以包括支付信息。
支付服务器400响应于支付许可请求而向主充电台100传送支付许可消息(操作S219)。此时,支付许可消息可以包括支付信息。
当从支付服务器400接收到支付许可消息时,主充电台100通过内部通信模块130指示从充电台200对电动车辆500充电(操作S221)。
从充电台200的控制器220通过供电装置150对连接到从充电台200的电动车辆500充电(操作S223)。此时,由从充电台200所充的电量是基于支付信息。
当完成充电时,从充电台200传送充电完成消息到终端300(操作S225)。此时,从充电台200可以通过使用终端通信模块215来传送充电完成消息。
上述主充电台100、从充电台200和终端300可以不是通过受限的上述实施例的方法配置的应用而形成,而是通过选择性地将全部实施例或部分实施例组合而形成以实现不同的改变。
根据该实施例,当支付信息被输入到主充电台时,主充电台请求来自支付服务器的支付许可。当从支付服务器接收到支付许可时,主充电台能够通过基于支付许可而指示从充电台对电动车辆进行充电来对电动车辆进行充电。
根据该实施例,当终端接收到支付信息时,终端传送支付信息给从充电台。从充电台传送支付信息给主充电台。主充电台请求来自支付服务器的支付许可。当主充电台从支付服务器接收到支付许可时,主充电台能够通过基于支付许可而指示从充电台对电动车辆进行充电来对电动车辆充电。
尽管已经参照其数个图示的实施例对实施例进行了描述,但应理解的是,本领域技术人员能够设想出落入本公开原理的精神和范围内的很多其他改进和实施例。尤其是,在本公开、附图以及所附权利要求的范围内对主题组合布置的组成部件和/或布置方式可以有各种变化和改进。对本领域技术人员来说,除了对组成部件和/或布置方式的变化和改进以外,替代使用也将是显而易见的。

Claims (9)

1.一种操作连接到至少一个从充电设备(200)的主充电设备(100)的方法,包括:
接收来自从充电设备的支付信息;
传送包括所述支付信息的支付许可请求消息到支付服务器(400);
从所述支付服务器(400)接收与所述支付许可请求消息对应的支付许可消息;并且
根据所述支付许可消息,传送电动车辆充电指示至所述从充电设备(200)中的与所述支付信息对应的所述从充电设备。
2.如权利要求1所述的方法,其中接收所述支付信息进一步包括:
显示支付信息输入窗口;并且
通过所述窗口接收所述支付信息。
3.如权利要求1所述的方法,其中所述支付许可消息和所述支付许可请求消息通过所述支付服务器(400)和外部通信网(20)被传送和接收。
4.如权利要求1所述的方法,其中通过内部通信网(10)从对应的从充电设备接收所述支付信息。
5.一种操作从充电设备(200)的方法,包括:
确认与充电目标装置的连接或非连接;
从主充电设备(100)接收用于所述充电目标装置的充电指示;并且
根据从所述主充电设备(100)接收的支付信息而对所述充电目标装置供电。
6.如权利要求5所述的方法,其中接收所述充电指示进一步包括:
从终端接收用于充电的支付许可请求;并且
传送所述支付许可请求到所述主充电设备(100)。
7.如权利要求5所述的方法,其中支付许可请求包括所述支付信息。
8.如权利要求5所述的方法,其中所述支付信息包括支付方式、支付者的个人信息、支付数额、电动车辆中待充电的电容量中的至少一个。
9.如权利要求5所述的方法,进一步包括当供电完成时,传送充电完成消息至预设终端。
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CN106882063A (zh) * 2017-02-06 2017-06-23 山东鲁能智能技术有限公司 一种基于银联闪付的电动汽车充电支付系统及方法
CN106882063B (zh) * 2017-02-06 2019-05-10 山东鲁能智能技术有限公司 一种基于银联闪付的电动汽车充电支付系统及方法
CN107176048A (zh) * 2017-06-07 2017-09-19 深圳巴士集团股份有限公司公共汽车分公司 一种电动车停车场的充电系统

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