WO2016155160A1 - 基于gps技术给予最终用户产品定位验证的防伪方法 - Google Patents
基于gps技术给予最终用户产品定位验证的防伪方法 Download PDFInfo
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- the invention relates to the technical field of anti-counterfeiting, in particular to an anti-counterfeiting method for giving end-user product location verification based on GPS technology.
- GPS functions carried by various mainstream mobile terminal operating systems as a location service, real-time positioning and reporting, picture text reporting, mobile network communication and the like can be realized. This satisfies the user's technology for location service requirements. On the one hand, it is the main source of geographical location data for the front-end client, and on the other hand, it is also an important carrier for communication with the back-end server, thus integrating the mobile phone into the location service platform.
- the two-dimensional code is obviously flawed in the anti-counterfeiting method. If the product itself cannot print the two-dimensional code information, the anti-counterfeiting verification cannot be implemented.
- the object of the present invention is to provide an anti-counterfeiting method for providing end-user product location verification based on GPS technology with good anti-counterfeiting effect, safety, reliability and low cost in order to overcome the defects of the prior art.
- Step 1 Obtain multiple GPS location information that the product should go to, and store it in the anti-counterfeiting database of the verification server;
- Step 3 The logistics delivery server obtains the GPS location information that the product currently belongs to, and simultaneously reads the media ID information of the product, and combines the GPS location information and the media ID information to form a product information code to be stored in the anti-counterfeiting database of the verification server. ;
- the medium includes a two-dimensional code or an RFID.
- the step 5 is specifically:
- the verification server reads the GPS location information and the media ID information in the anti-counterfeiting verification request, searches for the product information code in the anti-counterfeiting database, and determines whether the following conditions exist:
- the verification server sends the verification success information and the information of the first verification success to the mobile terminal, and the verification server obtains the corresponding mobile terminal device number and adds it to the product information code;
- the verification server sends the verification failure information to the mobile terminal;
- the verification server sends the verification failure information to the mobile terminal;
- the verification server sends the verification failure information to the mobile terminal;
- the verification server returns to the mobile terminal the information that the mobile terminal is successfully authenticated for the Nth time, and records the current GPS location information of the mobile terminal.
- the verification server returns the purchase location information of the product to the mobile terminal while transmitting the verification success information or the verification failure information to the mobile terminal.
- the present invention simultaneously verifies the GPS location information and the media ID information received in the anti-counterfeiting database of the server by simultaneously transmitting the product media ID information to the verification server when verifying the GPS location information of the mobile terminal of the product, if the query is
- the media ID information is used to splicing the received mobile terminal GPS location information and the media ID information together, and simultaneously synchronizing the received mobile terminal number to add and update the product information in the anti-counterfeiting database. Since each product should arrive at unique GPS location information, and the media ID of the product is unique, it is uniquely spliced together with the specific logistics GPS location of the product at the delivery end, and the device number of each mobile terminal is global.
- GPS location information is real-time and accurate, so a product matching data can only have one mobile terminal.
- the GPS location information is verified successfully, and it will be invalid if other GPS locations are used again.
- the anti-counterfeiting method has low cost and good anti-counterfeiting effect, and is safe and reliable.
- the anti-counterfeiting method of the present invention is applicable to a medium such as a two-dimensional code or an RFID, and has a wide application range.
- Figure 1 is a schematic flow chart of the present invention.
- GPS Global Positioning System
- GPS Global Positioning System
- GPS Global Positioning System
- GPS Global Positioning System
- the Global Positioning System is a medium-range circular orbit satellite navigation system. It provides accurate positioning, speed measurement and high precision time standards for most areas of the Earth's surface. Developed and maintained by the US Department of Defense, the system meets the needs of military users anywhere in the world or near-Earth space to continuously and accurately determine three-dimensional position, three-dimensional motion, and time. Worldwide, each manufacturer's product is sent by the manufacturer to a different approved location based on the order, and the location has GPS location information, giving the unique product only the GPS location information that matches the product's location.
- each mobile terminal has GPS location information, so this embodiment provides an anti-counterfeiting method for giving end users product location verification based on GPS technology.
- the anti-counterfeiting method is applied to an anti-counterfeiting system composed of an authentication server, a logistics delivery server, and at least one mobile terminal, including:
- Step 1 Obtain a plurality of GPS location information that the product should go to, including information such as the country, the city, and the location of the latitude and longitude of the purchased store, and store the information in the anti-counterfeiting database of the verification server.
- Step 2 randomly generate a unique medium set on the product, and store the ID information of the medium in the anti-counterfeiting database of the verification server.
- the medium can be a two-dimensional code or RFID, and the medium can be printed or laminated on the product.
- Step 3 The logistics delivery server obtains the GPS location information that the product currently belongs to, and simultaneously reads the media ID information of the product, and combines the GPS location information and the media ID information to form a product information code. Stored in the anti-counterfeiting database of the authentication server.
- Step 4 After the product arrives at the end user end, the mobile terminal reads the media ID information of the product, combines the GPS location information of the mobile terminal with the read media ID information, and forms an anti-counterfeiting verification request to send to the verification server.
- Step 5 The verification server receives the post-authentication verification request, reads the GPS location information and the media ID information in the anti-counterfeiting verification request, searches for the product information code in the anti-counterfeiting database, and feeds back the verification result to the mobile terminal according to the search result, specifically:
- the verification server b) searching for the product information code that is the same as the GPS location information in the anti-counterfeiting verification request but different in the media ID information, the verification server returns a message that “this product does not exist” and “verification failed”;
- the verification server sends the verification failure information to the mobile terminal, and returns a message of "acquisition location xxxx" and "careful purchase” ;
- the verification server sends the verification failure information to the mobile terminal, returns the purchase location information of the product, and prevents any fraud and transaction;
- the verification server returns information such as “safe use” and “the terminal is successfully authenticated for the Nth time” to the mobile terminal, indicating that the product is the duplicate verification of the same user, and simultaneously records the current GPS location information of the mobile terminal.
- the date record is updated in the product information code, and it is determined whether the date record exceeds the preset aging time. If yes, the corresponding product verification is permanently invalid, and if not, the user exits.
- the public security or the relevant state department may conduct a data retrieval inquiry of the verification server to confirm the location information of the product. recording.
- the GPS system includes 24 GPS satellites in space; one master station on the ground, three data injection stations and five monitoring stations, and a GPS receiver as a client. At least three satellites are needed to quickly determine the location and altitude of the user on the Earth; the more satellites that can be connected, the more accurate the decoded position.
- the GPS system has the following advantages: the use of low-frequency signals can maintain comparable signal penetration even in poor weather; global coverage (up to 98%); high-precision three-dimensional fixed timing; fast, time-saving, high efficiency; Wide, multi-functional; movable positioning; unlike dual-star positioning system, the receiver does not need to send any signal during use to increase the concealment and improve its military application performance.
- the mobile terminal number is the mobile equipment international identification code, which corresponds to each mobile phone one by one, and the code is unique in the world, because the device code of each mobile terminal is globally unique, and the mobile as a mobile feature, it
- the GPS location information can be recorded back. Therefore, when the mobile terminal reads the product ID, it must be in accordance with the GPS location information of the product specified by the manufacturer, and can only meet the requirements of the consumer verification success. And there is good traceability, good security, and there is a logistics label function of the product.
- the invention is based on the GPS technology to give the end user product positioning verification anti-counterfeiting method, the user sends the GPS location information of the mobile terminal to the verification server at the same time when reading the product medium information, and the received GPS position in the anti-counterfeiting database of the verification server The information is combined with the media information for query. If the GPS location information is queried and the media information of the received product is synchronized, the GPS location information of the mobile terminal received synchronously is spliced together with the media ID of the product, and the product in the anti-counterfeiting database is updated. Information code. Since each product is globally unique and the product should be uniquely designated, only one GPS location verification can be successful. If other mobile terminals are used again in other GPS location information, the anti-counterfeiting method is low in cost and good in anti-counterfeiting effect, safe, reliable and efficient.
- the method of the invention does not need to use special materials or processes such as anti-counterfeiting ink and fragile paper to make two-dimensional code labels, and is not limited to the two-dimensional code as the unique medium ID of the product, and can be extended to media such as FRID, and at the same time solves the uniqueness of the medium. limit.
- the above anti-counterfeiting method is applied to a backpack manufacturing enterprise, and the GPS information of the product, that is, the GPS information of the country, the city, and the store, is collected by a computer, and the product medium ID is generated by the computer, and the medium ID is printed on the label of the backpack.
- Logistics department will deliver logistics GPS information and products through handheld scanning equipment
- the barcode ID information is synthesized into a product information code, and the update is stored in the anti-counterfeiting server.
- the GPS location information constitutes an anti-counterfeiting verification request and is sent to the verification server.
- the verification server returns the verification result, and the product screen displays the product related situation, including: the purchase location, the product name, the product specification, the product origin, the production date, the commodity price,
- the number of product verifications is 1 time, and a product image is attached, indicating that the product is genuine and the verification is successful.
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Abstract
一种基于GPS技术给予最终用户产品定位验证的防伪方法,包括:获取产品应到的多个GPS位置信息;随机生成一唯一介质设置于产品上;物流发货端服务器获得产品当前应到的GPS位置信息,并同时读取产品的介质ID信息,将GPS位置信息和介质ID信息合并后组成产品信息码存入验证服务器的防伪数据库中;产品到达最终用户端后,移动终端读取产品的介质ID信息,将本移动终端的GPS位置信息与所读取的介质ID信息合并后组成防伪验证请求发送给验证服务器,验证服务器将接收到的防伪验证请求与对应的产品信息码进行比对验证,并将验证结果反馈回移动终端。与现有技术相比,该方法具有防伪效果好、安全可靠、成本低等优点。
Description
本发明涉及属于防伪技术领域,尤其是涉及一种基于GPS技术给予最终用户产品定位验证的防伪方法。
目前,有越来越多的企业在自己的生产产品或产品包装盒上印制了二维码,有很多高端产品嵌合了RFID,消费者购买产品后,可以利用最终用户的移动终端扫描商品上的介质(二维码或/和RFID),再根据扫描和读取的介质信息,通过手机向互联网来验证所购产品的真伪。
目前移动终端越来越普及,截止2014年底,仅中国移动智能终端用户数已达106亿,占全球移动终端数量的30%,并且随着生活习惯的改变,移动终端随着移动支付的推广,其私密性越来越重要,所以基本上移动终端都属于私人物品,具有广泛性。
更随着各种主流移动终端操作系统上都携带GPS功能,作为位置服务可实现实时定位上报、图片文字上报,移动网络通讯等功能。从而满足了用户对位置服务需求的技术。一方面,它是前台客户端地理位置数据的主要来源,另一方面,也是与后台服务端通信的重要载体,这样使手机融入位置服务平台。
目前市场上的二维码防伪方法具有以下缺陷:现有二维码防伪方法,其中可以无限次的反复查询商品上印制的二维码,为了避免造假者在假冒商品上印制相同的二维码,现有的二维码标签都是采用防伪油墨,加盖涂层、易碎纸等特殊材料或工艺制作,这使得二维码防伪的成本攀升,验证真伪后会妨碍产品在市场上的再次流通,而且这种技术不仅加大了防造假成本,而且依然存在着造假的可能。由此可见,现有的二维码防伪方法的防伪效果还有待提高。
还有一些防伪方法通过在服务器上进行做验证次数的加1等方法进行防止产品的造假,这种方法虽然简单及节约成本,但是其存在对于同一个消费者验证次数的限制,无法多次验证其有效性,同时还存在如果该产品为贵重物品,可能存在很多次的转手及出售,无法进行多次的验证的缺陷;有的方法即使能
实现多次验证,但会出现转手过程中的实际货物已被制假品替代的情况。
市场上以二维码为防伪方法明显有缺陷,对于产品本身无法印制二维码信息的就无法实施防伪验证。
发明内容
本发明的目的就是为了克服上述现有技术存在的缺陷而提供一种防伪效果好、安全可靠、成本低的基于GPS技术给予最终用户产品定位验证的防伪方法。
本发明的目的可以通过以下技术方案来实现:
一种基于GPS技术给予最终用户产品定位验证的防伪方法,应用于验证服务器、物流发货端服务器和至少一个移动终端组成的防伪系统中,包括:
步骤1,获取产品应到的多个GPS位置信息,并存入验证服务器的防伪数据库中;
步骤2,随机生成一唯一介质设置于产品上,并将该介质的ID信息存储验证服务器的防伪数据库中;
步骤3,物流发货端服务器获得产品当前应到的GPS位置信息,并同时读取产品的介质ID信息,将GPS位置信息和介质ID信息合并后组成产品信息码存入验证服务器的防伪数据库中;
步骤4,产品到达最终用户端后,移动终端读取产品的介质ID信息,将本移动终端的GPS位置信息与所读取的介质ID信息合并后组成防伪验证请求发送给验证服务器;
步骤5,验证服务器将接收到的防伪验证请求与对应的产品信息码进行比对验证,并将验证结果反馈回移动终端。
所述GPS位置信息包括国家、城市和购买门店经纬度坐标位置信息。
所述介质包括二维码或RFID。
所述步骤5具体为:
验证服务器读取防伪验证请求中的GPS位置信息和介质ID信息,搜索防伪数据库中的产品信息码,判断是否存在以下情况:
a)搜索到与防伪验证请求中的GPS位置信息和介质ID信息对应相同的产品信息码;
b)搜索到与防伪验证请求中的GPS位置信息相同、但介质ID信息不同的产品信息码;
c)搜索到与防伪验证请求中的介质ID信息相同、但GPS位置信息不同的产品信息码;
d)防伪数据库中的产品信息码与防伪验证请求均不匹配;
e)搜索到包含发送防伪验证请求的移动终端设备号的产品信息码,且该产品信息码的介质ID信息与防伪验证请求中的介质ID信息相同;
若存在情况a),则验证服务器向移动终端发送验证成功信息和第一次验证成功的信息,验证服务器获得对应移动终端设备号,并将其添加至产品信息码中;
若存在情况b),则验证服务器向移动终端发送验证失败信息;
若存在情况c),则验证服务器向移动终端发送验证失败信息;
若存在情况d),则验证服务器向移动终端发送验证失败信息;
若存在情况e),则验证服务器向移动终端返回该移动终端第N次验证成功的信息,同时记录该移动终端当前的GPS位置信息。
所述验证服务器向移动终端发送验证成功信息后,在产品信息码中更新日期记录,并判断该日期记录是否超过预设时效,若是,则对应的产品验证永久失效,若否,则退出。
所述验证服务器向移动终端发送验证成功信息或验证失败信息的同时,向移动终端返回产品的应购地点信息。
与现有技术相比,本发明具有以下有益效果:
(1)本发明通过在验证产品的移动终端GPS位置信息时同时向验证服务器发送产品介质ID信息,验证服务器的防伪数据库中将收到的GPS位置信息和介质ID信息同时进行查询,如果查询到该介质ID信息,则将同步收到的移动终端GPS位置信息和该介质ID信息拼接在一起,同时同步收到的移动终端号添加并更新防伪数据库中的产品信息。由于每个产品应到达唯一GPS位置信息,且产品的介质ID也是唯一的,在发货端随机与产品的特定物流GPS位置拼接在一起,也是唯一的,且每个移动终端的设备号为全球唯一的,GPS位置信息具备实时性和准确性,所以一件产品匹配的数据只能有一个移动终端的
GPS位置信息验证成功,如果再次使用其他的GPS位置就会失效。该防伪方法成本低且防伪效果好,安全可靠。
(2)本发明防伪方法适用于二维码、RFID等介质,适用范围广。
(3)本发明可实现同一消费者的多次验证。
图1为本发明的流程示意图。
下面结合附图和具体实施例对本发明进行详细说明。本实施例以本发明技术方案为前提进行实施,给出了详细的实施方式和具体的操作过程,但本发明的保护范围不限于下述的实施例。
全球定位系统(英语:Global Positioning System,通常简称GPS),又称全球卫星定位系统,是一个中距离圆型轨道卫星导航系统。它可以为地球表面绝大部分地区提供准确的定位、测速和高精度的时间标准。系统由美国国防部研制和维护,可满足位于全球任何地方或近地空间的军事用户连续精确的确定三维位置、三维运动和时间的需要。全球范围内,每家制造商的产品都是由生产商根据订单发送到不同的核定的地点,该地点都具备GPS位置信息,赋予唯一身份的产品只能在唯一符合产品应到地点GPS定位信息才为符合该生产商的产品,每个移动终端都带有GPS位置信息,故本实施例提供了一种基于GPS技术给予最终用户产品定位验证的防伪方法。如图1所示,该防伪方法应用于验证服务器、物流发货端服务器和至少一个移动终端组成的防伪系统中,包括:
步骤1,获取产品应到的多个GPS位置信息,包括国家、城市和购买门店经纬度坐标位置等信息,并存入验证服务器的防伪数据库中。
步骤2,随机生成一唯一介质设置于产品上,并将该介质的ID信息存储验证服务器的防伪数据库中。介质可采用二维码或RFID,介质可印刷或覆合于产品上。
步骤3,物流发货端服务器获得产品当前应到的GPS位置信息,并同时读取产品的介质ID信息,将GPS位置信息和介质ID信息合并后组成产品信息码
存入验证服务器的防伪数据库中。
步骤4,产品到达最终用户端后,移动终端读取产品的介质ID信息,将本移动终端的GPS位置信息与所读取的介质ID信息合并后组成防伪验证请求发送给验证服务器。
步骤5,验证服务器接收后防伪验证请求,读取防伪验证请求中的GPS位置信息和介质ID信息,搜索防伪数据库中的产品信息码,根据搜索结果向移动终端反馈验证结果,具体为:
a)搜索到与防伪验证请求中的GPS位置信息和介质ID信息对应相同的产品信息码,则验证服务器向移动终端发送验证成功信息,返回产品的应购地点信息、“第一次被验证”,验证服务器获得对应移动终端设备号,并将其添加至产品信息码中,表明该产品是符合产品定位信息,且是第一次被验证;
b)搜索到与防伪验证请求中的GPS位置信息相同、但介质ID信息不同的产品信息码,则验证服务器向返回“此产品不存在”、“验证失败”的消息;
c)搜索到与防伪验证请求中的介质ID信息相同、但GPS位置信息不同的产品信息码,则验证服务器向移动终端发送验证失败信息,返回“应购地点xxxx”、“谨慎购买”的消息;
d)防伪数据库中的产品信息码与防伪验证请求均不匹配,则验证服务器向移动终端发送验证失败信息,返回产品的应购地点信息,防止任何造假和交易;
e)搜索到包含发送防伪验证请求的移动终端设备号的产品信息码,且该产品信息码的介质ID信息与防伪验证请求中的介质ID信息相同,说明是同一个移动终端用户进行多次的验证,则验证服务器向移动终端返回“放心使用”、“本终端为第N次验证成功”等信息,表示该产品为同一用户的重复验证,同时记录该移动终端当前的GPS位置信息。
验证服务器向移动终端发送验证成功信息后,在产品信息码中更新日期记录,并判断该日期记录是否超过预设时效,若是,则对应的产品验证永久失效,若否,则退出。
如果该产品为贵重或者特殊物品,需要进行跟踪的时候,可以有公安或者国家相关部门进行验证服务器的数据调取查询,确认该产品的每次的位置信息
记录。
GPS系统包括太空中的24颗GPS卫星;地面上1个主控站、3个数据注入站和5个监测站及作为用户端的GPS接收机。最少只需其中3颗卫星,就能迅速确定用户端在地球上所处的位置及海拔高度;所能收联接到的卫星数越多,解码出来的位置就越精确。GPS系统拥有如下多种优点:使用低频讯号,纵使天候不佳仍能保持相当的讯号穿透性;全球覆盖(高达98%);三维定速定时高精度;快速、省时、高效率;应用广泛、多功能;可移动定位;不同于双星定位系统,使用过程中接收机不需要发出任何信号增加了隐蔽性,提高了其军事应用效能。
使用者只需拥有GPS接收机即可使用该服务,无需另外付费。
移动终端号为移动装备国际辨识码,它与每台手机一一对应,而且该码是全世界唯一的,因为每个移动终端的设备码都是全球唯一的,且移动作为移动的特性,它的GPS位置信息是可以反馈记录的。所以移动终端识读产品ID时,一定是符合生产商指定的产品到达的GPS位置信息,只能符合这个条件消费者验证成功。并且存在可跟踪性好,安全性好,同时存在产品的物流标签作用。
本发明基于GPS技术给予最终用户产品定位验证的防伪方法,用户通过在读取产品介质信息时同时向验证服务器发送移动终端的GPS位置信息,在验证服务器的防伪数据库中,将收到的GPS位置信息结合介质信息进行查询,如果查询到GPS位置信息,并同步收到的产品的介质信息,则将同步收到的移动终端GPS位置信息和该产品介质ID拼接在一起,更新防伪数据库中的产品信息码。由于每个产品是全球唯一的,且产品应到地点为指定唯一的,所以一件产品只能有一个GPS位置验证成功。如果再次使用其他移动终端在其他的GPS位置信息就会失效,该防伪方法成本低且防伪效果好,安全可靠高效。
本发明方法不需要采用防伪油墨、易碎纸等特殊材料或工艺制作二维码标签,也不只限于二维码作为产品唯一介质ID,可扩展到FRID等介质,同时解决了介质的唯一性的限制。
将上述防伪方法应用于背包生产企业,将产品的GPS信息,即国家、城市、店铺的GPS信息等通过计算机采集,并通过计算机生成产品介质ID,将介质ID印刷在背包的标牌上。物流部门通过手持扫描设备将物流GPS信息和产品
条码ID信息合成为产品信息码,更新存储至防伪服务器。
当此款背包流通至商场中,被顾客A买下,回家后,刮开背包标签上的条码,用手机扫一扫功能对背包上的条码进行扫描,并将读取的介质ID与手机GPS位置信息组成防伪验证请求发送给验证服务器,验证服务器即返回验证结果,手机屏幕上显示出产品相关情况,其中包括:应购地点、商品名称、商品规格、商品产地、生产日期、商品价格、商品验证次数为1次,并附有商品图片,表明该商品为正品,验证成功。
Claims (6)
- 一种基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,应用于验证服务器、物流发货端服务器和至少一个移动终端组成的防伪系统中,包括:步骤1,获取产品应到的多个GPS位置信息,并存入验证服务器的防伪数据库中;步骤2,随机生成一唯一介质设置于产品上,并将该介质的ID信息存储验证服务器的防伪数据库中;步骤3,物流发货端服务器获得产品当前应到的GPS位置信息,并同时读取产品的介质ID信息,将GPS位置信息和介质ID信息合并后组成产品信息码存入验证服务器的防伪数据库中;步骤4,产品到达最终用户端后,移动终端读取产品的介质ID信息,将本移动终端的GPS位置信息与所读取的介质ID信息合并后组成防伪验证请求发送给验证服务器;步骤5,验证服务器将接收到的防伪验证请求与对应的产品信息码进行比对验证,并将验证结果反馈回移动终端。
- 根据权利要求1所述的基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,所述GPS位置信息包括国家、城市和购买门店经纬度坐标位置信息。
- 根据权利要求1所述的基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,所述介质包括二维码或RFID。
- 根据权利要求1所述的基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,所述步骤5具体为:验证服务器读取防伪验证请求中的GPS位置信息和介质ID信息,搜索防伪数据库中的产品信息码,判断是否存在以下情况:a)搜索到与防伪验证请求中的GPS位置信息和介质ID信息对应相同的产品信息码;b)搜索到与防伪验证请求中的GPS位置信息相同、但介质ID信息不同的 产品信息码;c)搜索到与防伪验证请求中的介质ID信息相同、但GPS位置信息不同的产品信息码;d)防伪数据库中的产品信息码与防伪验证请求均不匹配;e)搜索到包含发送防伪验证请求的移动终端设备号的产品信息码,且该产品信息码的介质ID信息与防伪验证请求中的介质ID信息相同;若存在情况a),则验证服务器向移动终端发送验证成功信息和第一次验证成功的信息,验证服务器获得对应移动终端设备号,并将其添加至产品信息码中;若存在情况b),则验证服务器向移动终端发送验证失败信息;若存在情况c),则验证服务器向移动终端发送验证失败信息;若存在情况d),则验证服务器向移动终端发送验证失败信息;若存在情况e),则验证服务器向移动终端返回该移动终端第N次验证成功的信息,同时记录该移动终端当前的GPS位置信息。
- 根据权利要求4所述的基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,所述验证服务器向移动终端发送验证成功信息后,在产品信息码中更新日期记录,并判断该日期记录是否超过预设时效,若是,则对应的产品验证永久失效,若否,则退出。
- 根据权利要求4所述的基于GPS技术给予最终用户产品定位验证的防伪方法,其特征在于,所述验证服务器向移动终端发送验证成功信息或验证失败信息的同时,向移动终端返回产品的应购地点信息。
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