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    • 31. 发明公开
    • LINUX SYSTEM-BASED CEN/XFS STANDARD ARCHITECTURE AND IMPLEMENTATION METHOD
    • 基于LINUX系统的CEN / XFS标准体系结构和实现方法
    • EP3229131A1
    • 2017-10-11
    • EP15866313.8
    • 2015-07-01
    • GRG Banking Equipment Co., Ltd.
    • ZHANG, LiepiaoLIU, DaoyuGONG, WenchuanLIANG, Tiancai
    • G06F9/44
    • G06F9/546G06F8/20G06F9/542
    • Disclosed is a Linux system-based CEN/XFS standard architecture for addressing the technical problem that implementation of a CEN/XFS standard of the Linux system is absent in the prior art. The Linux system-based CEN/XFS standard architecture is suitable for a financial self-service device adopting the CEN/XFS standard; the system of the financial self-service device comprises: an application program layer (100), an XFC management layer (200), an SP layer (300) and a device driver layer (400); the architecture divides the XFC management layer into: a dedicated application layer (201), a universal application layer (202) and a system service layer (203). Also provided is a Linux system-based CEN/XFS standard implementation method for addressing the technical problem that implementation of the CEN/XFS standard of the Linux system is absent in the prior art.
    • 公开了一种基于Linux系统的CEN / XFS标准体系结构,用于解决在现有技术中不存在执行Linux系统的CEN / XFS标准的技术问题。 基于Linux系统的CEN / XFS标准体系结构适用于采用CEN / XFS标准的金融自助服务设备; 该金融自助服务设备的系统包括:应用程序层(100),XFC管理层(200),SP层(300)和设备驱动层(400); 该体系结构将XFC管理层分为:专用应用层(201),通用应用层(202)和系统服务层(203)。 还提供了一种基于Linux系统的CEN / XFS标准实现方法,用于解决在现有技术中不存在执行Linux系统的CEN / XFS标准的技术问题。
    • 32. 发明公开
    • METHOD AND DEVICE FOR NON-CONTACT DETECTION OF THIN MEDIUM
    • 用于非接触式检测薄介质的方法和装置
    • EP3217166A1
    • 2017-09-13
    • EP15857062.2
    • 2015-07-08
    • GRG Banking Equipment Co., Ltd.
    • JIN, XiaofengLIU, JianpingLIANG, TiancaiGONG, Wenchuan
    • G01N21/892G01N21/94
    • G01N21/892G01B11/14G01N21/8806G01N21/94G07D7/12G07D7/164G07D7/189
    • A method and device for non-contact detection of a thin medium (5) is disclosed. The device comprises a light source (1), an optical splitter (2), a reference plane (3), a linearly arrayed photoelectric detector (6), a signal processing module (4) and the thin medium (5). The method involves the following steps: acquiring time for targeted light which is emitted by the light source (1) and reflected by the thin medium (5) to the linearly arrayed photoelectric detector (6), and acquiring time for reference light which is emitted by the light source (1) and reflected by the reference plane (3) to the linearly arrayed photoelectric detector (6); according to the acquired time that the targeted light and the reference light arrive at the linearly arrayed photoelectric detector (6), computing a first optical path and a second optical path corresponding to the targeted light and the reference light respectively, and acquiring quantity of bright fringes and dark fringes of interference fringes according to a predetermined computing manner by the signal processing module (4); conducting difference comparison between the quantity of the bright fringes and dark fringes of the interference fringes and the quantity of the bright fringes and dark fringes of standard interference fringes according to the predetermined manner, and if the value of the comparison result is larger than the predetermined threshold value, determining that the foreign matters are positioned on the thin medium (5). The detection method and device solves the technical problems that precision is low and measuring wavelength is long caused by an existing mechanical thickness measuring device, an infrared detector and an ultrasonic detector used to detect the foreign substance on the surface of the thin medium.
    • 公开了一种用于非接触式检测薄介质(5)的方法和设备。 该装置包括光源(1),分光器(2),参考平面(3),线性阵列光电探测器(6),信号处理模块(4)和薄介质(5)。 该方法包括以下步骤:获取由光源(1)发射并被薄介质(5)反射到线性排列的光电检测器(6)的目标光的时间,并获取发射的参考光的时间 通过光源(1)并由参考平面(3)反射到线性排列的光电检测器(6); 根据获取到的目标光线和参考光线到达线性阵列光电探测器(6)的时间,分别计算与目标光线和参考光线对应的第一光路和第二光路,获取光量 所述信号处理模块根据预定的计算方式对所述干涉条纹的条纹和条纹进行干涉处理; 根据预定方式对干涉条纹的亮条纹和暗条纹的数量与标准干涉条纹的亮条纹和暗条纹的数量进行差异比较,如果比较结果的值大于预定值 阈值,确定异物位于薄介质(5)上。 该检测方法和装置解决了现有的机械式测厚装置,红外检测器和超声波检测器用于检测薄介质表面异物导致精度低,测量波长长的技术问题。
    • 33. 发明公开
    • METHOD AND SYSTEM FOR HANDLING SITUATION OF CARD DETAINMENT IN SELF-SERVICE TERMINAL
    • VERFAHREN UND SYSTEM ZUR HANDHABUNG EINER情况DER KARTENEINBEHALTUNG AN EINEM SELBSTBEDIENUNGSTERMINAL
    • EP3166047A4
    • 2017-08-30
    • EP15815905
    • 2015-06-29
    • GRG BANKING EQUIPMENT CO LTD
    • ZHANG HONGSHUAIWANG QINGHUADONG XUEWENYAO XINRUIWANG XINYU PANG
    • G06K13/08G06Q20/18G07F19/00
    • G07F19/21G06K13/08G06Q20/18
    • Disclosed are a system and a method for handling the situation of card detainment in a self-service terminal. The system for handling the situation of card detainment in a self-service terminal comprises a card detainment handling server, a first self-service terminal and a second self-service terminal, which are communicatively interconnected. The card detainment handling server comprises a card detainment information storage module for storing information related to a detained card. The card detainment handling server is also communicatively connected with a bank background database, i.e. a banking system, in order to obtain the account information of the detained card and the identity information of the user owning the detained card from the bank background database and help a card detainment information and identity authentication module authenticate the validity of the card detainment information and the legality of user identity. The system and method for handling card detainment in a self-service terminal realize the purpose that a user can take his card back at a different place after the card is detained, thus saving money, time and energy costs for the user, bringing great convenience to the user and reflecting the service aim of providing convenience to users in banks.
    • 公开了一种处理自助终端卡滞留情况的系统和方法。 处理自助终端卡扣情况的系统包括通信互联卡卡扣处理服务器,第一自助终端和第二自助终端。 卡滞留处理服务器包括卡滞留信息存储模块,用于存储与被扣留卡有关的信息。 卡片扣留处理服务器还与银行后台数据库即银行系统通信连接,以便从银行后台数据库获得扣留卡的账户信息和拥有扣留卡的用户的身份信息,并帮助 卡扣留信息和身份认证模块对卡扣留信息的有效性和用户身份的合法性进行认证。 在自助终端中处理卡片扣留的系统和方法实现了用户在卡片扣留后可以将其卡退回到不同地方的目的,从而为用户节省了金钱,时间和能源成本,带来了极大的方便 向用户反映并体现为银行用户提供方便的服务宗旨。
    • 37. 发明公开
    • BANKNOTE JAM DETERMINATION SYSTEM AND METHOD
    • BANKNOTE JAM确定系统和方法
    • EP3171340A1
    • 2017-05-24
    • EP15822519.3
    • 2015-07-01
    • GRG Banking Equipment Co., Ltd.
    • YIN, FazhiXU, LiangSUN, Zhiqiang
    • G07D13/00
    • G07D11/0039B65H2511/528B65H2553/00B65H2553/82B65H2601/11B65H2601/255B65H2701/1912G07D11/0066
    • A banknote jam determination system and method, the determination system comprising a sensor unit (101), a banknote information storage unit (102), a banknote jam threshold computing unit (103) and a banknote jam status determination unit (104). The banknote jam threshold computing unit (103) can compute a threshold (M) according to an actual space (S) between the actual length (L) of the banknote and the sensor. The banknote jam status determination unit (104) uses a threshold (M) computed in real time to determine whether a banknote jam occurs, and therefore the banknote jam determination system and method are a dynamic banknote jam determination technique based on a varied threshold (M) of a banknote and a sensor, and can improve measurement precision and ensure reliability.
    • 一种纸币卡纸判定系统和方法,所述判定系统包括传感器单元(101),纸币信息存储单元(102),纸币卡纸阈值计算单元(103)和纸币卡纸状态判定单元(104)。 纸币阻塞阈值计算单元103可以根据纸币的实际长度L与传感器之间的实际空间S计算阈值M。 纸币卡纸状态判定部104使用实时计算出的阈值(M)来判定是否发生了纸币卡纸,因此,纸币卡纸判定系统以及方法是基于变动阈值(M )的钞票和传感器,并且可以提高测量精度并确保可靠性。
    • 38. 发明公开
    • IMAGE CALIBRATION METHOD AND DEVICE
    • BILDKALIBRIIBERUNGSVERFAHREN UND -VORRICHTUNG
    • EP3157238A4
    • 2017-05-24
    • EP14894715
    • 2014-11-21
    • GRG BANKING EQUIPMENT CO LTD
    • WANG QIANWENLIANG TIANCAILIU MENGTAOZHANG YIFEI
    • H04N1/409H04N1/00H04N1/401H04N1/407H04N5/235
    • H04N1/409H04N1/00045H04N1/401H04N1/4076H04N5/235
    • An image calibration method and device. A deviation compensation coefficient of each pixel is calculated according to image data generated by strong and weak lighting parameters, and the deviation compensation coefficient is used to calibrate data of each image pixel collected and output by an image sensing unit. Therefore, the influence of inconsistency of each photosensitive element of the image sensing unit on the image greyscale can be eliminated, so that the effect of document medium image recognition is increased. The method in the embodiments of the present invention comprises: S1, acquiring a strong lighting parameter of each photosensitive element within a long exposure time and a weak lighting parameter thereof within a short exposure time; S2, acquiring image data of a sheet medium; and S3, according to the strong lighting parameter, the weak lighting parameter and the image data, calculating the calibrated image data of the sheet medium.
    • 一种图像校准方法和装置。 根据强弱照明参数生成的图像数据计算每个像素的偏差补偿系数,偏差补偿系数用于校准图像传感单元收集并输出的每个图像像素的数据。 因此,可以消除图像感测单元的每个光敏元件的不一致对图像灰度的影响,从而增加了文件介质图像识别的效果。 本发明实施例的方法包括:S1,在短曝光时间内获取每个感光元件在长曝光时间内的强照明参数和弱照明参数; S2,获取片材介质的图像数据; S3根据强照明参数,弱照明参数和图像数据计算片材介质的校准后的图像数据。
    • 39. 发明公开
    • BANKNOTE TEMPORARY STORAGE MODULE AND REEL ROTATING SPEED CONTROL METHOD THEREOF
    • TEMPORÄRERBANKNOTENSPEICHERMODUL UND VERFAHREN ZUR SPULENDREHGESCHWINDIGKEITSTEUERUNGDAFÜR
    • EP2922038A4
    • 2017-05-03
    • EP13854520
    • 2013-06-27
    • GRG BANKING EQUIPMENT CO LTD
    • XIAO BAOHE YUNFEICHEN QIAOQIAOZHANG TAO
    • G07D11/00B65H5/28B65H29/00
    • B65H29/006B65H5/28B65H2220/09B65H2301/4191B65H2511/142B65H2511/212B65H2511/32B65H2513/104B65H2513/11B65H2553/51B65H2701/1912G07D11/0081B65H2220/02B65H2220/11B65H2220/03B65H2220/01
    • A banknote temporary storage module and a reel rotating speed control method thereof. The banknote temporary storage module comprises a large reel (201) driven by a first power motor, a small reel (202) driven by a second power motor, a coiling tape (208), a first coded disc (203), a second coded disc (204), a first sensor (205), a second sensor (206) and a microcontroller. Two ends of the coiling tape are separately fixed on the large reel and the small reel and the coiling tape is retracted and wound between the large reel and the small reel. The first coded disc is fixed on a rotating shaft of the large reel. The second coded disc is fixed on a rotating shaft of the small reel. The first sensor is arranged corresponding to the first coded disc and is used for monitoring the rotating angle of the large reel. The second sensor is arranged corresponding to the second coded disc and is used for monitoring the rotating angle of the small reel. The microcontroller is used for calculating, according to output signals of the first sensor and the second sensor, the length of the coil tape released by the small reel each time the large reel rotates for one circle, and further calculating the current radius of the large reel, and thus angular velocities of the large reel and the small reel are controlled and the linear velocity of the large reel is enabled to be consistent with that of the small reel.
    • 一种钞票暂存模块及其卷盘转速控制方法。 钞票临时存储模块包括由第一动力电机驱动的大卷筒(201),由第二动力电机驱动的小卷筒(202),卷绕带(208),第一编码盘(203),第二编码盘 盘(204),第一传感器(205),第二传感器(206)和微控制器。 卷带的两端分别固定在大卷筒上,小卷筒和卷带收回卷绕在大卷筒和小卷筒之间。 第一编码盘固定在大卷轴的旋转轴上。 第二编码盘固定在小卷轴的旋转轴上。 第一传感器对应于第一编码盘布置并用于监测大卷筒的旋转角度。 第二传感器对应第二编码盘设置,用于监测小卷筒的旋转角度。 微控制器用于根据第一传感器和第二传感器的输出信号计算每次大卷筒旋转一圈时由小卷筒释放的卷带长度,并进一步计算大卷筒的当前半径 从而控制大卷筒和小卷筒的角速度,使大卷筒的线速度与小卷筒的线速度一致。
    • 40. 发明公开
    • PAPER MONEY TEMPORARY STORAGE DEVICE AND PAPER MONEY STORAGE METHOD THEREFOR
    • ZWISCHENSPEICHERVORRICHTUNGFÜRPAPIERGELD UND PAPIERGELDSPEICHERVERFAHRENDAFÜR
    • EP3079128A4
    • 2017-04-19
    • EP14866849
    • 2014-10-24
    • GRG BANKING EQUIPMENT CO LTD
    • ZHANG TAOWU WENQINGSUN ZHIQIANG
    • G07D11/00B65H29/00B65H43/00
    • B65H29/006B65H43/00B65H2301/4191B65H2511/10B65H2511/14B65H2513/10B65H2513/11B65H2553/51B65H2701/1912B65H2220/03B65H2220/11B65H2220/02
    • A paper money temporary storage device and a paper money storage method therefor. The paper money temporary storage device (100) comprises a signal collection unit. The signal collection unit comprises a coded disk (103), a coded disk signal sensor (104) and a rubber wheel (105), wherein the coded disk (103) and the rubber wheel (105) are arranged between a storage reel (109) and a belt standby reel (110) via the same rotating shaft; and a coiling belt (107) engages with the rubber wheel (105) closely and drives the rubber wheel (105) to rotate. The paper money temporary storage device (100) makes clever use of the structures of the rubber wheel (105) which is coaxial with the coded disk (103) and engages closely with the coiling belt, the coded disk (103) and the coded disk signal sensor (104), so that the number of rotation turns of the rubber wheel (105) can be obtained by way of recording the number of rotation turns of the coded disk (103), thereby calculating the real-time speed of the coiling belt (107) when each piece of paper money enters or rolls out, so as to obtain a real-time radius of the storage reel (109) or the belt standby reel (110), and, therefore, it can be ensured that the coiling belt (107) conducts a uniform motion at a target speed by way of adjusting an angular speed of a drive motor according to the real-time radius.
    • 一种纸币临时存储装置及其纸币存储方法。 纸币临时存储装置(100)包括信号收集单元。 信号采集单元包括编码盘(103),编码盘信号传感器(104)和橡胶轮(105),其中编码盘(103)和橡胶轮(105)布置在存储卷轴(109) )和带备用卷轴(110); 并且卷绕带(107)紧密地与橡胶轮(105)接合并驱动橡胶轮(105)旋转。 纸币临时存储装置(100)巧妙地使用与编码盘(103)同轴的橡胶轮(105)的结构,并与卷取带,编码盘(103)和编码盘 信号传感器(104),从而可以通过记录编码盘(103)的旋转匝数来获得橡胶轮(105)的旋转匝数,由此计算卷取的实时速度 当每个纸币进入或滚出时,带(107),以便获得存储卷轴(109)或带备用卷轴(110)的实时半径,因此可以确保 卷取带(107)通过根据实时半径调节驱动马达的角速度,以目标速度进行均匀运动。