CN110641311B - 一种基于全方位扫描定位的插接电源优化的智能充电桩 - Google Patents

一种基于全方位扫描定位的插接电源优化的智能充电桩 Download PDF

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CN110641311B
CN110641311B CN201910790096.9A CN201910790096A CN110641311B CN 110641311 B CN110641311 B CN 110641311B CN 201910790096 A CN201910790096 A CN 201910790096A CN 110641311 B CN110641311 B CN 110641311B
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林剑洪
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Guigang Shishi Technology Information Co.,Ltd.
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    • BPERFORMING OPERATIONS; TRANSPORTING
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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
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    • B60L53/30Constructional details of charging stations
    • B60L53/35Means for automatic or assisted adjustment of the relative position of charging devices and vehicles
    • B60L53/36Means for automatic or assisted adjustment of the relative position of charging devices and vehicles by positioning the vehicle
    • 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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    • B60L53/10Methods of charging batteries, specially adapted for electric vehicles; Charging stations or on-board charging equipment therefor; Exchange of energy storage elements in electric vehicles characterised by the energy transfer between the charging station and the vehicle
    • B60L53/14Conductive energy transfer
    • 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
    • B60L53/00Methods of charging batteries, specially adapted for electric vehicles; Charging stations or on-board charging equipment therefor; Exchange of energy storage elements in electric vehicles
    • B60L53/30Constructional details of charging stations
    • B60L53/31Charging columns specially adapted for electric vehicles
    • 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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    • Y02T10/00Road transport of goods or passengers
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    • 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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    • 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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    • Y02T90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02T90/10Technologies relating to charging of electric vehicles
    • Y02T90/12Electric charging stations
    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
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    • Y02T90/14Plug-in electric vehicles

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Abstract

本发明公开了一种基于全方位扫描定位的插接电源优化的智能充电桩,其结构包括充电桩本体、底座,充电桩本体与底座安装连接,充电桩本体由桩头、桩身、桩座组成,桩头与桩身安装连接,本发明通过轴装置的传动带动桩头对车身插口进行扫描定位,智能筛选出临近车身插口的充电桩本体进行运行,升降框根据车身插口的高度进行上下移动,充电器、内框架根据车身插口的远近距离进行向前伸展,充电器的前侧面与车身插口贴合时,即实现充电;省去了用户使用充电桩时需将充电桩上的充电枪插在车身充电插电口位置进行充电,完成充电后再将充电枪放回充电桩处的这一步骤,实现了产品的优化。

Description

一种基于全方位扫描定位的插接电源优化的智能充电桩
技术领域
本发明涉及充电桩领域,具体地说是一种基于全方位扫描定位的插接电源优化的智能充电桩。
背景技术
充电桩其功能类似于加油站里面的加油机,可以固定在地面或墙壁,安装于公共建筑(公共楼宇、商场、公共停车场等)和居民小区停车场或充电站内,可以根据不同的电压等级为各种型号的电动汽车充电。用户使用充电桩时先进行付费然后将充电桩上的充电枪插在车身充电插电口位置,即可进行充电,完成充电后再将充电枪放回充电桩处。
现有技术随着智能产品的不断优化,如何省去用户使用充电桩时将充电桩上的充电枪插在车身充电插电口位置进行充电,完成充电后再将充电枪放回充电桩处的这一步骤,是现阶段充电桩待改进的地方。
发明内容
本发明的主要目的在于克服现有技术的不足,提供一种基于全方位扫描定位的插接电源优化的智能充电桩,以解决随着智能产品的不断优化,如何省去用户使用充电桩时将充电桩上的充电枪插在车身充电插电口位置进行充电,完成充电后再将充电枪放回充电桩处的这一步骤,是现阶段充电桩待改进的地方的问题。
本发明采用如下技术方案来实现:一种基于全方位扫描定位的插接电源优化的智能充电桩,其结构包括充电桩本体、底座,所述充电桩本体底部与底座安装连接,所述充电桩本体由桩头、桩身、桩座组成,所述桩头与桩身上端安装连接,所述桩身底部与桩座嵌装。
进一步优选的,所述桩头包括轴装置、桩头本体、扫描器、显示板,所述轴装置安装在桩头本体上并且二者轴连接,所述桩头本体前侧装设有扫描器,所述桩头本体前侧设有显示板。
进一步优选的,所述桩身包括桩身本体、智能充电器,所述智能充电器安装在桩身本体上并且二者组成为一体化结构。
进一步优选的,所述底座包括底座座架、传动皮带条、底座架轨、移动嵌柱,所述底座座架内部装设有底座架轨,所述传动皮带条与移动嵌柱通过底座架轨安装连接,所述传动皮带条位于移动嵌柱后侧面。
进一步优选的,所述底座架轨包括架轨本体、锁板,所述架轨本体前后两侧与锁板焊接,所述移动嵌柱包括移动感应座板、嵌入安装柱,所述移动感应座板与嵌入安装柱锁定,所述移动感应座板与嵌入安装柱组成为工字结构。
进一步优选的,所述轴装置包括轴体翻板、安装轴杆、旋转轴杆、旋转轴盘,所述轴体翻板左右两端与安装轴杆安装连接,所述旋转轴杆左右两端与轴体翻板轴连接,所述旋转轴盘安装在旋转轴杆上方。
进一步优选的,所述智能充电器包括升降框、传动齿、充电器、内框架,所述升降框左右侧面与内框架轨道连接,所述升降框与充电器通过传动齿转动连接,所述传动齿位于升降框与充电器的右上角,所述内框架外侧设有轨道条。
有益效果
本发明充电桩为组合结构,设有三个充电桩本体和一个底座,当车辆行驶至充电桩前时,扫描器进行扫描,扫描出车身的充电口更接近哪个充电桩本体,接着临近车身插口的充电桩本体进行运行,轴装置进行传动带动桩头本体的上下左右转动,实现对车身插口的精确定位,接着传动皮带条带动移动嵌柱进行移动(移动嵌柱在移动时会在相邻的左右端地底座架轨上进行移动,避免移动距离过大与相邻地移动嵌柱发生碰撞,避免移动距离太小无法与车身的插口相对贴合),充电桩本体在底座上移动,根据车身插口的方向进行移动,完成移动后智能充电器与车身的插口相对,接着智能充电器进行运行,根据车身插口的高度实现升降框的移动,再根据车身插口的远近距离运行充电器、内框架的伸展,当充电器的前侧面与车身插口贴合时,即实现充电,完成充电后充电桩各个部位再依次回位。
与现有技术相比,本发明的有益效果是:通过轴装置的传动带动桩头对车身插口进行扫描定位,智能筛选出临近车身插口的充电桩本体进行运行,升降框根据车身插口的高度进行上下移动,充电器、内框架根据车身插口的远近距离进行向前伸展,充电器的前侧面与车身插口贴合时,即实现充电;省去了用户使用充电桩时需将充电桩上的充电枪插在车身充电插电口位置进行充电,完成充电后再将充电枪放回充电桩处的这一步骤,实现了产品的优化。
附图说明
通过阅读参照以下附图对非限制性实施例所作的详细描述,本发明的其它特征、目的和优点将会变得更明显:
图1示出了本发明一种基于全方位扫描定位的插接电源优化的智能充电桩的结构示意图。
图2示出了本发明底座俯视剖切的结构示意图。
图3示出了本发明底座局部立体的结构示意图。
图4示出了本发明轴装置的结构示意图。
图5示出了本发明智能充电器的结构示意图。
图6示出了本发明智能充电桩的结构示意图,也是充电桩对高度较高的车辆进行充电的结构示意图。
图7示出了本发明智能充电桩的结构示意图,也是充电桩对高度较低的车辆进行充电的结构示意图。
图中:充电桩本体1、底座2、桩头10、桩身11、桩座12、轴装置100、桩头本体101、扫描器102、显示板103、桩身本体110、智能充电器111、底座座架20、传动皮带条21、底座架轨22、移动嵌柱23、架轨本体30、锁板31、移动感应座板40、嵌入安装柱41、轴体翻板50、安装轴杆51、旋转轴杆52、旋转轴盘53、升降框60、传动齿61、充电器62、内框架63。
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。
请参阅图1-7,本发明提供一种基于全方位扫描定位的插接电源优化的智能充电桩技术方案:其结构包括充电桩本体1、底座2,所述充电桩本体1与底座2安装连接,所述充电桩本体1与底座2均设有防腐涂层,充电桩长期置于户外起到加强防护作用,所述充电桩本体1由桩头10、桩身11、桩座12组成,所述桩头10与桩身11安装连接,所述桩身11与桩座12嵌装,所述充电桩本体1设有三个并且依次排列,避免车子停车后充电插口没有准确的与充电器相对,可通过三个充电桩本体1临近充电插口的其中一个充电桩本体1进行灵活移动,所述桩头10包括轴装置100、桩头本体101、扫描器102、显示板103,所述轴装置100安装在桩头本体101上,所述轴装置100用于带动桩头10的上下左右移动,便于灵活的对车辆上的充电插口进行精准识别,所述桩头本体101装设有扫描器102,所述桩头本体101设有显示板103,所述桩身11包括桩身本体110、智能充电器111,所述智能充电器111安装在桩身本体110上,所述底座2包括底座座架20、传动皮带条21、底座架轨22、移动嵌柱23,所述底座座架20装设有底座架轨22,所述传动皮带条21与移动嵌柱23通过底座架轨22安装连接,所述移动嵌柱23在移动时会在相邻的左右端地底座架轨22上进行移动,避免移动距离过大与相邻地移动嵌柱23发生碰撞,避免移动距离太小无法与车身的插口相对贴合,实现充电器对车身插口的精确定位,所述底座架轨22包括架轨本体30、锁板31,所述架轨本体30与锁板31焊接,所述移动嵌柱23包括移动感应座板40、嵌入安装柱41,所述移动感应座板40与嵌入安装柱41锁定,所述轴装置100包括轴体翻板50、安装轴杆51、旋转轴杆52、旋转轴盘53,所述轴体翻板50与安装轴杆51安装连接,所述旋转轴杆52与轴体翻板50轴连接,所述旋转轴盘53安装在旋转轴杆52上,所述智能充电器111包括升降框60、传动齿61、充电器62、内框架63,所述升降框60与内框架63轨道连接,所述升降框60与充电器62通过传动齿61转动连接,所述内框架63外侧设有轨道条,所述充电器62与智能充电器111能够灵活伸展,所述升降框60能够上下移动,能够保证充电器62与车辆上的充电插口准确的贴合,实现电流稳定的传输。
充电桩为组合结构,设有三个充电桩本体1和一个底座2,当车辆行驶至充电桩前时,扫描器102进行扫描,扫描出车身的充电口更接近哪个充电桩本体1,接着临近车身插口的充电桩本体1进行运行,轴装置100进行传动带动桩头本体101的上下左右转动,实现对车身插口的精确定位,接着传动皮带条21带动移动嵌柱23进行移动(移动嵌柱23在移动时会在相邻的左右端地底座架轨22上进行移动,避免移动距离过大与相邻地移动嵌柱23发生碰撞,避免移动距离太小无法与车身的插口相对贴合),充电桩本体1在底座2上移动,根据车身插口的方向进行移动,完成移动后智能充电器111与车身的插口相对,接着智能充电器111进行运行,根据车身插口的高度实现升降框60的移动,再根据车身插口的远近距离运行充电器62、内框架63的伸展,当充电器62的前侧面与车身插口贴合时,即实现充电,完成充电后充电桩各个部位再依次回位。
本发明相对现有技术获得的技术进步是:通过轴装置100的传动带动桩头10对车身插口进行扫描定位,智能筛选出临近车身插口的充电桩本体1进行运行,升降框60根据车身插口的高度进行上下移动,充电器62、内框架63根据车身插口的远近距离进行向前伸展,充电器62的前侧面与车身插口贴合时,即实现充电;省去了用户使用充电桩时需将充电桩上的充电枪插在车身充电插电口位置进行充电,完成充电后再将充电枪放回充电桩处的这一步骤,实现了产品的优化。
尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,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。

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1.一种基于全方位扫描定位的插接电源优化的智能充电桩,其结构包括充电桩本体(1)、底座(2),所述充电桩本体(1)与底座(2)安装连接,所述充电桩本体(1)由桩头(10)、桩身(11)、桩座(12)组成,所述桩头(10)与桩身(11)安装连接,所述桩身(11)与桩座(12)嵌装,其特征在于:
所述桩头(10)包括轴装置(100)、桩头本体(101)、扫描器(102)、显示板(103),所述轴装置(100)安装在桩头本体(101)上,所述桩头本体(101)装设有扫描器(102),所述桩头本体(101)设有显示板(103);
所述桩身(11)包括桩身本体(110)、智能充电器(111),所述智能充电器(111)安装在桩身本体(110)上;
所述底座(2)包括底座座架(20)、传动皮带条(21)、底座架轨(22)、移动嵌柱(23),所述底座座架(20)装设有底座架轨(22),所述传动皮带条(21)与移动嵌柱(23)通过底座架轨(22)安装连接;
所述底座架轨(22)包括架轨本体(30)、锁板(31),所述架轨本体(30)与锁板(31)焊接,所述移动嵌柱(23)包括移动感应座板(40)、嵌入安装柱(41),所述移动感应座板(40)与嵌入安装柱(41)锁定;
所述轴装置(100)包括轴体翻板(50)、安装轴杆(51)、旋转轴杆(52)、旋转轴盘(53),所述轴体翻板(50)与安装轴杆(51)安装连接,所述旋转轴杆(52)与轴体翻板(50)轴连接,所述旋转轴盘(53)安装在旋转轴杆(52)上;
所述智能充电器(111)包括升降框(60)、传动齿(61)、充电器(62)、内框架(63),所述升降框(60)与内框架(63)轨道连接,所述升降框(60)与充电器(62)通过传动齿(61)转动连接,所述内框架(63)外侧设有轨道条。
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